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朱元荣

【基本信息】

姓名:朱元荣

职称:研究员

研究方向:水环境科学

Emailzhuyuanrong07@mails.ucas.ac.cn

【个人履历】

教育经历

2010/09 - 2013/07,中国环境科学研究院、北京师范大学联合培养,环境科学 工学博士;

2007/09 - 2010/07,中国科学院地球化学研究所、中国科学院研究生院, 地球化学 理学硕士;

主要工作经历

2022/01-至今 国环境科学研究院,环境基准与风险评估国家重点实验室、环保部湖泊污染控制重点实验室 研究员

2017/012021/12 中国环境科学研究院,环境基准与风险评估国家重点实验室、环保部湖泊污染控制重点实验室 副研究员

2016/082016/12中国环境科学研究院,环境基准与风险评估国家重点实验室、环保部湖泊污染控制重点实验室 助理研究员

2013/072016/08 中国环境科学研究院,环境基准与风险评估国家重点实验室、环保部湖泊污染控制重点实验室 博士后

【科学研究】

主要研究领域

营养盐地球化学循环及其生态环境效应

天然有机质地球化学过程及其生态环境效应

湖库富营养化机理及其与典型污染物复合效应

4. 水污染防治及生态修复保护

代表性研究项目

重点研发子课题“黄河流域健康风险物质污染源信息及重点排污口及关键断面识别研究”(2021YFC3200802-01),2021-2024年,任务负责人;

国家自然科学基金—面上项目“湖泊水环境肌醇磷酸盐迁移转化规律及其富营养化效应研究” (41877380), 2019-2022年,主持;

国家科技重大专项“水体污染控制与治理”子课题“基于湖体水质目标的入湖河流氮磷水质控制目标浓度设定方法及氮磷水质浓度目标值研究”(2018ZX07208001-05,2018-2020年,任务负责人;

国家自然科学基金青年基金项目湖泊沉积物有机磷生物有效性与埋藏机制研究” (41903094)2015-2017年,主持;

中国工程科技发展战略四川研究院咨询研究项目“四川省重点流域区域面源污染防控战略与对策建议”(2022JDR0351),2022-2023,任务负责人;

国家重点实验室开放课题“应用酶水解法研究有机磷在沉积物(矿物)-水界面迁移转化”,2014-2016,项目负责人;

地方科研项目“陈家大院泡及其关联泡沼水环境治理工程等两项工程技术咨询”,2022-2023,项目负责人;

地方科研项目“长江流域纳溪段生态保护实施方案”,2018年,项目负责人;

国家自然科学基金重点项目“我国湖泊水环境有机磷生物化学组成、结构与效应研究”(41630645),2017-2021,骨干;

国家自然科学基金-国际(地区)合作与交流项目“溶解有机质在中日典型湖泊中归趋的对比研究”,2012-2015,项目骨干;

国家自然科学基金-重点项目“天然有机质在湖泊富营养化过程中的作用机理:来源与过程识别”,2012-2016,项目骨干。

代表性论文

1Juan Jiang, Yuanrong Zhu*, Zhongqi He et al., Multiple spectral comparison of dissolved organic matter in the drainage basin of a reservoir in Northeast China: Implication for the interaction among organic matter, iron, and phosphorus. Heliyon, 2023: e14797. https://doi.org/10.1016/j.heliyon.2023.e14797

2Feng WY, Wang TK, Zhu YR, Sun FH, John P. Giesy & Wu FC*. Chemical composition, sources, and ecological effect of organic phosphorus in water ecosystems: a review. Carbon Research, 2023,2,12. https://doi.org/10.1007/s44246-023-00038-4.

3Huihui Ma, Yuanrong Zhu*, Juan Jiang, Xiaojie Bing, et al., Characteristics of inorganic and organic phosphorus in Lake Sha sediments from a semiarid region, Northwest China: Sources and bioavailability, Applied Geochemistry, 2022, 137: 105209. doi.org/10.1016/j.apgeochem.2022.105209.

