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2022年发表文章
T.Y. Zhang, P.S. Zhang, Z.Y. Hu, Q.X. Qi, Y.L. He, J.X. Zhang*, "New insight on Fe-bioavailability: Bio-uptake, utilization and induce in optimizing methane production in anaerobic digestion" Chemical Engineering Journal 441, 136099 (2022).
J.X. Zhang*, J.Q. Chen, R.Z. Ma, V. Kumar, Y.W. Tong, Y.L. He, F.J. Mao**, “Mesophilic and thermophilic anaerobic digestion of animal manure: Integrated insights from biogas productivity, microbial viability and enzymatic activity” Fuel 320, 123990 (2022).
J.Q. Chen, P.S. Zhang, J.X. Zhang*, Y.L. He, Y.W. Tong, “Micro-Nano Magnetite-Loaded Biochar Enhances Interspecies Electron Transfer and Viability of Functional Microorganisms in Anaerobic Digestion.” ACS Sustainable Chemistry & Engineering 10, 2811-2821 (2022).
Y.F. Jiang, X.S. Li, J. Yao, X. Wan, J.X. Zhang*, Y.J. Dai*, “Design and performance simulation of a distributed aerobic composting system assisted by solar PV/T heat pump”. Renewable Energy 196, 547-559 (2022).
X. Wan, J. Li, L. Xie, X.M. Wei, J.Q. Wu, Y.W. Tong, X.N. Wang, Y.L. He, J.X. Zhang, Machine learning framework for intelligent prediction of compost maturity towards automation of food waste composting system. Bioresource Technology 365, 128107 (2022).
T.H. Tsui, L. Zhang, J.X. Zhang, Y.J. Dai, Y.W. Tong*, Methodological framework for wastewater treatment plants delivering expanded service: Economic tradeoffs and technological decisions. Science of The Total Environment 823, 153616 (2022).
T.H. Tsui, L. Zhang, J.X. Zhang, Y.J. Dai, Y.W. Tong*, Engineering interface between bioenergy recovery and biogas desulfurization: Sustainability interplays of biochar application. Renewable and Sustainable Energy Reviews 157, 112053 (2022).
E.Y. Lim, J.T.E. Lee, L. Zhang, H.L. Tian, K.C. Ong, Z.K. Tio, J.X. Zhang, Y.W. Tong*, Abrogating the inhibitory effects of volatile fatty acids and ammonia in overloaded food waste anaerobic digesters via the supplementation of nano-zero valent iron modified biochar. Science of The Total Environment 817, 152968 (2022).
J. Li, L. Zhang, C.X. Li, H.L. Tian, J. Ni, J.X. Zhang, Y.W. Tong*, X.N. Wang*, Data-Driven Based In-Depth Interpretation and Inverse Design of Anaerobic Digestion for CH4-Rich Biogas Production. ACS EST Engineering (2022) DOI 10.1021/acsestengg.1c00316
V. Narisetty, L. Zhang, J.X. Zhang, C. S. Lin, Y.W. Tong, P.L. Show, S.K. Bhatia, A. Misra, V. Kumar*. Fermentative production of 2,3-Butanediol using bread waste – A green approach for sustainable management of food waste. Bioresource Technology 358, 127381 (2022).
J.T.E. Lee, E.Y. Lim, L. Zhang, T.H. Tsui, H.L. Tian, M. Yan, S.H. Lim, M.B. Majid, M.C. Jong, J.X. Zhang, S.O. Yong, Y.W. Tong*. Methanosarcina thermophila bioaugmentation and its synergy with biochar growth support particles versus polypropylene microplastics in thermophilic food waste anaerobic digestion. Bioresource Technology 360, 127531 (2022).
J.T.E. Lee, N. Dutta, L. Zhang, T.T.H. Tsui, S.H. Lim, Z.K. Tio, E.Y. Lim, J.C. Sun, J.X. Zhang, C.H. Wang, S.O. Yong, B.K. Ahring, Y. W. Tong*. Bioresource Technology 360, 127590 (2022).
