
性 别:女
职务职称:教授 /博士生导师
联系邮箱:guikuichen@scau.edu.cn
办公电话:020-85280211
办公地址:农学楼412室
教育背景
1992.9-1996.7,湖南湘潭师范学院(现湖南科技大学),生物系生物教育专业,本科/学士;
1996.9-1999.7,中山大学生命科学学院植物生态学专业,研究生/硕士,导师;陈桂珠教授;
2007.9-2013.6,华南农业大学,农学院生态学专业,研究生/博士,导师;骆世明教授
工作履历
1999.7-2003.12,广州市环境卫生研究所,环保工程师;
2004.1-2015.11,华南农业大学,农学院,讲师、副教授
2015.12-现在,华南农业大学,资源环境学院,教授。
学术兼职
广东省生态学会监事,国家自然科学基金委员会项目评审专家,广东省科技厅、广东省农业农村厅和广州市科创委等科技项目的评审专家。
研究领域
研究方向为修复生态学。近年来主要从事土壤重金属污染的控制与生态修复、水土环境重金属与高氯酸盐的生物修复机理等方面的研究工作。
奖励与荣誉
先后获得广东省农业技术推广二等奖、三等奖各2项,中山市科技进步二等奖1项,指导学生竞赛获第十二届“挑战杯”全国大学生课外学术科技作品竞赛二等奖和广东省大学生科技作品竞赛特等奖各1项;
先后获得华南农业大学“教书育人”先进个人 、“优秀共产党员”、“优秀导师”等荣誉称号。
主持项目
1. 国家自然科学基金项目“活性钛调控稻田砷镉归趋的根际生态化学机制”(42577049),2026.1-2029.12;
2. 广东省自然科学基金项目“硫酸氧钛同步固定农田土壤镉砷的机制及其潜在生态风险评估”(2025A1515010725),2025.01-2027.12;
3. 国家重点研发计划项目“重金属复合污染土壤长效超稳成矿化材料制备技术与应用示范”课题“典型复合污染场地智能高效修复装备、工法与示范”(2023YFC3707605),2023.12-2027.11,子课题负责人;
4. 广东省农业厅现代种业产业园项目“广东旱稻新品种选育及绿色轻简高效栽培技术”,〔2022〕637号,2022.6-2023.12;
5. 国家重点研发计划项目“矿区及周边场地砷污染扩散阻控与修复技术”课题“矿区及周边砷污染场地的安全利用方案与技术规范”(2020YFC1807805),2021.1-2024.10,子课题负责人;
6. 广州市科技计划项目“超/高富集植物与蔬菜间套作强化修复重金属复合污染土壤的技术研究与应用”(201903010012),2019.4-2022.3;
7. 国家自然科学基金项目“典型湿地植物修复高氯酸盐的根际生态化学机理”(41877334),2019.1-2022.12;
8. 国家重点研发计划项目“中南镉砷污染农田综合防治与修复技术示范”课题“镉砷超富集植物育苗及中南污染农田植物萃取技术优化与示范”(2017YFD0801501),2017.7-2020.12,57万元,子课题负责人;
9. 广州市科技计划项目“生物质炭缓解广州典型蔬菜重金属污染的关键技术”(201510010260), 2015.1-2018.1;
10. 广东省科技计划项目“生物炭-微肥钝化菜地重金属污染的技术研究与示范”( 2016A020210036),2016.1-2018.12;
11. 广东省科技厅星火项目“观赏盆栽植物发财树残根再生与高效益水培技术推广应用”(2012A020602103),2012.6-2014.4;
12. 广东省科技厅项目“广东省农村垃圾污染的环境影响及其控制技术研究”(2010B031800005) ,2011.1-2013.12;
13. 广东省自然科学基金项目“植物-微生物强化修复高氯酸盐污染的效应及其根际机理”(S2011010001055), 2011.10-2013.10;
14. 国家自然科学基金项目“稻田中高氯酸盐和铬复合污染的生态毒理效应及其机制研究”(30700099),2008.1-2010.12。
学术成果
一、发表论文:
[1] Bi Xiaoyang, Wang Binran, Guo Jingyi, Qin Junhao, Li Huashou, Li Dongqin*, Chen Guikui*, Qiu Rongliang. Ecotoxicological Implications of Agricultural Ecosystem Sedimentary Arsenic Exposure in Benthic Organisms: A Case Study on Apple Snail. Environmental Chemistry and Ecotoxicology, 2025, 7: 1532-1544
[2] Qiu Mingxin, Bi Xiaoyang, Liu Yuanyang, Li Huashou, Li Dongqin*, Chen Guikui*. Toxicology Effects of Cadmium in Pomacea canaliculate:Accumulation, Oxidative Stress,Microbial Community, and Transcriptome Analysis. Int. J. Mol. Sci. 2025, 26, 751
[3] Bi Xiaoyang, Shi Zhifei, Li Dongqin, Zhan Wenhui, Wang Zhixiong, Li Huashou, Zhao Benliang*, Chen Guikui *.Arsenic accumulation and reproductive toxicity in freshwater snail (Pomacea canaliculata). Ecotoxicology and Environmental Safety, 2025(289) :117688
[4] Liu Yanwei, Li Bingqian, Zhou Juanjuan, Li Dongqin, Liu Yuanyang, Wang Yan, Huang Weigang, Ruan Zhepu, Yao Jun, Qiu Rongliang*, Chen Guikui*. Effects of naturally aged microplastics on arsenic and cadmium accumulation in lettuce: Insights into rhizosphere microecology. Journal of Hazardous Materials, 2025, 486: 136988
[5] Huang Weigang, Liu Yanwei, Bi Xiaoyang, Wang Yan, Li Huashou, Qin Junhao, Chen Jingjing, Ruan Zhepu *, Chen Guikui *, Rongliang Qiu. Source-specific soil heavy metal risk assessment in arsenic waste mine site of Yunnan: integrating environmental with biological factors. Journal of Hazardous Materials, 2025, 486 :136902
