MUKESH·KUMAR·AWASTHI

MUKESH KUMAR AWASTHI (木開石) ,男,1985年生,印度人,博士,現為西北農林科技大學資源環境學院副教授,碩士生導師。

基本介紹

  • 中文名:MUKESH KUMAR AWASTHI (木開石) 
  • 國籍:印度 
  • 出生日期:1985年
  • 職業:教師
  • 畢業院校:Rani Durgavati 
  • 學位/學歷:博士
  • 專業方向:微生物學
  • 任職院校:西北農林科技大學
人物經歷,學術兼職,研究領域,科研成果,科研項目,代表性論文,

人物經歷

2018.3至今西北農林科技大學資源環境學院,副教授,碩士生導師
2015.01–2018.03印度AKS大學,助理教授
2015.032018.03 西北農林科技大學資源環境學院,博士後研究員
2013.03–2014.12 香港浸會大學,研究助理
2012.08–2014.12 印度AKS大學,教學助理
2015.3-2018.3 西北農林科技大學,資源環境學院,博士後
2013.3-2015.12香港浸會大學,生物科學學院,博士後
2009.12-2013.12 Rani Durgavati大學,微生物學專業,博士
2006.7-2008.9 Rani Durgavati大學,微生物學專業,碩士
2002.7-2005.11 Saugor大學,微生物學專業,本科

學術兼職

印度微生物學家協會、國際工業生物論壇等會員,Journal of Hazardous Materials,Bioresource Technology, Journal of Cleaner Production,Journal ofChemical Engineering, Scienceof the TotalEnvironment, Geoderma, Waste Management, Journal of Environmental Management, Food Technology and Biotechnology,Chemosphere,Environmental Technology等雜誌的審稿人。

研究領域

主要從事固體有機廢棄物堆肥化處理及其過程中環境污染控制、環境微生物技術等科研工作。

科研成果

近年來,主持或參與多向項目,發表科研論文84餘篇,其中以第一作者(包括通訊作者)發表SCI論文55篇(中科院一區論文22篇),撰寫英文專著4部。

科研項目

The mechanism of carbon dioxide sequestration and mitigation of greenhouse gases emission during the pig and poultry manure composting employing developed potential carbon sequestration “biocatalyst integrated biochar”. 2019-2020 (Grant No. 31750110469) has been approved by National Natural Science Foundation of China (NSFC);
Project title “Study the mechanism of greenhouse gases reduction during the livestock manure composting employing carbon sequestration microbial consortium with biochar” China Postdoctoral funding for year 2016-2017 at Northwest A&F University, Yangling, Shaanxi, China. Grant No. 2016M602865.
Project title “Yangling Demonstration Zone Collaborative Innovation Major Projects of Production, Study, Research and Application”. 2016-2018 (No. 2016CXY-12);
Project title “The National Key Research Project of China”. 2016-2020 (2016YFD0800606);
Project title “Composting of Food waste with Chinese Medicinal Herb Residues as a Bulking Agent to produce a High-end Organic Fertilizer”, Hong Kong Baptist University, Hong Kong SAR, China. 2011-2012 (已完成)
Project title “Composting of Municipal Solid Waste (organic solid waste) employing microbial biotechnology” at Regional Office, M.P. Pollution Control Board, Vijay Nagar, Jabalpur, India. (已完成)

