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个人简介

教育经历 2012.08.25-2017.07.01,农学博士学位,中国农业大学,作物栽培学与耕作学 2008.09.18-2012.07.01,农学学士学位,中国农业大学,农学 工作经历 2019.10.28,中国农业大学农学院 2017.10.01-2019.09.30,中国农业大学资源与环境学院 社会职务 中国农学会耕作制度分会 委员 中国作物学会 会员 Farming System杂志编委 荣誉及奖励 2022,吉林省科学技术进步奖 神农中华农业科技奖优秀创新团队 应对东北气候暖干化的玉米轻简高效耕作栽培技术体系创建与应用

研究领域

保护性农业原理与技术模式 农田系统固碳减排与低碳农作技术 农业绿色低碳与可持续发展 Meta分析在农业研究中的应用

近期论文

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Kan, Z.R., Liu, W.X., Liu, W.S., Lal, R., Dang, Y.P., Zhao, X.* and Zhang, H.L., 2022. Mechanisms of soil organic carbon stability and its response to no‐till: A global synthesis and perspective. Global Change Biology, 28(3), pp.693-710. Zhao, X., He, C., Liu, W.S., Liu, W.X., Liu, Q.Y., Bai, W., Li, L.J., Lal, R. and Zhang, H.L., 2022. Responses of soil pH to no‐till and the factors affecting it: A global meta‐analysis. Global Change Biology, 28(1), pp.154-166. Liu, W.X., Wei, Y.X., Li, R.C., Chen, Z., Wang, H.D., Virk, A.L., Lal, R., Zhao, X. * and Zhang, H.L., 2022. Improving soil aggregates stability and soil organic carbon sequestration by no-till and legume-based crop rotations in the North China Plain. Science of The Total Environment, p.157518. Pu, C., Chen, J.S., Wang, H.D., Virk, A.L., Zhao, X.* and Zhang, H.L., 2022. Greenhouse gas emissions from the wheat-maize cropping system under different tillage and crop residue management practices in the North China Plain. Science of The Total Environment, p.153089. Zhao, X., Pu, C., Ma, S.T., Liu, S.L., Xue, J.F., Wang, X., Wang, Y.Q., Li, S.S., Lal, R., Chen, F. and Zhang, H.L., 2019. Management-induced greenhouse gases emission mitigation in global rice production. Science of the Total Environment, 649, pp.1299-1306. Virk, A.L., Lin, B.J., Kan, Z.R., Qi, J.Y., Dang, Y.P., Lal, R., Zhao, X.* and Zhang, H.L., 2021. Simultaneous effects of legume cultivation on carbon and nitrogen accumulation in soil. Advances in Agronomy, 171, pp.75-110. Zhao, X., Virk, A.L., Ma, S.T., Kan, Z.R., Qi, J.Y., Pu, C., Yang, X.G. and Zhang, H.L., 2020. Dynamics in soil organic carbon of wheat-maize dominant cropping system in the North China Plain under tillage and residue management. Journal of Environmental Management, 265, p.110549. Wang, X.D., He, C., Cheng, H.Y., Liu, B.Y., Li, S.S., Wang, Q., Liu, Y., Zhao, X.* and Zhang, H.L., 2021. Responses of greenhouse gas emissions to residue returning in China's croplands and influential factors: A meta-analysis. Journal of Environmental Management, 289, p.112486. Virk, A.L., Liu, W.S., Chen, Z., N′Dri Bohoussou, Y., Cheema, M.A., Khan, K.S., Zhao, X.* and Zhang, H.L., 2022. Effects of different tillage systems and cropping sequences on soil physicochemical properties and greenhouse gas emissions. Agriculture, Ecosystems & Environment, 335, p.108010. Zhao, X., Liu, B.Y., Liu, S.L., Qi, J.Y., Wang, X., Pu, C., Li, S.S., Zhang, X.Z., Yang, X.G., Lal, R. and Chen, F., 2020. Sustaining crop production in China's cropland by crop residue retention: A meta‐analysis. Land Degradation & Development, 31(6), pp.694-709. Kan, Z.R., Virk, A.L., He, C., Liu, Q.Y., Qi, J.Y., Dang, Y.P., Zhao, X.* and Zhang, H.L., 2020. Characteristics of carbon mineralization and accumulation under long-term conservation tillage. Catena, 193, p.104636. Liu, W.X., Liu, W.S., Yang, M.Y., Wei, Y.X., Chen, Z., Virk, A.L., Lal, R., Zhao, X.* and Zhang, H.L., 2023. Effects of tillage and cropping sequences on crop production and environmental benefits in the North China Plain. Environmental Science and Pollution Research, 30, pp. 17629-17643. Virk, A.L., Liu, W.S., Niu, J.R., Xu, C.T., Liu, Q.Y., Kan, Z.R., Zhao, X.* and Zhang, H.L., 2021. Effects of Diversified Cropping Sequences and Tillage Practices on Soil Organic Carbon, Nitrogen, and Associated Fractions in the North China Plain. Journal of Soil Science and Plant Nutrition, 21(2), pp.1201-1212.

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