主要成果
[1]Mufan Gan,Yan Zhang*, Peng Shi, et al.Microplastic pollution in typical seasonal rivers in northern China: temporal variation and risk assessment. Environmental Science: Processes & Impacts. 2023. 25: 1479-1490.
[2]Wenmin Shi,YanZhang*,Chengqian Zhang,et al.Sources and health risks of nitrate pollution in surface water in the WeiheRiver watershed, China. Journal of Mountain Science. 2022. 19: 2226-2240.
[3]Wei Wang,Zhanbin Li,Peng Shi,Yan Zhang*,et al.Vegetation restoration and agricultural management to mitigate nitrogen pollution in the surface waters of the Dan River, China. Environmental Science and Pollution Research. 2021. 28: 47136-47148.
[4]Xin Zhang,Yan Zhang*, Zhilei Bi, et al.Thedeepchallenge ofnitratepollution inriverwater of China. Science of the Total Environment. 2021. 770: 144674.
[5]Zhilei Bi,Yan Zhang*, Xin Zhang,et al.The impact of land use and socio-economic factors on ammonia nitrogen pollution in Weihe River watershed, China.Environmental Science and Pollution Research. 2021.28:17659-17674.
[6]Yan Zhang*, Xin Zhang, Zhilei Bi, et al. The impact of land use changes and erosion process on heavy metal distribution in the hilly area of the Loess Plateau, China. Science of the Total Environment. 2020. 718: 137-305.
[7]Yan Zhang*, Peng Shi, Jinxi Song, et al. Application of nitrogen and oxygen isotopes for source and fate identification of nitrate pollution in surface water: a review. Applied Sciences. 2019. 9:18.
[8]Yan Zhang, Zhilei Bi, Xin Zhang, Yang Yu*, et al. Influence of landscape pattern changes on runoff and sediment in the Dali River watershed on the Loess Plateau of China. Land. 2019. 8:180.
[9]Yan Zhang, Peng Shi, Fadong Li*, et al. Quantification of nitrate sources and fates in rivers in an irrigated agricultural area using environmental isotopes and a Bayesian isotope mixing model. Chemosphere. 2018. 208: 493-501.
[10]Yan Zhang, Fadong Li*, Jing Li, et al. Spatial distribution, potential sources, and risk assessment of trace metal of groundwater in the North China Plain. Human and Ecological Risk Assessment. 2015.21: 726-743.
[11]Yan Zhang, Fadong Li*, Qiuying Zhang, et al. Tracing nitrate pollution source and transformation in surface- and ground- waters using environmental isotopes. Science of the Total Environment. 2014. 490: 213-222.
[12]Yan Zhang, Fadong Li*, Guangshuai Zhao, et al. An attempt to evaluate the recharge source and extent using hydrogeochemistry and stable isotopes, in North Hennan Plain, China. Environmental Monitoring and Assessment. 2014. 186: 5185-5197.
[13]Yan Zhang, Wei Luo*, Junmei Jia, et al. Effects of pig manure containing copper and zinc on microbial community assessed via phospholipids in soils. Environmental Monitoring and Assessment. 2014. 186: 5297-5306.
[14]Yan Zhang, Fadong Li*, Jing Li, et al. Quantitative estimation of groundwater recharge ratio along riparian of the Yellow River. Water Science and Technology. 2013. 68: 2427-2433.
[15]Yan Zhang, Shuai Song, Jing Li, Fadong Li*, et al. Stable isotope composition of rainfall, surface water and groundwater along the lower reach of Yellow River. Journal of Groundwater Science and Engineering. 2013.1(1): 82-88.
[16]Feihe Kong, Jinxi Song,Yan Zhang, et al. Surface Water-Groundwater Interaction in the Guanzhong Section of the Weihe River Basin, China. Groundwater. 2019. 57(4):647-660.
[17]干牧凡,张妍*,等.水生生态系统中微塑料对微藻的生态毒理效应研究进展.生态毒理学报. 2023. 18(1):217-231.
[18]张成前,张妍*,等.渭河流域关中段河水和沉积物中微塑料的污染特征对比研究.环境科学学报. 2023. 43(2):241-253.
[19]干牧凡,张妍*,等.塑料的微生物降解机理研究进展. 2023. 18(6):174-182.
[20]山泽萱,张妍*,等.渭河微塑料污染现状与风险评价.环境科学. 2023. 44(1):231-242.
[21]张文芮,张妍*,等.渭河流域关中段地下水硝态氮来源解析.中国环境科学. 2022. 42(10):4758-4767.
[22]任丽江,张妍*,等.渭河流域关中段地表水重金属的污染特征与健康风险评价.2022.31(1):131-141 .
[23]张鑫,张妍*,等.中国地表水硝酸盐分布及其来源分析.环境科学. 2020. 41(4):1594-1606.
[24]毕直磊,张妍*,等.土地利用和农业管理对丹江流域非点源氮污染的影响. 2020. 34(3):135-141.
[25]张妍,毕直磊,等.土地利用类型对渭河流域关中段地表水硝酸盐污染的影响研究.生态学报. 2019. 39(12):1-8.
[26]张妍,张秋英,等.基于稳定同位素和贝叶斯模型的引黄灌区地下水硝酸盐污染源解析.中国生态农业学报. 2019. 27(3): 484-493.
[27]张妍*,张鑫,等.渭河流域关中段地表水硝酸盐氮污染现状及其源解析.安全与环境学报. 2018. 18(6): 2395-2400.
[28]张妍,李发东,等.华北平原玉米种植中施入氮肥的去向研究.水土保持学报. 2018. 32(4): 210-215.
[29]张妍,李发东,等.华北平原主要河流表层沉积物磷的赋存形态及其污染风险评价.台湾水利. 2018. 66(2): 43-51.
[30]张妍,李发东,等.黄河下游引黄灌区地下水重金属分布及健康风险评估.环境科学. 2013. 34(1):121-128.
[31]张妍,罗维,等.施用鸡粪对土壤与小白菜中Cu和Zn累积的影响.生态学报. 2011.31(12): 3460-3467.
[32]张妍,崔骁勇,等.小白菜对猪粪中高Cu和Zn的富集与转运.环境科学. 2011.32(5): 1482-1488.
[33]张妍,罗维*,等.重金属污染对土壤微生物生态功能的影响.生态毒理学报. 2010.5(3): 305-313.