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中国科学院大学研究生导师简介-刘承帅

中国科学院大学 免费考研网/2016-05-09

基本信息
刘承帅 男 博导 中国科学院地球化学研究所
电子邮件: liuchengshuai@vip.gyig.ac.cn
通信地址: 贵阳市观山湖区林城西路99号
邮政编码: 550009
研究领域 活性矿物作用下土壤元素的环境地球化学过程;土壤重金属的转化脱毒;农田污染土壤治理;场地重金属污染土壤治理。
招生信息

招生专业083001


招生方向环境矿物学

教育背景2002-09--2007-06 中国科学院广州地球化学研究所 研究生/理学博士
1997-09--2001-06 武汉大学 本科/工学学士

工作经历2015.01-至今 中国科学院地球化学研究所, 环境地球化学国家重点实验室,“百人计划”研究员。

2012.12-2015.01, 广东省生态环境与土壤研究所,污染控制与修复研究中心,研究员,中心主任;

2014.06-2014.10,香港大学, 博士后 (Post-doctoral Fellow);

2013. 02-2014.02,美国爱荷华大学环境工程系, 访问学者(Visiting Scholar);

2010.05-2011.12,香港大学,博士后 (Post-doctoral Fellow);

2009.01-2012.12,广东省生态环境与土壤研究所,副研究员;

2008.03-2008.10,香港理工大学,研究助理 (Research Assistant);

2007.07-2008.12,广东省生态环境与土壤研究所,助理研究员。
社会兼职2015-05-01-2020-04-30,广东省青年科学家协会, 常务理事
2011-11-21-今,广东省生态环境与土壤研究所学术委员会委员,
2011-10-01-2014-09-30,武汉纺织大学客座教授,
2010-01-01-今,广州市白云区和秦新型墙体裁料厂技术指导专家,

专利与奖励曾获奖励和荣誉:
[1] 2014年中组部“****”青年拔尖人才;
[2] 2013年广东省自然科学基金杰出青年基金获得者;
[3]2012年“第三届中国土壤学会优秀青年学者奖”(全国两年一届,一届奖励10名);

[4]2010-2011年度中国科学院广州分院、广东省科学院“优秀青年科技工作者”;

[5]2008 年“广东省科学院优秀青年科技人才”(科研项目奖励,25万元);

[6]2007 年中科学院“优秀毕业生”;

[7]2006年中国科学院“三好学生标兵”;

[8]2005年广东省科学技术一等奖:“二氧化钛光催化环境技术的应用基础研究”;

[9]2005 年中国科学院“刘永龄奖学金特别奖”;

[10]2005年中国科学院“三好学生”。






专利成果( 1 )一种从含铅废弃电子垃圾阴极射线管玻璃中回收利用铅的方法,发明,2013,第 1 作者,专利号: PCT/CN2012/083052
( 2 )一类促进卤代有机物污染土壤脱卤解毒的羟基酸钛配合物及其制备方法和应用,发明,2012,第 1 作者,专利号: **4.3
( 3 )基于粘土的重金属热固化剂及其固化重金属的方法,发明,2012,第 1 作者,专利号: **4.3
( 4 )一种从含铅废弃电子垃圾阴极射线管玻璃中回收利用铅的方法,发明,2012,第 1 作者,专利号: **5.X
( 5 )一种巯基-铁基复合改性粘土及其制备方法,发明,2013,第 1 作者,专利号: **9.1
( 6 )一类促进土壤中多卤代有机物脱卤解毒的铁锰配合物,发明,2007,第 3 作者,专利号: ZL **3.8
( 7 )一种用于铬渣干法固定解毒的解毒方法,发明,2013,第 1 作者,专利号: **5.6
( 8 )一种原位修复重金属六价铬污染土壤的方法,发明,2014,第 3 作者,专利号: **5.2
( 9 )一种铁基生物炭材料、其制备工艺以及在土壤污染治理中的应用,发明,2014,第 4 作者,专利号: **3.8
( 10 )一种原位修复重金属六价铬污染土壤的MFC装置,实用新型,2014,第 3 作者,专利号: **4.8
( 11 )一种原位修复重金属六价铬污染土壤的方法,发明,2014,第 3 作者,专利号: **5.2
( 12 )一种消除污染土壤中五氯酚的厌氧生物降解装置,实用新型,2015,第 2 作者,专利号: **1.3
( 13 )METHOD FOR RECOVERING LEAD FROM LEAD-CONTAINING DISCARDED ELECTRONIC WASTE CATHODE RAY TUBE GLASS,发明,2015,第 1 作者,专利号: US 14/428,517
( 14 )一种铁基-腐殖质复合材料及其在土壤重金属污染治理中的应用,发明,2015,第 1 作者,专利号: **0.9
( 15 )一种铁基生物炭材料、其制备工艺以及在土壤污染治理中的应用,发明,2014,第 4 作者,专利号: PCT/CN2014/090307
( 16 )一种研究根基土壤性质的根袋定植建议装置,实用新型,2014,第 2 作者,专利号: **2.X
( 17 )一种用于铬渣中铬双重固定解毒的玻璃陶瓷化方法,发明,2015,第 1 作者,专利号: **6.6
( 18 )一株能转化重金属的贪铜菌属菌株及其应用,发明,2015,第 4 作者,专利号: **9.5
( 19 )一株硝酸盐依赖亚铁氧化菌株及其应用,发明,2015,第 4 作者,专利号: **7.4
( 20 )河涌污染底泥处理的构筑物装置,发明,2015,第 5 作者,专利号: **2.4

