污水處理設備 污泥處理設備 水處理過濾器 軟化水設備/除鹽設備 純凈水設備 消毒設備|加藥設備 供水/儲水/集水/排水/輔助 水處理膜 過濾器濾芯 水處理濾料 水處理劑 水處理填料 其它水處理設備
上海澤泉科技股份有限公司
參 考 價 | 面議 |
基礎型調制葉綠素熒光儀——JUNIOR-PAM
主要功能
測熒光誘導曲線并進行淬滅分析
測光響應曲線和快速光曲線(RLC),并進行擬合
可測暗弛豫
可與光合儀(GFS-3000)聯用,同步測量氣體交換和葉綠素熒光
測量參數
Fo, Fm, F, Fo', Fm', Fv/Fm, Y(II) 即 ΔF/Fm', qL, qP, qN, NPQ, Y(NPQ), Y(NO), ETR 等。
應用領域
為本科生和研究生教學設計,但具備了 PAM 的所有功能,適用于科研工作,可用于植物生理學、生態(tài)學、農學、園藝學、水生生物學等科研領域。
主要技術參數
測量光源:藍色 LED(465 nm),調制頻率 5 或 100 Hz,標準強度 0.1μmol m-2 s-1。
光化光源:藍色 LED(465 nm),光強范圍 25-1500 μmol m-2 s-1。
飽和脈沖光源:藍色 LED(465 nm),飽和閃光強度 10000 μmol m-2 s-1。
遠紅光:LED,740 nm。
信號檢測:PIN-光電二極管,帶短波截止濾光片:λ>710 nm,選擇性鎖相放大器(設計)。
測量參數:Fo, Fm, Fv/Fm, F, Fm’, Fo’, Y(II) 即 ΔF/Fm’, qP, qL, qN, NPQ, Y(NO), Y(NPQ), rETR 等。
工作軟件:操作簡單、功能強大,免費升級。
測量程序:必須帶熒光誘導曲線、光響應曲線、快速光曲線、熒光誘導加暗弛豫、光響應曲線加暗弛豫等程序測量功能,必須能夠測量 qL、Y(NO) 和 Y(NPQ) 等參數。
曲線擬合:必須能利用兩種方程對光響應曲線進行擬合并給出擬合參數。
環(huán)境溫度:-5~+40℃
供電:通過USB數據線利用電腦供電(包括臺式機、筆記本電腦、UMPC電腦等),5 V。
尺寸:115 x 65 x 30 mm,重200 g。
選購指南
系統(tǒng)組成:套機 (包含主機,微光纖,軟件,數據線),電腦(標配不含)
JUNIOR-PAM 圖示 |
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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2. Carstensen, A.-M., et al. (2016). "Remote detection of light tolerance in Basil through frequency and transient analysis of light induced fluorescence." Computers and Electronics in Agriculture 127: 289-301.
3. Carstensen, A. M., et al. (2016). Exploring the dynamics of remotely detected fluorescence transients from basil as a potential feedback for lighting control in greenhouses, International Society for Horticultural Science (ISHS), Leuven, Belgium.
4. Costa, G. B., et al. (2016). "The brown seaweed Sargassum cymosum: changes in metabolism and cellular organization after long-term exposure to cadmium." Protoplasma: 1-21.
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12. Jiang, H., et al. (2016). "Effects of lowered carbon supplies on two farmed red seaweeds, Pyropia haitanensis (Bangiales) and Gracilaria lemaneiformis (Gracilariales), grown under different sunlight conditions." Journal of Applied Phycology: 1-9.
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15. Mantoan, L. P. B., et al. (2016). "Photosynthetic adjustment after rehydration in Annona emarginata." Acta Physiologiae Plantarum 38(6): 1-11.
16. Marutani, Y., et al. (2016). "Essential role of the PSI–LHCII supercomplex in photosystem acclimation to light and/or heat conditions by state transitions." Photosynthesis Research: 1-10.
17. MINA, E. D. (2016). "EFEITOS DA DRENAGEM áCIDA DE MINA DE CARV?O (DAM) SOBRE A MORFOANATOMIA, ULTRAESTRUTURA E ECOFISIOLOGIA DE Eleocharis laeviglumis (CYPERACEAE)."
18. Per, T., et al. (2016). "Photosynthetic and growth responses of two mustard c*rs differing in phytocystatin activity under cadmium stress." Photosynthetica: 1-13.
19. Sadler, C., et al. (2016). "Wax and cutin mutants of Arabidopsis: Quantitative characterization of the cuticular transport barrier in relation to chemical composition." Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids.
20. Smolikova, G. and S. Medvedev (2016). "Photosynthesis in the seeds of chloroembryophytes." Russian Journal of Plant Physiology 63(1): 1-12.
21. Tiecher, T. L., et al. (2016). "The potential of Zea mays L. in remediating copper and zinc contaminated soils for grapevine production." Geoderma 262: 52-61.
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