人物經歷
2008.9—2012.06 華中農業大學 農業資源與環境 學士
2012.9—2017.06 華中農業大學 土壤學 博士(碩博連讀) 導師 黃巧雲
2017.07—至今 湖南農業大學資源環境學院, 神農學者青年I類人才, 副教授, 碩士研究生導師
研究方向
土壤污染界面過程與調控
學術兼職
擔任Frontiers in Soil Science-Soil Biogeochemistry and Nutrient Cycling評審編輯,受邀為Adsorption Science & Technology 專刊客座編輯,擔任Geochimica et Cosmochimica Acta、Environmental Pollution、Chemical Geology、Sciences of the total Environment等20餘個國內外期刊審稿人。擔任國家自然科學基金通訊評審人、《湖南生態科學學報》編委、《農業環境科學學報》優秀審稿人
科研項目
(1) 國家自然科學基金青年基金項目“鎘砷在典型土壤鐵氧化物-有機複合膠體微界面的共吸附機制”41907015,2020-2022,主持,
(2) 中國博士後科學基金面上項目“Cd與四環素在典型土壤礦物、團聚體顆粒上的共吸附機制” 2019M662782,2019-2020,主持
(3) 湖南省教育廳優秀青年基金項目“環洞庭湖區農田土壤重金屬和抗生素固定機制研究” 18B120,2018-2020,主持
(4) 湖南省自然科學基金青年基金“Cd(II)、Pb(II)在典型土壤礦物–微生物互作界面的競爭吸附機制”2018JJ3239,2018-2020,主持
(5) 湖南省生態環境廳環保科研課題“利用鐵氧化物-有機物/微生物複合體同步穩定化複合污染土壤中的鎘砷”,2020.12-2022.12,主持
(6) 湖南農業大學“青年英才I層次”引進人才科研啟動項目。2017-2022,主持
發表論文
2021:
(1) Du H*, Nie N, Rao W, Lu L, Lei M, Tie B. Ferrihydrite–organo composites are a suitable analog for predicting Cd(II)–As(V) coexistence behaviors at the soil solid-liquid interfaces. Environmental Pollution, 2021, 290, 118040
(2) Liu Y, Luo H, Tie B*, Liu S, Lei M, Du H*. The long-term effectiveness of ferromanganese biochar in soil Cd stabilization and reduction of Cd bioaccumulation in rice. Biochar, 2021
(3) Cai T, Liu X*, Zhang J, Tie B, Lei M, Wei X, Peng O, Du H*. Silicate-modified oiltea camellia shell-derived biochar: A novel and cost-effective sorbent for cadmium removal. Journal of Cleaner Production, 2021, 281, 125390
2020:
(1) Du H*, Xu Z, Hu M, Zhang H, Peacock C, Liu X, Nie N, Xue Q, Lei M, Tie B. Natural organic matter decreases uptake of W(VI), and reduces W(VI) to W(V), during adsorption to ferrihydrite, Chemical Geology, 2020, 540, 119567
(2) Liu Y, Tie B*, Peng O, Luo H, Li D, Liu S, Lei M, Wei X, Liu X, Du H*. Inoculation of Cd-contaminated paddy soil with biochar-supported microbial cell composite: A novel approach to reducing cadmium accumulation in rice grains. Chemosphere, 2020, 247, 125850
2019:
(1) Xue Q, Ran Y, Tan Y, Peacock C, Du H*. Arsenite and arsenate binding to ferrihydrite organo-mineral coprecipitate: Implications for arsenic mobility and fate in natural environments. Chemosphere. 2019, 224, 103-110
(2) Du H*, Qu C, Ma M, Lei M, Tie B, Liu X, Wei X, Yang Y. Insights into Pb(II) binding by Fe/Al hydroxide–microbe composite: XAFS spectroscopy and isothermal titration calorimetry study, Chemical Geology, 2019, 510, 84-90
2018:
(1) Du H*, Huang Q, Peacock C, Tie B, Lei M, Liu X, Wei, X. Competitive binding of Cd, Ni and Cu on goethite organo-mineral composites made with soil bacteria. Environmental Pollution, 2018, 243, 444-452
(2) Du H*, Huang Q, Zhou M, Tie B, Lei M, Wei X, Liu X. Sorption of Cu(II) by Al hydroxide organo–mineral coprecipitates: Microcalorimetry and NanoSIMS observations. Chemical Geology, 2018, 499, 165-171
(3) Liu Y, Tie B*, Li Y, Lei M, Wei X, Liu X, Du H*. Inoculation of soil with cadmium-resistant bacterium Delftia sp. B9 reduces cadmium accumulation in rice (Oryza sativa L.) grains. Ecotoxicology and Environmental Safety, 2018, 163, 223-229
(4) Du H, Peacock C*, Chen W, Huang Q*.Binding of Cd by ferrihydrite organo-mineral composites: Implications for Cd mobility and fate in natural and contaminated environments. Chemosphere, 2018, 207, 404-412
(5) Du H, Huang Q, Yang R, Tie B*, Lei M*. Cd sequestration by bacteria–aluminum hydroxide composites. Chemosphere, 2018, 198, 75-82
(6) Du H, Huang Q*, Lei M, Tie B*. Sorption of Pb(II) by nanosized ferrihydrite organo-mineral composites formed by adsorption versus coprecipitation. ACS Earth and Space Chemistry, 2018, 2(6), 556-564
2017:
(1) Du H, Lin Y, Chen W, Cai P, Rong X, Shi Z, Huang Q*. Copper adsorption on composites of goethite, cells of Pseudomonas putida and humic acid. European Journal of Soil Science, 2017. 68, 514-523
(1) Du H, Qu C, Liu J, Chen W*, Cai P, Shi Z, Yu X, Huang Q*. Molecular investigation on the binding of Cd(II) by the binary mixtures of montmorillonite with two bacterial species, Environmental Pollution, 2017, 229, 871-878
2016:
(1) Du H, Chen W*, Cai P, Rong X, Feng X, Huang Q*. Competitive adsorption of Pb and Cd on bacteria–montmorillonite composite. Environmental Pollution, 2016, 218, 168-175
(2) Du H, Chen W, Cai P, Rong X, Chen C, Huang Q*. Cadmium adsorption on bacteria–mineral mixtures: effect of naturally occurring ligands. European Journal of Soil Science, 2016, 67, 641-649
學術會議
(1)The 21th International Symposium on Environmental Biogeochemistry, Wuhan, China, 2013(poster)
(2)第七次全國土壤生物與生物化學學術研討會, 武漢,2014(會議論文)
(3)中國土壤學會土壤化學專業委員會學術研討會, 廣州,2014(會議論文)
(4)SPP1315“Biogeochemical Interfaces in Soil”Leipzig, Germany, 2014(poster)
(5)中國土壤學會土壤化學專業委員會學術研討會,瀋陽,2015(口頭報告)
(6)Goldschmidt2016 Yokohama, Japan,2016(poster)
(7)中國微生物學會地質微生物學成立大會暨第七屆地質微生物學學術研討會,上海,2018.(牆報)
(8)中國土壤學會土壤化學專業委員會年會,貴陽,2018.(口頭報告)
(9)The 15th International Conference on the Biogeochemistry of Trace Elements, Nanjing, China 2019 (oral presentation)
(10)中國土壤學會土壤環境-土壤化學聯合學術年會,重慶,2019.(口頭報告)
(11)全國第三屆“砷”青年論文,長沙,2020(口頭報告)
(12)中國土壤學會土壤化學專業委員會年會,線上,2021.(口頭報告)