代表性论文及著作
标准/导则:
国家标准《温室气体排放核算与报告要求 第XX部分:粪便处理企业》,正在起草
国家标准《温室气体排放核算与报告要求 第XX部分:生活污水处理企业》,征求意见
国家标准《农用沼液无害化处理技术规范》,正在起草
国家标准《预制式社区规模粪便污泥资源化处理装置技术要求》,正在批准
国家标准《免水冲卫生厕所》GB/T 18092,正在修订
国家标准《农村公共厕所建设与管理规范》(GB/T 38353-2019)
行业标准《农村负压式厕所建设技术规范》,正在起草
行业标准《粪便消纳站垃圾转运箱》JB/T 13167,正在修订
行业标准《粪便消纳站无轴螺旋输送设备》JB/T 13168,正在修订
山西地方标准《农村改厕粪尿还田技术规范》(DB14/T 2760-2023)
团体标准《尿液源分离排水与资源化技术指南》(T/SERB 002—2024)
著作/教材:
[1] 《中国公共厕所标准化体系建设与发展报告》,中国建筑工业出版社,2023,副主编
[2]《沼气提纯技术原理与应用》,中国环境出版集团,2018,副主编
[3]《北京科技大学“课程思政”案例选编》,冶金工业出版社,2020,参编
[4]《农村环保知识问答》,中国环境出版集团,2018,参编
[5]《典型国家农村厕所革命研究》入选农业农村部农村社会事业研究报告优秀成果汇编《农村社会事业研究》(中国农业出版社,2020年)
[6]《堆肥厕所》,译著,斯德哥尔摩环境研究院,2011,主要译者
[7]《尿液用于农作物种植实用技术导则》,译著,斯德哥尔摩环境研究院,2011,主要译者
[8]英文报告《4-in-1 Biogas System: A Field Study on Sanitation Aspects & Acceptance Issue in Chaoyang and Shenyang Municipalities, Liaoning Province》,2011,斯德哥尔摩环境研究院,第一作者
[9]英文报告《A Field Study on DEWATS (Decentralized Wastewater Treatment Systems) in Sichuan Province, China》,2010,斯德哥尔摩环境研究院,第一作者
代表性论文:
[1]Liu N, Li Z*, Cheng S*. Ye Z, Chen Z, Ni B, Zheng L, Wang X, Lyu Y, Guo Z*, Lynch I*. An effective workflow for extraction and characterization of microplastics from complex matrices. Nature Protocols. 2025
[2]Wang, X., Lei, Y., Yu, Q., Sun, S., Li, Z*., Cheng, S*. Estimating the microbial lipid synthesis and environmental impacts of Yarrowia lipolytica under four cultivation modes. Renewable Energy, 2025: 249, 123186.
[3]Li T, Chen X, Weng R, Manga M, Cheng S*. Reintegrating human excreta into the agriculture of rural China: ecological risks and application strategies. Journal of Hazardous Materials. 2025:137683.
[4]Ji A, Guo H, Li N, Zhang N, Cheng S*, Guan J, et al. Scaling sustainable pig manure treatment: Life cycle assessments for small to large piggeries in China. Sustainable Production and Consumption. 2024;52:166-78.
[5]Cheng S*, Zhao Q, Wen C, Manga M, Xiang R, Wang X, et al. The potential application of non-sewered sanitation systems in healthcare facilities – a case study in Beijing, China. Journal of Water, Sanitation and Hygiene for Development. 2024;14:1386-92.
[6]Cheng S*, Ye Z, Li X, Manga M, Dorea C, Chen Z, et al. Constructing a toilet standard system for the toilet revolution in China. Journal of Water, Sanitation and Hygiene for Development. 2024;14:291-301.
[7]Ma T, Liu N, Li Y, Ye Z, Chen Z, Cheng S*, et al. Effects of Polyethylene Terephthalate Microplastics on Anaerobic Mono-Digestion and Co-Digestion of Fecal Sludge from Septic Tank. Molecules. 2024.
[8]Cheng S*, Lohani SP, Rajbhandari US, Shrestha P, Shrees S, Bhandari R, et al. Sustainability of large-scale commercial biogas plants in Nepal. Journal of Cleaner Production. 2024;434:139777.
[9]Yin J, Yao Z, Zhao Q, Cheng S*, Wang X, Li Z. Low-temperature methanation of fermentation gas with Ni-based catalysts in a multicomponent system. Biotechnology for Biofuels and Bioproducts. 2024;17:12.
[10]Li Y, Cheng S*, Chen X, Gao M, Chen C, Huba E-M, et al. What makes residents participate in the rural toilet revolution? Environmental Science and Ecotechnology. 2024;19:100343.
