Environmental Sanitation Engineering ›› 2025, Vol. 33 ›› Issue (1): 78-84.doi: 10.19841/j.cnki.hjwsgc.2025.01.010

Previous Articles     Next Articles

Application Study of Gas-liquid Jet Stirring Technology in Anaerobic Digestion Engineering of Kitchen Waste

XU Jiahui, LIU Chao, LE Liangliang, SU Xing, CHEN Weihua, WU Jian   

  1. 1. Shanghai Pudong Development (Group) Co. Ltd.;2. Shanghai Liming Resources Reuse Co. Ltd.
  • Online:2025-03-04 Published:2025-03-04

Abstract: The process of anaerobic fermentation of kitchen waste can be enhanced to some extent by increasing the stirring process, which improves the organic loading of anaerobic fermentation and the efficiency of biogas production. Common mechanical stirring processes can accomplish the stirring within the anaerobic digestion tanks, but they also have several drawbacks, such as high operational energy consumption, insufficient stirring, the difficulty of daily operation and maintenance, as well as the inability to break down large particles and fibrous materials. By introducing an innovative gas-liquid mixed jet stirring technology to replace the mechanical stirring process in the anaerobic digestion process, not only the aforementioned issues could be avoided, but also the mixing effect and biogas yield within the anaerobic fermentation tanks were enhanced. This technology has been successfully and stably operated in the anaerobic fermentation project of kitchen waste for over a year. In the anaerobic fermentation tanks of kitchen waste, the gas-liquid mixed jet stirring could enhance the daily biogas production of the kitchen waste slurry and increase the CH4 content in the biogas by about 9%. At the same time, it could also increase the biogas yield per ton of slurry by about 30% and improve the biogas production rate by about 18%. From the analysis results of slurry mixing degree, equipment investment, ease of installation, operation and maintenance, treatment capacity, energy saving and consumption reduction, the gas-liquid mixed jet stirring has obvious advantages in engineering application.

Key words: gas-liquid jet stirring, mechanical stirring, anaerobic digestion, kitchen waste

