一、主要科研项目 (1)国家青年基金,微生物自组装钯金双金属强化氯代污染物还原脱氯及作用机制(5200134),国家级,2021.01-2023.12,主持; (2)博士后面上项目,新型生物膜-膜分离反应器原位回收单质硫(2020M680894),省部级,2020.09-2022.08,主持; (3)天津市企业科技特派员项目,电活性微生物耦合半导体纳米材料强化难降解污染物去除及作用机制(21YDTPJC00700),省部级,2021.10-2022.09,主持; (4)天津市青年基金,“介体生物膜”可控构建及原位定向合成纳米钯机理和调控策略(19JCQNJC07800),省部级,2019.04-2022.03,主持。
二、代表性论文/论著及检索情况 (1) Du Y, Guo J*, Hou Y N*, et al. A light-switch for efficient decolorization of azo dye wastewater based on bacteria-semiconductors interaction[J]. Environmental Science: Nano, 2022. /SCI (2) Sun S, Hou Y N*, Wei W, et al. Perturbation of clopyralid on bio-denitrification and nitrite accumulation: long-term performance and biological mechanism[J]. Environmental Science and Ecotechnology, 2022, 9: 100144. /SCI (3) Ma Jin Feng, Hou Ya Nan*, Guo Jian Bo, et al. Rational design of biogenic PdxAuy nanoparticles with enhanced catalytic performance for electrocatalysis and azo dyes degradation[J]. Environmental Research, 2021: 112086. /SCI (4) Hou Ya Nan, Zhang Bo, Yun Hui, et al. Palladized cells as suspension catalyst and electrochemical catalyst for reductively degrading aromatics contaminants: Roles of Pd size and distribution, Water Research, 2017, 125: 288-297. /SCI (5) Hou Ya Nan, Liu Huan, Han Jing Long, et al. Electroactive Biofilm Serving as the Green Synthesizer and Stabilizer for in Situ Fabricating 3D Nanopalladium Network: An Efficient Electrocatalyst, ACS sustainable chemistry & engineering, 2016, 4(10): 5392-5397. /SCI (6) Hou Ya Nan, Ma Jin Feng, Yang Zhen Ni, et al. Insight into the electrocatalytic performance of in-situ fabricated electroactive biofilm-Pd: The role of biofilm thickness, initial Pd(II) concentration and the exposure time to Pd precursor, Science of The Total Environment, 2020, 742. /SCI (7) Hou Ya Nan; Sun Su Yun; Yang Zhen Ni, et al. Shewanella oneidensis MR-1 self-assembled Pd-cells-rGO conductive composite for enhancing electrocatalysis, Environmental Research, 2020, 184: 0-109317. /SCI (8) Hou Ya Nan; Yang Chunxue; Zhou Aijuan*, et al. Microbial community response and SDS-PAGE reveal possible mechanism of waste activated sludge acidification enhanced by microaeration coupled thermophilic pretreatment, Process Biochemistry, 2018, 64: 1-8. /SCI (9) 孙素云,李宝磊,孔德勇,侯雅男*,马金凤,郭建博,宋圆圆.氯代吡啶类污染物吸附与转化技术研究进展及挑战[J/OL].环境工程:1-12[2022-04-07]. /CSCD |