水德科技 淺水型浮游生物網(wǎng)
水德科技 深水型浮游生物網(wǎng)
水德科技 阿拖網(wǎng)
德國(guó)HYDRO-BIOS Hamburg浮游生物網(wǎng)
德國(guó)HYDRO-BIOS公司 壓艙水采樣分析套裝
Ekman-Birge采泥器(箱式采泥器)由一個(gè)堅(jiān)固的黃銅或不銹鋼材質(zhì)制成,采泥器底部有2個(gè)彈簧閉合器,這2個(gè)閉合器由釋放的使錘激發(fā)。在采泥器向上拉出水體的過(guò)程中,采泥器頂部開(kāi)口處的2塊鋼板可以防止樣品被沖走。
德國(guó)HYDRO-BIOS公司——Ekman-Birge采泥器
Bottom Sampler acc. to Ekman-Birge

黃銅材質(zhì) 不銹鋼材質(zhì) 帶穿孔鋼板
Ekman-Birge采泥器(箱式采泥器)由一個(gè)堅(jiān)固的黃銅或不銹鋼材質(zhì)制成,采泥器底部有2個(gè)彈簧閉合器,這2個(gè)閉合器由釋放的使錘激發(fā)。在采泥器向上拉出水體的過(guò)程中,采泥器頂部開(kāi)口處的2塊鋼板可以防止樣品被沖走。
Ekman-Birge采泥器(箱式采泥器)訂購(gòu)信息:
437 200 Ekman-Birge采泥器
體積15×15×20cm,采樣面積225cm2,采樣體積4.5L,黃銅材質(zhì),重量約4kg
437 201 Ekman-Birge采泥器,帶穿孔鋼板,用于采集大型底棲生物,符合歐盟水框架指令
體積15×15×20cm,采樣面積225cm2,采樣體積4.5L,黃銅材質(zhì),重量約4kg
437 210 Ekman-Birge采泥器
體積15×15×20cm,采樣面積225cm2,采樣體積4.5L,黃銅材質(zhì),灌鉛重型,重量約8kg
437 212 Ekman-Birge采泥器
體積15×15×20cm,采樣面積225cm2,采樣體積4.5L,不銹鋼材質(zhì),重量約4kg
437 213 Ekman-Birge采泥器
體積15×15×20cm,采樣面積225cm2,采樣體積4.5L,不銹鋼材質(zhì),灌鉛重型,重量約8kg
437 214 Ekman-Birge采泥器
體積20x20x30cm,采樣面積400cm2,采樣體積10L,不銹鋼材質(zhì),重量約6kg
437 215 Ekman-Birge采泥器
體積20x20x30cm,采樣面積400cm2,采樣體積10L,黃銅材質(zhì),灌鉛重型,重量約11.5kg
440 000 備用使錘,用來(lái)激發(fā)彈簧閉合器,帶內(nèi)徑6mm的繩孔,重量400g
專用閉合器,用于Ekman-Birge采泥器和Lenz采泥器
在Ekman-Birge采泥器和Lenz采泥器進(jìn)行淺水采樣時(shí),可以將其推入水床,然后釋放專用閉合器。用于連接伸縮桿的孔徑為20mm。
專用閉合器訂購(gòu)信息:
437 320 專用閉合器,重量400g
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準(zhǔn)備Ekman-Birge采泥器 | 準(zhǔn)備好的Ekman-Birge采泥器 |
代表文獻(xiàn):
1.A. I. el MOGHRABY,1977.A study on diapause of zooplankton in a tropical river - The Blue Nile.Freshwater Biology.7(3):207–212.
2.Sven Blomqvist,1990.Sampling performance of Ekman grabs — in situ observations and design improvements.Hydrobiologia.206(3):245-254.
3.Jia-Jang Hung,1995.Terrigenous Inputs and Accumulation of Trace Metals in the Southeastern Taiwan Strait.Chemistry and Ecology.10(1-2):33-46.
4.J. J. Hung, C. P. Shy,1995.Speciation of dissolved selenium in the Kaoping and Erhjen rivers and estuaries, southwestern Taiwan.Estuaries.18(1):234-240.
5.W Brack, A Paschke, H Segner, R Wennrich, G Schüürmann,2000.Urease inhibition: a tool for toxicity identification in sediment elutriates.Chemosphere.40(8):829–834.
6.Edwin T.H.M. Peeters, Jean J.P. Gardeniers, Albert A. Koelmans,2000.Contribution of trace metals in structuring in situ macroinvertebrate community composition along a salinity gradient.Environmental Toxicology and Chemistry.19(4):1002–1010.