代表性論文

(打*者為通信作者):
Awasthi, M.K.,Chen, H., Wang, Q., Liu, T., Duan, Y., Awasthi, S. K., Ren, X., Tu, Z., Li, J., Zhao, J., Zhang, Z.*,(2018). Succession of bacteria diversity in the poultry manure composted mixed with clay: Studies upon its dynamics and associations with physicochemical and gaseous parameters. Bioresource Technology, 267, 618.(JCR-Q1)
Awasthi, M. K.,Chen, H., Liu, T., Zhao, J., Ren, X., Wang, M., Duan, Y., Awasthi, S. K., Zhang, Z.*,(2018). Influence of clay as additive on greenhouse gases emission and maturity evaluation during chicken manure composting. Bioresource Technology, 266, 82. (JCR-Q1)
Awasthi, M.K.,Awasthi, S.K., Wang, Q., Pandey, A., Ren, X., Chen, H., Zhao, J., Wang, M., Zhang, Z*., (2018). Role of Ca-bentonite to improve the humification, enzymatic activities, nutrient transformation and end product quality during sewage sludge composting. Bioresource Technology. 262, 80-89.(JCR-Q1)
Sarsaiya, S., Awasthi, S.K., Awasthi, M.K.*,Awasthi, A.K., Mishra, S., Chen, J., (2018). The dynamic of cellulase activity of fungi inhabiting organic municipal solid waste. Bioresource Technology. 251, 411-415. (JCR-Q1)
Mao, H., Lv, Z., Sun, H., Li, R., Zhai, B., Wang, Z., Awasthi, M.K.,Wang, Q., Lina, Z., (2018). Improving of biochar and bacterial powder addition on gaseous emission and bacterial community in pig manure compost. Bioresource Technology. 258, 195-202. (JCR-Q1)
Awasthi, S.K., Joshi, R., Dhar, H., Verma, S., Awasthi, M.K.,Varjani, S., Sarsaiya, S., Zhang Z., Kumar, S.*, (2018). Improving methane yield and quality via co-digestion of cow dung mixed with food waste. Bioresource Technology. 251, 259-263. (JCR-Q1)
Wang, Z., Jiang, Y., Awasthi, M.K., Wang, J., Wang, Q., Amjad, A., Yang, X., Lahori, A.H., Zhang, Z., (2018). Nitrate removal by combined heterotrophic and autotrophic denitrification processes: Impact of coexistent ions. Bioresource Technology. 250, 838-845. (JCR-Q1)
Awasthi, M.K.,Awasthi, S.K., Wang, Q., Chen, H., Wang, M., Re, X., Zhao, J., Zhang, Z*., (2018). Influence of biochar on volatile fatty acids accumulation and microbial community succession during biosolids composting. Bioresource Technology. 251, 158-164. (JCR-Q1)
Awasthi, S.K., Wong, J.W.C., Zhang, Z., Awasthi, M.K.*,Wang, Q., (2018). Evaluation of microbial dynamics during post-consumption food waste composting. Bioresource Technology. 251, 181-188. (JCR-Q1)
Dhyani, V., Awasthi, M.K.,Wang, Q., Kumar, J., Ren, X., Zhao, J., Chen, H., Wang, M., Bhaskar, T., Zhang, Z., (2018). Effect of composting on the thermal decomposition behavior and kinetic parameters of pig manure-derived solid waste. Bioresource Technology. 252, 59-65. (JCR-Q1)
Awasthi, M.K.,Wang, Q., Awasthi, S.K., Li, R., Zhao, J., Ren, X., Wang, M., Chen, H., Zhang, Z*., (2018). Feasibility of innovative additive (medical stone) amendment as a function of sewage sludge co-composting and production of nutrient-rich compost. Journal of Environmental Management. 216, 49-61.(JCR-Q1)
Li, R., Liang, W., Wang, J.J., Lewis, A.G., Huang, D., Huang, H., Lei, S., Awasthi, M.K.,Zhou, B., Ran, X., Zhang, Z., (2018). Facilitative capture of As(V), Pb(II) and methylene blue from aqueous solutions with MgO hybrid sponge-like carbonaceous composite derived from sugarcane leafy trash. Journal of Environmental Management. 212, 77-87.(JCR-Q1)
