殷憲強

殷憲強,男,中共黨員,博士,西北農林科技大學教授,博士生導師。

基本介紹

  • 中文名:殷憲強
  • 畢業院校:西北農林科技大學
  • 學位/學歷:博士
  • 職業:教師
  • 專業方向:生物物理學
  • 任職院校:西北農林科技大學
人物經歷,工作經歷,學習經歷,學術兼職,研究方向,學術成果,研究領域,開設課程,科研項目,學術論文,

人物經歷

工作經歷

2012.01-2018.12副教授,西北農林科技大學資源環境學院
2016.03-2017.03 訪問學者,美國佛羅里達大學農業生物工程系
2005.07-2011.12 講 師,西北農林科技大學資源環境學院
2000.06-2005.06 助 教,西北農林科技大學資源環境學院

學習經歷

2007.10-2009.10 美國佛羅里達大學土壤與水科學系,聯合培養博士
2004.09-2010.06 西北農林科技大學生物物理學專業,理學博士
2000.09-2004.07 西北農林科技大學環境工程專業,工學碩士
1996.09-2000.07 西北農林科技大學農業環境保護專業,農學學士

學術兼職

陝西省第四屆、第五屆地方級自然保護區評審委員會委員,陝西省環境損害司法鑑定機構登記評審專家,西安鐵路運輸中級法院環境資源審判技術專家,美國化學學會會員,中國環境科學學會會員。Chemical Engineering Journal、Journalof Hazardous Materials、Bioresource Technology、Science of the Total Environment、Chemosphere、Industrial & Engineering Chemistry Research、Journal of Soils and Sediments、Environmental Science and Pollution Research、Soil Research、CLEAN-Soil Air Water、EnvironmentalPollutants& Bioavailability、農業工程學報、農業環境科學學報、水土保持學報等國內外期刊審稿人。

研究方向

主要從事納米材料的環境效應,微量元素的遷移轉化,土壤重金屬污染修復,有機污染物的降解等環境污染治理方面的研究。

學術成果

主持國家級科研項目3項目,省部級項目2項,其他項目14項。目前發表SCI、CSCD等論文40餘篇。主要針對重金屬及納米顆粒物在多孔介質中的運移,納米材料對重金屬的環境行為影響,重金屬污染土壤的修復以及有機污染物的降解等方面開展相關研究工作。主要研究明確了物理化學因素對新型納米材料及天然納米顆粒在多孔介質中運移的影響機制及其對多空對鉛、鎘、釩等重金屬環境行為的影響機制;揭示了生物炭對重金屬污染物的去除機理;闡明了鉛在土壤中的形態轉化過程及其影響因素,並提出了合理解決固態鉛製品污染的途徑;明確了苧麻對鉛鎘污染土壤的治理機理,粘土礦物固化劑對土壤重金屬的影響;闡明了土壤酶與植物酶活性與土壤鉛形態之間的關係,揭示了土壤酶學性質與生物酶學性質可用於指示土壤鉛污染、表征土壤質量;探討了放電電漿對二甲基鄰苯二甲酸鹽的降解性能及機理。

研究領域

納米材料的環境行為及效應,微量元素的遷移轉化,土壤重金屬污染修復,有機污染物的降解

開設課程

《環境土壤學》、《土壤污染與防治》、《物理性污染控制》、《固體廢物處理與利用》、《環境化學》、《環境學概論》、《農畜產品安全監測》、《環境監測實驗》、《環境監測與評價》等。

科研項目

1.國家自然科學基金面上項目:異質性介質中ENPs對典型重金屬賦存形態及運移的影響,41877018(2019-2022)
2.十三五國家重點研發計畫子課題:重點區域場地土壤—地下水重金屬遷移擴散示蹤及野外驗證,2018YFC1800605(2018-2022)
3.十三五國家重點研發計畫子課題:中南鎘砷污染耕地安全利用技術與示範,2017YFD0801504(2017-2020)
4.陝西省重點研發計畫一般項目:功能化生物炭對旱區鎘鉛污染土壤的修復研究,2017SF-377(2017-2018)
5.楊凌示範區產學研用協同創新重大項目:改性生物炭對土壤Cd污染治理及肥力提升技術研究, 2017CXY-10(2017-2019)
6.中央高校基本科研業務費專項資金項目:改性生物炭對污染土壤Cd的修復及運移影響,2452017107(2017-2019)

