杨行健

发布者:资源环境学院发布时间:2021-08-19浏览次数:4894

性  别:

职务职称:副教授/硕士生导师

联系邮箱:xjyang@cau.edu.cn

办公电话:15920300916

办公地址:资环楼1008办公室

教育背景

2011.9-2016.12 华南理工大学/环境科学与工程专业,工学博士学位(1+4硕博连读)。
2015.9-2016.9  华盛顿大学/环境工程专业,联合培养博士。
2010.9-2011.6  华南理工大学环境与能源学院/环境工程专业,硕士(提前攻博)。
2006.9-2010.6  华南理工大学/环境科学专业,理学学士学位。

工作履历

2016.12 - 至 今  华南农业大学/资源环境学院,副教授

学术兼职

1. 广东省土壤学会土壤质量与面源污染专业委员会委员

2. 第十五届全运会和第十二届残疾人运动会水环境质量保障专家委员会委员

3. 广东省农业农村厅乡村振兴战略项目评审专家

4. Carbon Research期刊青年编委、优秀审稿人;农业环境科学学报审稿专家

5. Environmental Science & Technology、Environmental International、Journal of Hazardous Materials、Journal of Hydrology等期刊特邀审稿人

研究领域

主要从事:(1)新兴有机污染物(激素、抗生素、溴代阻燃剂等)在环境中的迁移转化过程;(2)农业面源污染监测及防控等方面的研究工作。

奖励与荣誉

2019-2020年年度“优秀本科毕业生导师”荣誉称号
2018年度“千山万村环保科普行动”优秀指导教师
2017年度华南农业大学资源环境学院“第三届青年教师教学基本功比赛”二等奖

主持国家自然科学基金面上、青年基金各1项,国家重点研发计划子课题3项、广东省重点领域研发计划1项,参与美国农业部基金项目、国家重点研发计划等10余项,主持并参与横向科研项目10余项。论文发表于GeodermaJournal of Hazardous MaterialsChemical Engineering Journal等环境、农业及界面化学主流期刊上。发表论文SCI论文50余篇,申请/授权专利11项,编制/发布地方、团体标准8项,主/参编著作10本。长期从事新污染物、养分、溶解性有机质(DOM)等在环境中的迁移转化及防控方面的研究工作。主要的学术贡献包括:(1)系统研究了中国主要农区土壤、广州市典型农区水土泥多介质、区域一级支流新污染物/养分/DOM的种类、时空与跨介质分布规律、赋存影响机制和环境风险;(2)揭示了生活污水、养殖废水全流程工艺中的新污染物-DOM-微生物三元耦合机制;(3)明确了农田水--泥体系中新污染物/养分/DOM的迁移-转化耦合机制,为指导污染风险评价以及农业投入品源头减量提供支持;(4)在全省建设多个面源与新污染物野外观测站点,构建了污染溯源、负荷评估、预测预警模型,评估多地市污染排放量、入水量、负荷时空分布,构建优先治理区域清单,为污染防控、政府决策提供支撑。


