魏雨泉

基本介紹

  • 中文名:魏雨泉
  • 畢業院校:東北農業大學
  • 學位/學歷:博士
  • 專業方向:生物化學與分子生物學
  • 任職院校:中國農業大學
人物經歷,教育經歷,工作經歷,研究領域,獲得榮譽,學術成果,主持項目,發表論文,授權專利,

人物經歷

教育經歷

2009.09-2013.07 東北農業大學 生物科學專業 本科 理學學士
2013.09-2017.07 東北農業大學 生物化學與分子生物學(碩博連讀) 理學博士

工作經歷

2017.07-2019.07 清華大學 環境科學與工程 博士後
2019.08- 中國農業大學 資源環境學院 副教授

研究領域

1. 有機廢棄物資源化處理
2. 微生物生態

獲得榮譽

1. 黑龍江省“優秀三好學生”(2017年)
2. 研究生國家獎學金(2016年)
3. 黑龍江省農業委員會農業科學技術一等獎(2015年)排名10
4. 研究生國家獎學金(2015年)

學術成果

主持項目

1. 國家重點研發項目“場地地下水鹵代溶劑污染高效修復技術” (2018.12-2022.11) 項目骨幹(2017年)
2. 國家自然科學基金項目“固體有機廢棄物生物堆肥碳代謝調控機制研究” (2018.01-2021.12) 參與人
3. 中國博士後面上項目“地下水三氯乙烯生物電化學淨化過程和機理研究” (2018.01-2019.06) 項目主持人