學術論文

[1]Jiang Yanji, Yin Xianqiang*, Guan Duo, JingTao, SunHuimin, Wang Nong, Bai, Jing. Co-transport of Pb(II) and oxygen-content-controllable graphene oxide from electron-beam-irradiated graphite in saturated porous media. Journal of Hazardous Materials, 2019. doi:10.1016/j.jhazmat.2019.05.001
[2]Jiang Yanji, Yin Xianqiang*, Luo Xiuhua, Yu Lin, Sun Huimin, Wang Nong, Mathews Shiny. Sorption of vanadium (V) on three typical agricultural soil of the Loess Plateau, China. Environmental Pollutants and Bioavailability, 2019, 31(1): 120-130.
[3]Yin Xianqiang*, Jiang Yanji, Tan Yuehui, Meng Xiangmin, Sun Huimin, Wang Nong. Co-transport of graphene oxide and heavy metal ions in surface-modified porous media. Chemosphere, 2019, 218:1-13.
[4]Yin Xianqiang*, Yu Lin, Luo Xiuhua, Zhang Zhe, Sun Huimin, Mosa Ahmed Ali, Wang Nong. Sorption of Pb (II) onto <1 μm effective diameter clay minerals extracted from different soils of the Loess Plateau, China. Geoderma, 2019, 337:1058-1066.
[5]Yin Xianqiang*, Meng Xiangmin, Zhang Ya, Zhang Wang, Sun Huimin, Lessl Jason Thomas, Wang Nong. Removal of V (V) and Pb (II) by nanosized TiO2and ZnO from aqueous solution. Ecotoxicology and Environmental Safety, 2018, 164:510-519.
[6]Jiang Yanji, Zhang Xiongxiong, Yin Xianqiang*, Sun Huimin, Wang Nong. Graphene oxide-facilitated transport of Pband Cdin saturated porous media. Science of the Total Environment, 2018, 631–632: 369-376.
[7]Wang Tiecheng, Qu Guangzhou, Yin Xianqiang*, Sun Qiuhong, Liang Dongli, Guo Xuetao, Jia Hanzhong. Dimethyl phthalate elimination from micro-polluted source water by surface discharge plasma: Performance, active species roles and mechanisms. Journal of Hazardous Materials, 2018, 357:279-288.
[8]Wang Tiecheng, Jia Hanzhong, Guo Xuetao, Xia Tianjiao, Qu Guangzhou, Sun Qiuhong, Yin Xianqiang*. Evaluation of the potential of dimethyl phthalate degradation in aqueous using sodium percarbonate activated by discharge plasma. Chemical Engineering Journal, 2018, 346:65-76.
[9]Luo Xiuhua, Yu Lin, Wang Changzhao, Yin Xianqiang*, Mosa Ahmed, Lv Jialong**, Sun Huimin***. Sorption of vanadium (V) onto natural soil colloids under various solution pH and ionic strength conditions. Chemosphere, 2017, 169: 609-617.
[10]Qiao Jiangbo, Sun Huimin**, Luo Xiuhua, Zhang Wang, Mathews Shiny, Yin Xianqiang*. EDTA-assisted leaching of Pb and Cd from contaminated soil. Chemosphere, 2017, 167: 422-428.
[11]Jiang Yanji, Yu Lin, Sun Huimin, Yin Xianqiang*, Wang Changzhao, Mathews Shiny, Wang Nong. Transport of natural soil nanoparticles in saturated porous media: effects of pH and ionic strength. Chemical Speciation & Bioavailability, 2017, 29(1): 186-196.
[12]Yulu Wang, Xianqiang Yin*, Huimin Sun, Changzhao Wang. Transport of Vanadium (V) in Saturated Porous Media: Effects of pH, Ionic-strength and Clay Minerals. Chemical Speciation & Bioavailability, 2016.28(1-4) :7-12.
[13]Xianqiang Yin, Bin Gao, Lena Q. Ma, Guodong Wang, Uttam Kumar Saha, and Huimin Sun. Colloids-facilitated Pb Leaching in Two Shooting Range Soils in Florida. Journal of Hazardous Materials, 2010, 177(1-3):620-625.