[6] Bi Xiaoyang,Liu Yanwei,Wang Yan,Li Dongqin,Li Huashou,Qiu Rongliang*,Chen Guikui*. Bioaccumulation and toxicological effects of dietborne arsenic exposure on the apple snail (Pomacea canaliculata). Journal of Hazardous Materials, 2024, 480: 136034
[7] Bi Xiaoyang, Wang Yan, Qiu Aiting, Wu Shengze, Zhan Wenhui, Liu Hui, Li Huashou , Qiu Rongliang*, Chen Guikui *. Effects of arsenic on gut microbiota and its bioaccumulation and biotransformation in freshwater invertebrate. Journal of Hazardous Materials, 2024, 472: 134623
[8] Bi Xiaoyang,Qiu Mingxin,Huang Weigang,Liu Yuanyang,Li Dongqin,Li Huashou,Chen Guikui*, Qiu Rongliang. Survival strategies in arsenic-contaminated environments: Comparative insights from native and exotic aquatic species. Science of the Total Environment, 2024,917:170440
[9] Liu Yanwei,Huang Weigang,Wang Yujue, Wen Qian, Zhou Juanjuan,Wu Shengze,Liu Hui,Chen Guikui*, Qiu Rongliang. Effects of naturally aged microplastics on the distribution and bioavailability of arsenic in soil aggregates and its accumulation in lettuce. Science of the Total Environment, 2024, 914:169964
[10] Bi Xiaoyang,Qiu Mingxin,Li Danni,Zhang Yujing,Zhan Wenhui,Wang Zhixiong,Lv Zhaowei,Li Huashou,Chen Guikui*. Transcriptomic and metabolomic analysis of the mechanisms underlying stress responses of the freshwater snail, Pomacea canaliculata, exposed to different levels of arsenic. Aquatic Toxicology,2024,267:106835
[11] Zhou Juanjuan, Bi Xiaoyang, Wu Leshi, Li Huashou, Qin Junhao, Zhang Zemin, Chen Guikui *, Qiu Rongliang. Efficient mitigation of arsenic accumulation in rice seedlings using in situ formed hydrous titanium oxide from aqueous titanyl amendment. Journal of Environmental Chemical Engineering, 2023,11(3):110001
[12] Liu Yanwei, Zhou Juanjuan, Sun Daolin, Chen Haifeng, Qin Junhao, Chen Guikui*, Qiu Rongliang. Polyaspartic acid assisted-phytoremediation of cadmium-contaminated farmland: Phytoextraction efficiency, soil quality, and rhizosphere microbial community. Science of the Total Environment,2023,862:160736
[13] Zhou Juanjuan, Liu Yanwei, Li Bingqian, Li Huashou, Chen Guikui*, Qiu Rongliang. Coagulation of trace arsenic and cadmium from drinking water using titanium potassium oxalate. npj Clean Water,2023,6(1) : 9
[14] Zhou Juanjuan, Li Dongqin, Li Bingqian, Liu Yanwei, Li Huashou, Chen Guikui*, Qiu Rongliang. Blocking the arsenic transportation from micro-polluted lake water to water spinach by in situ addition of titanyl sulfate. Journal of Cleaner Production, 2023, 385:135686
[15] Zhou Juanjuan, Liu Yanwei, Li Bingqian, Huang Wenyun, Qin Junhao, Li Huashou, Chen Guikui*. Hydrous zirconium oxide modified biochar for in situ remediation of arsenic contaminated agricultural soil.Journal of Environmental Chemical Engineering, 2022, 10(5): 108360
[16] Xiang Xiangmei, Zhou Juanjuan, Lin Shaochen, Zhang Nan, Abulipizi Gulizhabaier, Chen Guikui*, Li Zhanjun*. Dual drive acute lethal toxicity of methylene blue to Daphnia magna by polystyrene microplastics and light. Science of the Total Environment, 2022, 840:156681
