中国粉体网欢迎您?/div>
  • 登录

    个人登录 企业登录 注册
  • APP
  • 粉享這/a>
  • 广告服务
  • 微信

    关注微信公众叶/span>
  • 中国粉体罐/a>
  • 移动?/p>

    m.cnpowder.com.cn
粉体屔/a>
加入粉享這/a>
全部产品分类
粉碎设备
粉碎设备
  • 气流粉碎朹/a>
  • 振动研磨朹/a>
  • 球磨朹/a>
  • 研磨朹/a>
  • 砂磨朹/a>
  • 搅拌?/a>
  • 破碎朹/a>
  • 雷蒙?/a>
  • 冷冻粉碎朹/a>
  • 冲击?/a>
  • 磨粉朹/a>
  • 粉体生产纾/a>
  • 其它粉碎设备
  • 移动破碎竘/a>
  • 立式?/a>
  • 环辊?/a>
  • 研磨系统成套
  • 对辊?/a>
  • 锤式粉碎朹/a>
  • 切割朹/a>
  • 磨抛朹/a>
  • 制砂朹/a>
  • 机械整形
  • 实验室粉碎设夆/a>
推荐品牌
分级设备
分级设备
  • 气流分级朹/a>
  • 振动筚/a>
  • 旋振筚/a>
  • 分样筚/a>
  • 标准筚/a>
  • 直线筚/a>
  • 旋流?/a>
  • 其他分级设备
推荐品牌
干燥设备
干燥设备
  • 干燥箰/a>
  • 热风炈/a>
  • 喷雾干燥朹/a>
  • 沸腾干燥朹/a>
  • 盘式干燥朹/a>
  • 气流干燥设备
  • 带式干燥设备
  • 箱式干燥设备
  • 流化床干燥设夆/a>
  • 滚筒刮板干燥朹/a>
  • 空心桨叶干燥朹/a>
  • 减压干燥朹/a>
  • 旋转闪蒸干燥朹/a>
  • 微波低温干燥设备
  • 微波工业加热干燥设备
  • 制粒干燥设备
  • 烘干朹/a>
  • 真空干燥朹/a>
  • 其他干燥设备
  • 连续工艺干燥朹/a>
  • 冷冻干燥朹/a>
推荐品牌
混合设备
混合设备
  • 混合朹/a>
  • 捏合朹/a>
  • 混料朹/a>
  • 分散朹/a>
  • 均质朹/a>
  • 搅拌朹/a>
  • 干粉砂浆生产纾/a>
  • 粉体改性机
  • 乳化朹/a>
  • 反应釛/a>
  • 融合球化
推荐品牌
非金属粉佒img src="//www.znpla.com/index/image24/nav_rig.jpg"/>
非金属粉佒/div>
  • 锂辉矲/a>
  • 珍珠?/a>
  • 硅藻圞/a>
  • 碳酸钘/a>
  • 电气矲/a>
  • 冰洲矲/a>
  • 水镁矲/a>
  • 透闪矲/a>
  • 高岭圞/a>
  • 云母
  • 长石
  • 麦饭矲/a>
  • 重晶矲/a>
  • 石英
  • 萤石
  • 沸石
  • 膨润圞/a>
  • 硅灰矲/a>
  • 滑石
  • 石墨
  • 硫矿
  • 石棉
  • 蛭石
  • 石灰矲/a>
  • 石膏矾/a>
  • 其他非金属矿?/a>
  • 锆英粈/a>
  • 蓝晶矲/a>
  • 重质碳酸钘/a>
  • 普通石苰/a>
  • 精致石英
  • 高纯石英
  • 熔融石英
  • 硅微粈/a>
  • 填充母粒
  • 功能母粒
推荐品牌
金属粉体
金属粉体
  • 还原铁粉
  • 锌粉
  • 银粉
  • 铜粉
  • 镍粉
  • 硒粉
  • 铝粉
  • 铝银浅/a>
  • 合金粉体
  • 其它金属粈/a>
推荐品牌
除尘设备
除尘设备
  • 水膜除尘装置
  • 湿式除尘装置
  • 旋风类除尘装?/a>
  • 过滤式除尘装?/a>
  • 脱硫水浴除尘装置
  • 组合式除尘装?/a>
  • 重力与惯性力除尘装置
  • 脱硫除尘设备
  • 各种单机除尘?/a>
  • 袋式除尘装置及配仵/a>
  • 静电除尘装置及配仵/a>
  • 其他除尘设备
推荐品牌
选矿设备
选矿设备
  • 破碎设备
  • 水力选矿设备
  • 浮选设夆/a>
  • 磁选设夆/a>
  • 其他选矿设备
  • 色选设夆/a>
  • 振动洗矿朹/a>
  • 振动下料朹/a>
  • 酸洗装备
  • 矿石分逈/a>
热门关键诌/div>
  • 推荐品牌
输送设夆img src="//www.znpla.com/index/image24/nav_rig.jpg"/>
输送设夆/div>
  • 真空输送设夆/a>
  • 气力输送设夆/a>
  • 输送机
  • 矿业输送设夆/a>
  • 传动装置
  • 压缩朹/a>
  • 加料朹/a>
  • 输送带
  • 粉体软连?/a>
  • 管链输送机
  • 螺旋输送机
  • 料位讠/a>
  • 拆包朹/a>
  • 开袋站
  • 工业软管
  • 料仓
  • 卸料?/a>
推荐品牌
包装设备
包装设备
  • 真空包装
  • 粉体包装设备
  • 大袋包装设备
  • 自动码垛系统
  • 称重配料生产纾/a>
  • 粉体包装秣/a>
  • 称重仪表
  • 称重传感?/a>
  • 吨袋/吨包/阀口袋
推荐品牌
成型设备
成型设备
  • 造粒朹/a>
  • 成球设备
  • 3D打印设备
  • 等静压机
  • 压制设备
  • 包衣朹/a>
  • 挤出朹/a>
  • 增密朹/a>
  • 流延朹/a>
  • 丝印朹/a>
推荐品牌
分离过滤
分离过滤
  • 压滤朹/a>
  • 离心朹/a>
  • 空分设备
  • 过滤朹/a>
  • 微孔过滤设备
  • 萃取设备
  • 过滤?/a>
  • 过滤材料
  • 其他分离设备
推荐品牌
研磨介质
研磨介质
  • 氧化锆球
  • 氧化铝球
  • 玛瑙琂/a>
  • 刚玉琂/a>
  • 钢球
  • 碳化硅球
  • 其他研磨介质
  • 硅酸锆珠
  • 锆铝复合珟/a>
推荐品牌
耐磨材料
耐磨材料
  • 聚氨酯内?/a>
  • 玛瑙罏/a>
  • 陶瓷罏/a>
  • 破碎机锤夳/a>
  • 聚氨酯弹性体制品
  • 球磨罏/a>
  • 氧化铝砖
  • 氧化锆砖
  • 耐磨衬板
  • 耐磨衬片
  • 砂磨机配仵/a>
  • 陶瓷制品
  • 磨料
  • 磨具
推荐品牌
泵阀设备
泵阀设备
  • 粉体输送泵
  • 管道泴/a>
  • 隔膜泴/a>
  • 磁力泴/a>
  • 蠕动泴/a>
  • 增压泴/a>
  • 真空泴/a>
  • 计量泴/a>
  • 离心泴/a>
  • 柱塞泴/a>
  • 螺杆泴/a>
  • 罗茨泴/a>
  • 启动阀
  • 放料阀
  • 粉体专用阀
  • 流量控制阀
  • 电磁阀
  • 调节阀
  • 换向阀
  • 气动球阀
  • 气动蝶阀
  • 闸阀
  • 截止阀
  • 止回阀
  • 挡板阀
  • 释放阀
  • 防爆阀
  • 隔膜阀
推荐品牌
纳米材料
纳米材料
  • 纳米材料
  • 石墨?/a>
  • 纳米二氧化硅
  • 钛白粈/a>
  • 纳米碳酸钘/a>
  • 碳纳米管
  • 锂电材料
  • 富勒?/a>
  • 碳纤绳/a>
  • 炭粉
推荐品牌
粉体测试设备
粉体测试设备
  • 激光粒度仪
  • 沉降式粒度仪
  • 在线粒度?/a>
  • 白度?/a>
  • 密度?/a>
  • 粘度讠/a>
  • 筛分?/a>
  • 粉末流动测试?/a>
  • 粉体特性测试仪
  • 比表面积测定?/a>
  • 颗粒图像测试?/a>
  • 计量设备
  • 纳米粒度?/a>
  • zeta电位?/a>
  • 其他测试设备
  • 元素分析?/a>
  • 蒸汽吸附?/a>
  • 化学吸附?/a>
  • 色谱?/a>
  • 压汞?/a>
  • 接触角测量仪
  • 高压吸附?/a>
  • 物理吸附?/a>
  • 图像粒度?/a>
  • 孔径分析?/a>
  • 热分析仪
  • 原子力显微镜
  • 颗粒计数?/a>
  • 表面张力?/a>
  • 大气颗粒物监测仪
  • 水分测定?/a>
  • 微波消解?/a>
  • 耗材配件
  • 光度讠/a>
  • 光谱检测分析仪
  • 质谱检测分析仪
  • 扫描电镜
  • 标准物质
  • 电阻率测定仪
  • 不溶性微粒检测仪
  • X射线粉末衍射?/a>
  • 竞争性吸附仪
  • 浓度分析?/a>
  • 溅射?/a>
  • 硬度讠/a>
  • 等离子清洗仪
  • 澄明度检测仪
  • 稳定性分析仪
  • 粉末电阻率仪
  • 粉末压实密度?/a>
推荐品牌
粉体助剂
粉体助剂
  • 分散剁/a>
  • 助磨剁/a>
  • 表面改性剂
  • 表面活化剁/a>
  • 浮选药剁/a>
  • 起泡剁/a>
  • 着色剂
  • 固化剁/a>
  • 增塑剁/a>
  • 脱色剁/a>
  • 热稳定剂
  • 其它
  • 粘结剁/a>
推荐品牌
无机材料
无机材料
  • 氧化铝粉
  • 氧化锆粉
  • 氮化硅粉
  • 碳化硅粉
  • 氮化铝粉
  • 氮化硼粉
  • 灰钙粈/a>
  • 氧化铁红
  • 珠光云母
  • 轻钙粈/a>
  • 氧化锌粉
  • 氢氧化铝粈/a>
  • 二氧化硅粈/a>
  • 氢氧化钙粈/a>
  • 白炭黐/a>
  • 硼酸锌粉
  • 氢氧化镁粈/a>
  • 固态电解质
  • 其它无机材料
  • 氧化钙粉
  • 氧化钇粉
  • 氧化?/a>
  • 金刚石微粈/a>
推荐品牌
辅助设备
辅助设备
  • 风机
  • 振动电机
  • 粉尘爆炸防护
  • 空气压缩朹/a>
  • 关风?/a>
  • 活塞
  • 连接?/a>
  • 执行?/a>
  • 定制加工仵/a>
  • 其它辅助设备
  • 气体设备
  • 异步电机
  • 特种电机
  • 手套箰/a>
  • 试验?/a>
  • 超声波处理器
  • 实验设备
  • 清洗朹/a>
  • 冷水朹/a>
  • 轴承
  • 喷嘴
  • 涂布设备
  • 封装设备
  • 切片设备
  • 焊接设备
  • 振动?/a>
  • 筛网
推荐品牌
窑炉设备
窑炉设备
  • 辊道炈/a>
  • 推板隧道炈/a>
  • 网带炈/a>
  • 箱式炈/a>
  • 管式炈/a>
  • 井式炈/a>
  • 梭式炈/a>
  • 回转炈/a>
  • 窑车炈/a>
  • 真空炈/a>
  • 气体保护炈/a>
  • 碳管炈/a>
  • 粉体焙烧炈/a>
  • 还原炈/a>
  • 马弗炈/a>
  • 实验电炉
  • 石灰窐/a>
  • 球化炈/a>
推荐品牌
有机粉体
有机粉体
  • 塑料粈/a>
  • 橡胶粈/a>
  • 蜡粉
  • 有机淀粈/a>
  • 纤维紟/a>
  • 聚合物粉佒/a>
推荐品牌
分析仪器设备
分析仪器设备
  • 煤炭行业专用仪器
  • 3D打印朹/a>
  • 安全防护用品
  • 环境试验箰/a>
  • 电化学仪?/a>
  • 电子测量仪器
  • 仪器专用配件
  • 工业在线及过程控制仪?/a>
  • 光学仪器及设夆/a>
  • 生物耗材
  • 试验朹/a>
  • 相关仪表
  • X射线仪器
  • 波谱仪器
  • 常用器具/玻璃耗材
  • 辐射测量仪器
  • 气体检测仪
  • 水质分析
  • 应?便携/车载
  • 成像系统
  • 动物实验仪器
  • 分子生物学仪?/a>
  • 临床检验仪器设夆/a>
  • 生物工程设备
  • 微生物检测仪?/a>
  • 细胞生物学仪?/a>
  • 芯片系统
  • 植物生理生态仪?/a>
  • 泴/a>
  • 纯化设备
  • 分离/萃取设备
  • 合成/反应设备
  • 恒温/加热/干燥设备
  • 气体发生?气体处理
  • 清洗/消毒设备
  • 实验室家其/a>
  • 液体处理设备
  • 制冷设备
  • 制样/消解设备
  • 测厚?/a>
  • 磁学测量仪器
  • 测量/计量仪器
  • 燃烧测定?/a>
  • 实验室服加/a>
  • 无损检?无损探伤仪器
  • 其他
  • 半导体行业专用仪?/a>
  • 包装行业专用仪器
  • 纺织行业专用仪器
  • 建筑工程仪器
  • 金属与冶金行业专用仪?/a>
  • 锂电行业专用测试系统
  • 专用设备
  • 农业和食品专用仪?/a>
  • 石油专用分析仪器
  • 危险化学品检测专用仪?/a>
  • 橡塑行业专用测试?/a>
  • 药物检测专用仪?/a>
推荐品牌
  • 首页
  • 新品
  • 品牌
  • 实力厂商
  • 技术中忂/a>
  • 排行榛/a>
  • 快速采购通道
首页 > 分析仪器设备 > 植物生理生态仪?/a>>
水下调制荧光仪Diving-PAM
水下调制荧光仪Diving-PAM

