头像
易志刚
教授
资源与环境学院
行政职务:
技术职称:
教授
最后学位:
博士学位
电    话:
0591-86399141
电子邮箱:
zgyi@fafu.edu.cn
办公地点:
博学楼105
通讯地址:
福州市仓山区上下店路15号 福建农林大学资源与环境学院
邮    编:

您是第10 位访问者

  • 2004.03-2007.03    中科院广州地化研究所有机地球化学国家重点实验室,博士(环境科学)

    1999.09-2002.06    中科院华南植物园生态中心,硕士(生态学)

    1993.09-1997.06    湖南师范大学生物系,学士(生物学)
  • 2015.09至今      福建农林大学资源与环境学院教授

    2014.09-2014.10    德国马普化学研究所、马普生物地球化学研究所,访问学者

    2013.09-2014.08    德国马普化学研究所,访问学者

    2010.12-2015.08    福建农林大学资源与环境学院副教授(2012.09遴选为博导)

    2010.09-2011.08    大连理工大学环境学院,访问学者

    2007.04-2010.11    福建农林大学资源与环境学院讲师(2009.10-2014.10任环境工程系主任; 2010.10遴选为硕导)

    2002.07-2004.02    中国科学院华南植物园任研究实习员

    1997.07-1999.08    湖南省益阳市第十五中学教师

  • 校优秀青年(2010)

    福建省高等学校新世纪优秀人才支持计划(2012)

    校青年五四奖章(2012)

    福建农林大学首届金山学者-青年拔尖人才(2013)

    校优秀教师(2013,2020)

    校优秀共产党员(2016)

    校优秀研究生导师(2021


  • 校级教改项目:“环境有机污染”课程双语教学模式初探(2007-2009)

    校级教改项目:研究型导师制在大学本科阶段的探索与实践(2012-2014)

    校级教改项目:基于科研反哺教学的环境生态学课程教学模式探索(2016-2018)

    校级教改项目:环境科学与工程大学生科研训练基地建设项目(2015-2018)

    教育部产学合作协同育人项目:新时代生态文明建设背景下四色一体的《环境生态学》协同育人体系构建(2019-2020)

    校级教改项目:新时代生态文明建设视域下四色一体的《环境生态学》靶向育人体系构建(2019-2020)

    校级教改重点项目:扎实传承学院四色文化、稳步推进课程实践思政(2021-2023)

  • 研究领域

    痕量气体生物地球化学循环;

    有机污染物生物地球化学循环。

    开授课程

    本科生:环境生态学

    研究生:高级环境化学、生物地球化学

    博士生:环境有机污染化学

    科研项目

    国家自然科学基金面上项目:亚热带优势树种异戊二烯释放对主要全球变化因子交互胁迫的响应(418773262019-202261万)

    国家自然科学基金面上项目:模拟氮沉降条件下森林凋落叶释放单萜烯对土壤微生物和酶活性的影响(414730832015-201895万)

    国家自然科学基金面上项目:土壤羰基硫地气交换及其影响机理研究(411730902012-201566万)

    国家自然科学基金面上项目:茶园有机氯农药和多环芳烃来源及界面迁移研究(409712602010-201240万)

    福建省林业局项目:松林植被恢复和改造模式的固碳增汇潜力研究(2021FKJ01-012021-202310

    福建省高等学校新世纪优秀人才支持计划项目:羰基硫地气交换机理的室内模拟研究(JA120872013-20155万)

    福建省科技计划资助省属高校项目:土壤挥发性有机硫气体产生机理研究(2008F50132008-2010

    福建省教育厅科技项目:有机污染对土壤线虫生态过程影响及指示性线虫筛选(JA070672008-2009

    论文著作

    [1] Yulin Zhu, Xuemei Liu, Xinyue Luo, Ting Wu, Xiong Fang*, Zhigang Yi. Opposing response of biogenic volatile organic compounds and CO2 emission to nitrogen addition during decomposition of two litter species. Plant and Soil, 2025, https://doi.org/10.1007/s11104-025-07215-x