4Bing X, Wang K, Ma H, Liu F, Jiang J, Ding J, Zhu Y * and Wei J * (2022) Geochemical cycling of phosphorus and iron in a typical reservoir in the area of Xiaoxing’an mountains, northeastern China. Front. Environ. Sci. 10:998046. doi: 10.3389/fenvs.2022.998046

5、谢发之,罗锟,朱元荣*,李海斌,李国莲,刘站,李婉璐,蔡格格.南漪湖沉积物磷的赋存形态及对上覆水的影响研究[J].中国环境科学, 2022, 42(11): 5318-5327. DOI:10.19674/j.cnki.issn1000-6923.20220616.024.

6、胡晓燕,朱元荣*,孙福红,陶艳茹,高可伟,马蕙蕙,蒋娟,邴小杰.河流氮磷和水量输入对太湖富营养化的影响机理研究[J].环境科学研究,2022,35(06):1407-1418.DOI:10.13198/j.issn.1001-6929.2021.12.28.

7、高可伟,朱元荣*,孙福红,陈艳卿,廖海清,马蕙蕙,胡晓燕.我国典型湖泊及其入湖河流氮磷水质协同控制探讨[J].湖泊科学,2021,33(05):1400-1414.

8Zhu Y, Liu Z, Luo K, Xie F*, He Z, Liao H, et al. The adsorption of phytate onto an Fe–Al–La trimetal composite adsorbent: kinetics, isotherms, mechanism and implication. Environmental Science: Water Research & Technology. 2021;7(11):1971-84.

9Yanru Tao, Hailei Su, Huixian Li, Yuanrong Zhu, Di Shi, Fengchang Wu, Fuhong Sun*. Ecological and human health risk assessment of antimony (Sb) in surface and drinking water in China, Journal of Cleaner Production, 2021, 318: 128514.

10Zhu Y, Yue X, Xie F. Adsorptive removal of phosphate by a Fe–Mn–La tri-metal composite sorbent: Adsorption capacity, influence factors, and mechanism. Adsorption Science & Technology. 2020;38(7-8):254-270. doi:10.1177/0263617420942709 

11Cunxu Zhang, Hong Chang*, Hongping Wang, Yuanrong Zhu, Xiaoli Zhao, Yong He, Fuhong Sun*, and Fengchang Wu. Spatial and Temporal Distributions of Short-, Medium-, and Long-Chain Chlorinated Paraffins in Sediment Cores from Nine Lakes in China [J]. Environmental Science & Technology 2019 53 (16), 9462-9471. DOI: 10.1021/acs.est.8b07296

12Fazhi Xie, Zhili Dai, Yuanrong Zhu*, Guolian Li, Haibin Li, Zhongqi He, Shixiong Geng, Fengchang Wu. Adsorption of phosphate by sediments in a eutrophic lake: kinetics, thermodynamics and their influence by DOM [J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2019, 562: 16-25. doi.org/10.1016/j.colsurfa.2018.11.009

13Yuanrong Zhu, Weiying Feng, Shasha Liu, Zhongqi He, Xiaoli Zhao*, Yong Liu, Jianyang Guo, John P. Giesy, Fengchang Wu. Bioavailability and preservation of organic phosphorus in lake sediments: Insights from enzymatic hydrolysis and 31P nuclear magnetic resonance [J]. Chemosphere, 2018, 211: 50-61.

14Weiying Feng, FengchangWu, Zhongqi He, Fanhao Song, Yuanrong Zhu*, John P.Giesy, YingWang, Ning Qin, Chen Zhang, Haiyan Chen, Fuhong Sun. Simulated bioavailability of phosphorus from aquatic macrophytes and phytoplankton by aqueous suspension and incubation with alkaline phosphatase [J]. Science of the Total Environment 616–617 (2018) 1431–1439.

15Shasha Liu, Yuanrong Zhu, Leizhen Liu, Zhongqi He, John P. Giesy, Yingchen Bai, Fuhong Sun, Fengchang Wu. Cation-induced coagulation of aquatic plant-derived dissolved organic matter: Investigation by EEM-PARAFAC and FT-IR spectroscopy [J]. Environmental Pollution, 2018, 234: 726-734.