参考价栻/p>面议

型号

品牌

产地

德国

样本

暂无
上海泽泉科技股份有限公司

会员

|

?平/p>|

生产啅/p>

工商已核宝/p>

留言询价
核心参数
    同类推荐

    看了水下调制荧光仪Diving-PAM的用户又看了

    产品介绍
    创新炸/div>
    相关方案
    相关资料
    用户评论
    公司动?/div>
    问商宵/div>
    留言询价
    ×

    *留言类型

    *留言内容

    *联系亹/p>

    *单位名称

    *电子邮箱

    *手机叶/p>

    提交
    点击提交代表您同 《用户服务协议《/a>叉a href="//www.znpla.com/index/about/privacy.php" target="_blank">《隐私协议《/a>

    虚拟号将180秒后失效

    使用微信扫码拨号

    为了保证隐私安全,平台已启用虚拟电话,请放心拨打(暂不支持短信)
    ×
    是否已沟通完戏/div>
    您还可以选择留下联系电话,等待商家与您联糺/div>

    需求描?/p>

    单位名称

    联系亹/p>

    联系电话

    Email

    已与商家取得联系
    同意发送给商家
    产品介绍
    创新炸/div>
    相关方案
    相关资料
    用户评论
    公司动?/div>
    问商宵/div>
    DIVING-PAM 全球**款水下调制荧光仪

    Schreiber教授因发明PAM系列调制叶绿素荧光仪而获得首届国际光合作用协会(ISPR)创新奖

    DIVING-PAM是全世界**的一款可以原位研究水下植物(大型海藻、水草、珊瑚、沉水植物、“藻垫”和附着藻类等)光合作用的仪器,可达50米深?/strong>。它开创了在现场研究这些植物的光合作用的先河。DIVING-PAM在世界各地甚至是南、北极地区都有广泛应用、/p>

    DIVING-PAM是由超便携式调制叶绿素荧光仪MINI-PAM演化而来的,后者已被证明是野外光合作用研究的强大工具。DIVING-PAM的光电元件和操作软件与MINI-PAM相同,但DIVING-PAM的外壳采用了全防水设计,特别适合水下操作。DIVING-PAM的按键非常灵敏,在水下只需用指尖轻轻一摁即可。主机和样品之间通过非常柔软的光纤连接,有多种特制叶夹可选、/p>

