代表性科研论文(第一作者或通讯作者)
1.
Qinyu Sun, Hui Mu*, et al.. Oyster shell waste as potential co-substrate for enhancing methanogenesis of starch wastewater at low inoculation ratio, Bioresource Technology 361 2022, 127689.
2.
Hui Mu, Yongfang Zhang, Qi Qiu, et al.. Reduction of ZnO nanoparticles toxicity to methanogenic wastewater treatment by the presence of Fe3O4 nanoparticles: Focusing on nanomaterial interaction and direct interspecies electron transfer, Biochemical Engineering Journal, 2022, 180, 108365.
3.
Yue Zhao, Hui Mu*, Yinglong Su, et al.. Promotion of granular activated carbon on methanogenesis of readily acidogenic carbohydrate-rich waste at low inoculation ratio, Science of The Total Environment, 2022, 817, 152642
4.
Hui Mu*, Yuxiao Zhao, et al.. Optimizing methane production from anaerobic batch co-digestion of apple pomace and vegetable waste, Journal of Biobased Materials and Bioenergy, 2019,13:508-516
5.
Chunhui Zhao, Hui Mu*., et al.. Microbial characteristics analysis and kinetic studies on substrate composition to methane after microbial and nutritional regulation of fruit and vegetable wastes anaerobic digestion, Bioresource Technology, 2018,249:315-321
6.
Hui Mu, Chunhui Zhao, et al.. Enhanced methane production by semi-continuous mesophilic co-digestion of potato waste and cabbage waste: Performanceand microbial characteristics analysis, Bioresource Technology, 2017,236:68–76
7.
Chunhui Zhao, Hui Mu*, et al.. Insights into the role of earthworms on the optimization of microbial community structure during vermicomposting of sewage sludge by PLFA analysis, Waste Management, 2018,79, 700–708
8.
Hui Mu, Yan Li, et al.. Microbial and nutritional regulation of high-solids anaerobic mono-digestion of fruit and vegetable wastes, Environmental Technology, 2018, 39: 405–413
9.
Hui Mu, Yuxiao Zhao, et al.. Seasonal variability of heavy metal content and its chemical speciation in excess sludge by vermi-stabilization, Earth and Environmental Science, 2017,012073
10.
Hui Mu, Yuxiao Zhao, et al.. Response of anaerobic granular sludge to a shock load of zinc oxide nanoparticles during biological wastewater treatment. Environ. Sci. Technol.2012:5997-6003.
11.
Hui Mu, Yinguang Chen. Long-term effect of ZnO nanoparticles on waste activated sludge anaerobic digestion. Water Research, 2011, 45 (17), 5612–5620.
12.
Hui Mu, Yinguang Chen, et al.. Effects of metal oxide nanoparticles (TiO2, Al2O3, SiO2 and ZnO) on waste activated sludge anaerobic digestion. Bioresource Technology, 2011: 10305–10311
13.
Hui Mu, Yuxiao Zhao, et al., Comparision of treatment performance for fruit and vegetable waste (FVW) by single-phase and two-phase anaerobic digestion. Applied Mechanics and Materials,2014:572-576
14.
Hui Mu, Yuxiao Zhao, et al.. Sewage treatment performance of biological aerated filters with Fe-containing compound clinoptilolite media. Applied Mechanics and Materials,2015:579-583
15.
Yinguang Chen, Hui Mu, et al.. Chronic response ofwaste activated sludge fermentation to titanium dioxide nanoparticles,Chinese Journal of Chemical Engineering, 2014:1162-1167(第一作者为导师)
16.
牧辉,李岩,等.污泥增强番茄茎叶单相发酵产沼气研究,山东科学,2016,29(3)
17.
郭红红,牧辉*,等. 纳米四氧化三铁对甲烷生物合成途径的影响,可再生能源,2018,36,(9)
论文情况发表详见:
ORCID: https://orcid.org/0000-0001-7246-569X
|