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[1] Wang DJ, Su CM, Zhang W, Hao XZ, Cang L, Wang YJ, Zhou DM, 2014. Laboratory assessment of the mobility of water-dispersed engineered nanoparticles in a red soil (Ultisol). Journal of Hydrology 519, 1677–1687. [2] Zhou CF, Wang YJ*, Sun RJ, Liu C, Fan GP, Qin WX, Li CC, Zhou DM, 2014. Inhibition effect of glyphosate on the acute and subacute toxicity of cadmium to earthworm Eisenia Fetida. Environmental Toxicology Chemistry 33(10): 2351-3357. [3] Fan JX, Wang YJ*, Liu C, Fan TT, Cui XD, Wang LH, Yang K, Zhou DM*, Li W Sparks DL, 2014. Effect of Iron Oxide Reductive Dissolution on the Transformation and Immobilization of Arsenic in Soils: New Insights from X-ray Photoelectron and X-ray Absorption Spectroscopies. Journal of Hazardous Materials 279: 212-219. [4] Zhu XD, Wang YJ, Liu C, Qin WX, Zhou DM, 2014. Kinetics, intermediates and acute toxicity of arsanilic acid photolysis. Chemosphere 107: 274-281 [5] Zhu XD, Wang YJ, Zhou DM, 2014. TiO2 photocatalytic degradation of tetracycline as affected by a series of environmental factors. Journal of Soils and Sediments 14(8): 1350-1358 [6] Fan JX, Wang YJ, Fan TT, Cui XD, Zhou DM, 2014. Photo-induced oxidation of Sb(III) on goethite. Chemosphere 95: 295-300. [7] Wang YJ, Li CB, Zhou DM, Friedman SP. 2013. Wien Effect in Suspension and its Application in Soil Science: A Review. Advances in Agronomy 122: 127-178.(约稿文章) [8] Wang YJ, Li CB, Wang LX, Zhou DM, Si YB, Friedman SP. 2013. Organo-modification effects on soil particles-inorganic cations interactions as revealed by Wien effect measurements. Soil Science Society of America Journal 77: 442-449. [9] Wang YJ, Wang LX, Li CB, Zhou DM, Si YB, 2013. Exploring the effect of organic matter on the interactions between mineral particles and cations with Wien effect measurements, Journal of Soils and Sediments 13(2): 304-311. [10] Li W*, Wang YJ*, Zhu MQ, Fan TT, Zhou DM, Sparks DL. 2013. Inhibition of Zn Precipitation on Aluminum Oxide by Glyphosate: Mechanisms from 31P NMR and Zn EXAFS. Environmental Science & Technology 47(9): 4211-4219. [11] Zhou CF, Wang YJ*, Li CC, Sun RJ, Yu YC, Zhou DM. 2013. Subacute toxicity of copper and glyphosate and their interaction to earthworm (Eisenia fetida). Environmental Pollution 180:71-77. [12] Zhu XD, Wang YJ, Sun RJ, Zhou DM. 2013. Photocatalytic degradation of tetracycline in aqueous solution by nanosized TiO2. Chemosphere 92:925-932. [13] Fan JX, Wang YJ, Zhou DM, 2013. Adsorption isotherms and kinetics of Sb(V) on several soils with different physicochemical properties, Journal of Soils and Sediments 13(2): 344-353. [14] Wang Y, Wang YJ, Wang L, Fang GD, Cang L, Herath HMSK, Zhou DM, 2013. Reducing the bioavailability of PCBs in soil to plant by biochars assessed with triolein-embedded cellulose acetate membrane technique. Environmental