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王亚亚

发布日期:2022-10-11     作者:     浏览数:    分享到:

王亚亚,女,陕西榆林人,博士,副教授。现任bevictor伟德化学系专任教师。主要从事生物化工、煤基固废清洁转化利用、煤炭生物气化、微生物研究等方面的教学和科研工作。主持/参与国家自然科学基金项目、陕西省自然科学基金等科研项目8项,以第一/通讯作者发表SCI论文二十余篇。

电子邮箱:wangyaya@xust.edu.cn374427418@qq.com

教学/科研方向:

1. 煤的生物气化

2. 煤基固废清洁转化

3. 生物化工

教育、科研与工作经历:

2025/01-今, bevictor伟德,bevictor伟德,副教授

2017/09-2024/12,bevictor伟德,bevictor伟德,讲师

2019/08-2021/08, 中国人民解放军第四军医大学,生物学,博士后;

2012/08-2017/08, 美国克拉克大学,分子生物学与生物化学,博士;

2008/09-2012/06, 中国农业大学,生物工程,学士。

近年来主持及参与的部分科研项目:

(1) 国家自然科学基金委员会, 青年科学基金项目, 42202206,低阶煤生物气化过程中胞外酶表征及其催化生烃机制研究,2023-012025-12, 30万元,主持

(2) 陕西省科技厅,陕西省青年科学基金项目, 2021JQ-559,HERC5 E3连接酶抗病毒机制的研究,2021-012022-12, 5万元,主持

(3) 中国博士后科学基金面上项目,2020M683751, 线粒体钙稳态异常驱动肝癌线粒体基因突变作用机制研究,2020-01 2022-128万元,主持

(4) bevictor伟德高层次人才支撑计划, 2018-012022-12, 20万元,主持

(5) 中国中煤重大科技专项,2023-012024-12300万元,参与

(6) 国家自然科学基金委员会,面上项目, 82172886, 基于线粒体双光子近红外ATP荧光探针的肝癌细胞代谢异质性可视化分型及CTC检测应用研究, 2022-01-01 2025-12-31, 55万元, 参与

(7) 国家自然科学基金委员会,面上项目, 42172200, 基于族组分迁移与生物酶催化效应的煤岩生物气化机理研究, 2022-01-01 2025-12-31, 60万元,参与

五年以第一/通讯作者发表学术论文:

[1] Wang Yaya, Di Zhiting,et.al. Sophorolipid-enhanced methane production from low-rank coal: metagenomic insights into microbial and metabolic mechanisms. Biotechnology and Bioprocess Engineering. 2026. (第一作者)

[2] Wang Yaya, Cao Weilong, et.al. Comparative biodegradation of lignite by Bacillus cereus and Lelliottia amnigena: Elucidating enzymatic, adhesion, and metabolic mechanisms through multi-technique analysis. Process Biochemistry. 2026. 161, 249–260. (第一作者)

[3] Wang Yaya, Liu Mingwu et.al. Bacillus velezensis synergizes with coal gangue to enhance Medicago sativa growth: Insights into nutrient cycling and soil fertility enhancement. Rhizosphere. 2026. 37, 101289. (第一作者)

[4] Liu, Mingwu; et.al. Wang, Yaya*. Enhancement of the utilization of coal gangue as mineral fertilizers by the thermophilic bacterium Bacillus aerius. Journal of Environmental Chemical Engineering. 2025. 13(2), 115850. (通讯作者)

[5] Di Zhiting, Wang Yaya*, et.al. The Mechanism Underlying Enhanced Coal-to-Methane Conversion in Anaerobic Digestion With Betaine Supplementation. Biotechnology Journal. 2025. 20(4):e70028. (通讯作者)

[6] Wang Yaya, Cao Weilong, et.al. The mechanism underlying lignite biodegradation by Cupriavidus sp isolated from sludge. Biodegradation. 2025. 36, 98. (第一作者)

[7] Liu Chengyong, et.al, Wang Yaya*. Preliminary Elucidation of the Mechanism Underlying Coal Degradation by Bacillus amyloliquefaciens. BioResources. 2025. 20(3), 7211-7231. (通讯作者)

[8] Gu Wenzhe, et.al, Wang Yaya*. Microbial-mediated coal gangue reclamation: enhancing alfalfa growth with potassium and phosphorus-solubilizing bacteria. Archives of Environmental Protection. 2025. 51(2), 73-82 (通讯作者)

[9] Wang, Zhigang; et,al. Wang, Yaya*. Solubilization of K and P nutrients from coal gangue by the Bacillus velezensis. Applied and Environmental Microbiology. 2024. 90(11), 15. (通讯作者)

[10] Wang, Yaya*; Liu, Mingwu;et.al. Feasibility Analysis of Bacterial-Treated Coal Gangue for Soil Improvement: Growth-Promoting Effects of Alfalfa. Minerals. 2024;14, No. 7: 676. (第一作者、通讯作者)

[11] Wang, Yaya; Bao, Yuan* et.al. Recent progress in improving the yield of microbially enhanced coalbed methane production. Energy Reports. 2023; 9:2810-2819. (第一作者)

[12] Wang, Yaya*; Huang, Chun; Zhao, Weiqin. Recent advances of the biological and biomedical applications of CRISPR/Cas systems. Molecular biology reports. 2022;49(7):7087-7100. (第一作者、通讯作者)

近年来申请专利

[1] 王亚亚;刘铭武等。一种覃状芽孢杆菌菌株及其用途,2024-12-27,中国, CN202411952564.5(专利)

[2] 王亚亚;刘铭武等。一种空气芽孢杆菌菌株在促进首蓿生长中的应用,2024-12-27,中国,CN202411952586.1(专利)

[3] 王亚亚;第芝婷等。一种利用表面活性剂提升微生物降解煤生成甲烷产率的方法,2024-06-12,中国,CN202410754324.8(专利)


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