[1] LIU Junyi, WU Haihui, YUAN Jiamin. Study on the Effects of Mixed Strains Synergy on Fermentation Acid Production and Nitrogen Removal Performance of Kitchen Waste [J]. Environmental Sanitation Engineering, 2026, 34(1): 35-42.
[2] TONG Ning, ZHAGN Yongmei, WANG Ziqi, GAO Zhan. Regulating Mechanism and Dosage Strategy of Trace Metal Elements in Anaerobic Digestion Systems of Organic Solid Wastes [J]. Environmental Sanitation Engineering, 2026, 34(1): 56-66.
[3] ZHANG Xiaoxing, YE Lu, SHI Zhili, WANG Luochun. Enhanced Performance Study of Zero-valent Iron on Methane Production from Anaerobic Digestion of Kitchen Waste Pressing Liquor [J]. Environmental Sanitation Engineering, 2025, 33(5): 18-26.
[4] LIU Xin, CHEN Minjun, LIU Pingshan, CHEN Meichun, WANG Jieping, WANG Zhiming, LIU Bo. Research and Application of the Juice of Cenchrus fungigraminus to Enrich Microorganism for Degradation of Kitchen Waste [J]. Environmental Sanitation Engineering, 2025, 33(5): 35-41.
[5] LIU Xinyan, ZHANG Xu, LU Huijie, HU Changxia, MA Jiaxing. Evaluation of Uncertainty in the Determination of Organic Matter Content in Kitchen Waste Compost Products by Using Potassium Dichromate Volumetric Method [J]. Environmental Sanitation Engineering, 2025, 33(5): 42-48.
[6] LIU Zhuangquan. Design and Engineering Practice on Small and Medium-sized Kitchen Waste Collaborative Disposal Project [J]. Environmental Sanitation Engineering, 2025, 33(5): 70-74.
[7] HAN Luxin, YAN Puhao, LIU Li, WANG Kainan. Development Evolution of the Technical Route of a Certain Kitchen Waste Treatment Plant in the Eastern Part of Beijing [J]. Environmental Sanitation Engineering, 2025, 33(4): 86-90.
[8] LIU Bin, ZHANG Sen, WANG Litong. Application Comparison Analysis of Dry Anaerobic Fermentation Treatment Technology for Kitchen Waste [J]. Environmental Sanitation Engineering, 2025, 33(3): 37-48.
[9] ZHANG Xiaoxing, WANG Wei, ZHANG Xianhua. Analysis of the Operation Safety and Economic Efficiency of Oil Extraction for Anaerobic Resource Utilization of Household Kitchen Waste [J]. Environmental Sanitation Engineering, 2025, 33(3): 49-55.
[10] PAN Jiayu, LI Mei, LI Yang. Enhancing Anaerobic Methanogenesis of Urban Organic Solid Waste by Granular Activated Carbon-supplemented Electrodes Coupled with Intermittent Power Supply [J]. Environmental Sanitation Engineering, 2025, 33(2): 42-49,54.
[11] LIU Bin, ZHANG Sen, WANG Litong. Exploration on the Application of Dry Anaerobic Fermentation Technology for Kitchen Waste in Chongqing Luoqi [J]. Environmental Sanitation Engineering, 2025, 33(2): 55-63.
[12] ZUO Zhuang, ZHANG Chenyue, YU Wu, MIN Jiadong, WANG Yuanyue. Cross Flow Filtration Performance of Disk Ceramic Membrane from Different Sludge [J]. Environmental Sanitation Engineering, 2025, 33(1): 32-39.
[13] GU Yingjie, NIU Huanhuan. Analysis on Current Situation and Countermeasure of Resource Utilization of Kitchen Waste Oil in Shanghai Under the Background of“Dual Carbon” [J]. Environmental Sanitation Engineering, 2025, 33(1): 124-129.
[14] CHEN Yifan, LI Lei, CAO Jun, MU Junjie. Research on Compression Characteristics of Waste Soil Based on Waste Classification [J]. Environmental Sanitation Engineering, 2025, 33(1): 1-8.
[15] WANG Feng, SUN Jinhao, LIU Wenjun, CHEN Weihua, TIAN Hongyi, CHUI Chunmeng, XIE Bing. Effects of Different Feedstock Ratios on the Physicochemical Properties and Maturity of Co-composting of Digestate and Kitchen Waste [J]. Environmental Sanitation Engineering, 2024, 32(5): 41-47.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] . Optimization Study on Effect Evaluation Index for Source Separation of Municipal Solid Waste Based on F-measure   [J]. Environmental Sanitation Engineering, 2018, 26(3): 1 -3 .
[2] . Exploration and Research on Improving the Classification Effect of Domestic Garbage in Guangzhou   [J]. Environmental Sanitation Engineering, 2018, 26(3): 4 -7 .
[3] . Municipal Sewage Sludge Co-firing in Waste Incineration Power Plant: A Case Study of Hengyang City   [J]. Environmental Sanitation Engineering, 2018, 26(3): 14 -17 .
[4] . Study on Influencing Factors of Municipal Solid Waste Heating Value in Taiyuan   [J]. Environmental Sanitation Engineering, 2018, 26(3): 29 -32 .
[5] . Inhibition Concentration and Elimination Method of Ammonia Nitrogen in Anaerobic Digestion Process   [J]. Environmental Sanitation Engineering, 2018, 26(3): 33 -35 .
[6] . Operation Management Acceptance and Detection Analysis of Closed Waste Cleaning Stations in Beijing   [J]. Environmental Sanitation Engineering, 2018, 26(3): 49 -51 .
[7] . Discussion on Optimum Design of UASB Reactor for Leachate   [J]. Environmental Sanitation Engineering, 2018, 26(3): 63 -67 .
[8] . Engineering Design of Construction Waste Reclamation in Daxing District of Beijing   [J]. Environmental Sanitation Engineering, 2018, 26(3): 71 -74 .
[9] . Technology Upgrading and Architectural Design on Relieving NIMBY Problem of MSW Incineration Power Plant in#br# Mingzhou of Ningbo   [J]. Environmental Sanitation Engineering, 2018, 26(3): 75 -77 .
[10] . Types and Application Conditions of Municipal Solid Waste Waterway Transportation at Home and Abroad   [J]. Environmental Sanitation Engineering, 2018, 26(3): 78 -83 .
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