    DIVING-PAM可以存储4000组数?/strong>,利用Windows操作软件WinControl可以进行数据传输、数据分析和遥控操作、/p>

    利用DIVING-PAM在海底原位测量澳洲大堡礁珊瑚的光合作?/td>

    主要功能

    ? * 仪器全防水设计,耐受50 m水压

    ? * 可测荧光诱导曲线并进行淬灭分枏/p>

    ? * 可测光响应曲线和快速光曲线(RLC(/p>

    ? * 51个内置模式菜单,方便参数设置和标准测野/p>

    ? * 可测水温、水深和PAR

    ? * 光感式按键,方便水下使用

    应用领域

    应用于水生生物学与海洋生物学、潮间带生态学、珊瑚研究、湖泊生态学等领域。原位测量珊瑚、大型海藻、沉水植物生理活性的**仪器。也可用于测量雨季陆生高等植物的光合活性。可测量微藻,但不太适合于自然水体中的浮游植物测量、/p>

    测量参数

    Fo Fm F Fm' Fv/Fm Y(II)=F/Fm' qP qN NPQ ETR PAR 水深和温度等、/p>

    系统组成

    微型光量子探头适配器,用于水下原位测量PAR、/p>

    磁性样品架DIVING-MLC(可选附件),分上、下两部分,可以靠磁性夹住叶片进行暗适应。上部覆盖带弹性的橡胶皮,中间开一条缝。光纤可从缝中插入,光纤插入后缝自动闭合,不会漏进环境光、/p>

    暗适应叶夹DIVING-LC(可选附件),塑料制,重量轻。也可用PAM-2100和MINI-PAM的暗适应叶夹DLC-8代替、/p>

    暗适应适配器。光纤可深入暗适应适配器中固定好,测量时放到暗适应叶夹DIVING-LC的上部,打开DIVING-LC的滑片即可、/p>

    遮光板,装在光适应样品架DIVING-USH的底部,阻挡底部反射光、/p>

    水下样品架DIVIN-USH

    全防水设计的主机

    表面样品室DIVING-SH(可选附?,特别适合测量珊瑚时用。改样品室四周有4个带橡皮筋的挂钩,可以牢牢固定在凹凸不平的珊瑚表面、/p>

    主要技术参?/p>

    测量先/strong>:红色发光二极管(LED),650 nm;标准光?.15 mol m-2s-1PAR;调制频?.6?0 kHz,自动转换、/p>

    光化先/strong>:卤素灯?V/20W,蓝色增强,<710 nm?*连续光强6000 mol m-2s-1PAR、/p>

    饱和脉冲:卤素灯?V/20W,蓝色增强,<710 nm?*饱和闪光强度18000 mol m-2s-1PAR、/p>

    信号检浊/strong>:PIN-光电二极管,带短波截止滤光片?#955;>710 nm;选择性锁相放大器?*设计)、/p>

    数据存储:CMOS RAM 128 KB,可存储4000组数?/p>

    测量参数:Fo Fm Fm’, F Fv/Fm(max. Yield) F/Fm?Yield) qP qN NPQ ETR PAR和叶温等、/p>

    环境温度?5~+40℃,在南、北极有成功应用、/p>

    部分文献

    1.Borell EM Romatzki SBC Ferse SCA: Differential physiological responses of two congeneric scleractinian corals to mineral accretion and an electric fieldCoral Reefs201029(1):191-200.[DIVING-PAM]

    2.Chevalier EM Gvaert F Crach A: In situ photosynthetic activity and xanthophylls cycle development of undisturbed microphytobenthos in an intertidal mudflat.Journal of Experimental Marine Biology and Ecology2010385:44-49.[DIVING-PAM]

    3.Edwards MS Kim KY: Diurnal variation in relative photosynthetic performance in giant kelpMacrocystis pyrifera(Phaeophyceae Laminariales) at different depths as estimated using PAM fluorometryAquatic Botany201092(2):119-128.[DIVING-PAM]

    4.Green DH Edmunds PJ Pochon X Gates RD: The effects of substratum type on the growth mortality and photophysiology of juvenile corals in St. John US Virgin IslandsJournal of Experimental Marine Biology and Ecology2010384(1-2):18-29.[DIVING-PAM]

    5.Marquardt R Schubert H Varela DA Huovinen P Henrquez L Buschmann AH: Light acclimation strategies of three commercially important red algal species.Aquaculture2010299:140-148.[DIVING-PAM]

    6.Ochieng CA Short FT Walker DI: Photosynthetic and morphological responses of eelgrass (Zostera marina L.) to a gradient of light conditionsJournal of Experimental Marine Biology and Ecology2010382(2):117-124.[DIVING-PAM]

    7.Abreu MH Varela DA Henrquez L Villarroel A Yarish C Sousa-Pinto I Buschmann AH: Traditional vs. Integrated Multi-Trophic Aquaculture ofGracilaria chilensisC. J. Bird J. McLachlan & E. C. Oliveira: Productivity and physiological performanceAquaculture2009293(3-4):211-220.[DIVING-PAM]

    8.Almeida CMR Dias AC Mucha AP Bordalo AA Vasconcelos MTSD: Influence of surfactants on the Cu phytoremediation potential of a salt marsh plantChemosphere200975(2):135-140.[DIVING-PAM]

    9.Cantin NE van Oppen MJH Willis BL Mieog JC Negri2 AP: Juvenile corals can acquire more carbon from high-performance algal symbiontsCoral Reefs200928(2):405-414.[DIVING-PAM]

    10.Chartrand KM Durako MJ Blum JE: Effect of hyposalinity on the photophysiology ofSiderastrea radiansMarine Biology2009156(8):1691-1702.[DIVING-PAM]

    11.Collier CJ Lavery PS Ralph PJ Masini RJ: Shade-induced response and recovery of the seagrassPosidonia sinuosaJournal of Experimental Marine Biology and Ecology2009370(1-2):89-103.[DIVING-PAM]

    12.Davoult D Mign A Crach A Gvaert F Hubas C Spilmont N Boucher G: Spatio-temporal variability of intertidal benthic primary production and respiration in the western part of the Mont Saint-Michel Bay (Western English Channel France)Hydrobiologia2009620(1):163-172.[DIVING-PAM]

    13.Downs CA Kramarsky-Winter E Woodley CM Downs A Winters G Loya Y Ostrander GK: Cellular pathology and histopathology of hypo-salinity exposure on the coralStylophora pistillataScience of The Total Environment2009407(17):4838-4851.[DIVING-PAM]

    14.Enrquez S ?vila E Carballo JL: Phenotypic plasticity induced in transplant experiments in a mutualistic association between the red algaJania adhaerens(Rhodophyta Corallinales) and the spongeHaliclona caerulea(Porifera: Haplosclerida): morphological responses of the alga.Journal of Phycology200945(1):81-90.[DIVING-PAM]

    15.Figueroa FL Korbee N Carrillo P Medina-Snchez JM Mata M Bonomi J Snchez-Castillo PM: The effects of UV radiation on photosynthesis estimated as chlorophyll fluorescence inZygnemopsis decussata(Chlorophyta) growing in a high mountain lake (Sierra Nevada Southern Spain).Journal of Limnology200968(2):206-216.[DIVING-PAM]

    16.Halac S Garca-Mendoza E Banaszak AT: Ultraviolet Radiation Reduces the Photoprotective Capacity of the Marine DiatomPhaeodactylum tricornutum(Bacillariophyceae Heterokontophyta).Photochemistry and Photobiology200985(3):807-815.[DIVING-PAM]

    17.Horn LE Paling EI Keulen Mv: Photosynthetic recovery of transplantedPosidonia sinuosa Western Australia.Aquatic Botany200990(2):149-156.[DIVING-PAM]

    18.Jesus B Brotas V Ribeiro L Mendes CR Cartaxana P Paters DM: Adaptations of microphytobenthos assemblages to sediment type and tidal positionContinental Shelf Research200929(13):1624-1634.[DIVING-PAM]

    19.Polerecky L Al-Najjar ABM Faerber P Osmers H Suci PA Stoodley P Beer Dd: Modular Spectral Imaging System for Discrimination of Pigments in Cells and Microbial Communities.Applied and Environmental Microbiology200975(3):758-771.[DIVING-PAM]

    20.Spilmont N Denis L Artigas LF Caloin F Courcot L Crach A Desroy N Gevaert F Hacquebart P Hubas Cet al: Impact of thePhaeocystis globosaspring bloom on the intertidal benthic compartment in the eastern English Channel: A synthesisMarine Pollution Bulletin200958(1):55-63.[DIVING-PAM]

