Environmental Sanitation Engineering ›› 2024, Vol. 32 ›› Issue (6): 1-9.doi: 10.19841/j.cnki.hjwsgc.2024.06.001

Previous Articles     Next Articles

Selection of City Multi-source Organic Solid Waste Disposal Methods Based on Life-cycle Carbon Emission and Economic Cost Analysis

CI Hanlin, FANG Ning, GUO Yali, HUANG Jialiang, MEI Xiaojie, CHEN Fang, LI Jing   

  1. 1. Shanghai Investigation, Design & Research Institute Co. Ltd.; 2. China Three Gorges Co. Ltd.; 3. National Engineering Research Center for Ecological Environment of Yangtze River Economic Belt
  • Online:2024-12-27 Published:2024-12-27

Abstract: Quantitative decision-making methods based on carbon emissions and economic analysis have played an important role in the selection and decision of solid waste treatment and disposal technology. A medium-sized city in Yangtze River Delta was taken as an example, the selection method of multi-source organic solid waste(municipal sludge, food residue, kitchen waste) collaborative treatment and disposal was explored. Different organic solid waste treatment and disposal process combinations were established based on life-cycle theory, and the carbon emission and economic cost were analyzed. On this basis, the feasible solution of low carbon emission and low economic cost was obtained by using linear goal programming method. The results showed that under the lowest carbon emission scenario, it was recommended that all kinds of organic solid waste should be treated with anaerobic digestion, but different disposal methods should be selected for biogas residue. Under the lowest economic cost scenario, compost or incineration was a better option, but if you rely on existing facilities for co-composting or incineration, the amount of co-consumption should be considered.

Key words: municipal organic solid waste, life-cycle method, carbon emission, economic analysis, multi-objective optimization

[1] ZHOU Baiyu, REN Yi, DU Chunyan, ZHU Hao, CAO Limin, GUO Xuhui, CHEN Lijian, HAN Zhiyong. Carbon Emission and Carbon Peak Management Strategies for the Treatment and Disposal of Domestic Waste: Comparative Analysis Based on the Measured Data of Waste and Landfill Gas Production in Chengdu City [J]. Environmental Sanitation Engineering, 2024, 32(6): 10-19.
[2] LI Jianying, REN Xiaoling, WANG Xiaoyan, LAI Jinli. Analysis and Research on Carbon Emissions Throughout the Life Cycle of Biodiesel Production from Kitchen Waste Oils and Fats [J]. Environmental Sanitation Engineering, 2024, 32(5): 48-54.
[3] PENG Xiaowei, TANG Yuting, ZHONG Rigang, YU Zhaosheng, LIN Yan, WU Hao. Competitive Analysis of Suitability for Garbage Transfer Trucks with Different Energy Types Under Carbon Emission Reduction Constraints:A Case Study of Shenzhen City [J]. Environmental Sanitation Engineering, 2024, 32(3): 1-8.
[4] LI Juncheng, MAO Mengmei, LONG Jisheng. Effect of Sludge Co-incineration on Flue Gas Purification System of Waste Incineration Power Plant:A Case Study of a Sludge Co-incineration Project [J]. Environmental Sanitation Engineering, 2024, 32(3): 54-58.
[5] JIANG Yu, TAN Yaoyao, LI Dong, DENG Fang, CHEN Qiong, ZHENG Xiaoqian. Characteristics of Greenhouse Gas Emissions and Emission Reduction Strategies in the Field of Urban Management in Chengdu [J]. Environmental Sanitation Engineering, 2024, 32(2): 85-92.
[6] ZHANG Dong. Analysis of Carbon Emissions in Different Treatment Process of Three-phase Organic Residues from Food Waste [J]. Environmental Sanitation Engineering, 2024, 32(1): 104-109.
[7] ZHU Yuanchao, ZHAO Zimin, ZHANG Jinsong. Caculation of Carbon Emission During Co-composting of Food Waste and Agricultural Waste and Garden Waste: A Case Study of A Treatment Facility in Town [J]. Environmental Sanitation Engineering, 2024, 32(1): 111-115.
[8] BI Zhujie, TAI Jun, WANG Chuan. The Status and Prediction of Carbon Emission from Domestic Waste Treatment in Shanghai [J]. Environmental Sanitation Engineering, 2023, 31(5): 1-8.
[9] HE Weiyu. Analysis of Greenhouse Gas Reduction Opportunities in Municipal Solid Waste Disposal Industry [J]. Environmental Sanitation Engineering, 2023, 31(5): 9-17.
[10] LONG Jisheng, RUAN Tao. Analysis on Carbon Emission Reduction Benefits of Cogeneration in Waste to Energy Plant [J]. Environmental Sanitation Engineering, 2023, 31(4): 46-51.
[11] SUN Yuqing, QIAN Yinfei, CHU Siqin. The Impact of Waste Classification on Carbon Emissions in the Incineration Process in Suzhou [J]. Environmental Sanitation Engineering, 2023, 31(1): 104-111.
[12] ZHU Huanzheng, ZHANG Tao, LU Jieping, CHEN Hai, HE Shijun. Engineering Design and Economic Analysis of Irradiation Disinfection Treatment of Medical Waste [J]. Environmental Sanitation Engineering, 2022, 30(6): 40-45,57.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] . Application on Pretreatment Technology of Food Waste in Hangzhou   [J]. Environmental Sanitation Engineering, 2018, 26(3): 8 -10 .
[2] . Characteristics and Choice of Treatment Measures of Domestic Waste Simple Landfill in the Rural of China   [J]. Environmental Sanitation Engineering, 2018, 26(3): 11 -13 .
[3] . Ways and Efficiency Analysis of Landfill Gas Utilization in Beijing Liulitun Landfill   [J]. Environmental Sanitation Engineering, 2018, 26(3): 26 -28 .
[4] . Research on Energy Efficiency of Municipal Solid Waste Incineration Plant in China   [J]. Environmental Sanitation Engineering, 2018, 26(3): 39 -42 .
[5] . Discussion on Construction Thoughts of Smart Sanitation Platform in Beijing   [J]. Environmental Sanitation Engineering, 2018, 26(3): 91 -93 .
[6] . Analysis on General Plan of Domestic Waste Recycling Economy Industrial Park   [J]. Environmental Sanitation Engineering, 2018, 26(3): 94 -96 .
[7] . [J]. Environmental Sanitation Engineering, 2018, 26(1): 19 -22 .
[8] . [J]. Environmental Sanitation Engineering, 2018, 26(1): 31 -35 .
[9] . [J]. Environmental Sanitation Engineering, 2018, 26(1): 41 -44 .
[10] . [J]. Environmental Sanitation Engineering, 2018, 26(1): 45 -47 .
Copyright © Environmental Sanitation Engineering
Address: 107#, Weidi Road, Tianjin, P.R.C.    Postcode: 300201
Telephone: 022-28365069   Fax: 022-28365080 E-mail: csglwyjs10@tj.gov.cn
Supported by:Beijing Magtech