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水下調(diào)制葉綠素?zé)晒鈨x——DIVING-PAM-II

簡要描述:應(yīng)用于水生生物學(xué)與海洋生物學(xué)、潮間帶生態(tài)學(xué)、珊瑚研究、湖泊生態(tài)學(xué)等領(lǐng)域。原位測量珊瑚、大型海藻、沉水植物生理活性測量儀器。也可用于測量雨季陸生高等植物的光合活性。可測量微藻,但不太適合于自然水體中的浮游植物測量。

  • 更新日期:2025-09-10
  • 訪  問  量: 94

詳細(xì)介紹

主要功能

  • 儀器全防水設(shè)計(jì),耐受 50 m 水壓

  • 可測熒光誘導(dǎo)曲線并進(jìn)行淬滅分析

  • 可測光響應(yīng)曲線和快速光曲線(RLC)

  • 可測量 水下環(huán)境入射光譜及樣品反射光譜

  • 全部采用 LED 光源,全新大屏設(shè)計(jì)

  • 可測水溫、水深和 PAR

  • 光感式按鍵,方便水下使用


測量參數(shù)

Fo, Fm, Fv/Fm, F, Fm, Y(II), qP, qN, NPQ, Y(NO), Y(NPQ), rETR,水深,水溫等


應(yīng)用領(lǐng)域

應(yīng)用于水生生物學(xué)與海洋生物學(xué)、潮間帶生態(tài)學(xué)、珊瑚研究、湖泊生態(tài)學(xué)等領(lǐng)域。原位測量珊瑚、

大型海藻、沉水植物生理活性測量儀器。也可用于測量雨季陸生高等植物的光合活性。可測量微藻,但不太適合于自然水體中的浮游植物測量。


主要技術(shù)參數(shù)

  • 測量光:藍(lán)光 LED(470 nm)或紅光 LED(655nm),光強(qiáng) 0.05 µmol m-2 s-1

  • 光化光:藍(lán)光 LED(470 nm)或紅光 LED(655nm),最大連續(xù)光強(qiáng) 3000 μmol m-2 s-1

  • 飽和脈沖:藍(lán)光 LED(470 nm)或紅光 LED(655nm),最大閃光強(qiáng)度 6000 μmol m-2 s-1

  • 遠(yuǎn)紅光:發(fā)射峰值 735 nm。

  • 信號(hào)檢測:PIN-光電二極管,帶長通和短通濾光片,帶選擇性鎖相放大器。

  • 數(shù)據(jù)存儲(chǔ):8M 存儲(chǔ)卡,可存儲(chǔ) 27000 組數(shù)據(jù)。

  • 供電:可充電電池,充電一次可供 1000 次飽和脈沖閃光。

  

選購指南

一、標(biāo)準(zhǔn)版

系統(tǒng)組成:通用型主機(jī),光纖,通用樣品架,暗適應(yīng)葉夾,磁性葉夾,表面葉夾,軟件等

水下調(diào)制葉綠素?zé)晒鈨x——DIVING-PAM-II
DIVING-PAM-II 組成部分
1,主機(jī);2,光纖;3,水下通用樣品架;4,暗適應(yīng)葉夾;5,磁性葉夾
注意:標(biāo)準(zhǔn)款包含以上各種附件之外還有適合測量附著樣品的表面樣品架,如需額外訂購葉夾,請說明


水下調(diào)制葉綠素?zé)晒鈨x——DIVING-PAM-II

水下調(diào)制葉綠素?zé)晒鈨x——DIVING-PAM-II水下調(diào)制葉綠素?zé)晒鈨x——DIVING-PAM-II水下調(diào)制葉綠素?zé)晒鈨x——DIVING-PAM-II
DIVING-PAM 水下測量圖片
更多內(nèi)容可以查看優(yōu)酷視頻 DIVING-PAM 水下工作錄像


產(chǎn)地:德國WALZ


參考文獻(xiàn)

數(shù)據(jù)來源:光合作用文獻(xiàn) Endnote 數(shù)據(jù)庫,更新至 2021 年 1 月,文獻(xiàn)數(shù)量超過 10000 篇

原始數(shù)據(jù)來源:Google Scholar

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Andrzejczak, O. A., et al. (2020). "The Hypoxic Proteome and Metabolome of Barley (Hordeum vulgare L.) with and without Phytoglobin Priming. ." Int. J. Mol. Sci(21): 1546.

Anton A, et al. (2020). "Stunted Mangrove Trees in the Oligotrophic Central Red Sea Relate to Nitrogen Limitation." Front. Mar. Sci.(7): 597.

Atkinson, J., et al. (2020). "Summer and winter marine heatwaves favor an invasive over native seaweeds."  n/a(n/a).

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