發表論文

2019年:
1. Wei, Y., Wu, D., Wei, D., Zhao, Y., Wu, J., Xie, X., Zhang, R., Wei, Z.*, 2019. Improved lignocellulose-degrading performance during straw composting from diverse sources with actinomycetes inoculation by regulating the key enzyme activities. Bioresource Technology, 271, 66–74.
2. Wei, Y., Wei, Z., Zhang, F., Li, X., Tan, W., Xi, B.* 2019. Role of Humic Acid Chemical Structure Derived from Different Biomass Feedstocks on Fe(III) Bioreduction Activity: Implication for Sustainable Use of Bioresources. Catalysts, 9(5), 450.
3. Wu, J., Zhang, A., Li, G.*, Wei, Y.*, He, S., Lin, Z., Shen, X., Wang, Q., 2019. Effect of different components of single superphosphate on organic matter degradation and maturity during pig manure composting. Science of the total environment, 646, 587-594.
4. Wu, J., Zhang, A., Li, G.*, Wei, Y.*, Jia, F., Liang, Y., Cheng, Y., Liu, Y. 2019. Impact of phosphate additive on organic carbon component degradation during pig manure composting. Environmental Science and Pollution Research, 26(12), 11805-11814.
5. Zhao, X.Wei, Y.Zhang, F., Tan, W., Fan, Y., Xi, B.* 2019. How do fungal communities and their interaction with bacterial communities influence dissolved organic matter on the stability and safety of sludge compost? Environmental Science and Pollution Research, 26(2), 4141-4146. (並列第一)
6. Zhang, H., Liu, D., Wei, Y., Li, A., Liu, B., Yuan, Y., Zhang, H., Li, G., Zhang, F.* 2019. Fabrication of a 1D Mn3O4 nano-rod electrode for aqueous asymmetric supercapacitors and capacitive deionization. Inorganic Chemistry Frontiers, 6.
7. Yuan, Y., Zhang, H., Wei, Y., Si, Y., Li, G., Zhang, F.* 2019. Onsite quantifying electron donating capacity of dissolved organic matter. Sci Total Environ, 662, 57-64.
8. Sun, Q., Chen, J., Wei, Y., Zhao, Y., Wei, Z.*, Zhang, H., Gao, X., Wu, J., Xie, X. 2019. Effect of semi-continuous replacements of compost materials after inoculation on the performance of heat preservation of low temperature composting. Bioresource Technology, 279, 50-56.
9. Zhang, Z., Zhao, Y., Yang, T., Wei, Z.*, Li, Y., Wei, Y., Chen, X., Wang, L. 2019. Effects of exogenous protein-like precursors on humification process during lignocellulose-like biomass composting: Amino acids as the key linker to promote humification process. Bioresource Technology, 291, 121882.
2018年:
1. Wei, Y., Zhao, Y., Lu, Q., Cao, Z., Wei, Z.*, 2018. Organophosphorus-degrading bacterial community during composting from different sources and their roles in phosphorus transformation. Bioresource technology, 264, 277-284.
2. Wei, Y., Zhao, Y., Shi, M., Cao, Z., Lu, Q., Yang, T., Fan, Y., Wei, Z.*, 2018. Effect of organic acids production and bacterial community on the possible mechanism of phosphorus solubilization during composting with enriched phosphate-solubilizing bacteria inoculation. Bioresource Technology, 247, 190-199.
3. Zhao, X., Wei, Y., Fan, Y., Zhang, F., Tan, W., He, X., Xi, B.*, 2018. Roles of bacterial community in the transformation of dissolved organic matter for the stability and safety of material during sludge composting. Bioresource technology, 267, 378-385. (並列第一)
4. Liu, D., Zhang, H., Wei, Y., Liu, B., Lin, Y., Li, G., Zhang, F.*, 2018. Enhanced degradation of ibuprofen by heterogeneous electro-Fenton at circumneutral pH. Chemosphere, 209, 998-1006.
2017年:
1. Wei, Y., Zhao, Y., Fan, Y., Lu, Q., Li, M., Wei, Q., Zhao, Y., Cao, Z., Wei, Z.*, 2017. Impact of phosphate-solubilizing bacteria inoculation methods on phosphorus transformation and long-term utilization in composting. Bioresource Technology, 241, 134-141.
2. Zhao, Y., Wei, Y., Zhang, Y., Wen, X., Xi, B., Zhao, X., Zhang, X., Wei, Z.*, 2017. Roles of composts in soil based on the assessment of humification degree of fulvic acids. Ecological Indicators, 72, 473-480.
3. Wang, H., Zhao, Y., Wei, Y., Zhao, Y., Lu, Q., Liu, L., Jiang, N., Wei, Z.*, 2017. Biostimulation of nutrient additions on indigenous microbial community at the stage of nitrogen limitations during composting. Waste Management. 74, 194-202.
4. Zhao, Y., Zhao, Y., Zhang, Z., Wei, Y., Wang, H., Lu, Q., Li, Y., Wei, Z.*, 2017. Effect of thermo-tolerant actinomycetes inoculation on cellulose degradation and the formation of humic substances during composting. Waste Management, 68, 64-73.
2016年:
1. Wei, Y., Zhao, Y., Wang, H., Lu, Q., Cao, Z., Cui, H., Zhu, L., Wei, Z.*, 2016. An optimized regulating method for composting phosphorus fractions transformation based on biochar addition and phosphate-solubilizing bacteria inoculation. Bioresource Technology, 221, 139-146.
2. Wei, Y., Wei, Z.*, Cao, Z., Zhao, Y., Zhao, X., Lu, Q., Wang, X., Zhang, X., 2016. A regulating method for the distribution of phosphorus fractions based on environmental parameters related to the key phosphate-solubilizing bacteria during composting. Bioresource Technology, 211, 610-7.
3. Zhao, Y. , Lu, Q. Wei, Y. Cui, H., Zhang, X., Wang, X., Shan, S., Wei, Z.*, 2016. Effect of actinobacteria agent inoculation methods on cellulose degradation during composting based on redundancy analysis. Bioresource Technology, 219, 196-203. (並列第一)
4. Wei, Z., Wang, X., Zhao, X., Xi, B., Wei, Y., Zhang, X., Zhao, Y.*, 2016. Fluorescence characteristics of molecular weight fractions of dissolved organic matter derived from composts. International Biodeterioration & Biodegradation, 113, 187-194.
5. Zhang, Y., Zhao, Y., Chen, Y., Lu, Q., Li, M., Wang, X., Wei, Y., Xie, X., Wei, Z.*, 2016. A regulating method for reducing nitrogen loss based on enriched ammonia-oxidizing bacteria during composting. Bioresource Technology, 221, 276-283.
6. Zhu, L., Zhao, Y., Chen, Y., Cui, H., Wei, Y., Liu, H., Chen, X., Wei, Z.*, 2016. Characterization of atrazine binding to dissolved organic matter of soil under different types of land use. Ecotoxicology and environmental safety. 147, 1065-1072.
7. Zhu, S., Wu, Y., Ye, X., Ma, L., Qi, J., Yu, D., Wei, Y., Lin, G., Ren, G., Li, D.*, 2016. FGF21 ameliorates nonalcoholic fatty liver disease by inducing autophagy. Molecular and Cellular Biochemistry, 420(1), 107-119.
2015年:
1. Wei, Y., Zhao, Y., Xi, B., Wei, Z.*, Li, X., Cao, Z., 2015. Changes in phosphorus fractions during organic wastes composting from different sources. Bioresource Technology, 189, 349-56.
2. Zhao, Y., Wei, Y., Li, Y., Xi, B., Wei, Z.*, Wang, X., Zhao, Z., Ding, J., 2015. Using UV-Vis Absorbance for Characterization of Maturity in Composting Process with Different Materials. Spectroscopy and Spectral Analysis, 35(4), 961-965.
3. Li, Q., Zhao, Y., Zhang, X., Wei, Y., Qiu, L., Wei, Z.*, Li, F., 2015. Spatial heterogeneity in a deep artificial lake plankton community revealed by PCR-DGGE fingerprinting. Chinese Journal of Oceanology and Limnology, 33(3), 624-635.
4. Zhao, X., Wei, Z.*, Zhao, Y., Xi, B.*, Wang, X., Zhao, T., Zhang, X., Wei, Y., 2015. Environmental factors influencing the distribution of ammonifying and denitrifying bacteria and water qualities in 10 lakes and reservoirs of the Northeast, China. Microbial Biotechnology, 8(3), 541-548.
2014年:
1. Wei, Z., Zhang, X., Wei, Y., Wen, X., Shi, J., Wu, J., Zhao, Y.*, Xi, B., 2014. Fractions and biodegradability of dissolved organic matter derived from different composts. Bioresource Technology, 161, 179-85.

授權專利

1. 趙越; 魏雨泉; 魏自民; 盧倩; 王雪芹; 曹振宇; 崔洪洋; 趙藝; 劉海龍. 一種基於最大供磷力的堆肥施用方法. 201610255590.1
2. 魏自民; 王雪芹; 趙越; 張旭; 魏雨泉; 趙昕宇. 一種有機廢棄物冬季發酵的生物能源保溫方法. 201510271409.1
3. 趙越; 王佰潔; 魏自民; 趙昕宇; 張旭; 魏雨泉; 王雪芹. 一種用於擴增嗜冷桿菌屬的特異性引物. 201410369525.2
4. 魏自民; 張旭; 趙越; 魏雨泉; 趙昕宇; 時儉紅. 可導氣圓柱體立式土壤礦化速率測定裝置. 201410366078.5

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