主持项目

基金项目:
(1)国家自然科学基金面上项目:典型合成孕激素在中试-田块尺度的迁移转化耦合机制,2022-2025,56万,主持
(2)国家青年科学基金项目:典型合成孕激素在农田-水体系中的光解-迁移机制(No. 41701345),2018-2020,26万,主持
(3)国家重点研发计划项目“农田重金属污染地球化学工程修复技术研发(No. 2017YFD0801000)”,课题四:基于微纳米矿物—重金属界面吸附反应的去除技术研发(No. 2017YFD0801004),2017-2020,57.60万元,主持
(4)农村农业部南方耕地污染防控企业重点实验室开放基金:农田类固醇激素新型有机污染物检测技术开发项目,2020-2021,5万元,主持
(5)农业部项目:环境样品中抗生素和激素的定量分析,2018-2019,5.8万,主持
(6)国家重点研发计划项目“重点行业场地土壤复合污染过程及生态效应(No. SQ2019YFC180070)课题2:场地土壤复合污染过程及其与物化-生物耦合作用机制”,2020-2023,500万元,课题骨干
(7)NSFC-广东联合基金集成项目:赤红壤区耕地质量演变机理与提升机制(No. U1901601)课题4:赤红壤区耕地污染机理与质量影响机制,2020-2023,200万元,课题骨干
(8)国家自然科学基金面上项目:土壤蚓触圈生境中合成孕激素吸附迁移与生物降解的强化耦合机制(No. 41877063),2019-2022,62万,参与(排名第二)
(9)国家重点研发计划项目“农田有毒有害化学/生物污染与防控机制研究(No. 2016YFD0800200)”,课题一:农业主产区有毒有害化学/生物污染物的农田污染特征与源解析(No. 2016YFD0800201),任务:黄淮海潮土区和珠三角地区设施菜地有毒有害化学/生物污染物的农田污染特征与源解析,2016-2020,217.91万元,参与
(10)国家重点研发计划“农田有毒有害化学/生物污染防控技术与产品研发(No. 2017YFD0800700)”,课题四:农田酞酸酯、抗生素和激素等污染的综合调控防治技术与产品研发(No. 2017YFD0800704),2017-2020。任务:基于土壤生物与生物电流强化的抗生素/激素生物降解技术研发,2017-2020,38.75万元,参与
(11)国家“十二五”863资源环境技术领域重大项目:“污染土壤修复技术及示范(一)”—课题“电子垃圾拆解场地重金属-有机污染物协同控制与生物修复技术与示范”(No. 2012AA06A203)-子课题“电子垃圾拆解场地重金属-有机物复合污染土壤同步洗脱去除技术研究”,2012-2015,参加(已结题)
(12)广东省自然科学杰出青年基金项目:电子垃圾拆解区稻田土壤中多溴联苯醚还原脱溴与矿化脱毒的过程耦合与调控机制(No. 2015A030306005),2015-2019,参加(已结题)
科技计划:
(13)广东省科技计划项目社会发展领域项目:电子垃圾拆解区重金属-有机物复合污染场地土壤同步洗脱修复技术研究(No. 2014A020216004),2015-2017,参加(已结题)
(14)广州市科技计划珠江科技新星专项:稻田土壤中多溴联苯醚加速降解的作用机制及优化调控(No.2013J2200007),2013-2016,参加(已结题)
(15)广东省自然科学杰出青年基金项目:电子垃圾拆解区稻田土壤中多溴联苯醚还原脱溴与矿化脱毒的过程耦合与调控机制(No. 2015A030306005),2015-2019,参加(已结题)
省市课题:
(16)广州市农田面源污染监测与评估,2021-2022,158万,参加(排名第三)
(17) 广东省农田土壤修复治理技术研究,2017-2018,30万,参加(排名第二)
(18)大田尺度在线监测数据标准化方法构建,2020,15万,参加(排名第三)
(19)广州市农田化肥面源污染监测评估,2020-2021,97.64万,参加(排名第三)
(20)广州市农业局项目:广州市农田化肥面源污染环境风险评估,2018-2019,280万,参加
(21)广东省农业厅项目:耕地保护质量提升项目,2017-2019,135万,参加(排名第五)
横向课题:
(22)广东农垦耕地地力指数保险创新试点耕地地力检测项目,2019-2020,11万,主持
(23)厌氧沼渣制备生物炭回收氮磷缓释型高值养分工艺探索,2021-2022,58万,主持
(24)梅州大埔县耕地地力指数保险创新试点耕地地力检测项目,2019-2020,14万,主持
(25)广东省东莞市中堂镇潢涌村农民公寓二期地块场地环境初步调查,2019,43.8万,主持
(26)一体化沼液脱盐除臭及低耗无害化技术研究与示范,2021-2022,80万,参加
(27)梅州市大埔县受污染耕地安全利用试点项目,2020,22万,参加(排名第三)
(28)香港前田-中国建筑联营公司823A地块项目,2018,参加
(29)广州开发区产业发展专项研究招标项目:广州开发区新能源与节能环保产业集群研究,2013,参加
(30)广州市电子电器废物回收处置现状调查研究,2010-2011,参加
(31)广州新之地环保产业有限公司项目:生态浮床创新实验研究,2010-2011,参加
(32)广州地铁二、八号延长线环境噪声监测,2010,参加

学术成果

一、发表论文:

(1)Weisong Chen, Lingshuo Hu, Jiguang Li, Xueming Lin*, Xingjian Yang**. Spatiotemporal heterogeneity, source apportionment, and transformation-driven partitioned control of nitrate pollution in urban river network: Isotopic and Bayesian insights from the Liuxi-Baini River Basin, Journal of Environmental Chemical Engineering, 2026, 14(2), 121552.

