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435 021/435 022/435 023 德國HYDRO-BIOS浮游生物計(jì)數(shù)管

青島水德科技有限公司
會(huì)員指數(shù): 企業(yè)認(rèn)證:

價(jià)格:電議

所在地:山東 青島市

型號(hào):435 021/435 022/435 023

更新時(shí)間:2024-08-26

瀏覽次數(shù):859

公司地址:青島市城陽區(qū)中城路345號(hào)-2號(hào)海都商務(wù)中心9層

張國豪(先生)  

產(chǎn)品簡介

德國HYDRO-BIOS浮游生物計(jì)數(shù)管用于對浮游植物進(jìn)行沉淀計(jì)數(shù)。類別: 浮游生物觀察組件

公司簡介

水德秉承“以客戶為中心,為客戶創(chuàng)造價(jià)值”的經(jīng)營理念,矢志不渝地為全國各涉??蒲性核案咝5挠脩籼峁﹥?yōu)質(zhì)的產(chǎn)品和專業(yè)的服務(wù)。 水德以“用專業(yè)和高效的服務(wù),連接產(chǎn)品與客戶”為發(fā)展宗旨,不斷引進(jìn)高品質(zhì)的海洋儀器設(shè)備和技術(shù),為涉海國內(nèi)工作人員提供穩(wěn)定的技術(shù)應(yīng)用方案和解決方案,滿足廣大用戶的需求。截止目前,公司已與全球近30家知名海洋儀器制造廠家達(dá)成穩(wěn)定的合作關(guān)系,并且還在不斷地發(fā)現(xiàn)新的制造商及全新的海洋研究技術(shù)方案。水德的發(fā)展深刻地影響著海洋科研的探索歷程,并為中國海洋行業(yè)開拓了廣闊的前景。 水德的產(chǎn)品主要包括CTD采水器,采泥器,水生生物采樣器,浮游生物多聯(lián)采樣網(wǎng),海洋微塑料采樣分析系統(tǒng),浮游動(dòng)物掃描分析系統(tǒng),水下顆粒物和浮游動(dòng)物圖像原位采集系統(tǒng),多通道沉積物捕集器,溫鹽深儀,水下原位營養(yǎng)鹽分析儀,海洋二氧化碳分壓監(jiān)測儀,超短基線水下定位系統(tǒng)等。 另外,水德開創(chuàng)性地設(shè)立了設(shè)備租賃服務(wù),能較大程度地滿足國內(nèi)客戶的需求。 水德品牌創(chuàng)立以來,不斷舉辦海洋新技術(shù)路演和培訓(xùn)會(huì),積極參加行業(yè)展會(huì),獲得了各大涉??蒲性核案咝5囊恢潞迷u。公司專業(yè)的技術(shù)團(tuán)隊(duì)為客戶提供了穩(wěn)定的技術(shù)保障,針對不同研究領(lǐng)域配有相應(yīng)的專業(yè)技術(shù)團(tuán)隊(duì),讓客戶無后顧之憂! 海洋調(diào)查研究,水德與您同行!
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產(chǎn)品說明

德國HYDRO-BIOS浮游生物計(jì)數(shù)管
型號(hào): 435 021/435 022/435 023
供應(yīng)商: 青島水德科技有限公司
產(chǎn)品簡介:

德國HYDRO-BIOS浮游生物計(jì)數(shù)管用于對浮游植物進(jìn)行沉淀計(jì)數(shù)。
德國HYDRO-BIOS浮游生物計(jì)數(shù)管

435021_3.jpg

浮游生物計(jì)數(shù)管用于對濃度較低的浮游植物進(jìn)行沉淀計(jì)數(shù)。由樹脂玻璃制成,帶可旋轉(zhuǎn)拆卸的黃銅底座,外加1個(gè)蓋玻片和50個(gè)底玻片

 

1549156023141319AVPU.jpg1549156023141319mr3U.jpg1549156023141319XtTS.jpg

管狀浮游植物計(jì)數(shù)框訂購指南:

435 021   容量 5ml
435 022   容量10ml
435 023   容量25ml

 

435 028   蓋玻片,適用于管狀浮游植物計(jì)數(shù)框和組合式浮游植物計(jì)數(shù)框,

         直徑33mm,厚度2mm, 50片/包

435 035   底玻片,適用于管狀浮游植物計(jì)數(shù)框和組合式浮游植物計(jì)數(shù)框,

         直徑27.5mm,厚度0.2mm,250片/包


代表文獻(xiàn):
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3.J.W. Rijstenbil,1987.Phytoplankton composition of stagnant and tidal ecosystems in relation to salinity, nutrients, light and turbulence.Netherlands Journal of Sea Research.21(2):113–123.
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5.S. Holler, N. Pfennig,1991.Fermentation products of the anaerobic ciliate Trimyema compressum in monoxenic cultures.Archives of Microbiology.156(4):327-334 .
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8.Catalina Castell Perez, Suzanne Roy, Maurice Levasseur, Donald M. Anderson,1998.ConTROL OF GERMINATION OF ALEXANDRIUM TAMARENSE (DINOPHYCEAE) CYSTS FROM THE LOWER ST. LAWRENCE ESTUARY (CANADA).Journal of Phycology.34(2):242–249.
9.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.
10.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.
11.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.
12.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.
13.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.
14.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.
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.
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.
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.
18.Damir Vili?i?, Tamara Djakovac, Zrinka Buri?, Sun?ica Bosak,2009.Composition and annual cycle of phytoplankton assemblages in the northeastern Adriatic Sea.Botanica Marina.52(4):291–305.
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.
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.
21.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.
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.
23.Daniel Remias, Andreas Holzinger, Siegfried Aigner, Cornelius Lütz,2012.Ecophysiology and ultrastructure of Ancylonema nordenski?ldii (Zygnematales, Streptophyta), causing brown ice on glaciers in Svalbard (high arctic).Polar Biology.35(6):899-908.
24.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.
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.


更多關(guān)鍵字: 浮游生物計(jì)數(shù)管,浮游生物計(jì)數(shù)杯,浮游生物沉淀杯,浮游生物計(jì)數(shù)框,浮游生物沉降器,浮游植物計(jì)數(shù)框,浮游植物計(jì)數(shù)器



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