    [2] Zhang, Keran; Chen, Qiaoling; Hong, Youwei; Ji, Xiaoting; Chen, Gaojie; Lin, Ziyi; Zhang, Feng; Wu, Yu; Yi, Zhigang; Zhang, Fuwang; Mazhan Zhuang; Chen, Jinsheng. Elucidating Contributions of Meteorology and Emissions to O3 Variations in Coastal City of China during 2019-2022: insights from VOCs Sources. Environmental pollution, 2024, 366, 125491, https://doi.org/10.1016/j.envpol.2024.125491 . IF=7.6(2023), ISSN: 0269-7491

    [3] Qiang Li, Junchuan Zhang, Jing Ye, Yue Liu, Yi Lin, Zhigang Yi*, Yixiang Wang*. Biochar affects organic carbon composition and stability in highly acidic tea plantation soil. Journal of Environmental Management. 2024, 370, 122803. https://dio.org/10.1016/j.jenvman.2024.122803. IF=8(2023), ISSN: 0301-4797

    [4] Fangyuan Ma, Geye Zhang, Xinyue Luo, Lulu Liao, Hao Wang, Zhigang Yi*. Isoprenoid emissions from Schima superba and Cunninghamia lanceolata: Their responses to elevated temperature by two warming facilities. Science of the Total Environment, 2024, 930, 172669. https://doi.org/10.1016/j.scitotenv.2024.172669. IF=8.2(2023), ISSN: 0048-9697

    [5] Yulin Zhu, Xinghao Tang, Yunpeng Huang,Jing Jiang, Xiong Fang*. Response of Soil CO2 Emission to Addition of Biochar and Dissolved Organic Carbon along a Vegetation Restoration Gradient of Subtropical China. Forests, 2024, 15, 753. https://doi.org/10.3390/f15050753. IF=2.4(2023), eISSN: 0048-9697

    [6] Xiaojie Qian, Qinghua Li*, Hongmei Chen, Lin Zhao, Fei Wang, Yushu Zhang, Jinbo Zhang, Christoph Müller, Zhigang Yi*. Enhancing Soil Nitrogen Retention Capacity by Biochar Incorporation in the Acidic Soil of Pomelo Orchards: The Crucial Role of pH. Agronomy, 2023, 13(8), 2110; https://doi.org/10.3390/agronomy13082110. ISSN 2073-4395IF=3.3(2023)

    [7] Fangyuan Ma, Geye Zhang, Hao Guo, Lulu Liao, Xingran Huang, Zhigang Yi*. Transient interaction effects of temperature and light intensity on isoprene and monoterpene emissions from Schima superba and Phoebe bournei. Science of the Total Environment, 2023, 894, 165082 https://doi.org/10.1016/j.scitotenv.2023.165082. IF=8.2(2023), ISSN: 0048-9697

    [8] Hao Guo, Linyi Chen, Yixiang Wang, Qinghua Li, Zhigang Yi*. Combined application of biochar and Mg fertilizer alleviated soil acidification, increased microbial community diversity and improved tea quality in southern strongly acidic tea garden. Journal of Soils and Sediments, 2023, 23, 2798-2815. https://doi.org/10.1007/s11368-023-03495-x.IF=2.8(2023), ISSN: 1439-0108

    [9] Zhaobin Mu, Joan Llusià*, Jianqiang Zeng, Yanli Zhang, Dolores Asensio, Kaijun Yang, Zhigang Yi, Xinming Wang* and Josep Peñuelas. An Overview of the Isoprenoid Emissions From Tropical Plant Species. Frontiers in Plant Science, 2022, 13, https://doi.org/10.3389/fpls.2022.833030

    [10] Yulin Zhu, Xueping Lin, Yunpeng Huang, Xingtao Tang, Xiong Fang*, Zhigang Yi. Drought Offsets the Potential Effects of Nitrogen Addition on Soil Respiration and Organic Carbon in Model Subtropical Forests. Forests, 2022, 13, 1615. https://doi.org/10.3390/f13101615 

    [11] Lin Zhao, Qinghua Li*, Xiaojie Qian, Hongmei Chen, Fei Wang, Zhigang Yi. Effects of the combined application of biochar‑based fertilizer and urea on N2O emissions, nitrifier, and denitrifier communities in the acidic soil of pomelo orchards. Journal of Soils and Sediments, 2022, 22, 3119-3136. https://doi.org/10.1007/s11368-022-03273-1 

