【个人简介】
孔繁艺,山西吕梁人,2025年9月毕业于浙江大学,主要从事土壤培肥、土壤改良与修复等研究工作。
【教育经历】
2020.9-2025.9,浙江大学,环境与资源学院,农业资源与环境专业,博士
2016.9-2020.6,杭州电子科技大学,材料与环境工程学院,环境工程专业,学士
【工作经历】
2025.10-至今 山西农业大学资源与环境学院 助理研究员
【科研项目】
1. 平原区废旧电器拆解场地及其周边污染区修复技术集成与工程示范,国家重点研发计划重点专项课题,项目编号:2019YFC1803704,结题,参与。
2. 江南坡耕地红壤退化阻控与产能提升综合技术模式与应用,国家重点研发计划重点专项课题,项目编号:2022YFD1900600,在研,参与
3. 土壤三域微生物群落结构与功能的高通量绝对定量方法及应用,国家自然科学基金,项目编号:42277006,在研,参与。
4. 乐清市受污染耕地源解析项目,中央土壤污染防治资金专项,项目编号:ZJPY-2022-11,结题,参与。
【发表论文】
1、Kong F Y, Lu S G*. Effects of microbial organic fertilizer (MOF) application on cadmium uptake of rice in acidic paddy soil: Regulation of the iron oxides driven by the soil microorganisms. Environmental Pollution, 2022, 307: 119447. (中科院2区,IF2022=8.9, JCR Q1, 被引45次).
2、Kong F Y, Zhou J H, Guan D X, Wu N, Lu S G, Wang H Z*. Role of iron manganese plaque in the safe production of rice (Oryza sativa L.) grains: Field evidence at plot and regional scales in cadmium-contaminated paddy soils. Science of The Total Environment, 2023, 903: 166183. (中科院1区,IF2023=10.75, JCR Q1, 被引34次).
3、Kong F Y, Guan D X, Huang P W, Lu S G, Xu J M, Wang H Z*. Unveiling the barriers of Cd translocation from soil to rice: Insights from continuous flooding. Science of The Total Environment, 2024, 946: 174265. (中科院1区,IF2024=8.0, JCR Q1, 被引12次).
4、Kong F Y, Lu S G*. Soil inorganic amendments produce safe rice by reducing the transfer of Cd and increasing key amino acids in brown rice. Journal of Environmental Science, 2024, 136: 121-132. (中科院2区,IF2024=6.3, JCR Q1, 被引11次).
5、Kong F Y, Guan D X, Lu L, Lu S, Xu J M, Wang H Z*. Multi-element amendment reshaped rhizosphere microbiome: A microbially driven Fe/Mn/S synergistic action for Cd immobilization. Environmental Research, 2025, 122985. (中科院2区,IF2025=7.68, JCR Q1, 被引0次).
6、Kong F Y, Ying Y Q, Lu S G*. Heavy metal pollution risk of desulfurized steel slag as a soil amendment in cycling use of solid wastes[J]. Journal of Environmental Sciences, 2023, 127: 349-360. (中科院2区,IF2023=5.9, JCR Q1, 被引33次).
7、Kong F Y, Lu S G*. Prediction model for Cd accumulation of rice (Oryza sativa L.) based on extractable Cd in soils and prediction for high Cd-risk regions of southern Zhejiang Province, China. Environmental Science and Pollution Research, 2023, 30(6): 15964-15974. (中科院3区,IF2023=5.8, JCR Q2, 被引9次).
8、Kong F Y, Lu S G*. Inorganic amendments improve acidic paddy soils: Effects on soil properties, Al fractions, and microbial communities[J]. Chemosphere, 2023, 331: 138758. (中科院2区,IF2023=8.1, JCR Q1, 被引10次).
9、张剑, 孔繁艺, 卢升高. 无机钝化剂对镉污染酸性水稻土的修复效果及其机制[J]. 环境科学, 2022, 43(10): 4679-4686. (中文核心期刊,IF2025=4.768, 被引45次).