Pollution 174:250-256. [15] Wang Y, Wang L, Fang GD. Herath HMSK, Wang YJ, Cang L, Xie ZB, Zhou DM, 2013. Enhanced PCBs sorption on biochars as affected by environmental factors: Humic acid and metal cations. Environmental Pollution 172: 86-93. [16] Fang GD, Dionysiou DD, Zhou DM, Wang Y, Zhu XD, Fan JX, Cang L, Wang YJ, 2013. Transformation of polychlorinated biphenyls by persulfate at ambient temperature, Chemosphere 90(5):1573-80. [17] Zhou DM, Jin SY, Wang YJ, Li LZ, Wang P. 2012. Assessing the impact of iron-based nanoparticles on pH, dissolved organic carbon and nutrient availability in soils. Soil Sediment Contamination, 21(1): 101-114 [18] Wang Y, Zhou DM, Wang YJ, Wang L, Cang L. 2012. Automatic pH control system enhances the dechlorination of 2,4,4 '-trichlorobiphenyl and extracted PCBs from contaminated soil by nanoscale Fe-0 and Pd/Fe-0. Environmental Science and Pollution Research 19:448-457. [19] Zhu XD, Zhou DM, Cang L, Wang YJ, 2012. TiO2 photocatalytic degradation of 4-chlorobiphenyl in aqueous solution. Journal of Soils and Sediments 12(3): 376-385 [20] Zhu XD, Zhou DM, Wang YJ, Cang L, 2012. Remediation of polychlorinated biphenyl-contaminated soil by soil washing and subsequent TiO2 photocatalytic degradation. Journal of Soils and Sediments 12(9):1371-1379 [21] Zhou CF, Wang YJ, Yu YC, Zhou DM, Sun RJ, Zhu XD, Zhang HL, 2012. Does glyphosate impact on Cu uptake by, and toxicity to, the earthworm Eisenia fetida? Ecotoxicology 21(8):2297-2305 [22] Li W, Livi KJT, Xu WQ, Siebecker M, Wang YJ, Phillips BL, Sparks DL. 20112. Formation of crystalline Zn-Al layered double hydroxide precipitates on γ-alumina: the role of mineral dissolution. Environmental Science & Technology 46(21): 11670-11677 [23] Wang YJ, Zhou DM, Li CB. 2011. Wien effect determination of binding and adsorption energies between positively charged nano-particles and anions. Journal of Soils and Sediments 11:783-788. [24] Wang DJ, Chu LY, Paradelo M, Peijnenburg W, Wang YJ, Zhou DM. 2011. Transport behavior of humic acid-modified nano-hydroxyapatite in saturated packed column: Effects of Cu, ionic strength, and ionic composition. Journal of Colloid and Interface Science 360:398-407. [25] Li LZ, Zhou DM, Peijnenburg W, van Gestel CAM, Jin SY, Wang YJ, Wang P. 2011. Toxicity of zinc oxide nanoparticles in the earthworm, Eisenia fetida and subcellular fractionation of Zn. Environment International 37:1098-1104. [26] Wang Y, Zhou DM, Wang YJ, Zhu XD, Jin SY. 2011. Humic acid and metal ions accelerating the dechlorination of 4-chlorobiphenyl by nanoscale zero-valent iron. Journal of Environmental Sciences-China 23:1286-1292. [27] Zhou DM, Wang YJ, Wang HW, Wang SQ, Cheng JM. 2010. Surface-modified nanoscale carbon black used as sorbents for Cu(II) and Cd(II). Journal of Hazardous Materials 174:34-39.. [28] Wang YJ, Sun RJ, Xiao AY, Wang SQ, Zhou DM. 