V. Narisetty, S. Nagarajan, S. Gadkari, V.V. Ranade, J.X. Zhang, K. Patchigolla, A. Bhatnagar, M.K. Awasthi, A. Pandey, V. Kumar*. Process optimization for recycling of bread waste into bioethanol and biomethane: A circular economy approach. Energy Conversion and Management 266, 115784 (2022).
2021年发表文章:
J.X. Zhang, Y.X. Cui, T.Y. Zhang, Q. Hu*, Y.W. Tong, Y.L. He, Y.J. Dai, C.H. Wang, Y.H. Peng, "Food waste treating by biochar-assisted high-solid anaerobic digestion coupled with steam gasification: Enhanced bioenergy generation and porous biochar production" Bioresource Technology 331, 125051 (2021).
Q.X. Qi, C. Sun, C. Cristhian, T.Y. Zhang, J.X. Zhang*, H.L. Tian, Y.L. He, Y.W. Tong, "Enhancement of methanogenic performance by gasification biochar on anaerobic digestion" Bioresource Technology 330, 124993 (2021).
Y.X. Cui, F.J. Mao, J.X. Zhang*, Y.L. He*, Y.W. Tong, Y.H. Peng, "Biochar enhanced high-solid mesophilic anaerobic digestion of food waste: Cell viability and methanogenic pathways. " Chemosphere 272, 129863 (2021).
Q.X. Qi, C. Sun*, J.X. Zhang*, Y.L. He, Y.H. Tong, "Internal enhancement mechanism of biochar with graphene structure in anaerobic digestion: The bioavailability of trace elements and potential direct interspecies electron transfer" Chemical Engineering Journal 406, 126833 (2021).
J.X. Zhang*, D.N. Gu, J.Q. Chen, Y.L. He, Y.J. Dai, K.C. Loh, Y.H. Tong*, " Assessment and optimization of a decentralized food-waste-to-energy system with anaerobic digestion and CHP for energy utilization" Energy Conversion and Management, 228, 113654 (2021).
Y.Y.Q, C.Y. Xiao, E. Workie, J.X. Zhang*, Y.L. He, Y.W. Tong, Bioelectrochemical Enhancement of Methanogenic Metabolism in Anaerobic Digestion of Food Waste Under Salt Stress Conditions. ACS Sustainable Chemistry & Engineering 9, 13526-13535 (2021).
L.W. Mao, T.H. Tsui, J.X. Zhang, Y.J. Dai, Y.W. Tong*, Mixing effects on decentralized high-solid digester for horticultural waste: Startup, operation and sensitive microorganisms. Bioresource Technology 333, 125216 (2021).
L.W. Mao, T.H. Tsui, J.X. Zhang, Y.J. Dai, Y.W. Tong*, System integration of hydrothermal liquefaction and anaerobic digestion for wet biomass valorization: Biodegradability and microbial syntrophy. Journal of Environmental Management 293, 112981 (2021).
H.L. Tian, X.N. Wang*, E.Y. Lim, J.T.E. Lee, A.W.L. Ee, J.X. Zhang, Y.W. Tong**, Life cycle assessment of food waste to energy and resources: Centralized and decentralized anaerobic digestion with different downstream biogas utilization. Renewable and Sustainable Energy Reviews 150, 111489 (2021).
2020年发表文章:
J.X. Zhang*, Y.Y. Qu, Q.X. Qi, P.S. Zhang, Y.B. Zhang, Y.H. Tong, Y.L. He*, " The bio-chemical cycle of iron and the function induced by ZVI addition in anaerobic digestion: A review" Water Research 186, 116405 (2020).
J.X. Zhang*, Q. Hu, Y.Y. Qu, Y.J. Dai, Y.L. He, C.H. Wang, Y.W. Tong*, "Integrating food waste sorting system with anaerobic digestion and gasification for hydrogen and methane co-production" Applied Energy 257, 113988 (2020).