16Shasha Liu, Tianhui Zhao, Yuanrong Zhu et al. Molecular characterization of macrophyte-derived dissolved organic matters and their implications for lakes [J]. Science of The Total Environment, 2018, 616-617: 602-613.

17Wenjing Guo, Yuanrong Zhu, Zhiyou Fu, Ning Qin, Hao Wang, Shasha Liu, Yan Hu, Fengchang Wu*, John P. Giesy. Influences of environmental factors on biomass of phytoplankton in the northern part of Tai Lake, China, from 2000 to 2012 [J]. Environmental Monitoring and Assessment, 2017, 189:608. https://doi.org/10.1007/s10661-017-6318-3.

18Yuanrong Zhu, Fengchang Wu*, Zhongqi He, et al. Characterization of Organic Phosphorus in Lake sediments by Sequential Fractionation and Enzymatic Hydrolysis [J]. Environmental Science & Technology, 2013, 47: 7679-7687. (TOP期刊)

19Yuanrong Zhu, Fengchang Wu*, Zhongqi He, et al. Influence of Natural Organic Matter on the Bioavailability and Preservation of Organic Phosphorus in Lake Sediments [J]. Chemical Geology, 2015, 397: 51-60. (TOP期刊)

20Yuanrong Zhu, Fengchang Wu*, Yong Liu, Yuan Wei, Shasha Liu, Weiying Feng, John P. Giesy. Microbial biomass and community composition involved in cycling of organic phosphorus in sediments of Lake Dianchi, Southwest China. Geomicrobiology Journal, 2017, 34(3): 249-260. DOI: 10.1080/01490451.2016.1184726

21Shasha Liu, Yuanrong Zhu*, Fengchang Wu*, Wei Meng, Zhongqi He, John P. Giesy. Characteristics of plant-derived carbon and phosphorus in lakes by sequential fractionation and NMR spectroscopy [J]. Science of the Total Environment, 2016(566-567): 1398-1409. DOI: 10.1016/j.scitotenv.2016.05.214

22Shasha Liu, Yuanrong Zhu*, Wei Meng*, Zhongqi He, Weiying Feng, Chen Zhang, John P. Giesy. Characteristics and degradation of carbon and phosphorus from aquatic macrophytes in lakes: insights from solid-state 13C NMR and solution 31P NMR spectroscopy [J]. Science of the Total Environment, 2016, 543: 746-756. DOI: 10.1016/j.scitotenv.2015.11.080.

23Yuanrong Zhu, Fengchang Wu*, Weiying Feng, Shasha Liu, John P. Giesy. Interaction of alkaline phosphatase with minerals and sediments: activities, kinetics and hydrolysis of organic phosphorus [J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2016, 495:46-53. DOI: 10.1016/j.colsurfa.2016.01.056.

24Zhu, Y., F. Wu*, and Z. He. 2015. Bioavailability and preservation of organic phosphorus in freshwater sediments and its role in lake eutrophication. Pages 275-293 in Z. He and F. Wu, eds. Labile Organic Matter-Chemical Compositions, Function, and Significance in Soil and the Environment. Soil Sci. Soc. Am., Madison, WI. PP, 275-293. DOI: 10.2136/sssaspecpub62.2014.0044.

25Yuanrong Zhu, Runyu Zhang, Fengchang Wu*, et al. Phosphorus fractions and bioavailability in relation to particle size characteristics in sediments from Lake Hongfeng, Southwest China [J]. Environmental Earth Sciences, 2013, 68(4): 1041-1052. DOI: 10.1007/s12665-012-1806-9

26Weiying Feng, Yuanrong Zhu*, Fengchang Wu, Zhongqi He, chen Zhang, John P. Giesy. Forms and Lability of Phosphorus in Algae and Aquatic Macrophytes Characterized by Solution 31P NMR Coupled with Enzymatic Hydrolysis. Sci. Rep. 6, 37164; doi: 10.1038/srep37164 (2016).