Wang, Q., Awasthi, M.K.*,Rena, X., Zhao, J., Li, R., Wang, Z., Wang, M., Chen, H., Zhang, Z., (2018). Combined use of biochar, zeolite and wood vinegar for the composting of pig manure: The Effect on greenhouse gases mitigation and nitrogen conservation. Waste management. 74, 221-230.(JCR-Q1)
Li, J., Tong, X., Awasthi, M.K., Wu, F., Ha, S., Ma, J., Sun, X., He, C., (2018). Dynamics of soil microbial biomass and enzyme activities along a chronosequence of desertified land revegetation. Ecological Engineering 111, 22–30.(JCR-Q3)
Awasthi, M.K.,Wang, Q., Chen, H., Wang, M., Rena, X., Zhao, J., Li. R., Zhang, Z.*, (2018). Influence of medical stone amendment on gaseous emissions, microbial biomass and ammonia oxidizing bacteria genes during biosolids co-composting. Bioresource Technology. 247, 970-979.(JCR-Q1)
Awasthi, M.K.,Wang, Q., Chen, H., S. K. Awasthi, Wang, M., Rena, X., Zhao, J., Li. R., Zhang, Z.*, (2018). Beneficial effect of mixture of additives amendment on enzymatic activities, organic matter degradation and humification during biosolids co-composting: Uses of end product for plant growth. Bioresource Technology. 247, 138–146. (JCR-Q1)
Huang, H., Yao, W., Li, R., Ali, A., Du, J., Guo, D., Xiao, R., Guo, Z., Zhang, Z., Awasthi, M.K.,(2018). Effect of pyrolysis temperature on chemical form, behavior and environmental risk of Zn, Pb and Cd in biochar produced from phytoremediation residue. Bioresource Technology. 249, 487-493. (JCR-Q1)
Awasthi, M.K.,Selvam, A., Lai, K.M., Wong, J.W.C.*, (2017). Critical evaluation of post-consumption food waste composting employing thermophilic bacterial consortium. Bioresource Technology. 245, 665-672. (JCR-Q1)
Awasthi, M.K.,Wang, Q., Wang, M., Chen, H., Rena, X., Zhao, J., Zhang, Z.*, (2018). In-vessel Co-composting of food waste employing enriched bacterial consortium. Food technology and Biotechnology. 0.17113/ftb.56.01.18.5439. 56 (1), 83-89. (JCR-Q3)
Awasthi, M.K.,Li, J., Kumar, S., Awasthi, S.K., Wang, Q., Chen, H., Wang, M., Ren, X., Z. Zhang* (2017). Effects of biochar amendments on bacterial and fungal diversity for co-composting of gelatin industry sludge mixed with organic fraction of municipal solid waste. Bioresource Technology. 246; 214-223. (JCR-Q1)
Awasthi M.K.,J.W.C. Wong, S. Kumar, S. K. Awasthi, Q. Wang, M. Wang, X. Ren, J. Zhao, H. Chen, Z. Zhang* (2018). Biodegradation of food waste using microbial cultures producing thermostable α-amylase and cellulase under different pH and temperature. Bioresource Technology. 248, 160-170. (JCR-Q1)
Awasthi, M.K.,Selvam, A., Chan, M.T., Wong*, J.W.C. (2018). Bio-degradation of oily food waste employing thermophilic bacterial strains. Bioresource Technology. 248, 141-147. (JCR-Q1)
Awasthi, M.K.,Zhang, Z.*, Wang, Q., Wang, M., Shen, F., Li, R., Li, D.S., Rena, X., Wang, M., Chen, H., Zhao, J., (2017). New insight with the effects of biochar amendment on bacterial diversity as indicators of biomarkers support the thermophilic phase during sewage sludge composting. Bioresource Technology. 238, 589-601. (JCR-Q1)