    [12] Xiong Fang, Yulin Zhu, Jundi Liu, Xueping Lin, Haozhao Sun, Xinghao Tang, Yalin Hu, Yunpeng Huang*, Zhigang Yi. Effects of Moisture and Temperature on Soil Organic Carbon Decomposition along a Vegetation Restoration Gradient of Subtropical China. Forests, 2022, 13, 578. https://doi.org/10.3390/f13040578 

    [13] Xingran Huang, Lili Zheng, Pingping Guo, Zhigang Yi. Nitrogen addition inhibits total monoterpene emissions in subtropical forest floor of South China. Soil Ecology Letters, 2021, 3(1): 63-72. https://doi.org/10.1007/s42832-020-0056-0 

    [14] Xingran Huang, Jinmei Lai, Yanfei Liu, Lili Zheng, Xiong Fang, Wei Song, Zhigang Yi*. Biogenic volatile organic compound emissions from Pinus massoniana and Schima superba seedlings: Their responses to foliar and soil application of nitrogen. Science of the Total Environment, 2020, 705, 135761. https://doi.org/10.1016/j.scitotenv.2019.135761 

    [15] Peng Cui, Zhi Chen, Qian Zhao, Zhen Yu, Zhigang Yi, Hanpeng Liao*, Shungui Zhou. Hyperthermophilic composting significantly decreases N2O emissions by regulating N2O-related functional genes. Bioresource Technology, 2019; 272:433-441.

    [16] Peng Cui, Hanpeng Liao*, Yudan Bai, Xi Li, Qian Zhao, Zhi Chen, Zhen Yu, Zhigang Yi, Shungui Zhou*. Hyperthermophilic composting reduces nitrogen loss via inhibiting ammonifiers and enhancing nitrogenous humic substance formation. Science of the Total Environment, 2019; 692:98-106.

    [17] Thomas Behrendt, Elisa C. Catão, Rüdiger Bunk, Zhigang Yi, Elena Schweer, Steffen Kolb, Jürgen Kesselmeier, Susan Trumbore. Microbial community responses determine how soil-atmosphere exchange of carbonyl sulfide, carbon monoxide, and nitric oxide responds to soil moisture. Soil, 2019, 5(1): 121-135.

    [18] Yun Zhang, Mulualem Tigabu, Zhigang Yi, Huitong Li, Zheng Zhuang, Zhen Yang, Xiangqing Ma. Soil parent material and stand development stage effects on labile soil C and N pools in Chinese fir plantations. Geoderma, 2019, 338, 247-258.

    [19] Xingran Huang, Yanfei Liu, Yiyong Li, Pingping Guo, Xiong Fang*, Zhigang Yi*. Foliage application of nitrogen has less influence on soil microbial biomass and community composition than soil application of nitrogen. Journal of Soils and Sediments, 2019; 19: 221-231. https://doi.org/10.1007/s11368-018-2027-y 

    [20] Baoye Hu, Hui Xu, Junjun Deng, Zhigang Yi, Jinsheng Chen*, Lingling Xu, Zhenyu Hong, Xiaoqiu Chen, Youwei Hong**. Characteristics and Source Apportionment of Volatile Organic Compounds for Different Functional Zones in a Coastal City of Southeast China. Aerosol and Air Quality Research, 2018, 18: 2840–2852.

    [21] Rüdiger Bunk#, Zhigang Yi#, Thomas Behrendt, Dianming Wu, Meinrat O. Andreae, Jürgen Kesselmeier*. Carbonyl sulfide (OCS) exchange between soils and the atmosphere affected by soil moisture and compensation points. Biogeosciences-Discusssion, 2018, https://doi.org/10.5194/bg-2018-20.

    [22] Rüdiger Bunk, Thomas Behren, Zhigang Yi, Meinrat O. Andreae, Jürgen Kesselmeier*. Exchange of carbonyl sulfide (OCS) between soils and atmosphere under various CO2 concentrations. Journal of Geophysical Research-Biogeosciences, 2017, 122, 1343–1358, doi:10.1002/2016JG003678. 

    [23] Zhigang Yi, Lili Zheng, Ting Wu, Xinming Wang*. Contribution of aboveground plants, the rhizosphere and root-free-soils to total COS and DMS fluxes at three key growth stages in rice paddies. Agriculture Ecosystems & Environment, 2013, 179: 11-17.