(2)Hang Lin, Wei Guan, Yiwen Xiao, Yuyang Li, Xingjian Yang*. Tracing multi-pathway transport of progestins, glucocorticoids, and antiprogestin in pilot-scale soil-water systems: Surface runoff, interflow, and leachate dynamics during simulated rainfall events, Environmental Research, 2026, 294, 123917.

(3)Yang Qiu, Lijun Liu, Caifei Xu, Bo Zhao, Hang Lin, He Liu, Weixuan Xian, Han Yang, Rui Wang*, and Xingjian Yang**, Farmland’s silent threat: Comprehensive multimedia assessment of micropollutants through non-targeted screening and targeted analysis in agricultural systems, Journal of Hazardous Materials, 2024, 476, 135064.

(4)Hang Lin, Liangzhuo Zhou, Shudong Lu, Han Yang, Yongtao Li, Xingjian Yang*, Occurrence and spatiotemporal distribution of natural and synthetic steroid hormones in soil, water, and sediment systems in suburban agricultural area of Guangzhou City, China, Journal of Hazardous Materials, 470(2024), 134288.

(5)Xiuping Jiang, Zhongye Xue, Weisong Chen, Manxin Xu, He Liu, Jiahao Liang, Lu Zhang, Yan Sun, Churong Liu*, Xingjian Yang**, Biotransformation kinetics and pathways of typical synthetic progestins in soil microcosms, Journal of Hazardous Materials, 446(2023), 130684.

(6)Xingjian Yang, Rui Wang, Zhili He, Xiong Dai, Xiuping Jiang, He Liu, Yongtao Li, Abiotic transformation of synthetic progestins in representative soil mineral suspensions, Journal of Environmental Sciences, 127(2023), 375-388.

(7)Huayi Chen1, Xingjian Yang1, Yonglin Liu, Xueming Lin, Jinjin Wang, Zhen Zhang, Na Li, Yongtao Li, Yulong Zhang*, KOH modification effectively enhances the Cd and Pb adsorption performance of N-enriched biochar derived from waste chicken feathers, Waste Management, 2021, 130, 82-92.(中科院2区)