J.X. Zhang, H.L. Tian, X.N. Wang*, Y.H. Tong*, " Effects of activated carbon on mesophilic and thermophilic anaerobic digestion of food waste: Process performance and life cycle assessment" Chemical Engineering Journal 399, 125757 (2020).
J.X. Zhang, Q.X. Qi, L.W. Mao, H.L. Y.L. He, K.C. Loh, Y.H. Tong*, " Mixing strategies – Activated carbon nexus: Rapid start-up of thermophilic anaerobic digestion with the mesophilic anaerobic sludge as inoculum" Bioresource Technology 310, 123401 (2020).
E.Y. Lim, H.L. Tian, Y.Y. Chen, K.W. Ni, J.X. Zhang, Y.H. Tong*, " Methanogenic pathway and microbial succession during start-up and stabilization of thermophilic food waste anaerobic digestion with biochar" Bioresource Technology 314, 123751 (2020).
6. J.C. Cheong, T.E. Lee, J.W. Lim, S. Song, J.X. Zhang etc. "Closing the food waste loop: Food waste anaerobic digestate as fertilizer for the cultivation of the leafy vegetable, xiao bai cai (Brassica rapa)". Science of The Total Environment 715, 136789 (2020).
2019年发表文章:
1. J.X. Zhang, L.W. Mao, K. Nithya, K.C. Loh, Y.J. Dai, Y.L. He, Y.W. Tong. "Optimizing mixing strategy to improve the performance of an anaerobic digestion waste-to-energy system for energy recovery from food waste" Applied Energy 249, 28-36 (2019).
2. L.W. Mao, J.X. Zhang, Y.J. Dai, Y.W. Tong. "Effects of mixing time on methane production from anaerobic co-digestion of food waste and chicken manure: Experimental studies and CFD analysis" Bioresource Technology 294, 122177 (2019).
3. L. Zhang, K.C. Loh, J.X.Zhang, L.W. Mao, Y.W. Tong, Y.J. Dai. “Three-stage anaerobic co-digestion of food waste and waste activated sludge: Identifying bacterial and methanogenic archaeal communities and their correlations with performance parameters" Bioresource Technology, 285, 121333 (2019).
4. L. Zhang, K.C. Loh*, J.W. Lim, J.X. Zhang, Bioinformatics analysis of metagenomics data of biogas-producing microbial communities in anaerobic digesters: A review. Renewable and Sustainable Energy Reviews, 100, 110-126 (2019).
5. L. Zhang, K.C. Loh*, J.X. Zhang,Jointly reducing antibiotic resistance genes and improving methane yield in anaerobic digestion of chicken manure by feedstock microwave pretreatment and activated carbon supplementation. Bioresource Technology, 372, 815-824 (2019).
6. L. Zhang, K.C. Loh*, J.X. Zhang, Enhanced food waste anaerobic digestion: An encapsulated metal additive for shear stress-based controlled release. Journal of Cleaner Production 235, 85-95 (2019).
2018年发表文章:
1. J.X. Zhang, X. Kan, Y. Shen, K.C. Loh, C.H. Wang, Y.J. Dai, Y.W. Tong*, A hybrid biological and thermal waste-to-energy system with heat energy recovery and utilization for solid organic waste treatment. Energy, 152, 214-222 (2018).
2. J.X. Zhang, F.J. Mao, K.C. Loh, K.Y. Gin, Y.J. Dai, Y.W. Tong*. “Evaluating the effects of activated carbon on methane generation and the fate of antibiotic resistant genes and class I integrons during anaerobic digestion of solid organic wastes.” Bioresource Technology, 249, 729-736 (2018).
3. W.L. Li, K.C. Loh, J.X. Zhang, Y.W. Tong*, Y.J. Dai. “Two-stage anaerobic digestion of food waste and horticultural waste in high-solid system.” Applied Energy, 209,400-408 (2018).
4. X. Kan, J.X. Zhang, Y.W. Tong, C.H. Wang. “Overall evaluation of microwave-assisted alkali pretreatment for enhancement of biomethane production from brewers’ spent grain.” Energy Conversion and Management, 158, 315-326 (2018).