出版信息已发表的SCI论文(*通讯作者):

第一作者及通讯作者:

[1]Tong H, Hu M, Li FB, Liu CS*, Chen MJ, Biochar enhances the microbial and chemical transformation of pentachlorophenol in paddy soil. Soil Biology & Biochemistry, 70 (2014) 142-150.
[2]Chen MJ, Cao F, Li FB, Liu CS*, Tong H, Wu HJ, Hu M, Anaerobic Transformation of DDTs Related to Biogenic Fe(II) and Microbial Community Activities in Paddy Soils. Journal of Agricultural and Food Chemistry, 61 (2013) 2224-2233.
[3]Chen MJ, Shih K, Hu M, Li FB, Liu CS*, Wu WJ, Tong H, Biostimulation of Indigenous Microbial Communities for Anaerobic Transformation of Pentachlorophenol in Paddy Soils of South China. Journal of Agricultural and Food Chemistry, 60 (2012) 2967-2975. ?
[4]Liu CS, Shih K, Sun CX, Wang F, Oxidative degradation of propachlor by ferrous and copper ion activated persulfate. Science of the Total Environment, 416 (2012) 507-512. (IF=3.163)

[5]Liu H, Liang MY, Liu CS*, Gao YX, Zhou JM, Catalytic degradation of phenol in sonolysis by coal ash and H2O2/O3. Chemical Engineering Journal, 153 (2009)131-137. (IF=4.058)

[6]Li FB, Liu CS*, Zhang LJ, et al., The oxidative degradation of 2-mercaptobenzothiazole at the interface of β-MnO2 and water. Journal of Hazardous Materials, 154 (2008) 1098-1105. (IF=4.331)

[7]Liu CS, Li FB, Li XM, et al., The Effect of Iron Oxides and Oxalate on the Photodegradation of 2-Mercaptobenzothiazole. Journal of Molecular Catalysis A: Chemistry, 252 (2006) 40-48. (IF= 3.679)

[8]Liu CS, Shih K, Wei L, Wang F, Li FB, Kinetics and mechanism of propachlor reductive transformation through nucleophilic substitution by dithionite. Chemosphere, 85 (2011) 1438-1443. (IF=3.499)

[9]Liu CS, Wang F, Higgins CP, Shih K, Effect of temperature on oxidative transformation of perfluorooctanoic acid (PFOA) by persulfate activation in water. Separation and Purification Technology, 91 (2012) 95-100. (IF=3.065)

[10]Liu CS, Shih K, Wang F, Oxidative decomposition of perfluorooctanesulfonate in water by permanganate. Separation and Purification Technology, 87 (2012) 95-100. (IF=3.065)

[11]Liu CS, Zhang LJ, Feng CH, Wu CA, Li FB, Li XZ, Relationship between oxidative degradation of 2-mercaptobenzothiazole and physicochemical properties of manganese (hydro)oxides. Environmental Chemistry, 6 (2009) 83-92. (IF=3.035)

