代表性论文及著作
近五年
2023年
[1] Yang J, Ma R, Xing Y, et al. Study on the prepared bio-oil by catalytic hydrothermal liquefaction of antibiotic residues in ethanol-water reaction system with transition metal modified HZSM-5 [J]. Fuel, 2023, 331: 125413.
[2] Zhao J, Ma H, Wu W, et al. Conversion of liquor brewing wastewater into medium chain fatty acids by microbial electrosynthesis: Effect of cathode potential and CO2 supply [J]. Fuel, 2023, 332: 126046.
2022年
[3] Ma H, Wu W, Yu Z, et al. Medium-chain fatty acid production from Chinese liquor brewing yellow water by electro-fermentation: Division of fermentation process and segmented electrical stimulation [J]. Bioresource Technology, 2022, 360: 127510.
[4] Ma H, Yu Z, Wu W, et al. Effects of ethanol addition on caproic acid production and rumen microorganism community structure from straw fermentation [J]. Fuel, 2022, 327: 125142.
[5] Su W, Zhao M, Xing Y, et al. Supercritical water gasification of hyperaccumulators for hydrogen production and heavy metal immobilization with alkali metal catalysts [J]. Environmental Research, 2022, 214: 114093.
[6] Yu Z, Ma H, Den Boer E, et al. Effect of microwave/hydrothermal combined ionic liquid pretreatment on straw: Rumen anaerobic fermentation and enzyme hydrolysis [J]. Environmental Research, 2022, 205: 112453.
[7] 马鸿志, 武文宇, 于子强, et al. 微生物合成己酸的基本原理: 能量代谢及影响因素 [J]. 工程科学学报, 2022, 45: 1-12.
[8] 王森林, 张东铭, 张波, et al. 海水综合利用技术在钢铁厂内工业化应用研究 [J]. 广东化工, 2022, 49(17): 34-7+51.
2021年
[9] Gao M, Lin Y, Wang P, et al. Production of medium-chain fatty acid caproate from Chinese liquor distillers’ grain using pit mud as the fermentation microbes [J]. Journal of hazardous materials, 2021, 417: 126037.
[10] Ge S, Shi Y, Xia C, et al. Progress in pyrolysis conversion of waste into value-added liquid pyro-oil, with focus on heating source and machine learning analysis [J]. Energy Conversion and Management, 2021, 245: 114638.
[11] Li H, Gao M, Wang P, et al. Cathode catalyst prepared from bacterial cellulose for ethanol fermentation stillage treatment in microbial fuel cell [J]. Chinese Journal of Chemical Engineering, 2020.
[12] Ma H, Lin Y, Jin Y, et al. Effect of ultrasonic pretreatment on chain elongation of saccharified residue from food waste by anaerobic fermentation [J]. Environmental Pollution, 2021, 268: 115936.
[13] Su W, Liu P, Cai C, et al. Hydrogen production and heavy metal immobilization using hyperaccumulators in supercritical water gasification [J]. Journal of hazardous materials, 2021, 402: 123541.
[14] 敖秀玮, 程世昆, 张玲玲, et al. 新工科背景下环境专业来华留学研究生规范化培养模式探索 [J]. 高教学刊, 2021, 7(S1): 13-5+9.
2020年
[15] Yequan Sheng, Yu Zhang, Hongzhi Ma. Enhancing Prehydrolysates Fermentability by Adding Nucleophilic Amino Acids and Proteins in Biomass Pretreatment. Acs Sustainable Chemistry&Engineering, 2020,8(21):7892-7900.
[16] Wei Su, Changqing Cai, Ping Liu. Supercritical water gasification of food waste: Effect of parameters on hydrogen production. International Journal of Hydrogen Energy, 2020,45(29):14744-14755.
[17] Ming Gao, Huiyu Li, Hongzhi Ma. Electricity Enhancement by MFCs from Food Waste Ethanol Fermentation Recycle Stillage Effect of Dilution Ratio and Addition of Tween 80. Chemistryselect, 2020,5(19):5701-5705.