    [24] Zhigang Yi*, Pingping Guo, Lili Zheng, Xingran Huang, Junqi Bi. Distribution of HCHs and DDTs in the soil-plant system in tea gardens in Fujian, a major tea-producing province in China. Agriculture Ecosystems & Environment, 2013, 171: 19-24. 

    [25] Zhigang Yi*, Lili Zheng, Pingping Guo, Junqi Bi. Distribution of α-, β-, γ-, and δ-hexachlorocyclohexane in soil-plant-air system in a tea garden. Ecotoxicology and Environmental Safety, 2013, 91: 156-161.

    [26] Zhigang Yi, Xinming Wang*. Carbonyl sulfide and dimethyl sulfide fluxes in an urban lawn and adjacent bare soil in Guangzhou, China. Journal of Environmental Sciences-China (J. Environ. Sci.), 2011, 23(5): 784-789

    [27] Zhigang Yi, Xinming Wang*, Mingan Ouyang, Deqiang Zhang, Guoyi Zhou. Air-soil exchange of dimethyl sulfide, carbon disulfide, and dimethyl disulfide in three subtropical forests in south China. Journal of Geophysical Research (J. Geophys. Res.), 2010, 115, D18302, doi:10.1029/2010JD014130.

    [28] Zhigang Yi, Xinming Wang*, Guoyin Sheng and Jiamo Fu. Exchange of carbonyl sulfide and dimethyl sulfide between rice paddy fields and the atmosphere in subtropical China. Agriculture Ecosystems & Environment (Agric. Ecosyst. Environ.), 2008, 1231-3: 116-124.

    [29] Zhigang Yi, Xinming Wang*, Guoyin Sheng, Deqiang Zhang, Guoyi Zhou and Jiamo Fu. Soil uptake of carbonyl sulfide in subtropical forests with different successional stages in south China. Journal of Geophysical Research (J. Geophys. Res.), 2007, 112, D08302, doi:10.1029/2006JD008048.

    [30] Zhigang Yi, Shenglei Fu, Weimin Yi, Guoyi Zhou, Jiangming Mo, Deqiang Zhang, Mingmao Ding, Xinming Wang, Lixia Zhou*. Partitioning soil respiration of subtropical forests with different successional stages in south China. Forest Ecology and Management (For. Ecol. Manage.), 2007, 243 (2-3): 178-186.

    [31] 张峻川,李强,刘越,刘学梅,罗欣悦,王义祥,易志刚*生物炭和镁肥对酸性茶园土壤气态碳释放的影响农业环境科学学报202443112732-2742

    [32] 张莉,张哿烨,林建涛,马方园*,赵振,易志刚亚热带常见室内绿植对甲醛净化效果及生理机制亚热带资源与环境学报202419(2): 41-48

    [33] 陈红梅,钱笑杰,赵琳,陈晓玲,李清华*,黄双勇,王飞,易志刚生石灰对蜜柚果园强酸性土壤化学性质和细菌群落结构的影响福建农业学报2023381):99-108

    [34] 廖露露,张哿烨,张峻川,陈红梅,李强,易志刚*急性O3胁迫下米槠类异戊二烯释放及其对O3生成潜势的影响生态学杂志202443(11): 3266-3274网络首发时间:2023-05-09 14:17:52(标注基金:国家基金41877326ISSN: 1000-4890. DOI10.13292/j.1000-4890.202411.026

    [35] 陈林怡,郭豪,陈红梅,张哿烨,廖露露,周婉婷,张梦雪,易志刚*昼夜温差对茶鲜叶挥发性及非挥发性品质成分及相关生理指标的影响热带作物学报2024, 45(4): 793-803(标注基金:国家基金41877326ISSN: 1000-2561

    [36] 马方园,张莉,翁子珊,赖金美,刘桂珍,郭豪,易志刚*大气CO2O3浓度增加对闽楠异戊二烯和单萜烯释放的影响生态学杂志202342(8): 1802-1810.

