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德国HYDRO-BIOS公司——Utermöhl组合式浮游生物计数框(浮游生物沉降器)1 h/ B9 n# b0 X. ?1 v) C
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Combined Plate Chamber (Utermöhl Chamber)
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! G- b, B& ~+ B5 X/ a) t, d浮游生物沉降器用于对浮游植物进行沉降计数。浮游生物沉降器由生物学家Utermöhl发明,并由德国HYDRO-BIOS公司生产。浮游生物沉降器已经成为浮游植物沉降计数的国际标准,广泛应用于水生生物的观察计数。* [. c7 t6 ~' _
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浮游生物沉降器订购指南:, }" S* b$ b: r+ f: @! L5 ? y
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435 025 Utermöhl组合式浮游生物计数框(浮游生物沉降器)
0 q/ U+ j: M2 I+ R1 B! U 由10ml,50ml,100ml圆管各1个,与3片盖玻片、50片底玻片和其他辅助操作附件组成一套完整的浮游生物沉降计数系统。
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+ R- G6 j k0 a$ t. t 435 028 浮游生物沉降器用盖玻片
4 F+ x, j+ }) b/ l$ n; Z2 d3 n 适用于浮游生物计数管和组合式浮游生物计数框(浮游生物沉降器),直径33mm,厚度2mm, 50片/包
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5 r- E- p/ O2 V& `" G. z 435 035 浮游生物沉降器用底玻片
) z J0 ?9 @5 T+ F 适用于浮游生物计数管和组合式浮游生物计数框(浮游生物沉降器),直径27.5mm,厚度0.2mm,250片/包$ m9 v7 s7 ]$ K
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代表文献:
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; U6 S4 D1 l6 V/ b; A4 x9.Teresa Cruz and Jorge Araújo,1999.Reproductive Patterns of Pollicipes pollicipes (Cirripedia: Scalpellomorpha) on the Southwestern Coast of Portugal.Journal of Crustacean Biology.19(2):260-267.
8 ]# Y1 o7 m- u# R10.Michael Hust, Wolfgang E Krumbein, Erhard Rhiel,1999.An immunochemical in situ approach to detect adaptation processes in the photosynthetic apparatus of diatoms of the Wadden Sea sediment surface layers.Journal of Microbiological Methods.38(1–2):69–80.. W- _8 H! F/ l1 C
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: u& q( z8 ~* T5 e8 n14.EI Ohimain, TOT Imoobe & MO Benka-Coker,2005.The impact of dredging on macrobenthic invertebrates in a tributary of the Warri River, Niger delta.African Journal of Aquatic Science.30(1):49-53.$ t& ~$ {; ~" K7 G- N
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9 w3 K, z/ g2 C+ r" M* C1 p16.Wim A.M. Hijnen, Yolanda J. Dullemont, Jack F. Schijven, Anke J. Hanzens-Brouwer, Martine Rosielle, Gertjan Medema,2007.Removal and fate of Cryptosporidium parvum, Clostridium perfringens and small-sized centric diatoms (Stephanodiscus hantzschii) in slow sand filters.Water Research.41(10):2151–2162.: _& c& Z9 r4 w0 D' W9 i
17.Géraldine Sarthou, Dorothée Vincent, Urania Christaki, Ingrid Obernosterer, Klaas R. Timmermans, Corina P.D. Brussaard,2008.The fate of biogenic iron during a phytoplankton bloom induced by natural fertilisation: Impact of copepod grazing.Deep Sea Research Part II: Topical Studies in Oceanography.55(5–7):734–751.0 B- b1 Q; H! c+ f
18.Damir Viličić, Tamara Djakovac, Zrinka Burić, Sunčica Bosak,2009.Composition and annual cycle of phytoplankton assemblages in the northeastern Adriatic Sea.Botanica Marina.52(4):291–305.
3 r0 s2 o" _- d6 L* \' ^9 `* ^19.Fedekar F. Madkour, Mohsen M. El-Sherbiny and Maher A. Aamer,2010.Phytoplankton population along certain Egyptian coastal regions of the Red Sea.Egypt J. Aquat. Biol. & Fish..14(2):95-109.
8 \! c) e4 z' ]20.Mianrun Chena, Bingzhang Chena, Paul Harrisonb, Hongbin Liu,2011.Dynamics of mesozooplankton assemblages in subtropical coastal waters of Hong Kong: A comparative study between a eutrophic estuarine and a mesotrophic coastal site.Continental Shelf Research.31(10):1075–1086.
# ]5 k& q; Q) [7 o21.Germán A. Kopprio, Gerhard Kattner, Martin Graeve, R. Hugo Freije, Rubén J. Lara,2012.Exceptional lipid storage mode of the copepod Boeckella poopoensis in a pampean salt lake, Argentina.Aquatic Biology.15:275-281." |: r2 c# _0 R; w+ y" o! i
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23.Daniel Remias, Andreas Holzinger, Siegfried Aigner, Cornelius Lütz,2012.Ecophysiology and ultrastructure of Ancylonema nordenskiöldii (Zygnematales, Streptophyta), causing brown ice on glaciers in Svalbard (high arctic).Polar Biology.35(6):899-908. p E C+ t2 D. d9 t2 s
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! T! m; o7 N% ^0 Z2 [25.Amir Abbas Bazyar Lakeh, Werner Kloas Rainer Jung, Ra’anan Ariav, Klaus Knopf,2013.Low frequency ultrasound and UV-C for elimination of pathogens in recirculating aquaculture systems.Ultrasonics Sonochemistry.20(5):1211–1216.
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6 p4 k5 f0 b; B9 `7 |4 d" {& L更多关键字: 浮游生物沉降器,浮游植物沉降器,浮游植物计数框, 浮游生物沉淀器,浮游植物沉淀器,藻类计数器,组合式浮游生物计数框 P& L9 i) N; \ |, a# ?
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