2010. Phosphate affects the adsorption of tetracycline on two soils with different characteristics. Geoderma 156:237-242. [29] Chen JH, Wang YJ, Zhou DM, Cui YX, Wang SQ, Chen YC. 2010. Adsorption and Desorption of Cu(II), Zn(II), Pb(II), and Cd(II) on the Soils Amended with Nanoscale Hydroxyapatite. Environmental Progress & Sustainable Energy 29:233-241 [30] Wang YJ, Zhou J, Li CB, Zhou DM. 2010. Binding energies of monovalent anions with Fe/Al oxides based on ion activity and suspension Wien effect methods. Journal of Soils and Sediments 10:863-869. [31] Wang YJ, Chen JH, Cui YX, Wang SQ, Zhou DM. 2009. Effects of low-molecular-weight organic acids on Cu(II) adsorption onto hydroxyapatite nanoparticles. Journal of Hazardous Materials 162:1135-1140. [32] Wang YJ, Cui YX, Zhou DM, Wang SQ, Xiao AY, Wang RH, Zhang HL. 2009. Adsorption kinetics of glyphosate and copper(II) alone and together on two types of soils. Soil Science Society of America Journal 73:1995-2001. [33] Wang YJ, Li CB, Wang W, Jiang J, Zhou DM, Xu RK, Friedman SP. 2009. Negative Wien effect measurements for exploring polarization processes of cations interacting with negatively charged soil particles. Soil Science Society of America Journal 73:569-578. [34] Zhu HW, Wang YJ, Zhou J, Jiang J, Li CB, Zhou DM, Friedman SP. 2009. Wien effect characterization of interactions between ions and charged sites on clay surfaces of variable-charge soils. Pedosphere 19:545-553. [35] Jia DA, Zhou DM, Wang YJ, Zhu HW, Chen JL. 2008. Adsorption and cosorption of Cu(II) and tetracycline on two soils with different characteristics. Geoderma 146:224-230. [36] Wang YJ, Jia DA, Sun RJ, Zhu HW, Zhou DM. 2008. Adsorption and cosorption of tetracycline and copper(II) on montmorillonite as affected by solution pH. Environmental Science & Technology 42:3254-3259. [37] Wang YJ, Li CB, Wang W, Zhou DM, Xu RK, Friedman SP. 2008. Wien effect determination of adsorption energies between heavy metal ions and soil particles. Soil Science Society of America Journal 72:56-62. [38] Wang YJ, Zhou DM, Sun RJ, Jia DA, Zhu HW, Wang SQ. 2008. Zinc adsorption on goethite as affected by glyphosate. Journal of Hazardous Materials 151:179-184. [39] Hao XZ, Zhou DM, Huang DQ, Zhang HL, Wang YJ. 2007. The growth and Cu and Zn uptake of pakchois (Brassica chinesis L.) in an acidic soil as affected by chicken or pig manure. Journal of Environmental Science and Health Part B-Pesticides Food Contaminants and Agricultural Wastes 42:905-912. [40] Wang YJ, Li CB, Wang W, Zhou DM, Xu RK. 2007. Binding and adsorption energies of heavy metal ions with hapli-udic argosol and ferri-udic argosol particles. Pedosphere 17:688-696. [41] Zhou DM, Chen HF, Cang L, Wang YJ. 2007. Ryegrass uptake of soil Cu/Zn induced by EDTA/EDDS together with a vertical direct-current electrical field. Chemosphere 67:1671-1676. [42] Jun