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【浮游生物类仪器】德国HYDRO-BIOS公司 浮游生物计数管

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德国HYDRO-BIOS公司——管状浮游植物计数框
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+ q/ H/ |" Y5 V7 B: [浮游生物计数管用于对浓度较低的浮游植物进行沉淀计数。浮游生物计数管由树脂玻璃制成,浮游生物计数管带可旋转拆卸的黄铜底座,浮游生物计数管外加1个盖玻片和50个底玻片。
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9 i1 i7 j2 g; Q$ V, H管状浮游植物计数框订购指南:
5 e; O7 e' ^* U435 021   容量 5ml浮游生物计数管
) i: k8 {0 o) i9 q! r5 A7 V435 022   容量10ml浮游生物计数管: A9 O6 ]8 Z8 D1 ^* j  P- i
435 023   容量25ml浮游生物计数管+ J; p0 ~" j. A( u
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435 028   浮游生物计数管用盖玻片,适用于管状浮游植物计数框和组合式浮游植物计数框,0 S6 A) r5 o& [+ h
         直径33mm,厚度2mm, 50片/包$ E: T4 n* H' @# H# A# k8 U2 p
435 035   浮游生物计数管用底玻片,适用于管状浮游植物计数框和组合式浮游植物计数框,/ N, J' e" l$ z
         直径27.5mm,厚度0.2mm,250片/包
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  v! O7 ^9 K6 @4.S. Wagener, C. F. Bardele, N. Pfennig,1990.Functional integration of Methanobacterium formicicum into the anaerobic ciliate Trimyema compressum.Archives of Microbiology.153(5):496-501.
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- F" }8 b4 ]- T/ V2 E* L9.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):260-267.5 ?- x. ~# i  U* a. G8 u  W
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$ N( N' F! g, \7 g4 r! j13.Hera Karayanni, Urania Christaki, France Van Wambeke, Andrew P. Dalby,2004.Evaluation of double formalin—Lugol's fixation in assessing number and biomass of ciliates: an example of estimations at mesoscale in NE Atlantic.Journal of Microbiological Methods.56(3):349–358.' H  G3 E0 p9 H& ^5 V: t+ ^/ n, M
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15.Laurent Seuront, Dorothée Vincent, James G. Mitchell,2006.Biologically induced modification of seawater viscosity in the Eastern English Channel during a Phaeocystis globosa spring bloom.Journal of Marine Systems.61(3–4):118–133.
/ s5 N9 Y) H: Z" h5 i' _16.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.
" E$ v! T. M$ ^: [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.
: p9 x( g6 Q# ^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.% R& T+ \; R' g5 E4 h
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.
) l6 x! B( C. @2 x, [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.
9 ]2 D# C+ |2 C7 k21.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.
* C& a3 }( m2 Z4 }+ {; b7 N22.Dongyan Liu, Yajun Shi, Baoping Di, Qianli Sun, Yujue Wang, Zhijun Dong, Hongbing Shao,2012.The impact of different pollution sources on modern dinoflagellate cysts in Sishili Bay, Yellow Sea, China.Marine Micropaleontology.84–85:1–13.; J4 [4 @6 ]# J
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.
  I: ^# i: _- u# ^! o24.F.S. Tahami, A.G. Mazlan, H. Negarestan, Sh. Najafpour, W.W.M. Lotfi and G.D. Najafpour,2012.Phytoplankton Combination in the Southern Part of Caspian Sea.World Applied Sciences Journal.16(1): 99-105.
" v2 }8 m0 v* p8 K& ~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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5 }! }1 @% _# N3 G6 Z' y9 B" E更多关键字: 浮游生物计数管,浮游生物计数杯,浮游生物沉淀杯,浮游生物计数框,浮游生物沉降器,浮游植物计数框,浮游植物计数器" E0 V5 [, M  v/ \( L
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