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20篇 您的检索式:作者名="Simonnot"
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1Soil Contamination due to E-Waste Disposal and Recycling Activities: A Review with Special Focus on China显示文摘This paper presents a review of soil contamination resulting from e-waste recycling activities, with a special focus on China, where many data have been collected for a decade. Soils in the e-waste areas are often contaminated by heavy metals and organic compounds, mainly polycyclic aromatic hydrocarbons (PAHs), polybrominated diphenyl ethers (PBDEs), polychlorinated and polybrominated biphenyls (PCBs and PBBs), dechlorane plus (DP), hexabromocyclododecanes (HBCDs), polychlorinated and polybrominated dibenzo- p-dioxins (PCDDs and PBDDs), and polychlorinated and polybrominated dibenzofurans (PCDFs and PBDFs), while other compounds, not systematically monitored, can be found as well. Pollutants are generally present in mixtures, so pollution situations are complex and diversified with a gradient of contamination from agricultural soils to hot spots at e-waste sites and mainly in open burning areas. It has been proved that pollutants were transferred to the food chain via rice in China, and that the population was threatened since high levels of various pollutants were detected in blood, placentas, hair, etc., of residents of e-waste sites. Eventually, soil remediation techniques are reviewed. Although there are many available techniques devoted to heavy metals and persistent organic pollutants, the current techniques for the e-waste sites, where these contaminants coexist, are very sparse. Phytoremediation has been investigated and co-cropping appears as a promising approach for the slightly contaminated agricultural soils. In some cases, different remediation techniques should be combined or trained, while the influence of coexisting contaminants and the removal sequence of contaminants should be considered. In hot spots, physical and chemical techniques should be used to reduce high pollution levels to prevent further pollutant dissemination. This review highlights the urgent needs for 1) characterization of pollution status in all the countries where e-wastes are recycled, 2) research on fate and toxicity of pollutant mixtures, and 3) development of combined techniques and strategies to remediate agricultural fields and hot spots of pollution.G. ECHEVARRIA T. STERCKEMAN M. O. SIMONNOT J. L. MOREL 2012Pedosphere2012,22,4:11
2Soil Contamination due to Activities: A Review with E-Waste Disposal and Recycling Special Focus on China显示文摘这份报纸论述源于再循环活动的电子浪费的土壤污染的评论,与中国的一个特殊焦点,在许多数据被收集一十年了的地方。在电子浪费区域的土壤被重金属和有机化合物经常污染,主要多不的芳香的烃(哼), polybrominated diphenyl 醚( PBDE )(印刷电路板和 PBB ), polychlorinated 和 polybrominated 联本基, dechlorane 加( DP ), hexabromocyclododecanes ( HBCD ), polychlorinated 和 polybrominated dibenzo-p-dioxins ( PCDD 和 PBDD ),和 polychlorinated 和 polybrominated dibenzofurans ( PCDF 和 PBDF )当其它加重时,不是系统地监视了,能作为 wel 被发现污染物质通常是在混合物的现在,因此污染状况与从农业土壤的污染的一个坡度复杂、多样化到在电子浪费地点并且主要在开的燃烧区域的热点。污染物质在中国经由米饭被转移到食物链,这被证明了,并且自从各种各样的污染物质的高水平,人口被威胁,这在血被检测,胎盘,头发,等等,电子浪费地点的居民。最后,土壤补习技术被考察。尽管有许多可得到的技术,奉献给重金属和坚持的器官的污染物质,在这些沾染物共存的地方,为电子浪费地点的当前的技术是很稀少的。植物救治被调查了并且共同收割为稍微污染的农业土壤作为一条有希望的途径出现。在一些情况中,不同补习技术应该被联合或训练,当共存的沾染物的影响和沾染物的移动顺序应该被考虑时。在热点,物理、化学的技术应该被用来减少高污染层次阻止进一步的污染物质传播。这评论为 1 加亮迫切需要) 在电子浪费被再循环的所有国家的污染地位的描述, 2 ) 关于污染物质混合物的命运和毒性的研究,并且 3 ) 联合技术和策略到的开发重新调停农业领域和污染的热点。ZHANG Wei-Hua WU Ying-Xini M. O. SIMONNOT 2012Pedosphere2012,22,4:3