(8)Yonglin Liu, Huayi Chen, Qiming Mo, Xingjian Yang, Jinjin Wang, Xueming Lin, Dongfang Shang, Yongtao Li*, Yulong Zhang*, Removal of cadmium and tetracycline by lignin hydrogels loaded with nano-FeS: Nanoparticle size control and content calculation, Journal of Hazardous Materials, 2021, 416, 126262.(中科院1区).
(9)Xueming Lin1, Xingjian Yang1, Zheng Hu, Yulong Zhang, Jinjin Wang, Zhen Zhang, Zhongqiu Zhao, Yongtao Li*, Highly effective removal of bisphenol A by greigite/persulfate in spiked soil: Heterogeneous soil/water system balance and degradation, Chemosphere, 2021, 280, 130655. (中科院2区).
(10)Zhen Zhang, Kun Zhang, He Ouyang, Marcus K.K. Li, Zifeng Luo, Yongtao Li, Chengyu Chen, Xingjian Yang, Zhiwei Shao, Dickson Y.S. Yan, Simultaneous PAHs degradation, odour mitigation and energy harvesting by sediment microbial fuel cell coupled with nitrate-induced biostimulation, Journal of Environmental Management, 2021, 284, 112045.(中科院2区).
(11)Xiong Dai1, Xingjian Yang*,1, Bihai Xie, Jiajia Jiao, Xiuping Jiang, Chengyu Chen, Zhen Zhang, Zhili He, Hang Lin, Weisong Chen, Yongtao Li*, Sorption and desorption of sex hormones in soil- and sediment-water systems: A review, Soil Ecology Letters, 2021, https://doi.org/10.1007/s42832-020-0074-y.(中国科技期刊国际影响力提升计划)
(12)Xingjian Yang*,1, Xinxing He1, Hang Lin, Xueming Lin, Juncheng Mo, Chengyu Chen, Xiong Dai, Dehua Liao, Chengzhen Gao, Yongtao Li*, Occurrence and distribution of natural and synthetic progestins, androgens, and estrogens in soils from agricultural production areas in China, Science of the Total Environment, 2021, 751, 141766. (中科院1区Top期刊,JCRQ1)
(13)Jing Li, Xingjian Yang, Zhen Zhang, Harry Xiao, Weimin Sun, Weilin Huang, Yongtao Li, Chengyu Chen*, Yan Sun, Aggregation kinetics of diesel soot nanoparticles in artificial and human sweat solutions: Effects of sweat constituents, pH, and temperature, Journal of Hazardous Materials, 2021, 403, 123614.(中科院1区top期刊).
(14)Xingjian Yang*, Hang Lin1, Xiong Dai, Zhen Zhang, Beini Gong, Zheng Hu, Xiuping Jiang, Yongtao Li*, Sorption, transport, and transformation of natural and synthetic progestins in soil-water systems, Journal of Hazardous Materials, 2020, 384, 121482.(中科院1区Top期刊,JCRQ1)
(15)Xinxing He, Xiaobo Li, Tao Liu, Xingjian Yang, Jianbo Cao, Libin Tao, Xiaoling Wang, Zhanfeng Liu, Qing Yao, Yongtao Li, Xiaoming Zou, Yuanhu Shao, Jianxiong Li, Weixin Zhang, Shenglei Fu*, Earthworms negate the adverse effect of arbuscular mycorrhizae on living bacterial biomass and bacterial necromass accumulation in a subtropical soil, Soil Biology and Biochemistry, 2020, 151, 108052.(中科院1区top期刊).
(16)Kun Zhang, Zhen Zhang, Zheng Hu, Feifan Zeng, Chengyu Chen, Xingjian Yang, Yongtao Li*, Bacterial community composition and function succession under aerobic and anaerobic conditions impacts the biodegradation of 17β-estradiol and its environmental risk, 2020, 267, 115155.(中科院1区)
(17)Xingjian Yang1,⁎, Xiong Dai1, Yulong Zhang, Hang Lin, Jinjin Wang, Zhili He, Yongtao Li⁎, Sorption, desorption, and transformation of synthetic progestins in soil and sediment systems,Geoderma, 362 (2020), 114141. (中科院1区Top期刊,JCRQ1)
(18)Xingjian Yang1,*, Hang Lin1, Yulong Zhang, Zhili He, Xiong Dai, Zhen Zhang, Yongtao Li*, Sorption and desorption of seven steroidal synthetic progestins in five agricultural soil-water systems, Ecotoxicity and Environmental Safety, 2020, 196, 110586.(中科院2区Top期刊,JCRQ1)
(19)Xingjian Yang, Haoqi Zhao, David. M. Cwiertny, Edward. P. Kolodziej*, Sorption and transport of trenbolone and altrenogest photoproducts in soil-water systems, Environmental Science: Processes & Impacts, 2019, 21, 1650-1663.(JCRQ1,中科院3区期刊,期刊封面论文)