27Shasha Liu, Yuanrong Zhu*, Fengchang Wu*, Wei Meng, Hao Wang, Zhongqi He, Wenjing Guo, Fanhao Song, John P. Giesy. Using solid 13C NMR coupled with solution 31P NMR spectroscopy to investigate molecular species and lability of organic carbon and phosphorus from aquatic plants in Tai Lake, China. Environ Sci Pollut Res, 2016, 24, 1880–1889. Doi: 10.1007/s11356-016-7954-9.

28Weiying Feng, Yuanrong Zhu*, Fengchang Wu*, Wei Meng, John P. Giesy, Zhongqi He, Mingle Fan. Characterization of Phosphorus Forms in Lake Macrophytes and Algae by Solution 31P Nuclear Magnetic Resonance Spectroscopy [J]. Environmental Science and Pollution Research, 2016, 23(8): 7288-7297. DOI: 10.1007/s11356-015-5913-5.

29、冯伟莹, 朱元荣*, 张琛, 刘沙沙, 吴丰昌. 31P-NMR分析湖泊水生植物和藻类有机磷的方法有机及形态研究[J]. 中国环境科学, 2016, 36(2): 562-568.

30、冯伟莹, 朱元荣*, 吴丰昌, 张旭, 张琛. 太湖水体溶解性有机质荧光特征及其来源解析[J]. 环境科学学报, 2016, 36(2): 475-482.

31、于茜, 朱元荣*, 王焕华, 汤智, 宫蓓蓓, 谭伟强*. 铜绿微囊藻氨基酸释放特征及其对有机质组成贡献[J]. 环境科学研究, 2016, 29(3): 360-367.

32、朱元荣,吴丰昌,林樱. 基于紫外吸收光谱积分法分析蛋白质浓度-以碱性磷酸酶为例[J]. 光谱学与光谱分析, 2013, 33(7): 1845-1849. (SCI, EI)

33、朱元荣,张润宇,吴丰昌. 滇池沉积物中氮的地球化学特征及其对水环境的影响[J]. 中国环境科学,201131(6): 978~983.

34、朱元荣,张润宇,吴丰昌. 滇池沉积物生物有效性氮和磷的分布及相互关系[J]. 环境科学研究,2010,238):993-998.

35、朱元荣,张润宇,吴丰昌,傅平青. 贵州红枫湖沉积物生物可利用磷分布特征及其与粒的关系[J]. 湖泊科学,2010,224):513-520.

36、刘勇,朱元荣,吴丰昌,廖海清,刘燕,施国兰. 滇池沉积物中重金属沉积物记录及其污染风险评估[J]. 生态环境学报,2014, 23(7): 1181-1186.

37、刘勇,朱元荣,弓晓峰,谢发之,廖海清,吴代赦,吴丰昌. 滇池近代富营养化加剧过程的沉积记录[J]. 环境科学研究,201225(11): 1237-1243.

38、谢理,杨浩,渠晓霞,朱元荣,张明礼,吴丰昌. 滇池典型陆生和水生植物水溶性有机质结构特征研究[J]. 环境科学研究,2013, 26(1): 72-79.

39、谢理,杨浩,渠晓霞,朱元荣,鄢元波,张明礼,吴丰昌. 滇池优势挺水植物茭草和芦苇降解过程中DOM释放特征研究[J]. 环境科学,2013, 34(9): 3458-3466.

40、张芹, 朱元荣, 黄志勇. 化学/电化学腐蚀法快速制备超疏水金属铝[J]. 高等学校化学学报, 2009, 30(11)2210-2214.

专著

1 Zhu, Y., F. Wu*, and Z. He. 2015. Bioavailability and preservation of organic phosphorus in freshwater sediments and its role in lake eutrophication. Pages 275-293 in Z. He and F. Wu, eds. Labile Organic Matter-Chemical Compositions, Function, and Significance in Soil and the Environment. Soil Sci. Soc. Am., Madison, WI. PP, 275-293.

【教学工作】

1. 北京航空航天大学,研究生核心专业课,《环境毒理学》,2022-2023.

2.  高可伟. 硕士研究生(2019-2021年). 论文题目:基于GIS太湖入湖河流氮磷控制目标研究(联合培养).