    21.Vermeij MJA Smith TB Dailer ML Smith CM: Release from native herbivores facilitates the persistence of invasive marine algae: a biogeographical comparison of the relative contribution of nutrients and herbivory to invasion successBiological Invasions200911(6):1463-1474.[DIVING-PAM]

    22.Williams SL Carranza A Kunzelman J Datta S Kuivila KM: Effects of the Herbicide Diuron on Cordgrass (Spartina foliosa) Reflectance and Photosynthetic ParametersEstuaries and Coasts200932(1):146-157.[DIVING-PAM]

    23.Yuen YS Yamazaki SS Nakamura T Tokuda G Yamasaki H: Effects of live rock on the reef-building coralAcropora digitiferacultured with high levels of nitrogenous compoundsAquacultural Engineering200941(1):35-43.[DIVING-PAM]

    24.何伟 王国祥, 杨文斌, 陈秋敏, 陆贻趄 水深梯度对菹草生长的影响.生态学杂志200928(7):1224-1228.[DIVING-PAM]

    25.李强 王国? 秋冬季光照、水温对菹草萌发和幼苗生长发育的影响.重庆文理学院学报200928(1):9-15.[DIVING-PAM]

    26.李强 王国? 水体泥沙对苦草生长发育和叶片光合生理特性的影响.生态学?/em>200929(6):2852-2860.[DIVING-PAM]

    27.刘玉 王国祥, 潘国杂 水位埋深对菖蒲萌发和幼苗生长的影?湖泊科学200921(4):530-537.[DIVING-PAM]

    28.宋玉芝, 蔡炜 秦伯弹 太湖常见浮叶植物和沉水植物的光合荧光特性比?应用生态学?/em>200920(3):569-573.[DIVING-PAM]

    29.Belshe EF Durako MJ Blum JE: Diurnal light curves and landscape-scale variation in photosynthetic characteristics ofThalassia testudinumin Florida BayAquatic Botany200889(1):16-22.[DIVING-PAM]

    30.Burghardt I Stemmer K W?gele H: Symbiosis betweenSymbiodinium(Dinophyceae) and various taxa of Nudibranchia (Mollusca: Gastropoda) with analyses of long-term retentionOrganisms Diversity & Evolution20088(1):66-76.[DIVING-PAM]

    31.Hall-Spencer JM Rodolfo-Metalpa R Martin S Ransome E Fine M Turner SM Rowley SJ Tedesco D Buia M-C: Volcanic carbon dioxide vents show ecosystem effects of ocean acidification.Nature2008454:96-99.[IMAGING-PAM DIVING-PAM]

    32.Han T Kang S-H Park J-S Lee H-K Brown MT: Physiological responses ofUlva pertusaandU. armoricanato copper exposureAquatic Toxicology200886(2):176-184.[DIVING-PAM]

    33.Hancke K Hancke TB Olsen LM Johnsen G Glud RN: Temperature effects on microalgal photosynthesis-light responses measured by O2production pulse-amplitude-modulated fluorescence and14C assimilation.Journal of Phycology200844(2):501-514.[DIVING-PAM]

    34.Martnez B Rico JM: Changes in nutrient content ofPalmaria palmatain response to variable light and upwelling in Northern Spain.Journal of Phycology200844(1):50-59.[DIVING-PAM]

    35.Piniak GA Storlazzi CD: Diurnal variability in turbidity and coral fluorescence on a fringing reef flat: Southern Molokai HawaiiEstuarine Coastal and Shelf Science200877(1):56-64.[DIVING-PAM]

    36.Reynolds JM Bruns BU Fitt WK Schmidt GW: Enhanced photoprotection pathways in symbiotic dinoflagellates of shallow-water corals and other cnidarians.Proc Natl Acad Sci USA2008105:13674-13678.[PAM-100 DIVING-PAM]

    37.Rodolfo-Metalpa R Huot Y Ferrier-Pages C: Photosynthetic response of the Mediterranean zooxanthellate coralCladocora caespitosato the natural range of light and temperature.Journal of Experimental Biology2008211(10):1579-1586.[DIVING-PAM]

    38.Sampayo EM Ridgway T Bongaerts P Hoegh-Guldberg O: Bleaching susceptibility and mortality of corals are determined by fine-scale differences in symbiont type.Proc Natl Acad Sci USA2008105:10444-10449.[DIVING-PAM]

    39.Saroussi S Beer S: Alpha and quantum yield of aquatic plants derived from PAM fluorometry: Uses and misusesAquatic Botany200886(1):89-92.[DIVING-PAM]

    40.Smith-Keune C Dove S: Gene Expression of a Green Fluorescent Protein Homolog as a Host-Specific Biomarker of Heat Stress Within a Reef-Building CoralMarine Biotechnology200810(2):166-180.[DIVING-PAM]

    41.Sofonia JJ Anthony KRN: High-sediment tolerance in the reef coralTurbinaria mesenterinafrom the inner Great Barrier Reef lagoon (Australia)Estuarine Coastal and Shelf Science200878(4):748-752.[DIVING-PAM]

    42.李强 王国? 冬季降温对菹草叶片光合荧光特性的影响.生态环墂/em>200817(5):1754-1758.[DIVING-PAM]

    43.郑有飞, 李璐 梁骏: 模拟酸雨条件下Pb~(2+)和Cr~(6+)对蕹菜光合作用及品质的影?生态学杂志200827(9):1580-1586.[DIVING-PAM]

    44.周晓红, 王国祥, 冯冰? 光照对菹?Potamogeton cripus)幼苗生长发育和光合荧光特性的影响.生态环墂/em>200817(4):1342-1347.[DIVING-PAM]

    45.Bautista AIN Jr. ON: Photoacclimation in three species of freshwater red algaeBrazilian Journal of Plant Physiology200719(1):23-34.[DIVING-PAM]

    46.Belshe EF Durako MJ Blum JE: Photosynthetic rapid light curves (RLC) of Thalassia testudinum exhibit diurnal variationJournal of Experimental Marine Biology and Ecology2007342(2):253-268.[DIVING-PAM]

    47.Cantin NE Negri AP Willis BL: Photoinhibition from chronic herbicide exposure reduces reproductive output of reef-building corals.Marine Ecology Progress Series2007344:81-93.[DIVING-PAM]

    48.Carpenter LW Patterson MR: Water flow influences the distribution of photosynthetic efficiency within colonies of the scleractinian coralMontastrea annularis(Ellis and Solander 1786); implications for coral bleachingJournal of Experimental Marine Biology and Ecology2007351(1-2):10-26.[DIVING-PAM]

    49.Carr H Bj?rk M: Parallel changes in non-photochemical quenching properties photosynthesis and D1 levels at sudden prolonged irradiance exposures inUlva fasciataDelileJournal of Photochemistry and Photobiology B: Biology200787(1):18-26.[DIVING-PAM]

    50.Cayabyab NM Enrquez S: Leaf photoacclimatory responses of the tropical seagrassThalassia testudinumunder mesocosm conditions: a mechanistic scaling-up study.New Phytologist2007176(1):108-123.[DIVING-PAM]

    51.Davison IR Jordan TL Fegley JC Grobe CW: Response ofLaminaria saccharina(Phaeophyta) growth and photosynthesis to simultaneous ultraviolet radiation and nitrogen limitation.Journal of Phycology200743(4):636-646.[DIVING-PAM]

    52.Durako MJ: Leaf optical properties and photosynthetic leaf absorptances in several Australian seagrassesAquatic Botany200787(1):83-89.[DIVING-PAM]

    53.Ferrier-Pags C Richard C Forcioli D Allemand D Pichon M Shick JM: Effects of Temperature and UV Radiation Increases on the Photosynthetic Efficiency in Four Scleractinian Coral Species.Biological Bulletin2007213:76-87.[DIVING-PAM]

    54.Fleming ED Bebout BM Castenholz RW: Effects of salinity and light intensity on the resumption of photosynthesis in rehydrated cyanobacterial mats from Baja California Sur Mexico.Journal of Phycology200743(1):15-24.[DIVING-PAM]

    55.Francoeur SN Johnson AC Kuehn KA Neely RK: Evaluation of the efficacy of the photosystem II inhibitor DCMU in periphyton and its effects on nontarget microorganisms and extracellular enzymatic reactions.Journal of the North American Benthological Society200726(4):633-641.[DIVING-PAM]