[11]Guo S, Zhou J, Li Z, Zheng L, Wang X, Cheng S, et al. End-to-end machine-learning for high-gravity ammonia stripping: Bridging the gap between scientific research and user-friendly applications. Water Research. 2024;248:120790
[12]Cheng, S., Saroj, D. P., Xu, K., Rana, N., Huba-Mang, E. M., eds. (2023). Sustainable sanitation- how can we improve sanitation systems in the global south? Lausanne: Frontiers Media SA. doi: 10.3389/978-2-8325-2364-3
[13]Chen H, Xu Q, Cheng S*, Wu T, Boitin T, Lohani SP, et al. Comprehensive Analysis and Greenhouse Gas Reduction Assessment of the First Large-Scale Biogas Generation Plant in West Africa. Atmosphere. 2023.
[14]Lyu Y, Ao X, Cheng S, Liu N, Men Y, Li Z. Simultaneous recovery of nutrients and water from human urine by a novel thermally activated peroxydisulfate and membrane distillation integrated system. Chemical Engineering Journal. 2023;459:141548.
[15]Xu K, Lu J, Hu L, Li J, Cheng S, Zheng M, et al. Pathogens inactivation in nutrient recovery from urine: A review. Frontiers in Environmental Science. 2022;10.
[16]Liu N, Cheng S, Wang X, Li Z, Zheng L, Lyu Y, et al. Characterization of microplastics in the septic tank via laser direct infrared spectroscopy. Water Research. 2022;226:119293.
[17].闫政序,陈静,杨朕,程世昆*,李子富. 黄水输送系统中磷基矿物结晶特性的影响因素研究[J]. 化学工业与工程, 2024, 41(6): 128-135.
[18]李新颖,程世昆*,李子富.我国公共厕所标准化研究[J].环境工程,2023,41(S1):612-617+620.
[19]李子富,邱婷婷,吴昊等.无下水道厕所安全及性能测试国际标准ISO 30500解读[J].环境卫生工程,2023,31(04):1-6.
[20]李天昕,高姗,韩扬文等.高质量视角下工业化与空气质量、碳排放解析[J].洁净煤技术,2023,29(S2):815-828.
[21]金璠,马婷婷,程世昆*,李子富.我国县级地区生活垃圾焚烧处理的SWOT分析[J].广东化工,2023,50(06):155-157+99.
[22]李天昕,翁锐,徐新朋,程世昆*,杨朕,李勇,李子富. 基于还田视角的人粪尿处理研究进展 [J]. 农业资源与环境学报, 2023, 40 (06): 1388-1399.
[23]褚文博,陈静,龙锦云,程世昆*,杨朕,陈聪,李子富,李天昕. 传统无下水道卫生系统温室气体排放研究进展 [J]. 中国给水排水, 2023, 39 (22): 28-36.
[24]李卓蓉,程世昆,李子富等.聚集性活动中应急厕所技术及适用情景分析[J].环境工程学报,2022,16(11):3845-3856.
[25]韩彦召,程世昆*,严巾堪,王天聪,闫政序,李子富.负压排水真空便器冲水噪声的影响因素[J].环境工程学报,2022,16(04):1400-1406.
[26]Kilucha M, Cheng S*, Minza S, Nasiruddin SM, Velempini K, Li X, et al. Insights into the anaerobic digestion of fecal sludge and food waste in Tanzania. Frontiers in Environmental Science. 2022;10.
[27]Li Y, Cheng S*, Cui J, Gao M, Li Z, Wang L, et al. Mining of the Association Rules Between Socio-Economic Development Indicators and Rural Harmless Sanitary Toilet Penetration Rate to Inform Sanitation Improvement in China. Frontiers in Environmental Science. 2022;10.
[28]Cheng S*, Long J, Evans B, Zhan Z, Li T, Chen C, et al. Non-negligible greenhouse gas emissions from non-sewered sanitation systems: A meta-analysis. Environmental Research. 2022;212:113468.
[29]Yan Z, Li Z*, Cheng S*,Wang X, Lingling Z, Zheng L, et al. Transport and deposition of solid phosphorus-based mineral particles in urine diversion systems. Environmental Technology. 2022:1-13.
[30]Yan Z, Li Z*, Cheng S*, Wang X, Zhang L, Zheng L, et al. From Newtonian to non-Newtonian fluid: Insight into the impact of rheological characteristics on mineral deposition in urine collection and transportation. Science of The Total Environment. 2022;823:153532.
[31]Yan Z, Cheng S*, Zhang J, Saroj D, Mang H, Han Y, et al. Precipitation in urine source separation systems: Challenges for large-scale practical applications. Resources, Conservation & Recycling. 2021;169:105479.
[32]Yan R, Cheng S*, Chen J, Li X, Uddin S, Mang H, et al. Operating status of public toilets in the Hutong neighborhoods of Beijing: an empirical study. Journal of Environmental Management. 2021; 287: 112252
[33]Li Y, Cheng S*, Li Z, Song H, Guo M, Li Z, et al. Using system dynamics to assess the complexity of rural toilet retrofitting: Case study in eastern China. Journal of Environmental Management. 2021;280:111655.
