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一、个人简介
王强,男,籍贯甘肃民勤,中共党员,博士,青年研究员,硕士生导师,邮箱:wqiang@lzu.edu.cn
通讯地址:甘肃省兰州市城关区嘉峪关西路768号 hjc888黄金城官网入口,邮编:730020
二、研究方向和兴趣
土壤生态学和生物化学、土壤碳循环与全球变化
主要从事:
1) 湿地微生物源碳的积累与分子机制;基于此项研究获2021年福建省优秀博士学位论文奖;
2) 湿地土壤有机碳与铁氧化物的交互作用;基于此项研究在Water Research、Limnology and Oceanography等权威期刊发表论文;
3) 草地/湿地土壤有机碳生物地球化学循环与全球变化。
三、教育背景与工作经历
2020.07至今,hjc888黄金城官网入口,hjc888黄金城官网入口,青年研究员,草地生态研究所
2016.09至2020.06,厦门大学,生态学,博士,导师:严重玲 教授
2013.09至2016.06,hjc888黄金城官网入口,农学,硕士,导师:金? 副教授 王晓娟 教授
2009.09至2013.06,仲恺农业工程学院,农学,学士,导师:冯岩 教授
四、科研项目
[1] 国家自然科学基金青年科学基金项目(32101333),“增温条件下球囊霉素的土壤胶结机制对高寒草地有机碳累积的影响”,起止年月:2022.01-2024.12,主持
[2] “双一流”引导专项-队伍建设经费-科研启动费,起止年月:2020.09-2025.08,主持
[3] 兰州市城关区科技计划项目(2022JSCX0003),“黄河流域兰州段水体中重金属的生物控制技术”,起止年月:2023.01-2025.12,主持
[4] 国家自然科学基金面上项目(31870483),“球囊霉素在红树林湿地生态系统中的碳汇功能和示踪效应”,起止年月:2019.01-2022.12,第一参与人
[5] 国家重点研发计划(2018YFC1406600),“近海海域微型生物颗粒及水环境参数复合监测技术体系研究”,起止年月:2018.08-2021.12,课题科研秘书,参与
[6] 国家重点研发计划(2016YFA0601400),“近海生态系统碳汇过程、调控机制及增汇模式”,起止年月:2018.07-2021.06,课题参与
[7] 国家自然基金重点项目(31530008),“海峡两岸典型河口红树林生态系统中生源要素与高危重金属耦合机制及驱动力研究”,起止年月:2016.01-2020.12,参与
五、主要科研成果
近五年1作/通讯作者论文(部分研究成果得到国际地圈生物圈计划、国际海洋研究委员会和未来地球计划共同发起的海洋生物地球化学循环和生态系统的科学研究计划(IMBeR)亮点报道并引用. http://www.imber.info/en/projects/imber/science/endorsed-projects/pacecs):
[1] Zhao B, Jia YL, Wu SJ, Wei LL, Li J, Hong HL, Yan CL, Williams MA, Wang Q*. 2022. Preservation of soil organic carbon in coastal wetlands promoted by glomalin?iron?organic carbon ternary system. Limnology and Oceanography 67, 180-192
[2] Guo M, Zhao B, Wen YX, Hu JJ, Dou AM, Zhang ZW, Rui JP, Li WJ, Wang Q*, Zhu JX. 2022. Elevational pattern of soil organic carbon release in a Tibetan alpine grassland: Consequence of quality but not quantity of initial soil organic carbon. Geoderma 428, 116148.
[3] Wang Q, Kang Q, Zhao B, Li H, Lu H, Liu J, Yan CL*. 2022. Effect of land-use and land-cover change on mangrove soil carbon fraction and metal pollution risk in Zhangjiang Estuary, China. Science of the Total Environment, 807, 150973.
[4] Wang Q, Wen YX, Zhao B, Hong HL, Liao R, Li JW, Liu JC, Lu HL, Yan CL*. 2021. Coastal soil texture controls soil organic carbon distribution and storage of mangroves in China. Catena 207, 105709.
[5] Wang Q, Hong H, Liao R, Yuan B, Li HY, Lu HL, Liu JC, Yan CL*. 2021. Glomalin-related soil protein: The particle aggregation mechanism and its insight into coastal environment improvement. Ecotoxicology and Environmental Safety 227, 112940.
[6] Wang Q, Chen J, Chen S, Qian L, Yuan B, Tian Y, Wang Y, Liu J, Yan CL*, Lu HL*. 2020. Terrestrial-derived soil protein in coastal water: metal sequestration mechanism and ecological function. Journal of Hazardous Materials 386, 121655.
[7] Wang Q, Hong H, Yang D, Li J, Chen S, Pan C, Lu H, Liu JC*, Yan CL*. 2020. Health risk assessment of heavy metal and its mitigation by glomalin-related soil protein in sediments along the South China coast. Environmental Pollution 263, 114565.
[8] Wang Q, Lu H, Chen J, Jiang Y, Williams M.A., Wu S, Li J, Liu J, Yang G, Yan CL*. 2020. Interactions of soil metals with glomalin-related soil protein as soil pollution bioindicators in mangrove wetland ecosystems. Science of the Total Environment 709, 136051.