(20)Philip. T. Kenyon, Haoqi Zhao, Xingjian Yang, Christopher Wu, David. M. Cwiertny, Edward. P. Kolodziej*, Detection and quantification of metastable photoproducts of trenbolone and altrenogest using liquid chromatography–tandem mass spectrometry, Journal of Chromatography A, 2019, 1603, 150-159.(中科院2区期刊,JCRQ1)
(21)Zhen Zhang, Shuran He, Yulong Zhang, Kun Zhang, Jinjin Wang, Ranjing, Xingjian Yang, Zheng Hu, Xiaojing Lin, Yongtao Li*, Spectroscopic investigation of Cu2+, Pb2+ and Cd2+ adsorption behaviors by chitosan-coated argillaceous limestone: Competition and mechanisms, Environmental Pollution, 2019, 254, 112938.(中科院2区Top期刊,JCRQ1)
(22)Kun Zhang, Zheng Hu, Feifan Zeng, Xingjian Yang, Jinjin Wang, Ran Jing, Huanni Zhang, Yongtao Li*, Zhen Zhang*, Biodegradation of petroleum hydrocarbons and changes in microbial community structure in sediment under nitrate-, ferric-, sulfate-reducing and methanogenic conditions, Journal of Environmental Management, 2019, 249, 109425.(中科院2区期刊,JCRQ1)
(23)Xingjian Yang, Guining Lu*, Kaibo Huang, Rui Wang, Xingchun Duan, Chen Yang, Hua Yin, Zhi Dang*, Synergistic solubilization of low-brominated diphenyl ether mixtures in nonionic surfactant micelles, Journal of Molecular Liquids, 2016, 223: 252-260.(中科院2区期刊,JCRQ1)
(24)Xingjian Yang, Guining Lu*, Rui Wang, Yingying Xie, Chuling Guo, Xiaoyun Yi, Zhi Dang*, Competitive solubilization of 4’4′-dibromodiphenyl ether, naphthalene, and pyrene mixtures in Triton X series surfactant micelles: the effect of hydrophilic chains, Chemical Engineering Journal, 2015, 274: 84-93. (中科院1区Top期刊,JCRQ1)
(25)Xingjian Yang, Guining Lu*, Bojia She, Xujun Liang, Rongrong Yin, Chuling Guo, Xiaoyun Yi, Zhi Dang*, Cosolubilization of 4’4′-dibromodiphenyl ether, naphthalene and pyrene mixtures in various surfactant micelles, Chemical Engineering Journal, 2015, 260: 74-82. (中科院1区Top期刊,JCRQ1)
(26)Xingjian Yang, Guining Lu*, Rui Wang, Chuling Guo, Hongliang Zhang, zhi Dang*, Solubilization of 4’4′-dibromodiphenyl ether under combined TX-100 and cosolvents. Environmental Science and Pollution Research, 2015, 22: 3856-3864. (JCRQ2)
(27)Xingjian Yang, Zhi Dang, Fangli Zhang, Mengyao Zou, Xueqin Tao, Guining Lu*, Determination of Decabrominated Diphenyl Ether in Soils by Soxhlet Extraction and High Performance Liquid Chromatography, The Scientific World Journal, 2013, Article ID: 840376.
(28)Rui Wang, Huafeng Li, Xueqin Tao, Ting Tang, Haozhong Lin, Kaibo Huang, Zhiyi Zhong, Xingjian Yang, Zhi Dang, Hua Yin, Guining Lu*, Photodebromination behaviors of polybrominated diphenyl ethers in methanol/water systems: mechanisms and predicting descriptors, Science of the Total Environment, 2017, 595: 666-672. (中科院1区Top期刊,JCRQ1)
(29)Rui Wang, Guining Lu*, Haozhong Lin, Kaibo Huang, Ting Tang, Xiuling Xue, Xingjian Yang, Hua Yin, Zhi Dang*, Relative roles of H-atom transfer and electron transfer in the debromination of polybrominated diphenyl ethers by palladized nanoscale zerovalent iron, Environmental Pollution, 2017, 222: 331-337. (中科院2区Top期刊,JCRQ1)
(30)Binglu Deng, Xingqiu Zhou*, Xingjian Yang, Zhi Dang, Guining Lu*. Removal of polychlorinated biphenyls and recycling of tween-80 in soil washing eluents, Desalination and Water Treatment, 2016, 64: 109-117. (JCRQ2)
(31)Fangli Zhang, Xingjian Yang, Xiulin Xue, Xueqin Tao, Guining Lu*, Zhi Dang, Estimation of n-Octanol/Water Partition Coefficients (log) of Polychlorinated Biphenyls by Using Quantum Chemical Descriptors and Partial Least Squares, Journal of Chemistry, 2013, Article ID: 740548.
(32)张方立,党志,孙贝丽,杨行健,卢桂宁*,郭楚玲,不同淋洗剂对土壤中多氯联苯的洗脱,环境科学研究,2014,27(3):287-294.