    56.Frisch AJ Ulstrup KE Hobbs J-PA: The effects of clove oil on coral: An experimental evaluation usingPocillopora damicornis(Linnaeus)Journal of Experimental Marine Biology and Ecology2007345(2):101-109.[DIVING-PAM]

    57.Garca-Mendoza E Colombo-Pallotta MF: The giant kelpMacrocystis pyriferapresents a different nonphotochemical quenching control than higher plants.New Phytologist2007173(3):526-536.[DIVING-PAM]

    58.Garty J Tamira TL Lehr H: The impact of UV-B and sulphur- or copper-containing solutions in acidic conditions on chlorophyll fluorescence in selectedRamalinaspeciesEnvironmental Pollution2007145(1):266-273.[DIVING-PAM]

    59.Husband JD Kiene RP: Occurrence of dimethylsulfoxide in leaves stems and roots ofSpartina alterniflora.Wetlands200727(2):224-229.[DIVING-PAM]

    60.Koch MS Schopmeyer S Kyhn-Hansen C Madden CJ: Synergistic effects of high temperature and sulfide on tropical seagrassJournal of Experimental Marine Biology and Ecology2007341(1):91-101.[DIVING-PAM]

    61.Koch MS Schopmeyer SA Holmer M Madden CJ Kyhn-Hansen C:Thalassia testudinumresponse to the interactive stressors hypersalinity sulfide and hypoxia.Aquatic Botany200787(2):104-110.[DIVING-PAM]

    62.Koch MS Schopmeyer SA Kyhn-Hansen C Madden CJ Peters JS: Tropical seagrass species tolerance to hypersalinity stressAquatic Botany200786(1):14-24.[DIVING-PAM]

    63.Kromkamp JC Perkins R Dijkman N Consalvey M Andres M Reid RP: Resistance to burial of cyanobacteria in stromatolites.Aquatic Microbial Ecology200748(2):123-130.[WATER-PAM DIVING-PAM]

    64.Martinez MDCG Romero PR Banaszak AT: Photoinduced toxicity of the polycyclic aromatic hydrocarbon fluoranthene on the coralPorites divaricataJournal of Environmental Science and Health200742(10):1495-1502.[DIVING-PAM]

    65.Matheson FE Schwarz A-M: Growth responses of Zostera capricorni to estuarine sediment conditionsAquatic Botany200787(4):299-306.[DIVING-PAM]

    66.Mign A Gvaert F Crach A Spilmont N Chevalier E Davoult D: Photosynthetic activity of intertidal microphytobenthic communities during emersion: in situ measurements of chlorophyll fluorescence (PAR) and CO2flux (IRGA)Journal of Phycology200743(5):864-873.[DIVING-PAM]

    67.Padilla-Gami?o JL Carpenter RC: Thermal ecophysiology ofLaurencia pacificaandLaurencia nidifica(Ceramiales Rhodophyta) from tropical and warm-temperate regions.Journal of Phycology200743(4):686-692.[DIVING-PAM]

    68.Pawlik JR Steindler L Henkel TP Beer S Ilan M: Chemical warfare on coral reefs: Sponge metabolites differentially affect coral symbiosisin situ.Limnology and Oceanography200752(2):907-911.[DIVING-PAM]

    69.Piniak GA: Effects of two sediment types on the fluorescence yield of two Hawaiian scleractinian coralsMarine Environmental Research200764(4):456-468.[DIVING-PAM]

    70.Raniello R Mollo E Lorenti M Gavagnin M Buia MC: Phytotoxic activity of caulerpenyne from the Mediterranean invasive variety ofCaulerpa racemosa: a potential allelochemicalBiological Invasions20079(4):361-368.[DIVING-PAM]

    71.Runcie JW Riddle MJ: Assessing the toxic effects of dissolved copper on the Antarctic macroalgaDesmarestia menziesiiusing chlorophyll fluorescence imaging in ecotoxicological testsToxicological & Environmental Chemistry200789(4):641-653.[DIVING-PAM IMAGING-PAM]

    72.Saroussi S Beer S: Acclimations of macroalgae as reflected in photosynthetic parameters derived from PAM fluorometry and possible implications for abundance patterns.Marine Ecology200728(3):377-383.[DIVING-PAM]

    73.Sharon Y Beer S: Diurnal movements of chloroplasts inHalophila stipulaceaand their effect on PAM fluorometric measurements of photosynthetic ratesAquatic Botany200788(4):273-276.[DIVING-PAM]

    74.Smith LW Birkeland C: Effects of intermittent flow and irradiance level on back reef Porites corals at elevated seawater temperaturesJournal of Experimental Marine Biology and Ecology2007341(2):282-294.[DIVING-PAM]

    75.Sobrino C Neale PJ: Short-term and long-term effects of temperature on photosynthesis in the diatomThalassiosira pseudonanaunder UVR exposures.Journal of Phycology200743(3):426-436.[DIVING-PAM]

    76.Theil M Westphalen G Collings G Cheshire A:Caulerpa taxifoliaresponses to hyposalinity stressAquatic Botany200787(3):221-228.[DIVING-PAM]

    77.Torregiani JH Lesser MP: The effects of short-term exposures to ultraviolet radiation in the Hawaiian Coral Montipora verrucosa.Journal of Experimental Marine Biology and Ecology2007340(2):194-203.[DIVING-PAM]

    78.Van der Welle MEW Niggebrugge K Lamers LPM Jan G.M. Roelofsa: Differential responses of the freshwater wetland speciesJuncus effususL. andCaltha palustrisL. to iron supply in sulfidic environmentsEnvironmental Pollution2007147(1):222-230.[DIVING-PAM]

    79.Wulff A Zacher K Hanelt D Al-Handal A Wiencke C: UV radiation - a threat to Antarctic benthic marine diatoms?Antarctic Science200720:13-20.[DIVING-PAM WATER-PAM]

    80.Yokoya NS Jr. ON Martins AP Gonzalez SF Plastino EM: Growth responses and photosynthetic characteristics of wild and phycoerythrin-deficient strains ofHypnea musciformis(Rhodophyta)Journal of Applied Phycology200719(3):197-205.[DIVING-PAM]

    81.曹昀 王国? 土壤水分含量对菖?Acorus calamus)萌发及幼苗生长发育的影响.生态学?/em>200727(5):1748-1755.[DIVING-PAM]

    82.曹昀 王国祥, 刘玉: 淹水对菖蒲萌发及幼苗生长的影?湖泊科学200719(5):577-584.[DIVING-PAM]

    83.李强 王国祥, 马婷 王文林, 潘国杂 水网藻附着对亚洲苦草光合特性的影响湖泊科学200719(3):315-320.[DIVING-PAM]

    84.李强 王国祥, 王文林, 马婷 潘国杂 悬浮泥沙水体对穗花狐尾藻(Myriophyllum spicatumL?光合荧光特性的影响.湖泊科学200719(2):197-203.[DIVING-PAM]

    85.马婷 王国祥, 李强 潘国权, 王文枖 富营养化水体中菹草光合荧光特性研?生态环墂/em>200716(3):758-761.[DIVING-PAM]

    86.潘国权, 王国祥, 李强 刘玉: 浊度对苦?Vallisneria natans)幼苗生长的影?生态环墂/em>200716(3):762-766.[DIVING-PAM]

    87.王文林, 王国祥, 李强 马婷 潘国杂 悬浮泥沙对亚洲苦草幼苗生长发育的影响.水生生物学报200731(4):460-466.[DIVING-PAM]

    88.徐瑶 王国祥, 李强: 水体浊度对苦草光合荧光特性的影响.武汉植物学研穵/em>200725(1):70-74.[DIVING-PAM]

    89.Andersson M Schubert H Pedersn M Snoeijs P: Different patterns of carotenoid composition and photosynthesis acclimation in two tropical red algae.Marine Biology2006149(3):653-665.[DIVING-PAM]

    90.Colombo-Pallotta MF Garcia-Mendoza E Ladah LB: Photosynthetic performance light absorption and pigment composition ofMacrocystis pyrifera(Laminariales Phaeophyceae) blades from different depths.Journal of Phycology200642(6):1225-1234.[DIVING-PAM]

    91.Copertino MS Cheshire A Watling J: Photoinhibition and photoacclimation of turf algal communities on a temperate reef after in situ transplantation experiments.Journal of Phycology200642(3):580-592.[DIVING-PAM]