[18] Ting Liu, Pierre Jean, Hongzhi Ma, Huiyu Li. Nitrogen and Phosphorus Doped Activated Carbon Catalyst Prepared from Shrimp Shell and its Application in MFC Air Cathode, Chemistryselect, 2020,5(9):2690-2695
[19] X Cao, SC Sun, B Lu, Y Liu, R Ma, HQ Cao, HZ Ma, HX Huang.Spectral photoluminescence properties of YAG: Ce, R (R: Gd3+, Pr3+, Gd3+ and Pr3+) transparent fluorescent thin film prepared by pulse laser deposition. Journal of Luminescence, 2020,223(117222).
[20] Hongzhi Ma, Yujia Lin, Yong Jin, Ming Gao, Hongai Li, Qunhui Wang,
Shengbo Ge, Liping Cai, Zhenhua Huang , Quyet Van Le , Changlei Xia,
Effect of ultrasonic pretreatment on chain elongation of saccharifified residue from food waste by anaerobic fermentation, Environmental Pollution 268 (2021) 115936
[21] H. Li, M. Gao, PanWang, H. Ma, T. Liu, J. Ni, Q. Wang, T-C. Chang, Cathode catalyst prepared from bacterial cellulose for ethanol fermentation stillage treatment in microbial fuel cell, Chinese Journal of Chemical Engineering (2020), doi: https://doi.org/10.1016/j.cjche.2020.11.001
2019年
[22] Wei Su, Yi Xing, Hongzhi Ma. Numerical simulation of a new horizontal spray tower for sintering flue gas desulfurization. Journal of Engineering Research, 2019,7(4):1-17.
[23] Obadia-Kyetuza Bishoge, Xinmei Huang, Lingling Zhang, Hongzhi Ma, Charity Danyo. The adaptation of waste-to-energy technologies: towards the conversion of municipal solid waste into a renewable energy resource. Environmental Reviews, 2019,27(4):435-446.
[24] Yong Jin, Yujia Lin, Pan Wang, Runwen Jin, Ming Gao, Qunhui Wang, Tien-Chin Chang, Hongzhi Ma. Volatile fatty acids production from saccharification residue from food waste ethanol fermentation: Effect of pH and microbial community. BioresourceTechnology, 2019,292(121957).
[25] Huiyu Li, Hongzhi Ma, Ting Liu, Jin Ni, Qunhui Wang. An excellent alternative composite modifier for cathode catalysts prepared from bacterial cellulose doped with Cu and P and its utilization in microbial fuel cell. Bioresource Technology, 2019,289(121661).
[26] Yong Jin, Sonayu Huang, Qunhui Wang, Ming Gao, Hongzhi Ma. Ceramsite production from sediment in Beian River: characterization and parameter optimization. Royal Society Open Science, 2019,6(8):190197.
[27] Mashair-Anwar Saeed, Qunhui Wang, Huiyu Li, Yong Jin, Hongzhi Ma. Microbial Community in Ethanol-methane Coupling Fermentation Treating Food Waste. Bioresources, 2019,14(3):5672-5682.
[28] Yong Jin, Ming Gao, Hongai Li, Yujia Lin, Qunhui Wang, Maobing Tu, Hongzhi Ma. Impact of nanoscale zerovalent iron on volatile fatty acid production from food waste: key enzymes and microbial community. Journal of Chemical Technology and Biotechnology, 2019,94(10):3201-3207.
[29] Bodjui-Olivier Abo, Ming Gao, Yonglin Wang, Chuanfu Wu, Qunhui Wang, Hongzhi Ma. Production of butanol from biomass: recent advances and future prospects. Environmental Science and Pollution Research, 2019,26(20):20164-20182.
[30] Mashair-Anwar Saeed, Qunhui Wang, Yong Jin, Siyuan Yue, Hongzhi Ma. Assessment of Bioethanol Fermentation Performance Using Different Recycled Waters of an Integrated System Based on Food Waste. Bioresources, 2019,14(2):3717-3730.
[31] Bodjui-Olivier Abo, Ming Gao, Yonglin Wang, Chuanfu Wu, Hongzhi Ma, Qunhui Wang. Lignocellulosic biomass for bioethanol: an overview on pretreatment, hydrolysis and fermentation processes. Reviews on Environmental Health, 2019,34(1):57-68.