Awasthi, M.K.,Wang, Q., Wang, M., Chen, H., Awasthi, S.K., Rena, X., Li, R., Zhang, Z., (2017). Evaluation of biochar amended biosolids co-composting to improve the nutrient transformation and its correlation as a function for the production of nutrient-rich compost. Bioresource Technology. 237, 156–166. (JCR-Q1)
Awasthi, M.K.,Wang, M., Chen, H., Wang, Q., Zhao, J., Rena, X., Li, D., Awasthi, S.K., Shen, F., Li, R., Zhang, Z., (2017). Heterogeneity of biochar amendment to improve the carbon and nitrogen sequestration through reduce the greenhouse gases emissions during sewage sludge composting. Bioresource Technology. 224, 428-438. (JCR-Q1)
Awasthi, M.K.,Wang, Q., Rena, X., Zhao, J., Huang, H., Awasthi, S.K., Lahori, A.H., Li, R., Zhang, Z., (2016). Role of biochar amendment in mitigation of nitrogen loss and greenhouse gas emission during sewage sludge composting. Bioresource Technology. 219, 270–280. (JCR-Q1)
Awasthi, M.K.,Wang, Q., Huang, H., Rena, X., Lahoria, A. H., Mahar, A., Ali, A., Feng S., Li, R., Zhang, Z., (2016). Influence of zeolite and lime as additives on greenhouse gas emissions and maturity evolution during sewage sludge composting. Bioresource Technology. 216, 172–181. (JCR-Q1)
Awasthi, M.K.,Pandey, A.K., P.S. Bundela, Wong, J.W.C., Li, R., Zhang, Z., (2016). Co-composting of gelatin industry sludge combined with organic fraction of municipal solid waste and poultry waste employing zeolite mixed with enriched nitrifying bacterial consortium. Bioresource Technology. 213, 181–189. (JCR-Q1)
Awasthi, M.K.*,Pandey, A.K., Bundela, P.S., Khan, J., (2015). Co-composting of organic fraction of municipal solid waste mixed with different bulking waste: Characterization of physicochemical parameters and microbial enzymatic dynamic. Bioresource Technology. 182, 200-207. (JCR-Q1)
Awasthi, M.K.*,Bundela, P.S., Pandey, A.K., Khan, J., Wong, J.W.C., Selvam, A., (2014). Evaluation of thermophilic fungal consortium for organic municipal solid waste composting. Bioresource Technology, 168, 214–221. (JCR-Q1)
Awasthi, M.K.,Wang, Q., Huang, H., Li, R., Shen, F., Lahori, A. H., Wang, P., Guo, D., Guo, Z., Jinag, S., Zhang, Z., (2016). Effect of biochar amendment on greenhouse gas emission and bio-availability of heavy metals during sewage sludge co-composting. J. Clean. Prod. 135, 829-835.(JCR-Q1)
Awasthi, M.K.,Wang, Q., Wang, M., Chen, H., Awasthi, S.K., Rena, X., Li, R., Zhang, Z., (2017). In-vessel co-composting of biowaste: Focusing on mitigation of greenhouse gases emissions and production of nutrient rich compost. Renewable Energy. 129,814-823. (JCR-Q1)
Awasthi, M.K.,Wang, M., Pandey, A., Chen, H., Awasthi, S.K., Wang, Q., Rena, X., Lahori, A. H., Li, D.S., Li, R., Zhang, Z., (2017). Heterogeneity of zeolite combined with biochar properties as a function of sewage sludge composting and production of nutrient-rich compost. Waste Management. 68,760–773.(JCR-Q1)
Wang, Q., Awasthi, M.K.,Rena, X., Li, R., Zhao, J., Shen, F., Zhang, Z., (2017). Effect of Calcium Bentonite on Heavy-Metal Mobility and Accumulation of Vegetables in Compost–Soil System during Consecutive Planting. Environmental Science and Pollution ResearchResearch. 24(18), 1-10.(JCR-Q3)