    92.Franklin DJ Cedrs CMM Hoegh-Guldberg O: Increased mortality and photoinhibition in the symbiotic dinoflagellates of the Indo–Pacific coralStylophora pistillata(Esper) after summer bleaching.Marine Biology2006149(3):633-642.[DIVING-PAM]

    93.Jesus B Perkins RG Mendes CR Brotas V Paterson DM: Chlorophyll fluorescence as a proxy for microphytobenthic biomass: alternatives to the current methodology.Marine Biology2006150(1):17-28.[DIVING-PAM]

    94.Lu I-F Sung M-S Lee T-M: Salinity stress and hydrogen peroxide regulation of antioxidant defense system inUlva fasciata.Marine Biology2006150(1):1-15.[DIVING-PAM]

    95.Middelboe AL Sand-Jensen K Binzer T: Highly predictable photosynthetic production in natural macroalgal communities from incoming and absorbed light.Oecologia2006150(3):464-476.[DIVING-PAM]

    96.Nielsen KJ Blanchette CA Menge BA Lubchenco J: Physiological snapshots reflect ecological performance of the sea palmPostelsia palmaeformis(Phaeophycaea) across intertidal elevation and exposure gradients.Journal of Phycology200642(3):548-559.[DIVING-PAM]

    97.Perkins RG Mouget J-L Lefebvre S Lavaud J: Light response curve methodology and possible implications in the application of chlorophyll fluorescence to benthic diatomsMarine Biology2006149(4):703-712.[DIVING-PAM]

    98.Raniello R Lorenti M Brunet C Buia MC: Photoacclimation of the invasive algaCaulerpa racemosavar.cylindraceato depth and daylight patterns and a putative new role for siphonaxanthin.Marine Ecology200627(1):20-30.[DIVING-PAM]

    99.Rodolfo-Metalpa R Richard C Allemand D Bianchi CN Morri C Ferrier-Pags C: Response of zooxanthellae in symbiosis with the Mediterranean coralsCladocora caespitosaandOculina patagonicato elevated temperatures.Marine Biology2006150:45-55.[DIVING-PAM]

    100.Schubert H Andersson M Snoeijs P: Relationship between photosynthesis and non-photochemical quenching of chlorophyll fluorescence in two red algae with different carotenoid compositions.Marine Biology2006149(5):1003-1013.[DIVING-PAM]

    101.李强 王国祥, 潘国权, 王文林, 马婷: 水体浊度对菹草萌发及萌发苗光合荧光特性的影响.生态学?/em>200626(11):3594-3601.[DIVING-PAM]

    102.王文林, 王国祥, 李强 潘国权, 马婷: 水体浊度对菹草(Potamogeton cripus)幼苗生长发育的影响.生态学?/em>200626(11):3586-3593.[DIVING-PAM]

    103.Cabello-Pasini A Figueroa FL: Effect of nitrate concentration on the relationship between photosynthetic oxygen evolution and electron transport rate inUlva rigida(Chlorophyta).Journal of Phycology200541(6):1169-1177.[DIVING-PAM]

    104.Enrquez S Pantoja-Reyes N: Form-function analysis of the effect of canopy morphology on leaf self-shading in the seagrassThalassia testudinum.Oecologia2005145(2):234-242.[DIVING-PAM]

    105.Fine M Meroz-Fine E Hoegh-Guldberg O: Tolerance of endolithic algae to elevated temperature and light in the coralMontipora monasteriatafrom the southern Great Barrier Reef.Journal of Experimental Biology2005208:75-81.[DIVING-PAM]

    106.Jnior ON Alves AHS: Photosynthetic characteristics of the freshwater red algaBatrachospermum delicatulum(Skuja) Necchi & Entwisle.Acta Bot Bras200519(1):125-137.[DIVING-PAM]

    107.Liu S-L Wang W-L Dy DT Fu C-C: The effect of ulvoid macroalgae on the inorganic carbon utilization by an intertidal seagrassThalassia hemprichii.Bot Bull Acad Sin200546:197-203.[DIVING-PAM]

    108.Ralph PJ Gademann R: Rapid light curves: A powerful tool to assess photosynthetic activity.Aquatic Botany200582:222?37.[DIVING-PAM]

    109.Ralph PJ Larkum AWD Khl M: Temporal patterns in effective quantum yield of individual zooxanthellae expelled during bleaching.Journal of Experimental Marine Biology and Ecology2005316:17-28.[DIVING-PAM MICROSCOPY-PAM]

    110.Rodrguez-Romn A Iglesias-Prieto R: Regulation of photochemical activity in cultured symbiotic dinoflagellates under nitrate limitation and deprivation.Marine Biology2005146(6):1063-1073.[DIVING-PAM]

    111.Smith JE Runcie JW Smith CM: Characterization of a large-scale ephemeral bloom of the green algaCladophora sericeaon the coral reefs of West Maui Hawai'i.Marine Ecology Progress Series2005302:77-91.[DIVING-PAM]

    112.Ulstrup KE Hill R Ralph PJ: Photosynthetic impact of hypoxia onin hospitezooxanthellae in the scleractinian coralPocillopora damicornis.Marine Ecology Progress Series2005286:125-132.[DIVING-PAM]

    113.Burghardt I W?gele H: A new solar powered species of the genusPhyllodesmiumEhrenberg 1831 (Mollusca: Nudibranchia: Aeolidoidea) from Indonesia with analysis of its photosynthetic activity and notes on biology.Zootaxa2004596:1-18.[DIVING-PAM]

    114.Fine M Steindler L Loya Y: Endolithic algae photoacclimate to increased irradiance during coral bleaching.Marine and Freshwater Research200455:115-121.[DIVING-PAM]

    115.Heil CA Chaston K Jones A Bird P Longstaff B Costanzo S Dennison WC: Benthic microalgae in coral reef sediments of the southern Great Barrier Reef Australia.Coral Reefs200423:336-343.[DIVING-PAM]

    116.Iglesias-Prieto R Beltrn VH LaJeunesse TC Reyes-Bonilla H Thom PE: Different algal symbionts explain the vertical distribution of dominant reef corals in the eastern Pacific.Proc R Soc Lond B2004271:1757-1763.[DIVING-PAM]

    117.McMinn A Runcie JW Riddle M: Effect of seasonal sea ice breakout on the photosynthesis of benthic diatom mats at Casey Antarctica.Journal of Phycology200440(1):62-69.[DIVING-PAM]

    118.Mercurio P Negri A Burns KA Heyward A: The ecotoxicology of vegetable versus mineral based lubricating oils: 3. Coral fertilization and adult corals.Environmental Pollution2004129:183-194.[DIVING-PAM]

    119.Roberts S Sabater S Beardall J: Benthic microalgal colonization in streams of differing riparian cover and light availability.Journal of Phycology200440(6):1004-1012.[DIVING-PAM]

    120.Runcie JW Durako MJ: Among-shoot variability and leaf-specific absorptance characteristics affect diel estimates of in situ electron transport ofPosidonia australis.Aquatic Botany200480:209-220.[DIVING-PAM]

    121.Runcie JW Riddle MJ: Measuring variability in chlorophyll-fluorescence-derived photosynthetic parameters in situ with a programmable multi-channel fluorometer.Functional Plant Biology200431(5):559-562.[DIVING-PAM]

    122.Smith JE Smith CM Vroom PS Beach KL Miller S: Nutrient and growth dynamics ofHalimeda tunaon Conch Reef Florida Keys: Possible influence of internal tides on nutrient status and physiology.Limnology and Oceanography200449(6):1923-1936.[DIVING-PAM]

    123.Takahashi S Nakamura T Sakamizu M vanWoesik R Yamasaki H: Repair machinery of symbiotic photosynthesis as the primary target of heat stress for reef-building corals.Plant Cell and Physiology200445(2):251-255.[DIVING-PAM]

    124.Toohey B Kendrick GA Wernberg T Phillips JC Malkin S Prince J: The effects of light and thallus scour fromEcklonia radiatacanopy on an associated foliose algal assemblage: the importance of photoacclimation.Marine Biology2004144:1019-1027.[DIVING-PAM]

    125.Beach K Walters L Vroom P Smith C Coyer J Hunter C: Variability in the ecophysiology ofHalimedaspp. (Chlorophyta Bryopsidales) on conch reef Florida keys USA.Journal of Phycology200339(4):633-643.[DIVING-PAM]

    126.Beer S Axelsson L: Limitations in the use of PAM fluorometry for measuring photosynthetic rates of macroalgae at high irradiances.European Journal of Phycology200339:1-7.[DIVING-PAM]