3Short-term effects of biochar on soil heavy metal mobility are controlled by intra-particle diffusion and soil pH increase显示文摘Rees F Simonnot M O Morel J L 2014European Journal of Soil Science2014,65,1:1
4Boron removalfrom drinking water with a boron selective resin : Is the treat-ment really selective显示文摘SIMONNOT M 0 CASTEL C NIKOLAI M 2000Water Res2000,34,:1
5Reactive behavior of natural manganese oxides toward the adsorption of phosphate and arsenate 显示文摘Ouvrard S Simonnot MO Sardin M 2002Ind Engin Chem Res2002,41,11:1
6Phenanthrene and pyrene oxidation in contaminated soils using Fenton’s reagent显示文摘Paula Tereza de Souza e Silva Valdinete Lins da Silva Benício de Barros Neto Marie-Odile Simonnot 2008Journal of Hazardous Materials2008,,2:1
7PAHs and organic matter partitioning and mass transfer from coal tar particles to water 显示文摘Benhabib K Simonnot M Sardin M 2006Environ Sci Technol2006,411,19:1
8Reactive behavior of natural manganese oxides toward the adsorption of phosphate and arsenate显示文摘 Simonnot Marie Odile Sardin Michel 2002Industrial and Engineering Chemistry Research2002,41,11:1
9Reactive behavior of natural manganese oxides toward the adsorption of phosphate and arsenate显示文摘Ouvrard S Simonnot MO Sardin M 2002Industrial & Engineering Chemistry Research2002,41,11:1
10Selection of an adsorbent for lead removal from drinking water by a point-of-use treatment device显示文摘Sublet R Simonnot M O Boireau A 2003Water Research2003,37,20:1
11Short-term effects of biochar on soil heavy metal mobility are controlled by intra-particle diffusion and soil pH increase显示文摘Rees F Simonnot M 0 Morel J L 2014European Journal of Soil Science2014,65,1:1
12Boron removal from drinking water with a boron selective resin: is the treatment really selective? 显示文摘M O Simonnot C Castel M Nicolai 2000Water Research2000,34,1:1
13Characteristics of organic material in Huangpu River and treatability with the O 3 -BAC process显示文摘Bin Xu Nai-Yun Gao Xiao-Feng Sun Sheng-Ji Xia Marie-Odile Simonnot Christel Causserand Min Rui Hai-Hui Wu 2007Separation and Purification Technology2007,,2:1
14Natural manganese oxide: Combined analytical approach for solid characterization and arsenic retention 显示文摘Ouvrard S Dedonato P H Simonnot M O 2005Geochimica et Cosmochimica Acta2005,69,11:1
15Boron removal from drinking water with a boron selective resin : is the treatment really selective 显示文摘Simonnot M-O Castel C Nicolal M 2000Water Research2000,34,1:1
16Characteristics of organic material in Huangpu River and treatability with the O 3 -BAC process显示文摘Bin Xu Nai-Yun Gao Xiao-Feng Sun Sheng-Ji Xia Marie-Odile Simonnot Christel Causserand Min Rui Hai-Hui Wu 2007Separation and Purification Technology2007,,2:1
17Boron removal from drinking water with a boron selective resin: is the treatment really selective? 显示文摘SIMONNOT M CASTEL C NICOLAI M RASIN C SARD1N M JAUFFRET H 2000Water Research2000,34,1:1
18Boron removal from drinking water with a boron selective resin: is the treatment really selective? 显示文摘Simonnot M Castel C Nicolai M 2000Water Research2000,34,1:1
19Boron removal from drinking water with a boron selective resin: ls the treatment really selective 显示文摘SIMONNOT M O CASTEL C N1COLAI M 2000Wat Res2000,34,1:1
20Diffusion-controned adsorption of arsenate on a natural manganese oxide 显示文摘Ouvrard S Simonnot M O Donato P 2002Industrial & Engineering Chemistry Research2002,41,24:1
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