[9] Wang Q, Mei D, Chen J, Lin Y, Liu J, Lu HL*, Yan CL*. 2019. Sequestration of heavy metal by glomalin-related soil protein: Implication for water quality improvement in mangrove wetlands. Water Research 148, 142-152. (Nature Index期刊)
[10] Wang Q, Lu H, Chen J, Hong H, Liu J, Li J, Yan CL*. 2018. Spatial distribution of glomalin-related soil protein and its relationship with sediment carbon sequestration across a mangrove forest. Science of the Total Environment 613-614, 548-556.
[11] 温杨雪, 赵博, 罗巧玉, 贾云龙, 冯涛, 王强*. 2021. 青藏高原高寒草地AM真菌分布及其对近自然恢复的生态作用. 菌物学报 2021, 40, 2562-2578.
近五年合作发表论文:
[1] Wang XJ*, Wang Q, Wang Q. 2022. Community structure of AM fungal species of six host plant species on the Qinghai-Tibet Plateau. Symbiosis 88, 37-45.
[2] Wu Y, Leng Z, Li J*, Jia H, Yan C, Hong H, Wang Q, Lu Y, Du D. 2022. Increased fluctuation of sulfur alleviates cadmium toxicity and exacerbates the expansion of Spartina alterniflora in coastal wetlands. Environmental Pollution 292, 118399.
[3] Li H, Yuan B, Yan C, Lin Q, Wu J, Wang Q, Liu J, Lu H, Zhu H, Hong H*. 2021. Release of sediment metals bound by glomalin related soil protein in waterfowls inhabiting mangrove patches. Environmental Pollution 293, 118577.
[4] Chen Y, Liao R*, Li J, Zhou H, Wang H, Zhuo Z, Wang Q, Yan C, Ma H. 2021. Monitoring particulate composition changes during the flocculation process using polarized light scattering. Applied Optics 60, 10264-10272.
[5] Chen S, Lin RY, Lu HL, Wang Q, Yang JJ, Liu JC, Yan CL*. 2020. Effects of phenolic acids on free radical scavenging and heavy metal bioavailability in kandelia obovata under cadmium and zinc stress. Chemosphere, 249, 126341.
[6] Jiang YC, Lu HL, Wang YZ, Hong HL, Wang Q, Liu JC, Yan CL*. 2020. Uptake, biotransformation and physiological response of TBBPA in mangrove plants after hydroponics exposure. Marine Pollution Bulletin 151, 110832.
[7] Chen S, Wang Q, Lu HL, Li JW, Yang D, Liu JC, Yan CL*. 2019. Phenolic metabolism and related heavy metal tolerance mechanism in Kandelia obovata under Cd and Zn stress. Ecotoxicology and Environmental Safety 169, 134-143.
[8] Wang XJ*, Wang Q, Jin L, Sun L, Wang Q, Zhang L, Chen YL. 2019. Arbuscular mycorrhizal fungi in the rhizosphere soil of poisonous plants depressed the growth of pasture grasses in the Tibetan Plateau Alpine meadow. Ecosystem Health and Sustainability 5, 226-236.
[9] Lu HL*, Mei DG, Pavao-Zuckerman M, Wang Q, Hong HL, Wu SJ, Xu MY, Zhu XD, Liu JC, Yan CL. 2019. Combination of DGT and fluorescence spectroscopy for improved understanding of metal behaviour in mangrove wetland. Chemosphere 229, 303-313.
[10] Pan CL, Lu HL, Liu JC, Yu JY, Wang Q, Li JW, Yang JJ, Hong HL, Yan CL*. 2019. SODs involved in the hormone mediated regulation of H2O2 content in Kandelia obovata root tissues under cadmium stress. Environmental Pollution 256, 113272.
[11] Jiang YC, Lu HL, Xia K, Wang Q, Yang JJ, Hong HL, Liu JC, Yan CL*. 2019. Effect of mangrove species on removal of tetrabromobisphenol A from contaminated sediments. Chemosphere 244, 125385.
[12] Yang D, Liu JC, Wang Q, Hong HL, Zhao WW, Chen S, Yan CL*, Lu HL. 2019. Geochemical and probabilistic human health risk of chromium in mangrove sediments: A case study in Fujian, China. Chemosphere 233, 503-511.
授权国家发明/实用新型专利:
[1] 王强, 严重玲,陈敬艳,李军伟,颜文飞. 一种定时循环的AM真菌扩繁及功能实验装置和使用方法. 专利号:ZL201710117733.7 授权号:CN106834087B
[2] 王强,王晓娟,王茜,张亮,金?? 采用人工培养基开展丛枝菌根真菌纯培养的分室培养装置. 申请号:CN201420763337.3 授权号:CN204291868U
[3] 金?牛?B>王强,王茜,张亮,王晓娟. 一种复合式丛枝菌根真菌分室培养装置. 申请号:CN201420440445.7 授权号:CN203999584U
六、学术兼职
担任Soil Biology and Biochemistry、Journal of Hazardous Materials、Catena、Geoderma、Environmental Pollution、Journal of Soils and Sediments、Science of the Total Environment、生态学报、草业学报、草业科学、中国草地学报等国内外期刊审稿人。
七、获奖情况
2021年 福建省优秀博士学位论文奖
八、学生培养
诚邀有志青年同圆科研梦!热忱欢迎草学、生态学、农学、土壤学等相关专业背景的本科生报考硕士研究生,同时欢迎本科生参加毕业设计。
2023年3月22日更新