J, Li CB, Zhao AZ, Xu RK, Wang YJ, Friedman SP. 2006. Interactions of heavy metal ions with paddy soils as inferred from wien effect measurements in dilute suspensions. Pedosphere 16:718-725. [43] Luo XS, Zhou DM, Liu XH, Wang YJ. 2006. Solid/solution partitioning and speciation of heavy metals in the contaminated agricultural soils around a copper mine in eastern Nanjing city, China. Journal of Hazardous Materials 131:19-27. [44] Luo XS, Zhou DM, Wang YJ. 2006. Free cupric ions in contaminated agricultural soils around a copper mine in eastern Nanjing City, China. Journal of Environmental Sciences-China 18:927-931. [45] Wang YJ, Zhou DM, Sun RJ, Cang L, Hao XZ. 2006. Cosorption of zinc and glyphosate on two soils with different characteristics. Journal of Hazardous Materials 137:76-82. [46] Zhou DM, Cang L, Alshawabkeh AN, Wang YJ, Hao XZ. 2006. Pilot-scale electrokinetic treatment of a Cu contaminated red soil. Chemosphere 63:964-971 [47] Wang YJ, Zhou DM, Sun RJ. 2005. Effects of phosphate on the adsorption of glyphosate on three different types of Chinese soils. Journal of Environmental Sciences-China 17:711-715. [48] Zhou DM, Hao XZ, Wang YJ, Dong YH, Cang L. 2005. Copper and Zn uptake by radish and pakchoi as affected by application of livestock and poultry manures. Chemosphere 59:167-175. [49] Cang L, Wang YJ, Zhou DM, Dong YH. 2004. Heavy metals pollution in poultry and livestock feeds and manures under intensive farming in Jiangsu Province, China. Journal of Environmental Sciences-China 16:371-374. [50] Wang YJ, Zhou DM, Luo XS, Sun RJ, Chen HM. 2004. Cadmium adsorption in montmorillonite as affected by glyphosate. Journal of Environmental Sciences-China 16:881-884. [51] Zhou DM, Wang YJ, Cang L, Hao XZ, Luo XS. 2004. Adsorption and cosorption of cadmium and glyphosate on two soils with different characteristics. Chemosphere 57:1237-1244. [52] Hao XZ, Zhou DM, Wang YJ, Cang L, Chen HM. 2003. Effect of different amendments on ryegrass growth in copper mine tailings. Pedosphere 13:299-308. [53] Wang SQ, Zhou DM, Wang YJ, Chen HM. 2003. Effect of o-phenylenediamine on Cu adsorption and desorption in red soil and its uptake by paddy rice (Oryza sativa). Chemosphere 51:77-83. [54] 周垂帆, 林静雯, 李莹, 王玉军*, 周东美, 2014. 草甘膦与重金属复合污染对发光菌的毒性效应. 农业环境科学学报 33(12): 2329-2334. [55] 王玉军, 刘存, 周东美, 陈怀满, 2014. 客观地看待我国耕地土壤环境质量的现状. 农业环境科学学报 33(8): 1661-1669(封面文章) [56] 周东美, 王玉军, 陈怀满. 2014. 论土壤环境质量重金属标准的独立性与依存性. 农业环境科学学报, 33(2): 205-216. (封面文章) [57] 王玉军, 陈怀满, 2013. 我国土壤环境质量重金属影响研究中一些值得关注的问题. 农业环境科学学报, 32(7): 1289-1293.(封面文章) [58] 樊建新, 王玉军, 崔晓丹, 范婷婷, 周东美. 2013. 基于同步辐射的硬X射线荧光技术初探污染土壤中重金属分布. 生态与农村环境学报, 29(3): 375-379. [59] 朱向东, 王玉军, 孙瑞娟, 周东美, 2012. 溶液酸度对四环素类物质光降解和光催化降解速率的影响. 生态与农村环境学报, 28(6): 742-745. [60] 王令祥, 王玉军, 周东美, 司友斌, 李成保, 2012. 用Wien效应研究土壤有机质对阳离子与黄棕壤型水稻土粘粒相互作用的影响. 土壤学报49(4):716-724. [61] 周垂帆, 王玉军, 俞元春, 俞小鹏, 白玉杰, 周东美, 2012. 铜和草甘膦对蚯蚓的毒性效应研究. 