Environmental Sanitation Engineering ›› 2024, Vol. 32 ›› Issue (5): 36-40.doi: 10.19841/j.cnki.hjwsgc.2024.05.006

Previous Articles     Next Articles

Composition and Characteristics Analysis of Terminal Municipal Solid Waste of a City in South China in the Last Decade

DING Cong   

  1. Guangzhou Research Center of City Management Technology
  • Online:2024-11-01 Published:2024-11-01

Abstract: The changes in composition and characteristics of terminal municipal solid waste (MSW) were analyzed based on the monitoring data which collected in the last decade from a city in South China. The results indicated that food waste consistently constituted the highest proportion of wet-based components in MSW, ranged from 45.9% to 55.1%; followed by rubber and plastic, paper, and textiles, which were 21.1%-27.8%, 5.6%-14.5%, and 4.0%-10.5%, respectively; the proportion of all other wet-based components accounted for no more than 5.0%. The bulk density of MSW ranged from 197 kg/m3 to 278 kg/m3, and the moisture content ranged from 53% to 60%. The content of wet-based combustible changed little overall in the last 10 years, with an average value of 37%; the wet-based content of ash decreased from 11% to 6%. In the past 10 years, the wet-based low calorific value of MSW showed an overall upward trend, which increased from 5 571 kJ/kg to 6 361 kJ/kg. The content of carbon, hydrogen, and oxygen in the dry basis all showed an increasing trend in the last decade, the carbon content increased from 37.6% to 44.6%, the hydrogen content increased from 5.51% to 6.51%, and the oxygen content increased from 24.5% to 25.4%. Meanwhile, the content of nitrogen and chlorine in the dry basis both decreased, the nitrogen content decreased from 2.95% to 1.45%, and the chlorine content decreased from 0.51% to 0.45%, while the sulfur content increased from 0.15% to 0.22%. The research results could provide a reference for the selection of terminal treatment method of MSW and the optimization of terminal treatment facilities in this study area.

Key words: municipal solid waste, physical composition, calorific value, element

[1] QI Xiaobo, YI Peng, MA Yunfeng, LIN Xiaoqing. Study on the Combustion Characteristics of Municipal Solid Waste Influenced by Large Proportion of Typical Industrial Solid Waste in a Solid Waste Incinerator [J]. Environmental Sanitation Engineering, 2025, 33(2): 1-11.
[2] QI Jianan, ZHOU Shuo, NING Qing, WANG Huan, LI Bing, LIU Haiwei. Technical-economic Analysis of SRF Preparation Processes from Municipal Solid Waste in County Area of China [J]. Environmental Sanitation Engineering, 2025, 33(1): 23-31.
[3] YAN Haowen, ZHANG Bei, WANG Zhiqiang, LONG Jisheng, JIN Xingqian, GUO Xinwei. Engineering Practice and Analysis of Exhaust Gas Recirculation Technology for Waste Incineration Power Generation Project [J]. Environmental Sanitation Engineering, 2025, 33(1): 98-102.
[4] LIU Yunsong, LI Sha, TANG Yuanyuan. Application of Multiple Indices in the Ecological Risk Assessment of Potential Risk Elements in Sediment [J]. Environmental Sanitation Engineering, 2025, 33(1): 116-123.
[5] GUO Kaiyi, DING Zihang, WEN Sijie, LI Huan, LIU Jianguo, WEI Junxiao. Study on Greenhouse Gas Quantification and Emission Reduction Potentials in Municipal Solid Waste Transportation in Zhanjiang City [J]. Environmental Sanitation Engineering, 2025, 33(1): 130-139.
[6] WANG Chuan, WANG Huishuang, TAI Jun, BI Zhujie, FAN Shuaikang, SONG Xiaolong. Impact of Source Sorting on Carbon Emission and Reduction of Municipal Solid Waste Treatment:A Case Study of Kitchen and Residual Waste Sorting in Shanghai [J]. Environmental Sanitation Engineering, 2025, 33(1): 140-140.
[7] 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.
[8] HUANG Hua, HUANG Zhengpeng, SHEN Yuanpeng, LI Nong. Study on Full Quantification Treatment Technology of Leachate in Municipal Solid Waste Incineration Plant [J]. Environmental Sanitation Engineering, 2024, 32(4): 78-82.
[9] HUANG Shujuan, LI Hang. Study on the Methodology and Implementation Conditions of Municipal Solid Waste Disposal Charge [J]. Environmental Sanitation Engineering, 2024, 32(4): 105-111.
[10] LU Huijie, ZHAO Ruidong, ZHANG Xi, ZHANG He, SONG Huayang, WANG Zhonghang. High Calorific Value Determination and Elemental Analysis of Single Substance Dry Base of Combustible Components of Municipal Solid Waste [J]. Environmental Sanitation Engineering, 2024, 32(2): 28-33,38.
[11] WANG Xianghui, ZHU Yue, CHEN Runsheng. Influence of the Calorific Value of Screened Stale from Aged Waste in Landfill and Blending Combustion on the Operation Condition of Incinerator:A Case Study of Mixed Burning of Aged Waste in a City of Yunnan Province [J]. Environmental Sanitation Engineering, 2024, 32(2): 53-62.
[12] SUN Ziwei, ZHANG Yuxuan, TANG Yuting, WANG Siqi, TANG Jiehong, MA Xiaoqian. Combustion Characteristics and Kinetic Analysis of the Co-combustion of MSW and Excavated Waste [J]. Environmental Sanitation Engineering, 2023, 31(6): 1-10.
[13] CHANG Keke, LI Jian, CHEN Guanyi, DAN Zeng. Characteristics of Municipal Solid Waste Gasification in Tibet Plateau [J]. Environmental Sanitation Engineering, 2023, 31(6): 16-21.
[14] QI Guangxia, LIU Zhengyang, XIA Yi, CHEN Sihan, HU Jinhui , REN Lianhai. The Impact of Physical Composition on the Composition and Emission Characteristics of Odorous Pollutants During Food Waste Composting [J]. Environmental Sanitation Engineering, 2023, 31(6): 54-62.
[15] LI Bo, GAO Lei, RU Chunyun, HAN Zhiming, LIU Yukun. Simulation of MSWI Fly Ash Washing Process and Calculation of Washing Loss Rate [J]. Environmental Sanitation Engineering, 2023, 31(6): 80-84.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!
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