[34]Zheng L, Cheng S*, Han Y, Wang M, Xiang Y, Guo J, et al. Bio-natural gas industry in China: Current status and development. Renewable & Sustainable Energy Reviews.`. 2020;128:109925.
[35]Wang X, Yan R, Zhao Y, Cheng S*, Han Y, Yang S, et al. Biogas standard system in China. Renewable Energy. 2020;157:1265-73.
[36]Zheng L, Chen J, Zhao M, Cheng S*, Wang L-P, Mang H-P, et al. What Could China Give to and Take from Other Countries in Terms of the Development of the Biogas Industry? Sustainability. 2020;12.
[37]Wang X, Cheng S*, Li Z, Men Y, Wu J. Impacts of Cellulase and Amylase on Enzymatic Hydrolysis and Methane Production in the Anaerobic Digestion of Corn Straw. Sustainability. 2020;12.
[38]Chen Y-J, Fan T-Y, Wang L-P, Cheng T-W, Chen S-S, Yuan M-H, Cheng S*. Application of Fenton Method for the Removal of Organic Matter in Sewage Sludge at Room Temperature. Sustainability. 2020;12.
[39]Cheng S, Li Z, Uddin SMN, Mang H-P, Zhou X, Zhang J, et al. Toilet revolution in China. Journal of Environmental Management. 2018;216:347-56.
[40]Cheng SK, Zheng L, Zhao MY, Bai X, Li ZF, Mang HP. Assessment of two faecal sludge treatment plants in urban areas: Case study in Beijing. International Journal of Agricultural and Biological Engineering. 2017;10:237-45.
[41]Cheng S, Zhao M, Mang H-P, Zhou X, Li Z. Development and application of biogas project for domestic sewage treatment in rural China: opportunities and challenges. Journal of Water Sanitation and Hygiene for Development. 2017;7:576-88.
[42]Shikun Cheng, Zifu Li, Heinz-Peter Mang, et al. Application of fault tree approach for technical assessment of small-sized biogas systems in Nepal. Applied Energy. 2014, 113: 1372-1381.
[43]Shikun Cheng, Zifu Li, Heinz-Peter Mang, et al. A review of prefabricated biogas digesters in China. Renewable & Sustainable Energy Reviews. 2013, 38: 738-748.
[44]Shikun Cheng, Zifu Li, Heinz-Peter Mang, et al. Development and application of prefabricated biogas digesters in the developing world. Renewable & Sustainable Energy Reviews. 2014, 34: 387-400.
[45]Shikun Cheng, Zifu Li, Heinz-Peter Mang, et al. Prefabricated biogas reactor based systems for community wastewater and organic waste treatment in developing regions. Journal of Water, Sanitation and Hygiene for Development. 2014,4(1), 153-158.
[46]程世昆,李子富,尹福斌,白晓凤. 户用沼气系统运行效果的技术评价指标体系. 可再生能源. 2013, 31(8): 120-122.
[47]程世昆,李子富,孟和平,闫园园,高瑞玲. 亚洲发展中地区推广农村户用沼气池的SWOT-PEST分析. 中国沼气. 2013, 31(4): 49-53.
教学论文:
[1]门聪,冯瑞,李圣洁,程世昆,刘沙沙.构建国际化本科教育课程——面向来华留学生的全英文教学策略与实践[J].环境教育,2025(08):67-72.
[2]王雪梅,刘沙沙,程世昆,李子富. 新工科环境学科研究生国际化人才培养体系建设.教育教学论坛. 2025
[3]于庆君,易红宏,唐晓龙,马鸿志,程世昆,郝建鸿,张玲玲. 专业授课教师视角下中外研究生培养模式探索比较研究——以北京科技大学环境工程专业为例. 当代教育实践与教学研究. 2025
[4]董春阳,程世昆. 环境工程专业课程思政建设的思考与建议 [J]. 北京化工大学学报(社会科学版), 2024, (01): 116-121.
[5]张玲玲,程世昆,郑蕾. 全英文教学中多角度融合教学 [J]. 中国冶金教育, 2023, (05): 8-12..
[6]程世昆, 李子富, 张健, 周晓琴, 郑蕾, 张玲玲. 水污染控制工程教学中对污水排放模式的反思. 中国冶金教育. 2018,4:29-31.
[7]程世昆,张新逸,乔岑. 《水污染控制工程课程设计》调查分析与对策. 中国冶金教育. 2019,5:35-39.
[8]程世昆,李子富,张玲玲,郑蕾,周晓琴,王雪梅.水污染控制工程课程思政建设[J].中国冶金教育,2021(03):91-95
[9]郑蕾,程世昆*,周晓琴,张玲玲,李子富. 《水污染控制工程》教学调查分析和改进. 教育教学论坛. 2020,15,81-83.
[10]敖秀玮,程世昆,张玲玲,段小丽,李子富,马鸿志.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):13-15+19
[11]马鸿志,靳勇,苏伟,王飞,易红宏,程世昆,冯瑞,陈辉伦. 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》2019年全国学术年会论文集(下册).,2019:1080-1083.