[12]Dong J, Li YT, Zhang LJ, Liu CS*, Zhuang Li, Sun LN, Zhou JM, The oxidative degradation of sulfadiazine at the interface of α-MnO2 and water. Journal of Chemical Technology & Biotechnology, 84 (2009) 1848-1853. (IF=2.494)

[13]Chen MJ, Liu CS*, Li FB, Zhai GS, Liu H, Liu CP, Yu WM, Correlations between Soil Geochemical Properties and Fe(III) Reduction Suggest Microbial Reducibility of Iron in Different Soils from Southern China. Catena, 123 (2014) 176-187 (IF=2.482)

[14]Liu CS, Zhang LJ, Li FB, Wang Y, Gao Y, Li XZ, Cao WD, Feng CH, Dong J, Sun LN, Dependence of Sulfadiazine Oxidative Degradation on Physicochemical Properties of Manganese Dioxides. Industrial & Engineering Chemistry Research, 48 (2009) 10408-10413. (IF=2.235)

[15]Liu CS, Shih K, Gao YX, Li FB, Wei L, Dechlorinating transformation of propachlor through nucleophilic substitution by dithionite on the surface of alumina. Journal of Soils and Sediments, 12 (2012) 724-733. (IF=2.107)

[16]Liu CS, Wang YK, Li FB, Chen MJ, Zhai GS., Tao L, Liu CP, Influence of geochemical properties and land-use types on the microbial reduction of Fe(III) in subtropical soils. Environmental Science: Processes & Impacts, 16 (2014) 1938-1947. (IF=2.085)

[17]Liu CS, Wang XQ, Li XJ, Cao WD, Yang JY, Detoxification of Arsenite through Adsorption and Oxidative Transformation on Pyrolusite. CLEAN-Soil, Air, Water, 40 (2012) 1265-1272. (IF=1.838)

[18]Wei L, Li FB, Liu CS*, Liu CP, Chen MJ, Lan Q, Heterogeneous Nucleophilic Transformation of Metolachlor by Bisulfide on the Surface of Alumina. CLEAN-Soil, Air, Water, 41 (2013) 856-864. (IF=1.838)

[19]Liu CS, Gao YX, Li FB, et al., Photodegradation of 2-Mercaptobenzothiazole in the iron oxide/oxalic acid/UVA system. Chinese Journal of Catalysis, 27 (2006) 139-145. (IF=1.552)

[20]Dong J, Zhang LJ, Liu H, Liu CS*, Gao YX, Sun LN, The oxidative degradation of sulfadiazine by different manganese dioxides. Fresenius Environmental Bulletin, 19 (2010) 1615-1622. (IF=0.527)

第二作者:

[21]Zhang LX, Liu CS, Zhuang Li, Li WS, Zhou SG, Zhang JT, Manganese dioxide as alternative cathodic catalyst to platinum in microbial fuel cells. Biosensors and Bioelectronics, 24 (2009) 2825-2829. (IF=6.451)

[22]Tang Y, Liu, CS, Shih K, Beneficial Metal Stabilization Mechanisms in Using Simulated Sludge Incineration Ash for Ceramic Products. Journal of Chemical Technology & Biotechnology, 89 (2013) 536-543. (IF=2.494)

[23]Wang Y, Liu CS, Li FB, Liu CP, Liang JB, Photodegradation of polycyclic aromatic hydrocarbon pyrene by iron oxide in solid media. Journal of Hazardous Materials, 162 (2009) 716-723. (IF=4.331)

[24]Li XJ, Liu CS, Li FB, Li YT, Zhang LJ, Liu CP, Zhou YZ, The oxidative transformation of sodium arsenite at the interface of α-MnO2 and water. Journal of Hazardous Materials, 173 (2009) 657-681. (IF=4.331)

[25]Wang F, Liu CS, Shih K, Adsorption behavior of perfluorooctanesulfonate (PFOS) and perfluorooctanoate (PFOA) on boehmite. Chemosphere, 89 (2012) 1009-1014. (IF=3.499)

[26]Liang CH, Liu CS, Li FB, Wu F, The effect of Praseodymium on the adsorption and photocatalytic degradation of azo dye in aqueous Pr3+-TiO2 suspensions. Chemical Engineering Journal, 147 (2009) 219-225. (IF=4.058)

[27]Wang XG, Liu CS, Li FB, et al., Photodegradation of 2-Mercaptobenzothiazole by using γ-Fe2O3/oxalate system under UV-A irradiation. Journal of Hazardous Materials, 153 (2008) 426-433. (IF=4.331)

