Education, Science, Technology, Innovation and Life
Open Access
Sign In

Research on Municipal Sludge Dewatering and Modified Catalytic Combustion Technology

Download as PDF

DOI: 10.23977/ieim.2023.060201 | Downloads: 11 | Views: 774

Author(s)

Huang Bo 1

Affiliation(s)

1 Changsha Zichen Technology Development Co., Ltd., Changsha, 410000, China

Corresponding Author

Huang Bo

ABSTRACT

Aiming at the problem that high moisture content of municipal sludge with flocculation structure and high water retention capacity, which makes dewatering and drying difficult, this paper carries out research on dewatering, drying and modified combustion technology of municipal sludge with the goal of resource and energy utilization. The sludge dewatering agent ZC-2T and catalytic oxidation nitrification agent ZC-4R were preferably selected as the main components of modified adjusting agent ZC-1W for industrial application of sludge energy disposal. The compounded modified adjusting agent ZC-1W has a positive contribution to improve the combustion performance of sludge mixed with raw coal, which providing important theoretical support and practical data for the large-scale industrial development and application of municipal sludge. The study will generate significant economic and social significance.

KEYWORDS

Low carbon energy, Dehydration, Catalytic oxidation, Modification adjustment, Energization

CITE THIS PAPER

Huang Bo, Research on Municipal Sludge Dewatering and Modified Catalytic Combustion Technology. Industrial Engineering and Innovation Management (2023) Vol. 6: 1-7. DOI: http://dx.doi.org/10.23977/ieim.2023.060201.

REFERENCES

[1] An Ye, Zhang Yibin, Li Pan, et al. Current situation and experience summary of municipal sewage sludge treatment and disposal in China [J].Water & Wastewater Engineering, 2021, 47(S1): 94-98.
[2] Li Qiaoyang. Current situation and development trend of urban sludge disposal in china based on carbon emission reduction analysis [D]. Harbin Institute of Technology, 2020.
[3] Wang Li, He Rong, Lei Haitao. General review of sludge treatment and disposal technology for urban WWTP [J]. Water Purification Technology, 2022, 41(11): 16-21, 69.
[4] Ministry of Housing and Urban-Rural Development of the People's Republic of China. 2017 Statistical Yearbook of Urban and Rural Construction [R]. Beijing: China Statistics Press, 2019.
[5] Wu Yifeng, Chi Yanfeng, Zhang Lu et al. Study on deep dewatering and heavy metal stabilization of stocked sludge [J]. Journal of Environmental Engineering Technology, 2023, 13(01):248-254.
[6] Chen Yanxiu, Li Gang. Research progress of municipal sludge dewatering technology [J]. Environmental Science & Technology, 2021, 44(S1):308-311.
[7] Chen D J, Xia T, Zhang X et al. Advances in municipal sludge dewatering pretreatment technology [J]. Journal of Nanjing University of Technology (Natural Science Edition), 2023, 45(01):12-23.
[8] Xu Chuanrui, Xu Yao, Wang Jialiang et al. A Pore-Scale Physical Model for Electric Dewatering of Municipal Sludge Based on Fractal Geometry [J]. Journal of Environmental Engineering, 2023, 149(3)
[9] Cao Xiaozhe, Lin Lifeng, Hu Weijie. Study on energy saving and consumption reduction of sludge drying incineration project under the background of carbon neutralization [J].Water & Wastewater Engineering, 2022, 58(7): 51-56.
[10] Devon Barry, Chiara Barbiero, Cedric Briens, et al. Pyrolysis as an economical and ecological treatment option for municipal sewage sludge [J]. Biomass and Bioenergy, 2019.
[11] Liao Yanfen, Qiu Mengze, Chen Shunkai et al. Experimental study on thermal drying characteristics and pollutant discharge law of municipal sludge [J]. Journal of South China University of Technology (Natural Science Edition), 2022, 50(08):92-101.

Downloads: 11715
Visits: 277386

All published work is licensed under a Creative Commons Attribution 4.0 International License.

Copyright © 2016 - 2031 Clausius Scientific Press Inc. All Rights Reserved.