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德國HYDRO-BIOS公司 多通道水樣采集器Slimline
類(lèi)別: 分層采水器
型號: 436 975/6/7
關(guān)鍵字: 多通道水樣采集器,采水器,多瓶采水器,分層采水器
供應商: 青島水德科技有限公司
產(chǎn)品簡(jiǎn)介:

多通道水樣采集器采水器用于海洋水體分層采樣,同時(shí)可采集各種水質(zhì)參數,包括溫度、鹽度、深度、溶解氧等參數。

多通道水樣采集器Slimline(多通道采水器)是一款對德國HYDRO-BIOS公司MWS 6進(jìn)行改進(jìn)后的輕便型多通道水樣采集器,分層采水器的6個(gè)采樣筒容量可選擇1L、3.5L或5L,具有直徑小、質(zhì)量輕的特點(diǎn),甚至在小船上也可以很容易地操作。

詳細介紹

德國HYDRO-BIOS公司——Slimline多通道水樣采集器

Multi Water Sampler Slimline

 

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多通道水樣采集器Slimline(多通道采水器)是一款對HYDRO-BIOS MWS 6的改進(jìn)的輕便型多通道水樣采集器,6個(gè)采樣筒容量為1L、3.5L或5L,具有直徑小,質(zhì)量輕的特點(diǎn),甚至在小船上也可以很容易地操作。

Slimline多通道采水器裝有一個(gè)馬達驅動(dòng)的自動(dòng)釋放裝置,上面集成一個(gè)壓力傳感器,用來(lái)測量用戶(hù)預設的深度。多通道采水器上傳感器的測量范圍可根據用戶(hù)的工作要求進(jìn)行選擇。多通道采水器Slimline工作深度可達6000米,標準配置3000米。多通道采水器Slimline在工作時(shí)電量消耗低,并且可以在溫度為-40℃~+85℃的環(huán)境中正常工作。整套系統可以由甲板控制單元上的控制按鈕控制,進(jìn)行在線(xiàn)實(shí)時(shí)采樣;也可按照預先設定的采樣深度間隔進(jìn)行離線(xiàn)自容式采樣。

      圖片6.png  圖片7.png     


                                        馬達單元                               Slimline多通道采水器俯視結構圖                                     Slimline多通道采水器細節圖                   


多通道采水器的選配件:
- CT-組件:完全整合在多通道水樣采集器的驅動(dòng)單元上,由一個(gè)電導率傳感器和一個(gè)溫度傳感器組成。
- 各種參數的傳感器,如溫度、鹽度、濁度、葉綠素等


多通道采水器的技術(shù)參數:

 尺寸

直徑55cm,高度83cm,1L型號
直徑65cm,高度88cm,3.5L型號

直徑66cm,高度98cm, 5L型號

 空重

約40kg,帶6個(gè)1L采樣器
約45kg,帶6個(gè)3.5L采樣器

約55kg,帶6個(gè)5L采樣器

 操作水深

標準配置:3000米;可選配置:6000米

 陣列

不銹鋼材質(zhì)

 馬達單元

由鈦制成,電池供電(3×DL123A/3V)

 甲板控制單元

金屬艙室;帶一個(gè)控制采樣器開(kāi)關(guān)的按鈕;顯示采樣筒序號、壓力和電池狀態(tài)帶發(fā)光二極管背景燈的液晶顯示屏;與PC機的接口為RS232;由85-260V交流電或電池

 壓力傳感器

0.0-3000dbar±0.1%f.s.(標準);

多通道采水器Slimline訂購信息:

436 975    多通道水樣采集器Slimline采水器

                 采水器帶微處理器和外置電池組的馬達驅動(dòng)單元;
                 集成壓力傳感器;16兆數據存儲器;
                 通過(guò)PC機控制的可編程式深度依賴(lài)性采樣間隔;
                 帶甲板控制單元;
                 配備6個(gè)容積為1L的通暢流水樣采集器;

 

436 976    多通道水樣采集器Slimline采水器

                 采水器帶微處理器和外置電池組的馬達驅動(dòng)單元;
                 集成壓力傳感器;16兆數據存儲器;
                 通過(guò)PC機控制的可編程式深度依賴(lài)性采樣間隔;
                 帶甲板控制單元;
                 配備6個(gè)容積為3.5L的塑料水樣采集器;