(33)王进进, 杨行健, 胡峥, 张玉龙, 徐会娟, 李永涛. 基于风险等级的重金属污染耕地土壤修复技术集成体系研究. 农业环境科学学报, 2019, 38(2): 249-256.

二、代表性专利

(1)流域水体氮污染多指纹耦合精准溯源方法,杨行健,吴国豪,李少敏,陈伟松,申请号:2026106021324.

(2)农田氮磷源头减量过程拦截尾水回用防控方法,杨行健,吴国豪,李少敏,陈伟松,申请号:2026106021413.

(3)农田径流降雨感应式自动精准采样装置及方法,杨行健,吴国豪,李少敏,陈伟松,申请号:202610528415.9.

(4)田块尺度土壤污染物迁移模拟系统及方法,杨行健,林航,丘洋,刘南,陈伟松,许才飞,周良卓,陆沭东,胡凌硕,申请号:2026102807323.

(5)一种微地形可重构的径流与土壤中流路径分离模拟土箱,林航,李予扬,杨行健,丘洋,陈伟松,刘南,张钰萍,伍芷欣,孙傲燃,钟林坤,202610379360X.

(6)一种土壤径流淋溶试验的降雨模拟装置及方法,杨行健,林航,陈伟松,官唯,刘南,李吉广,卢泽涛,李予扬,申请号:2026101536004.

(7)一种用于农田地表径流与淋溶液全量监测的系统及方法,姚凯,杨行健,李辉东,刘和辉,彭双勇,冯耿祥,吴国豪,李智涛,申请号:2025103244735.

(8)一种生态农业径流监测装置,ZL 2023 2 1297941.7,杨行健,胡峥,许迪豪,李辉东,姚凯,张振,林学明。申请日:2023年5月26日。授权日:2024年1月23日


. 代表性标准

(1)《典型大田作物和设施蔬菜土壤有机/生物污染因子监测与评估指标体系》(T/TJSES 001-2021). 天津市环境科学学会团体标准. 2021年6月发布

(2)《农业面源污染监测及测算技术规范 第一部分:种植业面源污染监测技术规范》(DB44/T 2614.1—2025),广东省地方标准,2025年2月13发布

(3)《农业面源污染监测及测算技术规范 第二部分:畜禽养殖业面源污染监测技术规范》(DB44/T 2614.2—2025),广东省地方标准,2025年2月13日发布

(4)《农业面源污染监测及测算技术规范 第三部分:水产养殖业面源污染监测技术规范》(DB44/T 2614.3—2025),广东省地方标准,2025年5月25日发布

(5)《农业面源污染监测及测算技术规范 第四部分:农田大气氮沉降输入量监测技术规范》(DB44/T 2614.4—2025),广东省地方标准,2025年2月13日发布

(6)《农业面源污染监测及测算技术规范 第五部分:农田氮淋溶监测技术规范》,广东省地方标准(DB44/T 2614.5—2025),2025年2月13日发布


. 代表性论著

(1)杨行健。类固醇激素:环境检出、污染过程与风险,长春:吉林大学出版社,2025,ISBN 978-7-5768-5119-9

(2)杨行健,郭聃洋。土壤学,电子科技大学出版社,2024,ISBN 978-7-5770-0561-4

(3)张新明等,农业资源与环境化学分析(编委成员),2023,ISBN 978-7-109-30372-0

(4)何艳, 徐建明等著. 土壤有机/生物污染与防控. 北京:科学出版社. ISBN:978-7-03-067141-7. 2020.12

(8)卢桂宁,杨行健,党志,黄开波,陶雪琴,张金莲,电子垃圾污染土壤修复——重金属和有机物的同步洗脱去除,科学出版社,2019.

(9)著作:广东节能环保产业及促进政策研究. 刘利, 伍健东, 党志/编著(编委成员). —广州: 华南理工大学出版社, 2014-04. ISBN: 978-7-5623-4136-9

(10)著作:环境科学与工程通识教程. 卢桂宁, 党志/编著(编委成员). —北京: 科学出版社, 2017-06, ISBN: 978-7-03-053655-6




学院简介-
本科生培养-
师资队伍-
学生工作

版权所有©华南农业大学资源环境学院学院 备案编号:粤ICP备05008874号

管理登录