7.Guy Bachelet, Xavier de Montaudouin, Isabelle Auby and Pierre-Jean Labourg,2000.Seasonal changes in macrophyte and macrozoobenthos assemblages in three coastal lagoons under varying degrees of eutrophication.ICES Journal of Marine Science.57(5):1495-1506.
8.R Sinem Atgin, Omar El-Agha, Abdullah Zarars?z, Ahmet Kocata?, Hatice Parlak, Gürdal Tuncel,2000.Investigation of the sediment pollution in Izmir Bay: trace elements.Spectrochimica Acta Part B: Atomic Spectroscopy.55(7):1151–1164.
9.Branislav Vrana, Albrecht Paschke and Peter Popp ,2001.Polyaromatic hydrocarbon concentrations and patterns in sediments and surface water of the Mansfeld region, Saxony-Anhalt, Germany.Journal of Environmental Monitoring.3:602-609.
10.Mónica M. Diaz, Pedro F. Temporetti, Fernando L. Pedrozo,2001.Response of phytoplankton to enrichment from cage fish farm waste in Alicura Reservoir (Patagonia, Argentina).Lakes & Reservoirs: Research & Management.6(2):151–158.
11.Kalle Olli, Karolin Trunov,2010.Abundance and distribution of vernal bloom dinoflagellate cysts in the Gulf of Finland and Gulf of Riga (the Baltic Sea).Deep Sea Research Part II: Topical Studies in Oceanography.57(3–4):235–242.
12.Steffen Mischke, Ahuva Almogi-Labin, Reuven Ortal, Arik Rosenfeld, Markus J. Schwab, Ian Boomer,2010.Quantitative reconstruction of lake conductivity in the Quaternary of the Near East (Israel) using ostracods.Journal of Paleolimnology.43(4):667-688.
13.Annette Kramer, Ulrike Herzschuh, Steffen Mischke, Chengjun Zhang,2010.Holocene treeline shifts and monsoon variability in the Hengduan Mountains (southeastern Tibetan Plateau), implications from palynological investigations.Palaeogeography, Palaeoclimatology, Palaeoecology.286(1–2):23–41.
14.Steffen Mischke, Ilhomjon Rajabov, Nailya Mustaeva, Chengjun Zhang, Ulrike Herzschuh, Ian Boomer, Erik T. Brown, Nils Andersen, Amy Myrbo, Emi Ito, Michael E. Schudack,2010.Modern hydrology and late Holocene history of Lake Karakul, eastern Pamirs (Tajikistan): A reconnaissance study.Palaeogeography, Palaeoclimatology, Palaeoecology.289(1–4):10–24.
15.Steffen Mischke, Chengjun Zhang,2011.Ostracod distribution in Ulungur Lake (Xinjiang, China) and a reassessed Holocene record.Ecological Research.26(1):133-145.
16.Homira Agah, Mehry Hashtroodi, Willy Baeyens,2011.Trace Metals Analysis in the Sediments of the Southern Caspian Sea.Journal of PERSIAN GULF.2(6):1-12.
17.T. Van der Meeren, S. Mischke, N. Sunjidmaa, U. Herzschuh, E. Itof, K. Martens, D. Verschuren,2012.Subfossil ostracode assemblages from Mongolia – Quantifying response for paleolimnological applications.Ecological Indicators.14(1):138–151.
18.Asl?han Katip, Feza Karaer, Hüseyin Sava? Ba?kaya, Saadet Ileri, Sonay Sarma?ik,2012.Fraction distribution and risk assessment of heavy metals and trace elements in sediments of Lake Uluabat.Environmental Monitoring and Assessment.184(9):5399-5413.
19.Aslihan Katip, Feza Karaer, Saadet Ileri, Sonay Sarmasik, Nurcan Aydogan, Sinem Zenginay,2012.Analysis and assessment of trace elements pollution in sediments of Lake Uluabat, Turkey.Journal of Environmental Biology.33:961-968.
20.Bernhard Aichner, Ulrike Herzschuh, Heinz Wilkes, Hans-Martin Schulz, Yongbo Wang, Birgit Plessen, Steffen Mischke, Bernhard Diekmann, Chengjun Zhang,2012.Ecological development of Lake Donggi Cona, north-eastern Tibetan Plateau, since the late glacial on basis of organic geochemical proxies and non-pollen palynomorphs.Palaeogeography, Palaeoclimatology, Palaeoecology.313–314:140–149.
21.Kadir Gedik, ?pek ?mamo?lu,2013.Levels, Distribution, and Sources of Polychlorinated Biphenyls in Sediments of Lake Eymir, Turkey.Archives of Environmental Contamination and Toxicology.DOI: 10.1007/s00244-013-9900-x.