 

436 977    多通道水樣采集器Slimline采水器

                 采水器帶微處理器和外置電池組的馬達驅動(dòng)單元;
                 集成壓力傳感器;16兆數據存儲器;
                 通過(guò)PC機控制的可編程式深度依賴(lài)性采樣間隔;
                 帶甲板控制單元;
                 配備6個(gè)容積為5L的塑料水樣采集器;

 

450 500     采水器的CT組件

                 電導傳感器:0~65mS/cm±0.01mS/cm
                 溫度傳感器:-2 ~32℃±0.005℃
                 監測頻率:1Hz


多通道水樣采集器Slimline采水器照片集:

圖片8.png

圖片9.png

多通道水樣采集器Slimline,6X3.5L

多通道水樣采集器Slimline,6X3.5L

圖片10.png 

圖片11.png 

用于多通道水樣采集器Slimline,6X1L

多通道水樣采集器Slimline,6X1L

15175364712678345rUi.png 

圖片13.png 

正在采水狀態(tài)的多通道水樣采集器Slimline

采水前的多通道水樣采集器Slimline


代表文獻:

1.Gradinger, Jiirgen Lenz,1989.Picocyanobacteria in the high Arctic.Marine Ecology. Progress series.52:99-101.

2.R. R. Gradinger, M. E. M. Baumann,1991.Distribution of phytoplankton communities in relation to the large-scale hydrographical regime in the Fram Strait.Marine Biology.111(2),311-321.

3.R. J. Gowen, B.M. Stewart, D.K. Mills and P. Elliott,1994.Regional differences in stratification and its effect on phytoplankton production and biomass in the northwestern Irish Sea.Journal of Plankton Research.17(4):753-769.

4.R.J. Gowen, G. McCullough, M. Dickey-Collas and G.S. Kleppel,1997.Copepod abundance in the western Irish Sea: relationship to physical regime, phytoplankton production and standing stock.Journal of Plankton Research.20(2):315-330.

5.K. Richardson, S.H. Jónasdóttir, S.J. Hay, A. Christoffersen,1999.Calanus finmarchicus egg production and food availability in the Faroe–Shetland Channel and northern North Sea: October–March.Fisheries Oceanography.8(1):153–162.

6.M. Trimmer, R. J. Gowen, B. M. Stewart, D. B. Nedwell,1999.The spring bloom and its impact on benthic mineralisation rates in western Irish Sea sediments.Marine Ecology Progress series.185:37-46.

7.Harri T. Kankaanp??, Vesa O. Sipi?, Jorma S. Kuparinen, Jennifer L. Ott, and Wayne W. Carmichael ,1999.Nodularin analyses and toxicity of a Nodularia spumigena (Nostocales, Cyanobacteria) water-bloom in the western Gulf of Finland, Baltic Sea, in August 1999.Phycologia.40(3):268-274.

8.Andrea M. Sass, Henrik Sass, Marco J. L. Coolen, Heribert Cypionka, and J?rg Overmann,2001.Microbial Communities in the Chemocline of a Hypersaline Deep-Sea Basin (Urania Basin, Mediterranean Sea).Applied and Envioronmental Mcrobiology.67(12):5392-5402.9.Victor W Truesdale, Günther Nausch, Alex Baker,2001.The distribution of iodine in the Baltic Sea during summer.Marine Chemistry.74(2–3):87–98.

10.Ann K. Manske, Jens Glaeser, Marcel M. M. Kuypers and J?rg Overmann,2005.Physiology and Phylogeny of Green Sulfur Bacteria Forming a Monospecific Phototrophic Assemblage at a Depth of 100 Meters in the Black Sea.Applied and Envioronmental Mcrobiology.71(12):8049-8060.

11.Maik Inthorn, Michiel Rutgers van der Loeff, Matthias Zabel,2006.A study of particle exchange at the sediment–water interface in the Benguela upwelling area based on 234Th/238U disequilibrium.Deep Sea Research Part I: Oceanographic Research Papers.53(11):1742–1761.

12.Tim J. Waite, Victor W. Truesdale, Jon Olafsson,2006.The distribution of dissolved inorganic iodine in the seas around Iceland.Marine Chemistry.101(1–2):54–67.

