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【浮游生物类仪器】德国HYDRO-BIOS公司 浮游动物计数框

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德国HYDRO-BIOS公司——浮游动物计数框, k: k0 w4 @; V7 c- x. S* P9 z
Counting Chamber for zooplankton

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浮游动物计数框用于在体式显微镜底下对浮游动物进行观察计数。浮游动物计数框由树脂材料制成,底面抛光,具有较好的透明度,可将其放置到常规显微镜上对浮游动物进行观察。. q3 e7 m2 R' e# x0 Y/ T! v4 P3 _4 f

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8 V' a  |9 G. s0 a8 ~0 H. B+ T浮游动物计数框订购指南:5 K. H- l& Y% \5 T
浮游动物计数框由树脂材料制成,底面抛光,具有很好的透明度- [# o/ N5 L+ {, }; z) W
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" ~: B& w" h* ?# ^0 d+ I: y+ n        435 010     浮游动物计数框尺寸40×70mm,容纳样品量约9ml4 n3 C  k, U1 u3 Q" ?' \
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* W. r) P4 O6 `3 V' ]# j. S        435 011      浮游动物计数框尺寸80×100mm,容纳样品量约22ml4 q) S, j' o9 g: ?7 f
        435 011A   浮游动物计数框尺寸80×100mm,容纳样品量约6×5.4ml7 h+ Y& b. I2 Z
        435 011B   浮游动物计数框尺寸80×100mm,容纳样品量约12×2.4ml3 J8 o, }- `- M$ Y
        435 011C   浮游动物计数框尺寸80×100mm,容纳样品量约30×0.8ml
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+ b, h, p, s  j' a# q' p        435 012    浮游动物计数框尺寸80×140mm,容纳样品量约70ml* l. ]: O3 e, G/ ^  C& R
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代表文献:
2 J0 ^0 {, p1 A4 B* E1.Manfred Rolke and Jürgen Lenz,1984.Size structure analysis of zooplankton

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- |8 a  F* Y' F4 B+ q! p# a# {6.J. W. Rijstenbil, C. Bakker, R. H. Jackson, A. G. A. Merks, P. R. M. de Visscher,1993.Spatial and temporal variation in community composition and photosynthetic characteristics of phytoplankton in the upper Westerschelde estuary (Belgium, SW Netherlands).Hydrobiologia.269-270(1):263-273.2 J; B+ j0 u  `  b; z. a
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# U3 s9 a0 c1 ~% o+ @, z/ e, Q5 i9.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.+ U% |. d3 _2 Z$ t7 {/ y- d
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9 ~# R2 [3 Y& B) `( T9 N( w11.Christine Dupuy, Solange Le Gall, Hans J. Hartmann, Martine Bréret,1999.Retention of ciliates and flagellates by the oyster Crassostrea gigas in French Atlantic coastal ponds: protists as a trophic link between bacterioplankton and benthic suspension-feeders.Marine Ecology Progress Series.177:165-175.
- x  E! i5 k1 i$ h12.A. Tewari, H.V. Joshi, R.H. Trivedi, V.G. Sravankumar, C. Raghunathan, Y. Khambhaty, O.S. Kotiwar, S.K. Mandal,2001.The Effect of Ship Scrapping Industry and its Associated Wastes on the Biomass Production and Biodiversity of Biota in in situ Condition at Alang.Marine Pollution Bulletin.42(6):461–468.+ o1 k  [1 p/ ~- H; g
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3 i& l8 G0 W6 F# y1 F15.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.) ], B2 a- U' V0 t- v
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" e" z5 j8 p  C6 X19.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.- ^9 h0 ?; s. m# p* z' t
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. y1 X! V: i0 Z21.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.
! ?+ U0 h8 Q. r' }22.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.
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7 j8 J6 s( S+ V  P( W: a24.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.
8 v8 e) Z$ P8 e# Z/ r7 @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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; b( v' ~" S* b% Y# X1 M9 ^更多关键字: 浮游动物计数框,浮游生物计数框,浮游生物观察组件0 A6 R4 e: a: T, H2 ?; g
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