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水樣調制葉綠素熒光儀——WATER-PAM

參考價面議
具體成交價以合同協議為準

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詳細信息 在線詢價

主要功能

  • 可測熒光誘導曲線并進行淬滅分析

  • 可測光響應曲線和快速光曲線(RLC)

  • 可測量水樣的下列光合指標活性:

  •        光合效率和光合速率(相對電子傳遞速率)

  •        藻類的潛在大光合效率(“生長潛能”)

  •        藻類的光保護能力

  • 藻類耐受強光的能力

  • 51 個內置模式菜單,方便參數設置和標準測量

  • 系統(tǒng) I 用于浮游植物研究,系統(tǒng) II 用于大型藻類研究,系統(tǒng) III 用于連續(xù)監(jiān)測水體光合作用

 

測量參數

Fo, Fm, Fv/Fm, F, Fm’, Fo’, Y(II) 即 ΔF/Fm’, qP, qN, NPQ, ETR 和 PAR 等

 

應用領域

測量野外自然水樣或實驗室培養(yǎng)的微藻樣品的光合作用,三套系統(tǒng)可供選擇,可應用于水生生物學、水域生態(tài)學、海洋學、湖沼學等領域,檢測限達 0.1 μgChl/L??捎糜谟泻υ迦A的早期預警。與 PHYTO-PAM 的大區(qū)別在于,WATER-PAM 不能進行浮游植物分類。

 

主要技術參數

  • 測量光:3 個波長為 650 nm 的 LED 陣列。

  • 光化光:12 個波長為 660 nm 的 LED 陣列,大連續(xù)光強 2000 μmol m-2 s-1。

  • 飽和脈沖:12 個波長為 660 nm 的 LED 陣列,大閃光強度 4000 μmol m-2 s-1

  • 遠紅光源:3 個波長為 740 nm 的 LED 陣列。

  • 信號檢測:光電倍增管檢測器(H6779-01,Hamamatsu),過載保護功能,檢測信號 λ > 710 nm。

  • 數據存儲:CMOS RAM 128 KB,可存儲4000組數據。

 

選購指南

Water-PAM-1.jpg

系統(tǒng) I(主機 PAM-Control 和激發(fā)-檢測單元 WATER-ED),

適合現場采水樣測量或室內微藻測量
       
WATER-EDF-0060.jpg-1.jpgWATER-PAM-02.jpg

系統(tǒng)II 激發(fā)-檢測單元 WATER-EDF1.5,

適合大型海藻、附著藻類、水生植物等的測量

系統(tǒng)III 激發(fā)-檢測單元 WATER-FT,

適合隨船走航測量

  

三套系統(tǒng)的組成比較

系統(tǒng)組成
系統(tǒng)I
浮游植物版
系統(tǒng)II
附著藻類/大型藻類版
系統(tǒng)III
連續(xù)監(jiān)測版
野外現場或室內測量,樣品為水樣或藻液野外現場或室內測量,樣品為大型海藻、附著藻類、水生植物、苔蘚、地衣、植物葉片等 
野外現場或室內測量,需要抽水上來,連續(xù)監(jiān)測光合活性
可選附件 1:攪拌器,對于易發(fā)生沉降或上浮的樣品非常重要2.jpg
可選附件 1:平面狀微型光量子探頭,用于測量樣品接收到的光強1.jpg 

可選附件 2:球狀微型光量子探頭,可放入系統(tǒng) I 的樣品杯中測量 PAR,也可放入水面下測量水體光場3.jpg
可選附件 2:手持式多功能 PAR 輻射儀,用于連接平面狀微型光量子探頭后,進行獨立的光強測量4.jpg 

可選附件 3:手持式多功能 PAR 輻射儀,用于連接球狀微型光量子探頭后,進行獨立的光強測量4.jpg




 

產地:德國 WALZ

 

參考文獻

數據來源:光合作用文獻 Endnote 數據庫,更新至 2016 年 9 月,文獻數量超過 6000 篇

原始數據來源:Google Scholar

 

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Jiang, Y., et al. (2016). "Towards elucidation of the toxic mechanism of copper on the model green alga Chlamydomonas reinhardtii." Ecotoxicology: 1-9.

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Slagter, H. A., et al. (2016). "Phytoplankton Virus Production Negatively Affected by Iron Limitation." Frontiers in Marine Science 3(156).

Strauch, S. M., et al. (2016). "Delayed fluorescence, steady state fluorescence, photosystem II quantum yield as endpoints for toxicity evaluation of Cu2+ and Ag+." Environmental and Experimental Botany 130: 174-180.

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Vadiveloo, A., et al. (2016). "Photosynthetic performance of two Nannochloropsis spp. under different filtered light spectra." Algal Research 19: 168-177.

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Wu, S., et al. (2016). "Regulatory mechanisms of oxidative species and phytohormones in marine microalgae Isochrysis zhangjiangensis under nitrogen deficiency." Algal Research 17: 321-329.

Xu, X., et al. (2016). "Ocean warming alters photosynthetic responses of diatom Phaeodactylum tricornutum to fluctuating irradiance."

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