    [37] 李 强,易志刚,罗泉达,陈华,翁伯琦,王义祥双碳”下我国茶园碳汇特征及增汇途径研究进展亚热带农业研究2022,183):203-210

    [38] 刘桂珍,孙浩钊,赵琳,马方园,陈林怡,黄幸然,方熊,易志刚*大气CO2浓度和温度升高降低木荷和杉木幼苗土壤卤代烃的含量. 应用生态学报202233(03)757-764

    [39] 赵琳, 刘桂珍, 钱笑杰, 郭豪, 方熊, 王飞, 李清华*, 易志刚. 炭基肥添加对蜜柚果园酸性土壤pH 和交换性能的影响. 水土保持学报, 2022, 33(03): 244-251.

    [40] 马方园,郭豪,肖成玉,廖露露,周婉婷,方熊,易志刚*两种增温方式对杉木和木荷单萜烯通量及光合特性的影响. 生态学报2022, 42(15): 6229-6238.

    [41] 赵振,魏思桐,马方园,黄幸然,易志刚*不同光照条件下亚热带常见绿植对室内甲醛净化的影响亚热带资源与环境学报2021162):17-24

    [42] 黄幸然,谢承劼,潘若琪,徐亚,郑丽丽,易志刚*.氮添加对马尾松和木荷幼苗根系土壤挥发性有机化合物的影响.森林与环境学报2020403):243-250

    [43] 刘燕飞,张羽,赖金美,林威,黄幸然,方熊,易志刚*.土壤氮水交互对马尾松和杉木COSCO2通量的影响. 生态学报20204016):5729-5738

    [44] 郭萍萍,黄幸然,吴旺旺,郑丽丽,方熊*易志刚.不同施氮方式和施氮量对土壤细菌群落的影响.生态学报2021411):149-161

    [45] 吴敏敏,刘俊第,林雪萍,杨逸伟,方熊*易志刚.植被恢复对红壤侵蚀区土壤铁铝氧化物和养分的影响.建农林大学学报(自然科学版)2020493):386-391

    [46] 赖金美,潘若琪,刘燕飞,黄幸然,方熊,靳少非,易志刚*. 大气二氧化碳浓度增加对木本植物BVOCs释放的影响.生态学杂志202039(3)865-871

    [47] 林威,赵振,赖金美,刘燕飞,黄幸然,易志刚*. 温度和光照对红花木和南天竹异戊二烯和单萜烯释放的影响. 环境科学学报201939(9)3126-3133

    [48] 刘燕飞,李荭荭,黄幸然,方熊,易志刚*. 镉和铅在茶园土壤-茶树系统中分布及迁移特征. 福建农林大学学报(自然科学版)201948 (3)28-33

    [49] 刘俊第,林威,王玉哲,姜婧,方熊*易志刚.火烧对马尾松林土壤酶活性和有机碳组分的影响. 生态学报, 2018, 3815):5374-5382

    [50] 刘俊第, 林威, 姜婧, 刘燕飞, 方熊*, 易志刚.福州市仓山区内河主要水质指标的特征研究. 福建农林大学学报(自然科学版)2018, 47(6): 743-747

    [51] 刘俊第,刘骏,胡亚林,方熊*易志刚. 植被恢复对红壤侵蚀区土壤氮组分的影响. 土壤通报2019, 501):115-123

    [52] 印亮,张丽丽,陈鹭,王贤凤,黄幸然,方熊,易志刚*. 不同环境因子对南方典型蔗田土壤羰基硫通量的影响. 农业环境科学学报20173612):2493-2499

    [53] 张丽丽,印亮,郑丽丽,黄幸然,易志刚*.模拟氮沉降对鼎湖山典型森林地表烷烃、烯烃通量的影响. 生态学杂志20173612):3462-3469.

    [54] 吴旺旺,张丽丽,林达,黄幸然,胡宝叶,易志刚*. 氮沉降对凋落叶分解前期土壤酶活性的影响. 森林与环境学报2017372):174-180

    [55] 胡宝叶,王贤凤,陈鹭,印亮,雷聪,童月华,易志刚*. 不同环境因子对南方典型蔗田原位和异位土壤 NO通量的影响. 农业环境科学学报 2016359):1824-1828

    [56] 黄幸然, 郭萍萍, 吴旺旺, 胡宝叶, 易志刚*. 模拟氮沉降增加对不同树种土壤微生物群落结构的影响.生态学杂志, 2016, 35(6): 1420-1426

    [57] 黄幸然, 吴旺旺, 胡宝叶, 易志刚*. 闽江水体和生物体中六六六和滴滴涕污染特征和来源解析. 生态环境学报, 2016, 25(3): 482-488

    [58] 吴旺旺, 郑丽丽, 黄幸然, 胡宝叶, 易志刚*. 鼎湖山典型森林土壤卤代烃通量对氮沉降的响应. 生态学杂志, 2016, 35(5): 1147-1153.