[28]Lei J, Liu CS, Li FB, et al., Photodegradation of orange ? in the heterogeneous iron oxide-oxalate complex system under UVA irradiation. Journal of Hazardous Materials, 137 (2006) 1016-1024. (IF=4.331)

第三作者:

[29]Lu X, Shih K, Liu CS, Wang F, Extraction of Metallic Lead from Cathode Ray Tube (CRT) Funnel Glass by Thermal Reduction with Metallic Iron. Environmental Science & Technology, 47 (2013) 9972-9978. (IF=5.481)

[30]Lan Q, Li FB, Liu CS, et al., Heterogeneous Photodegradation of Pentachlorophenol with Maghemite and Oxalate under UV Illumination. Environmental Science & Technology, 42 (2008) 7918-7923. (IF=5.481)

[31]Liu CP, Yu HY, Liu CS, Li FB, Xu XH, Wang Q, Arsenic availability in rice from a mining area: Is amorphous iron oxide-bound arsenic a source or sink? Environmental Pollution, 199 (2015) 95-101. (IF=3.902)

[32]Li FB, Wang XG, Liu CS, et al., Reductive transformation of pentachlorophenol on the interface of subtropical soil colloids and water. Geoderma, 148 (2008) 70-78. (IF=2.509)

[33]Liang CH, Li FB, Liu CS, et al., The enhancement of adsorption and photocatalytic activity of rare earth ions doped TiO2 for the degradation of orange I. Dyes and Pigments, 76 (2008) 488-484. (IF=3.468)

[34]Li FB, Chen JJ, Liu CS, et al., Effect of iron oxides and carboxylic acids on photochemical degradation of bisphenol A. Biology and Fertility of Soils, 42 (2006) 409-417. (IF=3.396)

[35]Xie ZY, Chen NC, Liu CS, Zhou JM, Xu SG, Zheng YJ, Li FB, Xu YL, Synthesis and characterization of ethylenediamine tetraacetic acid tetrasodium salt loaded in microcapsules with slow release properties. Chinese Journal of Chemical Engineering, 18 (2010) 149-155. (IF=0.872)

[36]Li FB, Li XZ, Liu CS, et al., Effect of Oxalate on Photodegradation of Bisphenol A at the Interface of Different Iron Oxides. Industrial & Engineering Chemistry Research, 46 (2007) 781-787. (IF=2.235)

[37]Li FB, Li XZ, Liu CS, et al., Effect of alumina on photocatalytic activity of iron oxides for bisphenol A degradation. Journal of Hazardous Materials, 149 (2007) 199-207. (IF=4.331)

第四及以后作者:

[38]Wang F, Shih K, Lu X, Liu CS, Mineralization Behavior of Fluorine in Perfluorooctanesulfonate (PFOS) during Thermal Treatment of Lime-Conditioned Sludge. Environmental Science & Technology 2013, 47, 2621-2627. (IF=5.481)

[39]Xie ZY, Wu LH, Chen NC, Liu CS, Zheng YJ, Xu SG, Li FB, Xu YL, Phytoextraction of Pb and Cu contaminated soil with maize and microencapsulated EDTA. International Journal of Phytoremediation, 14 (2012)727-740. (IF=1.466)

[40]Wang F, Lu XW, Shih K, Liu CS, Influence of calcium hydroxide on the fate of perfluorooctanesulfonate under thermal conditions. Journal of Hazardous Materials, 192 (2011) 1067-1071. (IF=4.331)

[41]Lan Q, Li FB, Sun CX, Liu CS, Li XZ, Heterogeneous photodegradation of pentachlorophenol and iron cycling with goethite, hematite and oxalate under UVA illumination. Journal of Hazardous Materials, 174 (2010) 64-70. (IF=4.331)

[42]Li FB, Wang XG, Li YT, Liu CS, et al., Enhancement of polycarboxylic acids on abiotic transformation of pentachlorophenol at the interface of iron oxides and water. Journal of Colloid and Interface Science, 321 (2008) 332-341. (IF=3.552)

[43]Dong J, Li FB, Lan CY, Liu CS, Li XM. The Dependence of BPA Photodegradation on the Initial Concentration of Oxalate in the Lepidocrocite-Oxalate Complex System. Journal of Environmental Sciences-China, 18 (2006) 777-782. (IF=1.922)