[32] Hongzhi Ma, Hongai Li, Fengying Zhang, Qunhui Wang, Maobing Tu, Effects of nitrogen substitute and Hypericum perforatum extract on the ethanol fermentation of traditional Chinese medicine dregs. Industrial Crops and Products, 2019,128:385-390.
[33] Hongzhi Ma, Huiyu Li, Jiao Gang, Qunhui Wang. Optimization of Ethanol Fermentation from Fruit and Vegetable Waste by Plackett-Burman and Orthogonal Experimental Design. Bioresources, 2019,14(1):1210-1218
[34] Hongzhi Ma, Siyuan Yue, Hongai Li, Qunhui Wang, Maobing Tu, Recovery of lactic acid and other organic acids from food waste ethanol fermentation stillage: Feasibility and effects of substrates. Separation and Purification Technology, 2019,209:223-228.
[35] 张玲玲,张钊溪,李子富,马鸿志,李天昕,李宝铭.环境专业留学生全英文实践教学培养模式探索——以北京科技大学环境专业留学生教育为例[J].教育教学论坛,2019(43):145-148.
[36] 马鸿志. 环境工程生产实习中对学生开展素质教育的实践研究[C]. 《环境工程》编委会、工业建筑杂志社有限公司.《环境工程》2019年全国学术年会论文集(下册).《环境工程》编委会、工业建筑杂志社有限公司:《环境工程》编辑部,2019:1080-1083.
[37] 牛茹轩,高明,蔡洪英,马英群,岳波,马鸿志,吴川福.重庆市废有机溶剂产生特性[J].中国环境科学,2019,39(03):1101-1108.
[38] 李惠雨,宫宝涵,马鸿志,靳勇.物联网技术在环境工程领域中的应用研究[J].资源节约与环保,2019(02):126-128.
2018年
[39] Miao Yu, Ming Gao, Lihong Wang, Yuanyuan Ren, Chuanfu Wu, Hongzhi Ma, Qunhui Wang. Kinetic modelling and synergistic impact evaluation for the anaerobic co-digestion of distillers’ grains and food waste by ethanol pre-fermentation. Environmental Science and Pollution Research, 2018,25(30):30281-30291.
[40] Mashair-Anwar Saeed, Hongzhi Ma, Siyuan Yue, Qunhui Wang, Maobing Tu. Concise review on ethanol production from food waste: development and sustainability. Environmental Science and Pollution Research, 2018,25(29):28851-28863.
[41] Xiaoyu Ma, Zhen Gao, Ming Gao, Yingqun Ma, Hongzhi Ma, Min Zhang, Yu Liu, Qunhui Wang. Microbial lipid production from food waste saccharified liquid and the effects of compositions. Energy Conversion and Management, 2018,172:306-315.
[42] Hongzhi Ma, Cheng Peng, Yan Jia, Qunhui Wang, Maobing Tu, Ming Gao. Effect of fermentation stillage of food waste on bioelectricity production and microbial community structure in microbial fuel cells. Royal Society Open Science, 2018,5(9):180457.
[43] Chuanfu Wu, Miao Yu, Qiqi Huang, Hongzhi Ma, Ming Gao, Qunhui Wang, Kenji Sakai. Stimulation of methane yield rate from food waste by aerobic pre-treatment. Bioresource Technology, 2018,261:279-287.
[44] 苏伟,李丹,马鸿志,周远松,冯瑞,吕绿洲.OBE教育模式在冶金工业环境保护课程教学中的应用[J].中国冶金教育,2018(06):60-62.
[45] 马鸿志,岳斯源,王飞,陈辉伦,常雁红,苏伟,季宏兵.课题化教学在环境工程生产实习中的应用[J].高等理科教育,2018(05):116-120.
[46] 马鸿志. 物联网技术在中国环境保护方面的应用研究[C]. 中国环境科学学会(Chinese Society for Environmental Sciences).2018中国环境科学学会科学技术年会论文集(第四卷).中国环境科学学会(Chinese Society for Environmental Sciences):中国环境科学学会,2018:44-47.
[47] 邢奕,苏伟,马鸿志,路培,洪晨,姜博.基于OBE的教育模式在“环境工程项目管理”课程中的应用探索[J].教育教学论坛,2018(07):74-75.