更多關(guān)鍵詞:彼得遜采泥器,箱式沉積物取樣器,沉積物采樣器,箱式分層采泥器,重力式采泥器,Ekman采泥器,底部取樣器,小型箱式采泥器,Ekman-Birge采泥器
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德國(guó)HYDRO-BIOS公司 Lenz采泥器 類別: 箱式分層采泥器 型號(hào): 437 310/437 315 關(guān)鍵字: 采泥器,箱式采泥器,箱式分層采泥器,小型箱式采泥器,Lenz采泥器 供應(yīng)商: 青島水德科技有限公司 產(chǎn)品簡(jiǎn)介: Lenz采泥器(箱式分層采泥器)是Ekman-Birge采泥器的改進(jìn)型。為了實(shí)現(xiàn)重復(fù)性操作,所采樣品可以被隔板分成5層20mm厚的樣品。這些樣品可以被分別取出來(lái)進(jìn)行研究。測(cè)量和操作方法與Ekman-Birge采泥器相同。
德國(guó)HYDRO-BIOS公司 Ekman-Birge采泥器 類別: 箱式采泥器 型號(hào): 437 200 關(guān)鍵字: 采泥器,箱式采泥器,Ekman-Birge采泥器 供應(yīng)商: 青島水德科技有限公司 產(chǎn)品簡(jiǎn)介: Ekman-Birge采泥器(箱式采泥器)由一個(gè)堅(jiān)固的黃銅或不銹鋼材質(zhì)制成,采泥器底部有2個(gè)彈簧閉合器,這2個(gè)閉合器由釋放的使錘激發(fā)。在采泥器向上拉出水體的過(guò)程中,采泥器頂部開(kāi)口處的2塊鋼板可以防止樣品被沖走。
德國(guó)HYDRO-BIOS公司 Van Veen采泥器 類別: 抓斗采泥器 型號(hào): 437 330/437 332/437 333 關(guān)鍵字: 采泥器,抓斗采泥器,Van Veen采泥器 供應(yīng)商: 青島水德科技有限公司 產(chǎn)品簡(jiǎn)介: 用Van Veen采泥器(抓斗式采泥器)可以從任意想要的深度進(jìn)行采樣。在它被沉入水中過(guò)程中,兩根桿被鎖定,并且離得很遠(yuǎn),采泥口處于打開(kāi)狀態(tài)。當(dāng)它與水床接觸時(shí),閉合器被釋放;當(dāng)繩纜被拉緊并向上拉動(dòng)時(shí),采泥器口就會(huì)關(guān)閉。
德國(guó)HYDRO-BIOS公司 沉積物柱狀取樣器 類別: 柱狀采泥器 型號(hào): 437 400 關(guān)鍵字: 采泥器,沉積物柱狀取樣器,柱狀采泥器,便攜式柱狀采泥器 供應(yīng)商: 青島水德科技有限公司 產(chǎn)品簡(jiǎn)介: 沉積物柱狀取樣器(柱狀采泥器)用于從軟的、沙質(zhì)和中等硬度的水體底部取樣。
便攜式污泥采樣器,活塞式柱狀采泥器,活塞式污泥采樣器,重力式沉積物采樣器,重力式柱狀采泥器,重力式柱狀污泥采樣器,重力式采泥器,污泥采樣器,采泥器,柱狀沉積物采樣器,柱狀污泥采樣器采集河流、湖泊、池塘的水下沉積物(底泥、底質(zhì)、污泥)、沼澤土、泥碳土
SC-901型污泥采樣器是屬于人工采集河中污泥和化工等污水池中污泥的一種人工采樣工具,主要應(yīng)用于環(huán)保,衛(wèi)生防疫,自來(lái)水,化工等單位。用于采集深,遠(yuǎn)等,人工不便采集污泥的地區(qū)使用。抓斗式采泥器,污泥采樣器,抓斗式污泥采樣器,抓斗式沉積物采樣器,彼得遜采泥器,彼得遜污泥采樣器,抓斗式彼得遜采泥器,彼得遜抓斗式采泥器產(chǎn)品采用優(yōu)質(zhì)不銹鋼材料,表面采用硬化處理,耐腐蝕性強(qiáng)。產(chǎn)品表面光滑、亮潔。
Petersen抓斗式采泥器自1930年起就被用于淡水中硬質(zhì)底泥采樣。防腐蝕鍍鋅鋼,折疊式樞軸,蛤殼狀抓斗,可裝8個(gè)配重鉛塊。通水口可減少傾斜及下放時(shí)產(chǎn)生的水波。此款采泥器如要用于海水中取樣需要加涂保護(hù)涂層。采泥器自重達(dá)34kg,配重砝碼4kg每塊,采樣面積305 ×305mm。
美國(guó)Wildco公司柱狀采泥器有三種,分別是Ogeechee砂芯采樣器,K-B柱狀采泥器和手推柱狀采泥器