    127.Carr H Bj?rk M: A methodological comparison of photosynthetic oxygen evolution and estimated electron transport rate in tropicalUlva(Chlorophyceae) species under different light and inorganic carbon conditions.Journal of Phycology200339(6):1125-1131.[PAM-2000 DIVING-PAM]

    128.Durako MJ Kunzelman JI Kenworthy WJ Hammerstrom KK: Depth-related variability in the photobiology of two populations ofHalophila johnsoniiandHalophila decipiens.Marine Biology2003142:1219-1228.[DIVING-PAM]

    129.Gvaert F Crach A Davoult D Mign A Levavasseur G Arzel P Holl A-C Lemoine Y:Laminaria saccharinaphotosynthesis measured in situ: photoinhibition and xanthophyll cycle during a tidal cycle.Marine Ecology Progress Series2003247:43-50.[DIVING-PAM]

    130.Han T Han Y-S Kain JM H?der D-P: Thallus differentiation of photosynthesis growth reproduction and UV-B sensitivity in the green algaUlva pertusa(Chlorophyceae).Journal of Phycology200339(4):712-721.[DIVING-PAM]

    131.Hewson I Vargo GA Fuhrman JA: Bacterial diversity in shallow oligotrophic marine benthos and overlying waters: effects of virus infection containment and nutrient enrichment.Microbial Ecology200346:322-336.[DIVING-PAM]

    132.Jones RJ Heyward AJ: The effects of Produced Formation Water (PFW) on coral and isolated symbiotic dinoflagellates of coral.Marine and Freshwater Research200354(2):153-162.[WATER-PAM DIVING-PAM]

    133.Jones RJ Mller J Haynes D Schreiber U: Effects of herbicides diuron and atrazine on corals of the Great Barrier Reef Australia.Marine Ecology Progress Series2003251:153-167.[DIVING-PAM]

    134.Joyce KE Phinn SR: Hyperspectral analysis of chlorophyll content and photosynthetic capacity of coral reef substrates.Limnology and Oceanography200348(1):489-496.[DIVING-PAM]

    135.Lovelock CE Feller IC: Photosynthetic performance and resource utilization of two mangrove species coexisting in a hypersaline scrub forestOecologia2003134(4):455-462.[DIVING-PAM]

    136.Macinnis-Ng CMO Ralphsd PJ: In situ impact of petrochemicals on the photosynthesis of the seagrassZostera capricorni.Marine Pollution Bulletin200346:1395?407.[DIVING-PAM]

    137.Durako MJ Kunzelman JI: Photosynthetic characteristics ofThalassia testudinummeasured in situ by pulse-amplitude modulated (PAM) fluorometry: methodological and scale-based considerations.Aquatic Botany200273:173-185.[DIVING-PAM]

    138.Glud RN Khl M Wenzh?fer F Rysgaard S: Benthic diatoms of a high Arctic fjord (Young Sound NE Greenland): importance for ecosystem primary production.Marine Ecology Progress Series2002238:15-29.[DIVING-PAM]

    139.Glud RN Rysgaard S Khl M: A laboratory study on O2dynamics and photosynthesis in ice algal communities: quantification by microsensors O2exchange rates14C incubations and a PAM fluorometer.Aquatic Microbial Ecology200227:301-311.[DIVING-PAM]

    140.Hawes I Andersen DT Pollard WH: Submerged aquatic bryophytes in Colour Lake a naturally acidic polar lake with occasional year-round ice-cover.Arctic200255(4):380-388.[DIVING-PAM]

    141.Longstaff BJ Kildea T Runcie JW Cheshire A Dennison WC Hurd C Kana T Raven JA Larkum AWD: Anin situstudy of photosynthetic oxygen exchange and electron transport rate in the marine macroalgaUlva lactuca(Chlorophyta).Photosynthesis Research200274(3):281-293.[DIVING-PAM]

    142.Ralph PJ Gademann R Larkum AWD Khl M: Spatial heterogeneity in active chlorophyll fluorescence and PSII activity of coral tissues.Marine Biology2002141:639-646.[DIVING-PAM MICROFIBER-PAM]

    143.Ralph PJ Polk SM Moore KA Orth RJ Jr. WOS: Operation of the xanthophyll cycle in the seagrassZostera marinain response to variable irradiance.Journal of Experimental Marine Biology and Ecology2002271:189-207.[DIVING-PAM]

    144.Takahashia S Yamasaki H: Reversible inhibition of photophosphorylation in chloroplasts by nitric oxide.FEBS Letters2002512(1-3):145-148.[DIVING-PAM]

    145.Waldhoff D Furch B Junk WJ: Fluorescence parameters chlorophyll concentration and natomical features as indicators for flood adaptation of an bundant tree species in Central Amazonia:Symmeria aniculata.Environmental and Experimental Botany200248:225-235.[DIVING-PAM]

    146.Beer S Bj?rk M R. G Ralph P: Measurements of photosynthetic rates in seagrasses. In:Global Seagrass Research Methods.Edited by Short FT Coles RG: Elsevier Science; 2001: 183-198.

    147.Enrquez S Marb N Duarte CM van Tussenbroek BI Reyes-Zavala G: Effects of seagrassThalassia testudinumon sediment redox.Marine Ecology Progress Series2001219:149-158.[DIVING-PAM]

    148.Garty J Tamir O Hassid I Eshel A Cohen Y Karnieli A Orlovsky L: Photosynthesis chlorophyll integrity and spectral reflectance in lichens exposed to air pollution.Journal of Environmental Quality200130:884-893.[DIVING-PAM]

    149.Jones RJ Hoegh-Guldberg O: Diurnal changes in the photochemical efficiency of the symbiotic dinoflagellates (Dinophyceae) of corals: photoprotection photoinactivation and the relationship to coral bleaching.Plant Cell and Environment200124(1):89-99.[DIVING-PAM]

    150.Khl M Glud RN Borum J Roberts R Rysgaard S: Photosynthetic performance of surface-associated algae below sea ice as measured with a pulse-amplitude-modulated (PAM) fluorometer and O2microsensors.Marine Ecology Progress Series2001223:1-14.[DIVING-PAM]

    151.Rae R Hanelt D Hawes I: Sensitivity of freshwater macrophytes to UV radiation: relationship to depth zonation in an oligotrophic New Zealand lake.Marine and Freshwater Research200152:1023-1032.[PAM-2000 DIVING-PAM]

    152.Rysgaard S Khl M Glud RN Hansen JW: Biomass production and horizontal patchiness of sea ice algae in a high-Arctic fjord (Young Sound NE Greenland).Marine Ecology Progress Series2001223:15-26.[DIVING-PAM]

    153.Beer S Bj?rk M: Measuring rates of photosynthesis of two tropical seagrasses by pulse amplitude modulated (PAM) fluorometry.Aquatic Botany200066:69-76.[DIVING-PAM]

    154.Garty J Weissman L Tamir O Beer S Cohen Y Karnieli A Orlovsky L: Comparison of five physiological parameters to assess the vitality of the lichenRamalina laceraexposed to air pollution.Physiologia Plantarum2000109:410-418.[DIVING-PAM]

    155.H?der D-P Porst M Lebert M: On site photosynthetic performance of Atlantic green algae.Journal of Photochemistry and Photobiology B: Biology200057:159-168.[DIVING-PAM]

    156.Salih A Larkum A Cox G Khl M Hoegh-Guldberg O: Fluorescent pigments in corals are photoprotective.Nature2000408:850-853.[DIVING-PAM]

    157.Ilan M Beer S: A new technique for non-intrusive in situ measurements of symbiotic photosynthesis.Coral Reefs199918:74.[DIVING-PAM]

    158.Beer S Ilan M: In situ measurements of photosynthetic irradiance responses of two Red Sea sponges growing under dim light conditions.Marine Biology1998131:613-617.[DIVING-PAM]

    159.Beer S Ilan M Eshel A Weil A Brickner I: Use of pulse amplitude modulated (PAM) fluorometry forin situ measurements of photosynthesis in two Red Sea faviid corals.Marine Biology1998131:607-612.[DIVING-PAM]

    160.Beer S Vilenkin B Weil A Veste M Suel L Eshel A: Measuring photosynthetic rates in seagrasses by pulse amplitude modulated (PAM) fluorometry.Marine Ecology Progress Series1998174:293-300.[DIVING-PAM]