5. H.H. Tong, Y. Shen, J.X. Zhang, C.H. Wang, S.G. Tian, Y.W. Tong. “A comparative life cycle assessment on four waste-to-energy scenarios for food waste generated in eateries.” Applied Energy, 225, 1143-1157 (2018).
6. L. Zhang, J.X. Zhang, K.C. Loh. “Activated carbon enhanced anaerobic digestion of food waste – Laboratory-scale and Pilot-scale operation.” Waste Management, 75, 270-279 (2018).
7. L. Zhang, K.C. Loh*, J.X. Zhang, “Food waste enhanced anaerobic digestion of biologically pretreated yard waste: Analysis of cellulose crystallinity and microbial communities.” Waste Management, 79, 109-119 (2018).
8. L. Zhang, K. C. Loh, J.X. Zhang, Enhanced biogas production from anaerobic digestion of solid organic wastes: Current status and prospects. Bioresource Technology Reports, In press (2018).
2017年发表文章:
1. J.X. Zhang, K.C. Loh, W.L. Li, J.W. Lim, Y.J. Dai, Y. W. Tong*. “Three-stage anaerobic digester for food waste. Applied Energy, 194, 287-295 (2017) .
2. J.X. Zhang, W.L. Li, J. Lee, K.C. Loh, Y.J. Dai, Y.W. Tong*. “Enhancement of biogas production in anaerobic co-digestion of food waste and waste activated sludge by biological co-pretreatment” Energy, 137, 479-486 (2017).
3. J.X. Zhang, L.W. Mao, L. Zhang, K. C. Loh, Y.J. Dai, Y.W. Tong*. “Metagenomic insight into the microbial networks and metabolic mechanism in anaerobic digesters for food waste by incorporating activated carbon.” Scientific Reports 7, 11293 (2017).
4. J.X. Zhang, K.C. Loh, J. Lee, C.H. Wang, Y.J. Dai, Y.W. Tong*. “Three-stage anaerobic co-digestion of food waste and horse manure”. Scientific Reports, 7, 1269 (2017).
5. J.X. Zhang, L. Zhang, K.C. Loh, Y. Dai, and Y.W. Tong*, “Enhanced anaerobic digestion of food waste by adding activated carbon: Fate of bacterial pathogens and antibiotic resistance genes”, Biochemical Engineering Journal, 128C, 19-25 (2017).
6. X. Kan, Z. Yao, J.X. Zhang, Y.W. Tong, W. Yang, Y. Dai, and C.H. Wang*, “Energy performance of an integrated bio-and-thermal hybrid system for lignocellulosic biomass waste treatment”, Bioresource Technology, 228, 77-88 (2017).
2017年以前文章:
7. J.X. Zhang, Y.B. Zhang*, X. Quan, S. Chen. “Enhancement of anaerobic acidogenesis by integrating an electrochemical system into an acidogenic reactor: Effect of hydraulic retention times (HRT) and role of bacteria and acidophilic methanogenic Archaea.” Bioresource Technology, 179, 43-49 (2015).
8. J.X. Zhang, Y.B. Zhang*, X. Quan. “Bio-electrochemical enhancement of anaerobic reduction of nitrobenzene and its effects on microbial community.” Biochemical Engineering Journal, 94, 85-91 (2015).
9. J.X. Zhang, Y.B. Zhang*, B.Q. Liu, Y. Dai, X. Quan, S. Chen. “A direct approach for enhancing the performance of a microbial electrolysis cell (MEC) combined anaerobic digester by dosing ferric iron: Enrichment and isolation of Fe (III) reducing bacteria.” Chemical Engineering Journal, 248, 223-229(2014).
10. J.X. Zhang, Y.B. Zhang*, X. Quan, S. Chen. “Effects of ferric iron on the anaerobic treatment and microbial biodiversity in a coupled microbial electrolysis cell (MEC) – Anaerobic reactor.” Water Research, 47, 5719-5728 (2013).