13.MAJANEVA Markus, AUTIO Riitta, HUTTUNEN Maija, KUOSA Harri, KUPARINEN Jorma,2009.Phytoplankton monitoring: the effect of sampling methods used during different stratification and bloom conditions in the Baltic Sea.Boreal environment research.14(2):313-322.

14.Bertics, Victoria J., L?scher, C. R., Salonen, I., Dale, Andy W., Gier, Jessica, Schmitz, R.A. and Treude, Tina,2013.Occurrence of benthic microbial nitrogen fixation coupled to sulfate reduction in the seasonally hypoxic Eckernf?rde Bay, Baltic Sea.Biogeosciences(BG).10(3):1243-1258.

15.W. DAVISON,1977.Sampling and handling procedures for the polarographic measurement of oxygen in hypolimnetic waters.Freshwater Biology.7(4):393–401.

16.Austin B. M. Egbore,1978.Seasonal variations in the density of a small West African lake.Hydrobiologia.61(3):195-203.

17.Dr. U. Zaiss, P. Winter, H. Kaltwasser,1982.Microbial methane oxidation in the River Saar.Journal of Basic Microbiology.22(2):139–148.

18.V.F. Samanidou & I.N. Papadoyannis,1992.Study of heavy metal pollution in the waters of Axios and Aliakmon rivers in northern Greece.Journal of Environmental Science and Health . Part A: Environmental Science and Engineering and Toxicology.27(3):587-601.

19.Nilgün Kazanci, Reiner-Hartmut Plasa, Eike Neubert & Afife ?zbirak,1992.On the limnology of Lake K?ycegiz (SW Anatolia).Zoology in the Middle East.6(1):109-126.

20.Eduardo González-Mazo, Jesus María Forja, Abelardo Gómez-Parra ,1998.Fate and Distribution of Linear Alkylbenzene Sulfonates in the Littoral Environment.Environ. Sci. Technol..32(11):1636–1641.

21.V.M León, E González-Mazo, A Gómez-Parra,2000.Handling of marine and estuarine samples for the determination of linear alkylbenzene sulfonates and sulfophenylcarboxylic acids.Journal of Chromatography A.889(1-2):211–219.

22.Claus-Peter Stelzer,2001.RESOURCE LIMITATION AND REPRODUCTIVE EFFORT IN A PLANKTONIC ROTIFER.Ecology.82(9):2521–2533.

23.Udo Noack, Thomas Geffke, Ramani Balasubramanian, Jutta Papenbrock, Mike Braune, Dirk Scheerbaum,2004.Effects of the Herbicide Metazachlor on Phytoplankton and Periphyton Communities in Outdoor Mesocosms.Acta hydrochimica et hydrobiologica.31(6):482–490.

24.L. R. Rodríguez-Gallego, N. Mazzeo, J. Gorga, M. Meerhoff, J. Clemente, C. Kruk, F. Scasso, G. Lacerot, J. García, F. Quintans,2004.The effects of an artificial wetland dominated by free-floating plants on the restoration of a subtropical, hypertrophic lake.Lakes & Reservoirs: Research & Management.9(3-4):203–215.

25.Kristina Samuelsson, Johnny Berglund, and Agneta Andersson,2006.Factors structuring the heterotrophic flagellate and ciliate community along a brackish water primary production gradient.Journal of Plankton Research.28(4):345-359.

26.George Kehayias, Ekaterini Chalkia, Stavroula Chalkia, George Nistikakis, Ierotheos Zacharias, Anastasios Zotos,2008.Zooplankton dynamics in the upstream part of Stratos reservoir (Greece).Biologia.63(5):699-710.

27.MAJANEVA Markus, AUTIO Riitta, HUTTUNEN Maija, KUOSA Harri, KUPARINEN Jorma,2009.Phytoplankton monitoring: the effect of sampling methods used during different stratification and bloom conditions in the Baltic Sea.Boreal environment research.14(2):313-322.


更多關(guān)鍵詞:小型分層采水器,CTD采水器,德國HYDRO-BIOS公司,分層采水器,多通道采水器,水樣采集,多筒采水器,Slimline采水器,微型多通道水樣采集器,多瓶采水器,玫瑰花型采水器,多通道水樣采集器,多功能水質(zhì)采樣器,水質(zhì)等比例采樣器

資料下載:

德國HYDRO-BIOS公司Slimline多通道水樣采集器介紹.pdf

水德產(chǎn)品冊.pdf

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