    [59] 郑丽丽,郭萍萍,易志刚*.鼎湖山典型森林土壤苯系物通量对模拟氮沉降的响应.生态环境学报2015243):396-401.

    [60] 郭萍萍,郑丽丽,黄幸然,吴旺旺,卓振华,易志刚*.模拟大气氮沉降对不同树种土壤微生物生物量的影响.生态环境学报2015245):772-777.

    [61] 毕峻奇,郑丽丽,郭萍萍,易志刚*福州城郊冬夏两季大气中HCHsDDTs分布特征.中国环境科学2013334):577-583.

    [62] 易志刚黄幸然,毕峻奇,郭萍萍,郑丽丽福州城市及郊区冬、夏两季大气中多环芳烃特征研究环境科学2013344):1252-1257.

    [63] 毕峻奇,严登峰,郑丽丽,李师炜,易志刚*福州地区不同土地利用类型土壤中六六六和滴滴涕残留特征农业环境科学学报 20123191752-1758

    [64] 易志刚杨雯清,吴燕华,杜志伟,毕峻奇.福建茶园茶叶中六六六和滴滴涕残留水平及来源分析.农业环境科学学报2012311):24-29CN 12-1347/S

    [65] 易志刚,王新明*外源含硫化合物对土壤挥发性有机硫化合物交换通量的影响环境科学20113282236-2239

    [66] 吕秋莲,檀剑锋,余兰贵,燕少刚,易志刚福建茶园土壤六六六和滴滴涕残留水平及来源分析农业环境科学学报2010299):1718-1722

    [67] 易志刚,王新明*,张德强,盛国英,傅家谟.鼎湖山针阔叶混交林土壤COSCO2通量研究.地球与环境,2009373):227-231

    [68] 易志刚,王新明*,盛国英,傅家谟甲硫氨酸和水分对土壤挥发性有机硫化物通量的影响环境化学2009284):574-577

    [69] 易志刚傅巧姑应用蚕豆根尖微核技术研究3种重金属的遗传毒性福建农林大学学报(自然科学版)2009384):396-399

    [70] 易志刚4种洗洁精对蚕豆根尖细胞的遗传损伤.亚热带农业研究,200951):35-38

    [71] 易志刚王新明*,盛国英,傅家谟.珠江三角洲典型生态系统有机含硫气体地气交换通量比较地球与环境2008364):298-303

    [72] 易志刚离体根呼吸研究及其在原位根呼吸测量中的应用福建林学院学报2008283):212-215

    [73] 易志刚.多环芳烃对土壤线虫和微生物生物量的影响.亚热带农业研究,200842):141-145

    [74] 易志刚,王新明*.预浓缩/色谱-质谱测量大气中挥发性有机硫化合物.分析测试学报,200625(6)124-126

    [75] 易志刚,刘春常,张倩媚,张太平,任海,王新明*.复合人工湿地对有机污染物的去除效果初步研究.生态环境,200615(5)945-948

    [76] 易志刚,蚁伟民,丁明懋,周丽霞,张德强,王新明*.鼎湖山自然保护区土壤有机碳、微生物生物量碳和土壤CO2浓度垂直分布.生态环境,200615(3)611-615

    [77] 易志刚,蚁伟民,周丽霞,王新明*.鼎湖山主要植被类型土壤微生物生物量研究.生态环境,200514(5)727-729

    [78] 易志刚,蚁伟民*,周国逸,周丽霞,张德强,丁明懋. 鼎湖山三种主要植被类型土壤碳释放研究.生态学报,200323(8)207-212

    [79] 易志刚,蚁伟民*.森林生态系统土壤呼吸研究进展.生态环境,200312(3)361-365

    易志刚,蚁伟民*,周丽霞.土壤各组分呼吸区分方法研究进展.生态学杂志,200322(2)6569


    科技成果