[14]Xianqiang Yin, Uttam K. Saha and Lena Q. Ma. Effectiveness of best management practices in reducing Pb-bullet weathering in a shooting range in Florida. Journal of Hazardous Materials, 2010, 179(1-3): 895-900.
[15]El-Banna Mostafa F., Mosa Ahmed*, Gao Bin*, Yin Xianqiang, Wang Hongyu, Ahmad Zahoor. Scavenging effect of oxidized biochar against the phytotoxicity of lead ions on hydroponically grown chicory: An anatomical and ultrastructural investigation. Ecotoxicology and environmental safety, 2018, 170: 363-374.
[16]El-Banna Mostafa F., Mosa Ahmed, Gao Bin*, Yin Xianqiang, Ahmad Zahoor, Wang Hongyu. Sorption of lead ions onto oxidized bagasse-biochar mitigates Pb-induced oxidative stress on hydroponically grown chicory: Experimental observations and mechanisms. Chemosphere, 2018, 208: 887-898.
[17]Ahmad Zahoor*, Gao Bin**, Mosa Ahmed, Yu Haowei, Yin Xianqiang, Bashir Asaad, Ghoveisi Hossein, Wang Shengsen. Removal of Cu(II), Cd(II) and Pb(II) ions from aqueous solutions by biochars derived from potassium-rich biomass. Journal of Cleaner Production, 2018, 180: 437-449.
[18]Wang Shengsen, Zhou Yanxia, Han Shuwen, Wang Nong, Yin Weiqin, Yin Xianqiang, Gao Bin, Wang Xiaozhi, Wang Jun*. Carboxymethyl cellulose stabilized ZnO/biochar nanocomposites: Enhanced adsorption and inhibited photocatalytic degradation of methylene blue. Chemosphere, 2018, 197:20-25.
[19]Wang Shengsen, Zhou Yanxia, Gao Bin, Wang Xiaozhi,Yin Xianqiang, Feng Ke, Wang Jun*. The sorptive and reductive capacities of biochar supported nanoscaled zero-valent iron (nZVI) in relation to its crystallite size. Chemosphere, 2017, 186: 495-500.
[20]Wang Mei, Gao Bin*, Tang Deshan, Sun Huimin, Yin Xianqiang, Yu Congrong. Effects of temperature on aggregation kinetics of graphene oxide in aqueous solutions. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2018, 538: 63-72.
[21]Wang Mei, Gao Bin*, Tang Deshan, Sun Huimin, Yin Xianqiang, Yu Congrong. Effects of temperature on graphene oxide deposition and transport in saturated porous media. Journal of Hazardous Materials, 2017, 331:28-35.
[22]Bai Jing, Sun Huimin, Yin Xiaojie, Yin Xianqiang, Wang Shengsen, Creamer Anne Elise, Xu Lijun, Qin Zhi, He Feng, Gao Bin*. Oxygen-Content-Controllable Graphene Oxide from Electron-Beam-Irradiated Graphite: Synthesis, Characterization, and Removal of Aqueous Lead [Pb(II)]. ACS Applied Materials & Interfaces, 2016, 8(38): 25289-25296.
[23]Huiming Sun, Bin Gao*, Yuan Tian, Xianqiang Yin, Congrong Yu, Yiquan Wang, Lena Ma. Kaolinite and Lead in Saturated Porous Media: Facilitated and Impeded Transport. Journal of Environmental Engineering.2010, 136(11):1305-1308.
[24]Xiaorong Wei*, Mingan Shao, Xiaoli Fu, Göran I. Ågren, Xianqiang Yin. The effects of land use on soil N mineralization during the growing season on the northern Loess Plateau of China. Geoderma, 2011, 160(3-4):590-598.
[25]Liping Qiu*, Xingchang Zhang, Jimin Cheng and Xianqiang Yin. Effects of black locust (Robinia pseudoacacia) on soil properties in the loessial gully region of the Loess Plateau, China. Plant and Soil. 2010, 332(1-2): 207-217.

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