[44]Zhuang Li, Zhou SG, Wang YQ, Liu CS, Geng S, Membrane-less cloth cathode assembly (CCA) for scalable microbial fuel cells. Biosensors and Bioelectronics, 24 (2009) 3652-3656. (IF=6.451)

[45]Liang CH, Hou MF, Zhou SG, Li FB, Liu CS, et al., The Effect of Erbium on the Adsorption and Photodegradation of Orange I in Aqueous Er3+-TiO2 Suspension. Journal of Hazardous Materials, 138 (2006) 471-478. (IF=4.331)

[46]Hu ZY, Kuang YQ, Wu ZF, Liu CS, Huang NS, Zhu ZY, Luo W, Ouyang T, Environmental quality and its impact on the local economy: A case study from Dongguan, South China. International Journal of Sustainable Development and World Ecology, 12, (2005) 291-299. (IF=1.771)

[47]Huang DY, Liu CP, Li FB, Liu TX, Liu CS, Tao L, Wang Y, Profiles, sources, and transport of polycyclic aromatic hydrocarbons in soils affected by electronic waste recycling in Longtang, south China. Environmental Monitoring and Assessment, 186 (2014)3351-3364. (IF=1.697)

[48]Hu M, Li FB, Lei J, Fang Y, Tong H, Wu WJ, Liu CS, Pyrosequencing revealed highly microbial phylogenetic diversity in ferromanganese nodules from farmland. Environmental Science: Processes & Impacts, 17 (2015) 213-224. (IF=2.085)

发表的中文核心期刊论文列表(*通讯作者):

[1]高原雪,张玉娇,陈柏迪,刘传平,陈迪云,刘承帅*. 基于矿物晶体结构的场地重金属污染土壤结构化固定处置. 生态环境学报, 22 (2013) 1058-1062.

[2]魏岚; 刘传平; 刘承帅*; 李芳柏. 异丙甲草胺在氧化铝界面的亲核置换转化动力学及其影响因素. 生态环境学报, 22 (2013) 129-134.

[3]兰青; 车远; 刘承帅*. 磁赤铁矿/多羧基有机酸体系中五氯酚的异相光化学降解. 生态环境学报, 18 (2009) 1715-1720.

[4]刘承帅; 万洪富; 侯梅芳; 李芳柏; 匡耀求. 我国主要产地膨润土颗粒组成和蒙脱石含量研究. 非金属矿, 28 (2005) 40-43.

[5]刘承帅; 侯梅芳; 吴志峰; 万洪富; 匡耀求. 膨润土理化特性对染料废水脱色效果的影响. 矿产保护与利用, 3 (2004) 12-15.

[6]陈曼佳; 刘承帅; 吴伟坚; 童辉; 李芳柏. 外加营养源作用下砖红壤中五氯酚还原转化的生物化学作用机制. 生态环境学报, 22 (2013) 325-329.

[7]张丽佳; 刘承帅; 吴长安; 刘传平; 李芳柏; 吴启堂. α-MnO2/水界面磺胺嘧啶的氧化降解动力学. 生态环境, 17 (2008) 471-477.

[8]侯梅芳; 刘承帅; 李芳柏; 马北雁; 万洪富. 我国各地膨润土的表面积研究. 湘潭矿业学院学报, 18 (2003) 87-90.

[9]张朝阳; 彭平安; 刘承帅; 宋建中; 毕新慧. 华南电子垃圾回收区农田土壤重金属污染及其化学形态分布,生态环境学报,21 (2012)1742-1748.

[10]雷静; 李芳柏; 刘承帅; 顾明华; 吴启堂. γ-FeOOH-草酸系统中橙黄I的光化学脱色. 环境科学学报, 25 (2005) 1385-1390.

[11]张朝阳; 彭平安; 宋建中; 刘承帅; 彭珏; 卢普相. 改进BCR法分析国家土壤标准物质中重金属化学形态,生态环境学报,21(2012) 1881-1884.

