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18篇 您的检索式:作者名="Wolowicz"
    题名 作者 年代 出处 被引量
1Investigation of macroporous weakly basic anion exchangers applicability in palladium ( Ⅱ) removal from acidic solutions-batch and column studies 显示文摘Wolowicz A Hubicki Z 2011Chemical Engineering Journal2011,,174:1
2Genetic diversity of European populations of the invasive soft-shell clam Mya arenaria (Bivalvia)显示文摘Lasota R Hummel H Wolowicz M 2004J Mar Biol Ass UK2004,84,:1
3Distribution of Mercury and Other Trace Metals in the Cockle Cerastoderma glaucum from the Mediterranean Lagoon Etang de Thau显示文摘P. Szefer M. Wolowicz A. Kusak J.-M. Deslous-Paoli W. Czarnowski K. Frelek M.-J. Belzunce 1999Archives of Environmental Contamination and Toxicology1999,,1:1
4Palladium complexes adsorption from the chloride solutions macrocomponent addition using strongly basic (11) with anion exchange resins显示文摘Anna Wolowicz Zbigniew Hubicki 2009Hydrometallurgy2009,98,:1
5Metal sources to the Baltic clam Macoma balthica (Mollusca:Bivalvia) in the southern Baltic Sea (the Gulf of Gdansk) 显示文摘Sokolowski A Wolowicz M Hummel H 2007Marine Environmental Research2007,63,2:1
6Trace metals in the brown mussel Perna perna from the coastal waters of Yemen (Gulf of Aden): How concentrations are affected by weight, sex, and seasonal eyele 显示文摘Sokolowski A Bawazir A S Wolowicz M 2004Archives of Environmental Contamination and Toxicology2004,46,:1
7The shell of Cardium edule, Cardium glaucum and Ruditapes philippinarum: Organic content, composition and energy value, as determined by different methods 显示文摘Goulletquer P Wolowicz 1989Journal of the Marine Biological Association of the United Kingdom1989,69,:1
8Distribution of Mercury and Other Trace Metals in the Cockle Cerastoderma glaucum from the Mediterranean Lagoon Etang de Thau显示文摘P. Szefer M. Wolowicz A. Kusak J.-M. Deslous-Paoli W. Czarnowski K. Frelek M.-J. Belzunce 1999Archives of Environmental Contamination and Toxicology1999,,1:1
9The use of the chelating resin of a new generation Lewatit MonoPlus TP-220 with the bis-picolylamine functional groups in the removal of selected metal ions from acidic solutions显示文摘Wolowicz A Hubicki Z 0,,15:1
10Biomonitoring of trace metals in the gulf of Gdansk, using Mussels ( Mytilus Trossulus) and Barnacles ( Balanus Improvosus ) 显示文摘RAINBOW P S WOLOWICZ M FLALKOWSKI W 2000Water Research2000,34,6:1
11Is benthic food web structure related to diversity of marine macrobenthic communities显示文摘Sokolowski A Wolowicz M Asmus H Asmus R Carlier A Gasiunaité Z Grémare A Hummel H Lesutiené J Razinkovas A Renaud PE Richard P Kedra M 0,,:1
12A comparative study of chelating and cationic ion exchange resins for the removal of palladium (II) complexes from acidic chloride media 显示文摘Zbigniew Hubicki Anna Wolowicz 2009Journal of Hazardous Materials2009,164,23:1
13Geographic and seasonal patterns and limits on the adaptive response to temperature of European Mytilus spp. and Macoma balthica populations显示文摘Jeroen M. Jansen Annelies E. Pronker Sandra Kube Adam Sokolowski J. Carlos Sola Mikel A. Marquiegui Doris Schiedek Sjoerd Wendelaar Bonga Maciej Wolowicz Herman Hummel 2007Oecologia2007,,:1
14Adsorption of palladium( II ) from chloride solutions on Amberlyst A 29 and Amberlyst A 21 resins显示文摘Hubieki Z Wolowicz A 2009Hydrometallurgy2009,96,:1
15Studies of removal of palladium(Ⅱ) ions from chloride solutions on weakly and strongly basic anion exchangers 显示文摘HUBICKI Z WOLOWICZ A LESZCZYNSKA M 2008Journal of Hazardous Materials2008,159,23:1
16A comparative study of chelsting (Ⅱ) complexes from acidic chloride medis显示文摘Zbigniew Hubicki Anns Wolowicz 2009Journal of Haxardous Materials2009,164,23:1
17Palladiurn(Ⅱ) complexes adsorp- tion from the chloride solutions with macrocomponent addition using strongly basic anion exchange resins, type 1 显示文摘Wolowicz A Hubicki Z 2009Hydrometallurgy2009,98,3:1
18南波罗的海(格但斯克湾)波罗的海蛤Macoma balthica的贝壳变形:环境影响假设显示文摘本文使用高分辨率数字图像和图像分析系统,来确定格但斯克湾(南波罗的海)波罗的海蛤Macoma balthica 4个种群贝壳变形的外部形态特征。基于贝壳的前后部分所选择维度的关系,我们提出了贝壳变形指数(SDI),它们至少说明了3个形态特征,提供了'正常'和'变形'海蛤的区别性特征诊断:后部弯曲状态(SDI1),后部伸长区(SDI2),和贝壳生长(SDI3)。变形蛤的变形程度和流行程度在当地随着空间发生变化。异常贝壳百分比随深度增加,与海湾内氧损耗状况相对应,间接地表明氧浓度低是具有变形作用的主要因素。所观察到的形态畸变随着双壳类年龄(大小)而加深,表明了原因因子的长期影响,并伴随有贝壳重量的减轻,这可能是由于无氧代谢期间以前沉积的含钙物质的脱钙作用。假设氧不足/缺氧环境及其后在富含有机体的深海底层出现的硫化氢都导致贝壳外形的改变,使其可以在缺氧层之上抽吸氧化水。这样的形态诱发变异突出了贝壳变形在对周围低氧浓度的保护反应中的功能意义。沉积的有机锡浓度属于中等-高污染范围,因此,也会对贝壳外形产生不利影响。线粒体基因细胞色素氧化酶I(COI,393个碱基对)片段的DNA分析显示了正常和变形蛤的同质基因结构,说明M.balthica的贝壳变形主要是由对周围环境条件的适应性引起的。Adam Sokolowski Krzysztof Pawlikowski Maciej Wolowicz Pascale Garcia Jacek Namiesnik 王胜(译) 2008AMBIO-人类环境杂志2008,37,2:0
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