Shen, F., Liao, R., Ali, A., Guo, D., Mahar, A., Li., R., Sun, X., Awasthi, M.K.,Wang, Q., Zhang, Z., (2017). Spatial distribution identification and risk evaluation of heavy metals in farmland soil surrounding Pb/Zn smelters in Feng County, China. Ecotoxicology and Environmental Safety. 139, 254–262.(JCR-Q2)
Wang, M., Awasthi, M.K.,Wang, Q., Chen, H., Ren, X., Zhao, J., Li, R., Zhang, Z.*, (2017). Comparison of additives amendment for mitigation of greenhouse gases and ammonia emission during sewage sludge co-composting based on correlation analysis. Bioresource Technology 243,520–527. (JCR-Q1)
Wang, Q., Awasthi, M.K.,Rena, X., Zhao, J., Li, R., Wang, Z., Wang, M., Zhang, Z.*, 2017. Comparison of biochar, zeolite and their mixture amendment for aiding organic matter transformation and nitrogen conservation during pig manure composting. Bioresource Technology. 245,300–308. (JCR-Q1)
Mahar, A., Wang, P., Ali, A., Lahori, A.H., Awasthi, M.K.,Wang, Z., Guo, Z., Wang, Q., Feng, S., Li, R., Z. Zhang*. (2017). (Im)mobilization of soil heavy metals using CaO, FA, sulfur, and Na2S: a 1-year incubation study.10.1007/s13762-017-1427-7. International Journal of environmental Science and Technology. (JCR-Q3)
Xiao, R., Awasthi, M.K.,Li, R., Park, J., Scott, M.P., Wang, Q., Wang, J.J., Zhang, Z.*, (2017). Recent developments in biochar utilization as an additive in organic solid waste composting: a review. Bioresource Technology 246, 203–213. (JCR-Q1)
Wang, Q., Awasthi, M.K.,Zhao, J., Ren, X., Li, R., Wang Z., Wang, M., Zhang, Z. *, (2017). Improvement of pig manure compost lignocellulose degradation, organic matter humification and compost quality with medical stone. Bioresource Technology 243,771-777. (JCR-Q1)
Li, R., Liang, W., Li, M., Jiang, S., Huang, H., Zhang, Z., Wang, J.J., Awasthi, M.K., (2017). Removal of Cd(II) and Cr(VI) ions by highly cross-linkedThiocarbohydrazide-chitosan gel. International Journal of Biological Macromolecules 104, 1072–1081. (JCR-Q2)
Lahori, A.H., Zhang, Z. *, Guo, Z., Mahar, A., Li, R., Awasthi, M.K., Siala, T.A., Kumbhar, F., Wang, P., Shen, F., Zhao, J., Huang, H., (2017.) Potential use of lime combined with additives on (im)mobilization and phytoavailability of heavy metals from Pb/Zn smelter contaminated soils. Ecotoxicology and Environmental Safety 145, 313–323.(JCR-Q2)
Lahori, A.H., Gua, Z., Zhang, Z., Li, R., Mahar, A., Awasthi, M.K.,Shen, F., Sial, T.A., Kumbhar, F., Wang, P., Jiang, S., Use of Biochar as an Amendment for Remediation of Heavy Metal-Contaminated Soils: Prospects and Challenges. (2017). Pedospher 27(6), 991-1014. (JCR-Q3)
Lahori, A.H., Zhang, Z.*, Guo, Z., Mahar, A., Li, R., Awasthi, M.K.,Siala, T.A., Kumbhar, F., Wang, P., Shen, F., Zhao, J., Huang, H., (2017). Beneficial effects of tobacco biochar combined with mineral additives on (im)mobilization and (bio)availability of Pb, Cd, Cu and Zn from Pb/Zn smelter contaminated soils. Ecotoxicology and Environmental Safety 145, 528–538.(JCR-Q2)
Shen, F., Li, Y., Zhang, M., Awasthi, M.K.,Ali, A., Li, R., Wang Q., Zhang, Z., (2016). Atmospheric Deposition-Carried Zn and Cd from a Zinc Smelter and Their Effects on Soil Microflora as Revealed by 16S rDNA. Scientific report. 6, 39148. (JCR-Q2)