[17] Li Dongqin,Li Bingqian,Gao Haishuo,Du Xinyu,Qin Junhao,Li Huashou,He Hongzhi,Chen Guikui*. Removal of perchlorate by a lab-scale constructed wetlandusing achira (Canna indica L.). Wetlands Ecology and Management,2022, 30 : 35–45
[18]Li Dongqin, Lai Changhong, Li Yongtao, Li Huashou, Chen Guikui*, Lu Qin. Biochar improves Cd-contaminated soil and lowers Cd accumulation in Chinese flowering cabbage (Brassica parachinensis L.). Soil & Tillage Research, 2021, 213:105085
[19]Zhou Juanjuan, Du Ningning, Li Dongqin, Qin Junhao, Li Huashou, Chen Guikui*. Combined effects of perchlorate and hexavalent chromium on the survival, growth and reproduction of Daphnia carinata. Science of the Total Environment, 2021, 769: 144676
[20]Lai Changhong, Li Dongqin, Qin Junhao , Li Jia, Yan Zengguang*, Chen Guikui* , Li Huashou. The migration of cadmium and lead in soil columns and their bioaccumulation in a multi-species soil system. Chemosphere, 2021, 262: 127718
[21]Guo Xiongfei,Ji Qian,Rizwan Muhammad, Li Huashou, Li Dongqin, Chen Guikui*. Effects of biochar and foliar application of selenium on the uptake and subcellular distribution of chromium in Ipomoea aquatica in chromium-polluted soils. Ecotoxicology and Environmental Safety, 2020, 206: 111184
[22]Yu Bozhong, Li Dongqin, Zhang Ru, He Hongzhi, Li Huashou, Chen Guikui*. Effects of heavy metals (Cd, Pb, Cu, Zn, and Ni) on Ipomoea aquatica Forsk. growth in soil containing metal-biochar application. Polish Journal of Environmental Studies, 2020, 29(4): 2513-2524
[23]Yu Bozhong, Li Dongqin, Wang Yahui, He Hongzhi, Li Huashou, Chen Guikui*. The compound effects of biochar and iron on watercress in a Cd/Pb–contaminated soil. Environmental Science and Pollution Research, 2020, 27(6):6312-6325
[24]李冬琴,王丽丽,李智鸣,黎华寿,陈桂葵*. 镉胁迫对高低积累型水稻幼苗非蛋白巯基含量的影响. 农业环境科学学报, 2019, 38(12):2697-2704.
[25]Li Dongqin,Wang Lili,Wang Yahui,Li Huashou,Chen Guikui*. Soil properties and cultivars determine heavy metal accumulation in rice grain and cultivars respond differently to Cd stress. Environmental Science and Pollution Research, 2019, 26:14638–14648
[26]汪亚会, 覃雨虹, 马彦蓉, 尚怡静,黎华寿,陈桂葵*. 生物炭配施微肥对菜园土壤有效态重金属含量的影响. 华南农业大学学报, 2018, 39(5): 18-24.
[27]Ou Jieyong, Li Hong, Yan Zengguang *, Zhou Youya, Bai Liping, Zhang Chaoyan, Wang Xuedong, Chen Guikui *. In situ immobilisation of toxic metals in soil using Maifan stone and illite/smectite clay. Scientific Reports, 2018, 8:4618,
[28]赖长鸿,颜增光,廖博文,李松蔚,贺鸿志,黎华寿,陈桂葵*. 皇竹草生物炭的结构特征及其对Cr(Ⅵ)的吸附性能. 农业环境科学学报,2016,35(6):1188-1193
[29]Duan Xiongwei, Xu Meng, Zhou Youya, Yan Zengguang *, Du Yanli, Zhang Lu, Zhang Chaoyan, Bai Liping, Nie Jing, Chen Guikui *, Li Fasheng. Effects of soil properties on copper toxicity to earthworm Eisenia fetida in 15 Chinese soils. Chemosphere, 2016,145:185-192
二、授权专利:
(1) 陈桂葵,王丽丽,黎华寿,李锦开,一种发财树回收再生培育方法, 发明专利,专利号: ZL201410086435.2,2015.6.17
(2) 陈桂葵,周娟娟,董康玉. 一种原位生成碳酸钙微球磷肥回收污水中磷酸盐的方法及其应用,发明专利,专利号:ZL202210093405.9,2023.6.16
(3) 陈桂葵,周娟娟,李冬琴. 草酸钛钾在去除水中重金属中的应用,发明专利,专利号:ZL202210605593.9,2023.9.26
(4) 陈桂葵,王彦,黄伟岗,刘晏维,邱爱婷,贺鸿志,黎华寿,秦俊豪. 一种能够修复重金属污染的萎缩芽孢杆菌 SCAU-H1 及其应用,发明专利,申请号:CN202311874324.3,2023.12.29
(5) 陈桂葵,黄伟岗,刘晏维,毕晓阳,贺鸿志,黎华寿,秦俊豪. 一种河生莱略特氏菌 SCAU-D1 及其修复污染环境的应用. 发明专利,专利号:ZL 202410901697.3,2025.9.19
(6) 陈桂葵,李冬琴,李婉文,黎华寿. 一种利用农业废物去除水体高氯酸盐污染的方法及应用. 发明专利,专利号:ZL 202211266622.X, 2025年8月19日