中国生态农业学报 20(8): 1077-1082 [62] 胡田田, 仓龙, 王玉军, 司友斌, 周东美, 2012. 铅和铜离子在纳米羟基磷灰石上的竞争吸附动力学研究. 环境科学 33(8): 2875-2881 [63] 王意锟, 方升佐, 王玉军, 郝秀珍, 周东美, 张焕朝,2011. 改良剂对重金属复合污染土壤中菜用大豆品质及生理特性的影响. 生态与农村环境学报 27(3): 87-92 [64] 金盛杨, 王玉军, 汪鹏, 温南燕, 周东美, 2011. 纳米氧化铜对小麦根系生理生化行为的影响, 土壤 43(4): 605-610 [65] 褚灵阳, 汪登俊, 王玉军, 司友斌, 周东美. 2011. 不同环境因子对纳米羟基磷灰石在饱和填充柱中迁移规律的影响, 环境科学, 32(8): 2284-2291 [66] 金盛杨, 王玉军, 李连祯, 周东美, 王慎强. 2010. 纳米与微米级零价铁降解2,4,6-三氯酚动力学比较. 中国环境科学 30:82-87. [67] 周俊, 李成保, 程程, 王玉军, 周东美, 周立祥. 2010. 用离子活度法和悬液Wien效应法测定土壤对单价阳离子结合能的比较研究. 土壤学报 47(6): 1151-1158. [68] 金盛杨, 王玉军, 汪鹏, 李连祯, 周东美, 2010. 纳米与微米CuO及Cu2+对土壤脲酶的生态毒性研究, 生态毒理学报5(6): 835-841 [69] 金盛杨, 王玉军, 汪鹏, 李连祯, 周东美, 2010. 不同培养介质对纳米氧化铜小麦毒性的影响, 生态毒理学报 5(6):842-848 [70] 陈杰华, 王玉军, 王汉卫, 周东美, 杨剑虹. 2009. 基于TCLP法研究纳米羟基磷灰石对污染土壤重金属的固定. 农业环境科学学报 28:645-648. [71] 王汉卫, 王玉军, 陈杰华, 王慎强, 成杰民, 周东美. 2009. 改性纳米碳黑用于重金属污染土壤改良的研究. 中国环境科学 29:431-436. [72] 王意锟, 郝秀珍, 王玉军, 周东美, 张焕朝. 2009. 凹凸棒土-腐植酸复合体对Pb(II)的吸附特性及机理研究. 农业环境科学学报 28:2324-2327. [73] 朱浩文, 王玉军, 姜军, 李成保, 周东美, 徐仁扣, 周立祥. 2009. 用悬液Wien效应研究Na+、K+、NH4+、Ca2+、Zn2+和Cd2+阳离子与红壤黏粒间的相互作用及能量关系. 土壤学报 46:308-314. [74] 崔玉侠, 王玉军, 周东美, 王慎强, 肖安云, 陈玉成. 2009. 草甘膦对重金属污染土壤中铜、锌淋溶的研究. 土壤 41(5): 840-843. [75] 黄德乾, 汪鹏, 王玉军, 周东美. 2008. 污染土壤上水稻生长及对Pb、Cd和As的吸收. 土壤 40:626-629. [76] 黄德乾, 王全英, 朱浩文, 王玉军, 周东美. 2008. 苏南地区土壤和水稻子粒镉污染现状评价. 农业环境科学学报 27:560-563. [77] 黄德乾, 王玉军, 汪鹏, 周东美. 2008. 三种不同类型土壤上水稻对Cu、Pb和Cd单一及复合污染的响应. 农业环境科学学报 27:46-49. [78] 荚德安, 王玉军, 周东美, 王慎强, 王全英, 朱浩文, 陈金林. 2008. 2, 4-D对铜在乌栅土胶体和红壤胶体上吸附的影响. 土壤 40:945-948. [79] 刘小红, 周东美, 郝秀珍, 司友斌, 仓龙, 王玉军, 陈怀满. 2007. 九华铜矿重金属环境污染状况研究. 土壤 39:551-555. [80] 王卫, 王玉军, 李成保, 朱浩文, 周东美, 徐仁扣, 周立祥. 2007. 用悬液Wien效应研究阳离子与土壤粘粒间的能量关系. 土壤学报 44:451-457. [81] 姜军, 李成保, 赵安珍, 王玉军, 徐仁扣. 2006. 土壤-水体系中离子反应平衡时间的电导法检测. 土壤学报 43:989-995. [82] 王玉军, 周东美, 孙瑞娟, 陈怀满, 郝秀珍, 仓龙. 2006. 除草剂草甘膦在几种土壤和矿物上的吸附研究. 土壤学报 43:780-785. [83] 王玉军, 周东美, 孙瑞娟, 郝秀珍. 2006. 土壤中草甘膦与镉的交互作用对3种土壤酶活性的影响. 生态毒理学报 1:58-63. [84] 王玉军, 周东美, 孙瑞娟, 郝秀珍, 仓龙. 2006. 土壤中铜、铅离子的竞争吸附动力学. 中国环境科学 26:555-559. [85] 郝秀珍, 周东美, 王玉军, 陈怀满, 孙兆海. 2004. 泥炭和化学肥料处理对黑麦草在铜矿尾矿砂上生长影响的研究. 土壤学报 41:645-648. [86] 王玉军, 周东美, 孙瑞娟, 陈怀满. 2004. 镉与除草剂草甘磷的交互作用对小麦的毒性. 生态环境 13:158-160. [87] 周东美, 郝秀珍, 薛艳, 仓龙, 王玉军, 陈怀满. 2004. 污染土壤的修复技术研究进展. 生态环境 13:234-242. [88] 周东美, 王玉军, 仓龙, 郝秀珍, 陈怀满. 2004. 土壤及土壤-植物系统中复合污染的研究进展. 环境污染治理技术与设备 5:1-8. [89] 王慎强, 王玉军, 周东美, 陈怀满. 2003. 铜和邻苯二胺在水相中和矿物上交互作用的研究. 农业环境科学学报 22:656-659. [90] 王慎强, 王玉军, 周东美, 陈怀满. 2003. 邻苯二胺对外源铜在红壤中形态影响的研究. 农业环境科学学报 22:9-12. [91] 王慎强, 周东美, 王玉军, 陈怀满, 郑春荣. 2003. 邻苯二胺对铜在红壤和砂姜黑土中吸附和解吸的影响. 土壤学报 40:567-573. [92] Zhou DM, Chen HM, Hao XZ, Wang YJ. 2002. Fractionation of heavy metals in soils as affected by soil types and metal load quantity. Pedosphere 12:309-319. [93] 郝秀珍, 周东美, 王玉军, 陈怀满. 2002. 不同改良剂对铜矿尾矿砂改良效果研究. 农村生态环境 18:11-15. [94] 王慎强, 周东美, 王玉军, 陈怀满. 2002. 两种土壤中邻苯二胺对铜离子吸附解吸平衡影响的研究. 农业环境保护 21:421-423. [95] 周东美, 王玉军. 2002. 铜矿区重金属污染分异规律初步研究. 农业环境保护 21:225-227.
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