Han-zhen, C., Xi-cui, N., Wang, Q., Zhang, Z., Ren, Z., Li, R., Wang, M., Awasthi, M.K.,(2016). Effect of Alkali Solids Amendments on Sewage sludge Aerobic composting and the potential of related products on infertile soil amelioration. Environmental Science (in Chinese). 37(12), 394-402. (EI)
Mahar, A., Wang, P., Ali, A., Guo, Z., Awasthi, M.K.,Lahori, A. H., Wang, Q., Feng S., Li, R., Zhang, Z., (2016). Impact of CaO, fly ash, sulfur and Na2S on the (im) mobilization and phytoavailability of Cd, Cu and Pb in contaminated soil. Ecotoxicology and Environmental Safety. 134, 116–123.(JCR-Q2)
Wang, Q., Wang, Z., Awasthi, M.K.,Jiang, Y., Li, R., X. Rena, Zhao, J., Shen, F., Wang, M., Zhang, Z., (2016). Evaluation of medical stone amendment for the reduction of nitrogen loss and bioavailability of heavy metals during pig manure composting. Bioresource Technology. 220, 297-304.(JCR-Q1)
Li, R., Wang, J.J., Zhou, B., Awasthi, M.K.,Ali, A., Zhang, Z., Lahori, A.H., Mahar, A., (2016). Enhancing phosphate adsorption by Mg/Al layered double hydroxide functionalized biochar with different Mg/Al ratios. Science of the Total Environment 559, 121–129. (JCR-Q1)
Li, R., Wang, J.J., Zhou, B., Awasthi, M.K.,Liua, S., Ali, A., Zhang, Z., Lahori, A.H., Mahar, A., (2016). Recovery of phosphate from aqueous solution by magnesium oxide decorated magnetic biochar and its potential as phosphate-based fertilizer substitute. Bioresource Technology. 215, 209–214.(JCR-Q1)
Mahar, A., Wang, P., Ali, A., Awasthi, M.K.,Lahori, A.H., Wang, Q., Li, R. and Zhang, Z., (2016). Challenges and opportunity in the phytoremeniation of heavy metals contamination soils: A review. Ecotoxicology and Environmental Safety. 126, 111-121. (JCR-Q2)
Wang, Q., Li, R., Hanzhen, C., Awasthi, M.K.,Zhang, Z., Wang, J.J., A. Ali, Mahar, A., (2016). Improving pig manure composting efficiency employing Ca-bentonite. Ecological Engineering. 87.157-161. (JCR-Q3)
Ren, X., Awasthi, M.K.,Wang, Q., Zhao, J., Li, R., Tu, Z., Chen, H., Awasthi, S. K.,Zhang, Z.*,(2018). New insight of tertiary-amine modified bentonite amendment on the nitrogen transformation and volatile fatty acids during the chicken manure composting. Bioresource Technology, 266, 524.(JCR-Q1)
Zhao, J.,Sun, X.,Awasthi, M.K.,Wang, Q., Ren, X., Li, R., Chen, H., Wang, M., Liu, T., Zhang, Z.*,(2018). Performance evaluation of gaseous emissions and Zn speciation during Zn rich antibiotic manufacturing wastes and pig manure composting. Bioresource Technology, 267, 688. (JCR-Q1)
Wang, Q., Awasthi, M.K.,Ren, X., Zhao, J., Wang, M., Chen, H., Zhang, Z., (2018). Recent advances in composting of organic and hazardous waste: A road map to safer environment. Springer. Biosynthetic Technology and Environmental Challenges pp 307-329.
Awasthi, M. K.,Sarsaiya, S., Wang, Q., Wang, M., Chen, H., Ren, X., Kumar, S., Zhang, Z.Q., (2017). Mitigation of global warming potential for cleaner composting. Springer. Biosynthetic Technology and Environmental Challenges. pp 271-305.
Awasthi, M. K.,Zhang, Z.Q., Mahar, A., Ali, A., Wang, Q., (2016). Component Technologies for Municipal Solid Waste Management, Taylor & Francis. 53-88.
Wong, J.W.C, Selvam, A., Awasthi, M.K.,(2016). Composting for Organic Waste Management, American Society of Civil Engineers. pp. 233-272.

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