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黄燕兰

发布时间:2022-09-01 浏览次数: 1388


姓名:黄燕兰 职称:讲师

E-mailylhuang@jxau.edu.cn

研究方向:

1. 土壤化学与生物化学

2. 土壤磷素转化的微生物过程

 


个人简介

黄燕兰,199511月生,江西赣州人,中共党员。研究方向为土壤化学与生物化学,着重探究农田土壤磷素转化的微生物过程。20226月获浙江大学土壤学博士学位,同年7月至今就职于澳门沙金官方网站。迄今已发表SCI论文6篇,其中作为第一作者在土壤学和环境科学领域知名期刊《Soil Biology and Biochemistry》、《Journal of Environmental Management》上发表研究论文2篇。

 


工作经历:

2022.07-至今,澳门沙金官方网站,讲师

教育经历:
2017.09-2022.06,浙江大学,土壤学专业,博士(硕博连读)

2013.09-2017.06,华中农业大学,农业资源与环境专业,学士


主要成果

Huang, Y., Dai, Z., Lin, J., Li, D., Ye, H., Dahlgren, R.A., Xu, J., 2021. Labile carbon facilitated phosphorus solubilization as regulated by bacterial and fungal communities in Zea mays. Soil Biology and Biochemistry, 163, 108465.

Huang, Y., Dai, Z., Lin, J., Qi, Q., Luo, Y., Dahlgren, R.A., Xu, J., 2021. Contrasting effects of carbon source recalcitrance on soil phosphorus availability and communities of phosphorus solubilizing microorganisms. Journal of Environmental Management, 298, 113426.

Lin, J., Huang, Y., Zhao, H., Yu, M., Su, W., Chen, H., Leng, P., Li, J., Luo, Y., Li, Y., Dai, Z., Xu, J., 2022. Consistent responses of microbial C and N metabolic processes to elevated CO2 across global terrestrial ecosystems. Journal of Soils and Sediments, 22, 403-408.

Liu, G., Meng, J., Huang, Y., Dai, Z., Tang, C., Xu, J., 2020. Effects of carbide slag, lodestone and biochar on the immobilization, plant uptake and translocation of As and Cd in a contaminated paddy soil. Environmental Pollution, 266, 115194.

Dai, Z., Yu, M., Chen, H., Zhao, H., Huang, Y., Su, W., Xia, F., Chang, S.X., Brookes, P.C., Dahlgren, R.A., Xu, J., 2020. Elevated temperature shifts soil N cycling from microbial immobilization to enhanced mineralization, nitrification and denitrification across global terrestrial ecosystems. Global Change Biology, 26(9), 5267-5276.

Dai, Z., Lv, X., Ma, B., Chen, N., Chang, S.X., Lin, J., Wang, X., Su, W., Liu, H., Huang, Y., Hu, C., Luo, Y., Dahlgren, R.A., Xu, J., 2021. Concurrent and rapid recovery of bacteria and protist communities in Canadian boreal forest ecosystems following wildfire. Soil Biology and Biochemistry, 163, 108452.


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