胡振
-
教授
- 性别:男
- 在职信息:在职
- 所在单位:环境科学与工程学院
- 入职时间: 2013-09-16
访问量:
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[1]
Li, Mei.
Efficient stabilization of arsenic migration and conversion in soil with surfactant-modified iron-ma.
Science of The Total Environment ,
917,
2024.
-
[2]
何明玉.
Releasing and Assessing the Toxicity of Polycyclic Aromatic Hydrocarbons from Biochar Loaded with Ir.
ACS Omega,
8,
48104-48112,
2023.
-
[3]
陆佳兴.
Highly efficient phosphorous removal in constructed wetland with iron scrap: Insights into the micro.
JOURNAL OF ENVIRONMENTAL MANAGEMENT ,
347,
2023.
-
[4]
陆佳兴.
Distribution, sources, ecological risk and microbial response of polycyclic aromatic hydrocarbons in.
Environmental Pollution,
338,
2023.
-
[5]
郭子彰.
Enhanced removal of phenanthrene and nutrients in wetland sediment with metallic biochar: Performanc.
Chemosphere,
327,
2023.
-
[6]
姚栋栋.
New insights into the effects of wetland plants on nitrogen removal pathways in constructed wetlands.
Water Research ,
243,
2023.
-
[7]
胡霄进.
Removal performance, biotransformation pathways and products of sulfamethoxazole in vertical subsurf.
Chemosphere,
313,
2023.
-
[8]
胡霄进.
More is better? Constructed wetlands filled with different amount of Fe oxides showed opposite phosp.
Journal of Cleaner Production,
329,
2021.
-
[9]
赵艳辉.
Size-dependent promotion of micro(nano)plastics on the horizontal gene transfer of antibiotic resist.
Water Research ,
244,
2023.
-
[10]
吴海明.
Constructed wetlands for pollution control.
NATURE REVIEWS EARTH & ENVIRONMENT,
4,
218,
2023.
-
[11]
尚振欣.
Removal of amoxicillin from aqueous solution by zinc acetate modified activated carbon derived from .
POWDER TECHNOLOGY Journal,
368,
178,
2020.
-
[12]
刘华清.
Evaluation of substrate clogging in a full-scale horizontal subsurface flow treatment wetland using .
Science of The Total Environment ,
824,
2022.
-
[13]
高航.
Annual study of hydraulic characteristics in surface flow constructed wetlands using hydrogen and ox.
ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH,
27,
29502,
2020.
-
[14]
纪明德.
New insights for enhancing the performance of constructed wetlands at low temperatures.
生物技术BT,
301,
2020.
-
[15]
陈信含.
Enhanced biocatalysis of phenanthrene in aqueous phase by novel CA-Ca-SBE-laccase biocatalyst: Perfo.
Colloids and Surfaces A,
611,
2021.
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[16]
崔乐乐.
Microscale Constructed Wetlands with Different Particulate Matters in their Substrates Exhibit Oppos.
Water,
15,
434,
2023.
-
[17]
胡霄进.
Towards a better and more complete understanding of microbial nitrogen transformation processes in .
Chemical Engineering Journal,
463,
142455,
2023.
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[18]
陆佳兴.
Highly enhanced removal of nutrients and benzo[a]pyrene in a siphon constructed wetland with magneti.
Chemical Engineering Journal,
446,
2022.
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[19]
谢慧君.
Can calcium-based constructed wetlands improve fluoride removal performance?.
Chemical Engineering Journal,
2022.
-
[20]
谢慧君.
Removal performance, biotransformation pathways and products of sulfamethoxazole in vertical subsur.
Chemosphere,
2022.