[12]李芳柏; 王旭刚; 周顺桂; 刘承帅. 红壤胶体铁氧化物界面有机氯的非生物转化研究进展. 生态环境, 15 (2006) 1343-1351. a

[13]匡耀求; 黄宁生; 吴志峰; 胡振宇; 孙波; 刘承帅. 大地热流对中国西部环境与生态演变的影响及其研究意义. 地球科学进展, 18 (2003) 22-29.
发表著作( 1 )珠江三角洲土壤质量演变及其调控, Evolvment and Regulation of Soil Quality in the Pear River Delta, 广东科技出版社, 2012-05, 第 5 作者
Environmental Materials and Waste: Resource Recovery and Pollution Prevention, Elsevier, 2016-04, 第 5 作者
Advances in Agronomy: Chapter 5 Iron redox cycling coupled to transformation and immobilization of heavy metals: implications for paddy rice safety in the red soil of South China, Elsevier, 2016-04, 第 3 作者

科研活动已主持完成科研项目:

[1]国家自然科学基金青年基金项目,“土壤铝氧化物界面酰胺类农药的多相水解转化机制” (**),2009.1-2011.12,20万元;(结题)

[2]International Foundation for Science (IFS),“Hydrolysis of Ester Pesticides in the interface of maize rhizosphere soils in south China” (AC/19668),2009.1-2011.12,1.12万美元;(结题)

[3]广东省科学院优秀青年科技人才基金,“华南红壤界面典型农药转化过程与污染修复技术”(粤科优[2008]03),2008.10-,2011.10,25万元;(会审验收:优秀)

[4]广州市科技计划项目,“基于微生物燃料电池的污泥产电技术”(2008Z1-D331),2008.10-2011.10,15万元;(会审验收)

[5]土壤与农业可持续发展国家重点实验室开放基金,“玉米根际土壤有机成分对界面酰胺类农药水解的影响机制”(**),2009.1-2011.12,5万元。(结题)

[6]广州市住房保障办公室委托项目,“南方钢厂保障性住房(一期)项目重金属超标土壤处置”,2012.3-2012.12, 35万元。(技术负责人,负责处置方案编制、工程实施指导监督、验收材料整理)

正主持执行科研项目:

[7]广东省杰出青年基金项目,“基于土壤活性矿物的污染物转化脱毒机制”(S**66)2013.10-2017.10,100万元;

[8]国家自然科学基金面上项目,“土壤氧化铁表面硫的转化过程机制及其重金属脱毒效应” (**),2012.1-2015.12,65万元;

[9]广东省自然科学基金团队项目分专题,“基于铁循环的土壤有机氯还原脱氯过程与原位修复技术”(S**82),2011.7-2015.6,200万元(本专题40万元);

[10]广东省科技计划重点项目,“搬迁钢铁企业污染场地土壤健康风险评价与修复处置关键技术集成”(2012A**), 2013.1-2015.12,35万元;

[11]广东省科技计划项目,“有机氯农药污染土壤高效修复技术与示范”(2011B**),2011.7-2013.6,10万元;

[12]广州市国际合作项目,“重金属污染工业场地土壤修复处置与资源化利用关键技术研究与应用示范”(2013C1-E215),2013.1-2015.06, 35万元。

[13]广东省农业环保与农村能源总站委托项目,“广东省农产品产地重金属设计”,2014.12-2015.12,16万元。





科研项目( 1 )土壤氧化铁表面硫的转化过程机制及其重金属脱毒效应, 主持, 国家级, 2012-01--2015-12
( 2 )基于铁循环的土壤有机氯还原脱氯过程与原位修复技术, 主持, 省级, 2011-07--2015-06
( 3 )搬迁钢铁企业污染场地土壤健康风险评价与修复处置关键技术集成, 主持, 省级, 2013-01--2015-12
( 4 )有机氯农药污染土壤高效修复技术与示范, 主持, 省级, 2012-01--2015-05
( 5 )重金属污染工业场地土壤修复处置与资源化利用关键技术研究与应用示范, 主持, 省级, 2013-07--2015-06
( 6 )基于土壤活性矿物的污染物转化脱毒机制, 主持, 省级, 2013-10--2017-10
( 7 )广东省农产品产地重金属设计, 主持, 研究所(学校), 2014-12--2015-12
( 8 )有机化学品污染农田和农产品质量安全综合防治技术方案, 主持, 国家级, 2015-01--2019-12
( 9 )土壤矿物与重金属相互作用的地球化学机制, 主持, 市地级, 2015-01--2018-01
( 10 )基于土壤氧化铁地球化学过程的重金属环境行为研究, 主持, 部委级, 2015-01--2018-12


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