3.  马蕙蕙. 硕士研究生(2020-2022年). 论文题目:湖库沉积物中肌醇磷酸盐来源、赋存特征及其水环境效应初步研究(联合培养).

4.  胡晓燕. 硕士研究生(2020-2022年). 论文题目:湖盆模型(Bathtub)在富营养化湖泊模拟及控制管理应用(联合培养)

5.  蒋娟(2020级硕士,在读)

6.  王阔(2021级硕士,在读)

7.  邴小杰(2020级硕士,联合培养,在读)

8. 谭诒丹(2022级硕士,在读)

【社会工作】

1SCI期刊《Frontiers in Environmental Science》客座编辑;

2、伊春市生态环境智库专家,2022.03-2025.03

3、安徽建筑大学,兼职硕士生导师;

4、中国矿业大学(北京),校外硕士生导师;

5、担任Environment International, Water Research, Journal of Hazardous Materials, Chemosphere, Science of the Total Environment, Chemical Geology, Environmental Pollution 等国际SCI期刊的审稿专家;

6、担任《湖泊科学》、《环境科学学报》等国内核心期刊的审稿专家。

【荣誉奖励】

2021年,中国精品科技期刊顶尖学术论文,领跑者 5000论文(F5000 论文),中国科学技术信息研究所,2021.

2019年,中国环境科学学会,《中国环境科学》期刊,年度十佳论文“31P-NMR分析湖泊植物和藻类有机磷方法优化及形态研究”,通讯作者

2019年 中国环境科学研究院青年英才计划.

2016年获得“刘鸿亮院士奖学金”博士后科研成果二等奖

2015年 获得“刘鸿亮院士奖学金”博士后科研成果一等奖

2013年 获得“中国环境科学研究院优秀博士论文”

【其他】

代表性发明专利:

1、朱元荣,廖海清,孙福红,高可伟,吴丰昌. 一种湖泊营养状态评价方法及其应用. 中国,ZL 202010669233.6 (发明专利,授权)

2、朱元荣, 吴丰昌, 冯伟莹, 符志友, 郭飞, 孙福红, 李会仙. 一种微生物与沉积物相互作用的实验模拟装置及实验方法. 中国, ZL 201710883719.8 (发明专利,授权)

3、朱元荣, 吴丰昌, 冯伟莹, 孙福红, 李会仙, 符志友, 汪浩, 郭文景. 一种沉积物中肌醇磷酸盐与腐殖酸相互作用的分析方法. 中国, ZL 201710670050.4 (发明专利,授权)

4、朱元荣, 吴丰昌, 冯伟莹, 李会仙, 魏源, 孙福红, 陈海燕, 王浩, 郭飞. 一种分析沉积物悬浊液溶的实验装置及其实验方法和应用. 中国, ZL 201710556878.7 (发明专利,授权)

5、朱元荣, 吴丰昌, 冯伟莹, 陈海燕, 郭飞, 魏源, 李会仙, 孙福红, 汪浩. 一种湖泊沉积物中单酯磷组分的提取及磷核磁共振谱图分析方法. 中国, ZL 201710538876.5 (发明专利,授权)

6、朱元荣, 吴丰昌, 郭飞, 廖海清, 李会仙, 孙福红, 魏源, 张琛. 一种水体样品中溶解性可絮凝物质的过滤富集装置. 中国, ZL 2018 1 0522906.8 (发明专利,授权)

7、廖海清; 孙福红; 朱元荣; 郭飞; 吴丰昌 ; 一种大通量底泥柱状采样装置及采样方法, 2019-6-25,中国, ZL201710749381.7 (发明专利,授权)

8、李会仙, 吴丰昌, 朱元荣. 一种麦穗鱼肝脏线粒体膜流动性的活体测试方法. 中国, ZL 201710864369.0 (发明专利,授权)

9、张芹, 朱元荣. 一种金属铝超疏水表面的制备方法.中国, ZL 200910111202[P] 2011-01-12(授权公开号:CN 101532159A  (发明专利,授权)