陈浩

姓 名:陈浩 性 别:男

职 务:

职 称:副研究员 学 历:博士

电 话:(86)0731-84615216 通迅地址:湖南省长沙市芙蓉区远大二路644号

传 真:0731-84612685 邮政编码:410125

电子邮件:chenhao10902@isa.ac.cn

简历

1984年出生,博士,副研究员。长期从事陆地生态系统生物地球化学循环及其对全球变化响应的研究。目前的研究主要在中国西南喀斯特生态系统中开展。曾获中科院博士研究生国家奖学金、中科院院长优秀奖,中科院青年创新促进会会员。先后主持国家自然科学基金、广西省自然科学基金和中科院人才项目等6项。已发表文章共48篇,其中第一作者SCI论文15篇,主要发表在以下相关杂志上:《Functional Ecology》、《Global Biogeochemical Cycles》、《Environmental Pollution》、《Science of the Total Environment》、《Agriculture Ecosystem & Environment》、《Geoderma》、《European Journal of Soil Science》、《Biogeosciences》、等。

教育经历:

2005/09-2009/07:福建师范大学,地理学院,地理学,学士。

2009/09-2015/01:中国科学院华南植物园,生态学(硕博连读),博士。

工作经历:

2015/01-2017/12:中科院亚热带农业生态研究所,助理研究员

2017/12至今:中科院亚热带农业生态研究所,副研究员

承担科研项目

1.国家自然科学青年基金项目:西南喀斯特山区森林土壤氮素转化对氮沉降的响应(31500405, 2016/01- 2018/12)

2.中国科学院“西部之光”人才项目:基于15N示踪的喀斯特森林和农田土壤氮固持机理研究(无课题号, 2016/01- 2018/12)

3.国家自然科学基金面上项目:氮沉降是否加剧“氮饱和”的喀斯特森林生态系统磷限制 (31872691, 2019/01-2022/12)

4.国家自然科学基金地区科学基金项目:西南喀斯特山地森林土壤甲烷与氧化亚氮通量对氮沉降的响应(31760153, 2018/01-2021/12)

5.广西省自然科学基金面上项目:西南喀斯特山区森林土壤酶活性对氮沉降的响应 (2017GXNSFAA198038, 2017/09-2020/09)

6.中国科学院青年创新促进会人才项目(2019355, 2019/01- 2023/12)

代表论著

1.Chen, H., Li, D.*, Mao, Q., Xiao, K., and Wang, K. 2019. Resource limitation of soil microbes in karst ecosystems. Science of the Total Environment, 650:241-248.

2.Chen, H., Liu, J., Li, D. *, Xiao, K., and Wang, K. 2019. Controls on soil arylsulfatase activity at a regional scale. European Journal of Soil Biology. 90: 9-14.

3.Chen, H., Li, D.*, Xiao, K., and Wang, K. 2018. Soil microbial processes and resource limitation in karst and non-karst forests. Functional Ecology, 32:1400-1409.

4.Chen, H., Li, D.*, Zhao, J. Xiao, K., and Wang, K. 2018. Effects of nitrogen addition on activities of soil nitrogen acquisition enzymes: A meta-analysis. Agriculture Ecosystem & Environment, 252:126-131.

5.Chen, H., Li, D. *, Zhao, J., Zhang, W., Xiao, K., and Wang, K. 2018. Nitrogen addition aggravates microbial carbon limitation: Evidence from ecoenzymatic stoichiometry. Geoderma, 329:61-64.

6.Chen, H., Chen, M., Li, D., Mao, Q., Zhang, W., and Mo, J*. 2018. Responses of soil phosphorus availability to nitrogen addition in a legume and a non-legume plantation. Geoderma, 322: 12-18.

7.Chen, H., Li, D., Feng, W., Niu, S., Plante, A., Luo, Y., and Wang, K. 2018. Different responses of soil organic carbon fractions to additions of nitrogen. European Journal of Soil Science, 69(6): 1098-1104.

8.Chen, H., Zhang, W., Gurmesa, G.A., Zhu, X., Li, D., and Mo, J *. 2017. Phosphorus addition affects soil nitrogen dynamics in a nitrogen-saturated and two nitrogen-limited forests. European Journal of Soil Science, 68: 427-479.

9.Chen, H., Luo, P., Wen, L., Yang, L., Wang, K., and Li, D *. 2017. Determinants of soil extracellular enzyme activity in a karst region, southwest China. European Journal of Soil Biology, 80: 69-76.

10.Chen, H., Gurmesa, G.A., Zhang, W., Zhu, X., Zheng, M., Mao, Q., Zhang, T., and Mo, J*.2016. Nitrogen saturation in humid tropical forests after 6-years addition of nitrogen and phosphorus: hypotheses testing. Functional Ecology, 30: 35-313.

11.Chen, H., Yang, L., Wen, L., Luo, P., Liu, L., Yang, Y., Wang, K., and Li, D *. 2016. Effects of nitrogen deposition on soil sulfur cycling. Global Biogeochemical Cycles, 30: 1568-1577.

12.Chen, H., Li, D., Gurmesa, G. A., Yu, G., Li, L., Zhang, W., Fang, H., and Mo, J *. 2015. Effects of nitrogen deposition on carbon cycle in terrestrial ecosystems of China: A meta-analysis. Environmental Pollution, 206: 352-360.

13.Chen, H., Dong, S., Liu, L., Ma, C., Zhang, T., Zhu, X., and Mo, J *. 2014. Effects of experimental nitrogen and phosphorus addition on litter decomposition in an old-growth tropical forest. PLoS ONE, 8: e84101.

14.Chen, H., Gurmesa, G. A., Liu, L., Zhang, T., Fu, S., Liu, Z., Dong, S., Ma, C., and Mo, J *. 2014. Effects of litter manipulation on litter decomposition in a successional gradients of tropical forests in southern China. PLoS ONE, 9: e99018.

15.Chen, H., Zhang, W., Gilliam, F., Liu, L., Huang, J. Zhang, T. Wang, W., and Mo, J*. 2013. Changes in soil carbon sequestration in Pinus massoniana forests along an urban-to-rural gradient of southern China. Biogeosciences, 10: 6609-6616.

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