    161.Jones RJ Hoegh-Guldberg O Larkum AWD Schreiber U: Temperature-induced bleaching of corals begins with impairment of the CO2fixation mechanism in zooxanthellae.Plant Cell and Environment199821:1219-1230.[TEACHING-PAM DIVING-PAM]

    162.Ralph PJ Gademann R Dennison WC: In situ seagrass photosynthesis measured using a submersible pulse-amplitude modulated fluorometer.Marine Biology1998132:367-373.[DIVING-PAM]

    创新炸/div>

    暂无数据

    相关方案
    暂无相关方案、/div>
    相关资料
    暂无数据、/div>
    用户评论

    产品质量

    10刅/span>

    售后服务

    10刅/span>

    易用?/p>

    10刅/span>

    性价毓/p>

    10刅/span>
    评论内容
    暂无评论?/div>
    公司动?/div>
    暂无数据
    技术文竟/div>
    暂无数据
    问商宵/div>
    • 水下调制荧光仪Diving-PAM的工作原理介绍?
    • 水下调制荧光仪Diving-PAM的使用方法?
    • 水下调制荧光仪Diving-PAM多少钱一台?
    • 水下调制荧光仪Diving-PAM使用的注意事顸/li>
    • 水下调制荧光仪Diving-PAM的说明书有吗>/li>
    • 水下调制荧光仪Diving-PAM的操作规程有吗?
    • 水下调制荧光仪Diving-PAM的报价含票含运费吗?
    • 水下调制荧光仪Diving-PAM有现货吗>/li>
    • 水下调制荧光仪Diving-PAM包安装吗>/li>
    水下调制荧光仪Diving-PAM信息由上海泽泉科技股份有限公司为您提供,如您想了解更多关于水下调制荧光仪Diving-PAM报价、型号、参数等信息,欢迎来电或留言咨询
    • 推荐分类
    • 同类产品
    • 该厂商产?/li>
    • 相关厂商
    • 推荐品牌
    • 煤炭行业专用仪器
    • 3D打印朹/a>
    • 安全防护用品
    • 环境试验箰/a>
    • 电化学仪?/a>
    • 电子测量仪器
    • 仪器专用配件
    • 工业在线及过程控制仪?/a>
    • 光学仪器及设夆/a>
    • 生物耗材
    • 试验朹/a>
    • 相关仪表
    • X射线仪器
    • 波谱仪器
    • 常用器具/玻璃耗材
    • 辐射测量仪器
    • 气体检测仪
    • 水质分析
    • 应?便携/车载
    • 成像系统
    • 动物实验仪器
    • 分子生物学仪?/a>
    • 临床检验仪器设夆/a>
    • 生物工程设备
    • 美国路阳光合有效辐射仪LUYOR-3460PAR
    • 便携式CT植物表型成像
    • 温室植物表型台式CT成像系统
    • 田间高通量植物表型成像
    • Videometer Lab XY种子分析系统
    • Videometer Mic多光谱显微分析成像测量系绞/a>
    • WIWAM植物表型平台水果蔬菜分析系统
    • 比利时植物表型成像系统WIWAM Line
    • 高通量植物表型系统WIWAM XY
    • 室内植物表型成像系统WIWAM conveyor
    • 田间高通量表型机器亹/a>
    • Airphen LITERAL田间表型成像系统
    • Videometer MR植物根系原位监测系统
    • Videometer多光谱种子表型成像分析系绞/a>
    • HI-phen田间高通量植物表型成像系统Phenomobile
    • Videometer田间植物表型成像系统Field
    • 光合强度测定?/a>
    • 便携式光合测定仪
    • 植物微量元素检测仪
    • 植物营养诊断?/a>
    • 植物营养检测仪
    • 便携式叶面积?/a>
    • 果蔬呼吸测定?/a>
    • 植物水势?/a>
    • SEC2705超细型张力计
    • 土壤质地测量套装
    • SEC土壤质地和土壤粒径分析套裄/a>
    • SEC土壤振筛仪套裄/a>
    • 可视化墒情监测系?800
    • 可视化农艺性状田间采集系统2900ET
    • 干旱模拟研究平台DroughtSpotter
    • 高通量田间植物表型平台FieldScan
    • 便携式紫?可见光荧光仪
    • 超便携式调制叶绿素荧光仪
    • 移动式激?D植物表型平台PlantEye
    • 便携式植物表型平台KeyBox
    • 植物乙烯气体监测系统--ETD
    • MicroLOG Pro EC750袖珍型温湿度记录?/a>
    • 气体交换-P700-叶绿素荧光同步测量系绞/a>
    • 水体光学剖面测量系统
    • 多功能光量子测量?/a>
    • 深层沉积物采样系绞/a>
    • 小型手摇绞车
    • 可关闭式垂直采集罐/a>
    • 浮游生物采集罐/a>
    • 积分式采水器
    • 有机玻璃采水?/a>
    • 柱状采泥?/a>
    • 深圳市西尔曼科技有限公司
    • 沃德精准(北京)科贸有限公司
    • 武汉红星杨科技有限公司
    • 广州市明美光电技术有限公号/a>
    • 赛福国际集团有限公司
    • 北京博伦经纬科技发展有限公司
    • 北京宝利恒科技有限公司
    • 诺亚微光(北京)科技有限公司
    • 北京恒奥德仪器仪表有限公号/a>
    • 上海路阳生物技术有限公号/a>
    • 北京澳作生态仪器有限公号/a>
    • 北京博普特科技有限公司
    • 南京铭奥仪器设备有限公司
    • 山东霍尔德电子科技有限公司
    • 图拉扬科技有限公司
    • 大连华洋分析仪器有限公司
    • 宾德环境试验设备(上海)有限公司
    • 南京传滴仪器设备有限公司
    • 北京商德通科技有限公司
    • 北京均方理化科技研究所
    • 北京中仪科信科技有限公司
    • 北京力科惠泽科技有限公司
    • 杭州万深检测科技有限公司
    • 山东蓝虹光电科技有限公司
      暂无推荐品牌
    手机版:
    水下调制荧光仪Diving-PAM
    植物生理生态仪?月关注榜
    推荐品牌
    同品牌产?/div>
    SEC2705超细型张力计
    关注?nbsp; 642
    土壤质地测量套装
    关注?nbsp; 548
    SEC土壤质地和土壤粒径分析套裄/a>
    关注?nbsp; 563
    SEC土壤振筛仪套裄/a>
    关注?nbsp; 436
    采购必读
    制造业外资准入限制“清零”、扩大开放试?#65512;中药产业迎外资开放春飍/a> 给力!多家先进陶瓷企业入选国家级专精特新“小巨人”名单! 《关于以高水平开放推动服务贸易高质量发展的意见》这三大点与医药相关 国家药监局:将医疗器械研制与创新纳入发展重炸/a> 国家药典委:关于注射剂安全性检查法及细菌内毒素检查法应用指导原则标准草案的公礹/a> 粉体行业新机遇!精细化工产业创新发展实施方案?024?027年)
    最新资?/span>更多
    点击报名!IPIE2024观众登记通道正式开?/a> 植物炭负极材料与氧化物复合负极材料研究进屔/a> 江苏天问新材料科技有限公司出席IPIE2024上海国际高端粉体装备与科学仪器展
    近期会议 更多
    2024全国高纯氧化铝粉体制备技术及应用交流大会
    相关课程 更多
    【限时优惠】锂离子电池单晶镍钴锰正极材料的合成与改性研穵/a>
    【限时优惠】芯片散热及其热界面材料
    最新发布产?/div>
    MFSR-200H型高压熔喷布风机
    山东明风机械制造有限公号/a>
    内衬陶瓷废旧锂电池正负极片破碎脱粉生产线
    山东摩克立粉体技术设备有限公号/a>
    1200℃单温区立式管式炈/a>
    安徽贝意克设备技术有限公号/a>
    高温加压石墨化专用设夆/a>
    杭州嘉悦智能设备有限公司

    cnpowder 平台导航|中国粉体罐/a>搜粉罐/a>粉体屔/a>粉体人才罐/a>粉体工业杂志微门戶/a>手机粉体罐/a>粉体圈子粉体公开诽/a>粉享买卖中粉资讯

    隐私保护 中国粉体 版权所 京ICP?50428 客户服务热线?10-82930764 82930964
    客服邮箱:cnpowder@163.com 京公网安?101081901

    Copyright©2002-2024 Cnpowder.com.cn Corporation,All Rights Reserved