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14篇 您的检索式:作者名="Hoinkis"
    题名 作者 年代 出处 被引量
1Wastewater recycling in laundries-from pilot to large-scale plant 显示文摘Hoinkis J Panten V 2008Che Eng Process2008,47,7:1
2A Small-angle Neutron Scattering Study of Activated Carbon Fibers 显示文摘ERNST HOINKIS MARTIN ZIEHL 2003Carbon2003,41,:1
3Scandium clusters in fullerene cages显示文摘Yannoni C S Hoinkis M de Vries M S 1992Science1992,256,:1
4Effect of keratinocyte growth factor on radiation survival and colony size of human epidermal keratinocytes in vitro 显示文摘SLONINA D HOINKIS C DORR W 2001Radiat Res2001,156,6:1
5Membrane bioreactor(MBR)technology:a promising approach for industrial water reuse显示文摘HOINKIS J DEOWAN S A PANTEN V 2012Procedia Engineering2012,33,:1
6Memb- rane bioreactor (MBR) technology-a promising approach for industrial water reuse 显示文摘Jan Hoinkis Shamim Deowan Volker Panten 2012Procedia Engineering2012,,33:1
7Treatment of dyeing waste water by hollow fiber membrane biological reactor显示文摘HUANG R R HOINKIS J HU Q 2009Desalin Water Treat2009,11,:1
8Membrane Bioreactor (MBR) Technology – a Promising Approach for Industrial Water Reuse显示文摘Jan Hoinkis Shamim A. Deowan Volker Panten Alberto Figoli Rong Rong Huang Enrico Drioli 2012Procedia Engineering2012,,:1
9Membrane biore-actor (MBR) technology-A promising approach for industrial water reuse 显示文摘HOINKIS J DEOWAN S A PANTEN V 2012Procedia Engineering2012,,33:1
10Membrane Bioreactor (MBR) Technology-a Promising Approach for Industrial Water Reuse显示文摘Hoinkis J Deowan S A Panten V 2012Procedia Engineering2012,33,3:1
11Membrane bioreactor (MBR) technology-a promising approach for industrial water reuse 显示文摘Hoinkis J Deowan S A Panten V 2012Procedia Engineering2012,33,:1
12Report of a Study on IMRT Planning Strategies for Ethmoid Sinus Cancer显示文摘Filip Claus Ben Mijnheer Coen Rasch Thomas Bortfeld Benedick Fraass Werner De Gersem Holger Wirtz Cordelia Hoinkis Byung Chul Cho Lai Wan Dora Kwong Hoonsik Bae Karin Muller Wilfried De Neve 2002Strahlentherapie und Onkologie2002,,10:1
13Membrane bioreactor(MBR) technology-a promising approach for industrialwater reuse 显示文摘Hoinkis J Deowan S A Panten V 2012Procedia Engineering2012,33,:1
14The removal of arsenic from (ground)-water by adsorbent loaded in polymeric microspheres显示文摘Arsenic is a natural tasteless and odourless element,existing in the earth's crust at average levels of between two and five thousands micrograms per liter (parts per million) . Arsenic is highly toxic to humans, who are exposed to it primarily from air,food and water. The occurrence of arsenic in groundwater is due to geological composition of soil. High concentrations of arsenic in water are the result of dissolution or desorption of ferric oxides and the oxidation of mineral arsenopyrites. Arsenic in drinking water has an important impact on the human health,especially in the less developed countries. Different methods exist to remove arsenic from aquatic media,and one of them is by adsorption. In this work,the adsorption of both As(III) and As(V) by means of novel microspheres has been investigated. In particular,TiO2 has been embedded into polymeric microspheres PES (PolyEtherSulphone) and PEEK-WC (PolyEtherEther-Ketone) . The main advantages of this encapsulation adsorption material are: no loss of adsorbents into the water stream,easy to be used and scaled-up.FIGOLI A HOINKIS J CRISCUOLI A FRANZ C DE RYCKE M BLOCK C DEOWAN S A ISLAM R DRIOLI E 2012Journal of Harbin Institute of Technology(New Series)2012,19,1:0
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