11. J.X. Zhang, Y.B. Zhang*, J.H. Chang, X. Quan, Q. Li. “Biological sulfate reduction in the acidogenic phase of anaerobic digestion under dissimilatory Fe (III) – Reducing conditions.” Water Research, 47, 2033-2040 (2013).
12. J.X. Zhang, Y.B. Zhang, X. Quan, S. Chen, S. Afzal. “Enhanced anaerobic digestion of organic contaminants containing diverse microbial population by combined microbial electrolysis cell (MEC) and anaerobic reactor under Fe(III) reducing conditions.” Bioresource Technology, 136, 273-280 (2013).
13. J.X. Zhang, Y.B. Zhang, Y. Li, L. Zhang, S. Qiao, F.L. Yang, X. Quan. “Enhancement of nitrogen removal in a novel anammox reactor packed with Fe electrode.” Bioresource Technology, 114, 102-108 (2012).
14. J.X. Zhang, Y.B. Zhang, X. Quan, S. Chen. “Response to the comments on the paper “Bioaugmentation and functional partitioning in a zero valent iron-anaerobic reactor for sulfate-containing wastewater treatment” Chemical Engineering Journal, 248, 223-229 (2012).
15. J.X. Zhang, Y.B. Zhang, X. Quan. “Electricity assisted anaerobic treatment of salinity wastewater and its effects on microbial communities.” Water Research, 46, 3535-3543 (2012).
16. J.X. Zhang, Y.B. Zhang, X. Quan, Y. Li, S. Chen, H.M. Zhao, D. Wang. “An anaerobic reactor packed with a pair of Fe-graphite plate electrodes for bioaugmentation of azo dye wastewater” Biochemical Engineering Journal, 63, 31-37, 2012.
17. J.X. Zhang, Y.B. Zhang, X.Quan, Y.W. Liu, X.L. An, S. Chen, H.M. Zhao. “Bioaugmentation and functional partitioning in a zero valent iron-anaerobic reactor for sulfate-containing wastewater treatment.” Chemical Engineering Journal, 174, 159-165 (2011).
18. Y. Li, J.X. Zhang, Y.B. Zhang*, X. Quan. “Scalling-up of a zero valent iron packed anaerobic reactor for textile dye wastewater treatment: a potential technology for on-site upgrading and rebuilding of traditional anaerobic wastewater treatment plant.” Water Science and Technology, 76, 823-831 (2017).
19. Y. Li, Y.B. Zhang, X. Quan, J.X. Zhang, S. Chen, S. Afzal. “Enhanced anaerobic fermentation with azo dye as electron acceptor: Simultaneous acceleration of organics decomposition and azo decoloration.” Journal of Environmental Sciences, 26, 1970-1976 (2014).
20. Y.W. Liu, Y.B. Zhang, X. Quan, J.X. Zhang, H.M. Zhao, S. Chen. “Effects of an electric field and zero valent iron on anaerobic treatment of azo dye wastewater and microbial community structures.” Bioresource Technology, 102, 2578-2584 (2011).
21. Y.B. Zhang, Y.W. Jing, J.X. Zhang, L.F. Sun, X. Quan. “Performance of a ZVI-UASB reactor for azo dye wastewater treatment.” Journal of Chemical Technology and Biotechnology, 86, 199-204 (2011).
22. Q.X. Qi, C. Sun, J.X. Zhang*, Y.L. He, Y.W. Tong, Internal enhancement mechanism of biochar with graphene structure in anaerobic digestion: The bioavailability of trace elements and potential direct interspecies electron transfer. Chemical Engineering, Journal 406, 126833 (2021).
23. J.X. Zhang, J.Q. Chen, D.N. Gu, Y.L. He, Y.J.Dai, K.C. Loh. Assessment and Optimization of a decentralized Food-Waste-to-Energy System with anaerobic digestion and CHP for energy utilization. Energy Conversion and Management, Accepted, (2020).