With more and more serious impact on the environment by solid waste, the collection, treatment and utilization of solid waste have become the research focus in the current. This article mainly generalizes the collection ways and treatment methods for the living garbage, industrial waste and agricultural waste. The resource utilization techniques of solid wasteincluding separation technology, incineration and pyrolytictechniques, biological treatment technology, energy recovery via RDF and incineration power generationare analyzed and discussed in detail. The results will provide some proper proposals for handling and reusing solid waste effectively and contribute to the social sustainable development, the low carbon economy and the eco-development.
Published in | American Journal of Chemical Engineering (Volume 4, Issue 2) |
DOI | 10.11648/j.ajche.20160402.14 |
Page(s) | 52-56 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
Copyright |
Copyright © The Author(s), 2016. Published by Science Publishing Group |
Solid Waste, Living Garbage, Industrial Waste, Agricultural Waste, Collection, Treatment, Resource Utilization
[1] | Chen Jie, Wang Qiannan, Ye Zhiping, et al. Low temperature plasma combined with stripping method to remove leachate [J]. Journal of chemical waste odor, 2012, 63 (11): 3660-3665. |
[2] | Li Jinhui, Nie Yongfeng, Bai Qingzhong. Research on industrial solid waste China [J]. Journal of environmental science forecast, 1999 (06): 625-630. |
[3] | What flowers. Classification of the establishment of city living garbage collection [J]. a new mode of environmental protection and recycling economy, 2012 (05): 15-17. |
[4] | Liu Shuzhi, Zhu Yuwu, Yang Yuhua, et al. Dian chi basin rural solid waste source classification collection and processing of system design [J]. Yunnan environmental science, 2006 (S1): 162-164. |
[5] | Zhang Qi city solid waste harmless treatment way [J]. Chinese resources comprehensive utilization, 2012 (08): 26-29. |
[6] | Liao Lingjuan, Huang Na, Jiang Ming Hong, et al. The city solid waste by different treatment methods for carbon emissions analysis -- Taking Dong guan city as an example of a garbage incineration power plant [J]. Anhui agricultural science, 2013 (16): 7287-7289. |
[7] | Wang Limin. Life garbage treatment process selection [J]. Shan xi architecture, 2013 (25). |
[8] | Huang Binghui. Slag separation process of [J]. green technology of MSW incineration, 2013 (07): 215-217. |
[9] | Zhang Jing. The recycling of urban living garbage [J]. Resources Economization and Environment Protection, 2015 (10): 26. |
[10] | Li Zehui, Fu Xiaoru, Shen Kai, et al. Research of city life garbage sorting technology [J]. renewable resources and recycling economy, 2013 (06): 24-27. |
[11] | Nguyen. Countermeasures of [J]. status and treatment of solid waste pollution in China today Keyuan, 2011 (02): 34 |
[12] | Chen Jiang. Non thermal plasma technology in wastewater treatment applications [J]. modern chemical industry, 2012 (06): 632-639. |
[13] | Liu Xin, Li Shengli, Li Mingshu. Feasibility study on applying straw resources [J]. Anhui Agricultural Sciences thermal plasma technology, 2012 (17): 9200-9202. |
[14] | Zhou Dan. Plasma gasification technology of garbage disposal is the future direction of development of [J]. Foreign energy, 2013 (09): 57 |
[15] | Wang Mingfei, forest conditions. Plasma technology in waste treatment in the application of [J]. technology to the wizard, 2014 (05): 43-116. |
[16] | Liu Shanshan, Wu Shuang, Zhu Nanwen. The landfill leachate biological treatment technology research status and Prospect of [J]. Guangzhou chemical industry, 2014 (04): 8-10. |
[17] | Once. Organic solid waste composting microbiological mechanism of [J]. science and Technology Innovation Herald, 2013 (36): 28 |
[18] | Zhou Chuanbin, Xu Wanying, Cao Aixin. Research progress of city life garbage metabolism in [M]. 2014 |
[19] | XuJia, Yan Jianhua, Xiao Gang, et al. City life garbage gasification technology [J]. Chinese Science Bulletin, 2004 (06): 560-564. |
[20] | Shen Boxiong, Yao Qiang. Refuse derived fuel (RDF) technology [J]. Power system engineering, 2002 (03): 47-49. |
[21] | Li Yanji, Jiang Lu, Li Yulong, et al. Study on dynamic characteristics of refuse derived fuel gasification [J]. Power system engineering, 2013 (01): 5-8. |
[22] | Yu Dujiang. Refuse derived fuel (RDF) gasification characteristics of fluidized bed air experiment [D]. Dissertation of Zhejiang University, 2014. |
[23] | Zhang Lijing. Refuse derived fuel gasification pyrolysis mechanism model and Simulation of [D]. Dissertation of Zhejiang University, 2014. |
APA Style
Shang Shuyong, Mei Li, Zhang Yudie, Huang Fei, Wang Bing, et al. (2016). Progress on Collection, Treatment and Utilization of Solid Waste. American Journal of Chemical Engineering, 4(2), 52-56. https://doi.org/10.11648/j.ajche.20160402.14
ACS Style
Shang Shuyong; Mei Li; Zhang Yudie; Huang Fei; Wang Bing, et al. Progress on Collection, Treatment and Utilization of Solid Waste. Am. J. Chem. Eng. 2016, 4(2), 52-56. doi: 10.11648/j.ajche.20160402.14
AMA Style
Shang Shuyong, Mei Li, Zhang Yudie, Huang Fei, Wang Bing, et al. Progress on Collection, Treatment and Utilization of Solid Waste. Am J Chem Eng. 2016;4(2):52-56. doi: 10.11648/j.ajche.20160402.14
@article{10.11648/j.ajche.20160402.14, author = {Shang Shuyong and Mei Li and Zhang Yudie and Huang Fei and Wang Bing and Li Weiyi}, title = {Progress on Collection, Treatment and Utilization of Solid Waste}, journal = {American Journal of Chemical Engineering}, volume = {4}, number = {2}, pages = {52-56}, doi = {10.11648/j.ajche.20160402.14}, url = {https://doi.org/10.11648/j.ajche.20160402.14}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ajche.20160402.14}, abstract = {With more and more serious impact on the environment by solid waste, the collection, treatment and utilization of solid waste have become the research focus in the current. This article mainly generalizes the collection ways and treatment methods for the living garbage, industrial waste and agricultural waste. The resource utilization techniques of solid wasteincluding separation technology, incineration and pyrolytictechniques, biological treatment technology, energy recovery via RDF and incineration power generationare analyzed and discussed in detail. The results will provide some proper proposals for handling and reusing solid waste effectively and contribute to the social sustainable development, the low carbon economy and the eco-development.}, year = {2016} }
TY - JOUR T1 - Progress on Collection, Treatment and Utilization of Solid Waste AU - Shang Shuyong AU - Mei Li AU - Zhang Yudie AU - Huang Fei AU - Wang Bing AU - Li Weiyi Y1 - 2016/05/19 PY - 2016 N1 - https://doi.org/10.11648/j.ajche.20160402.14 DO - 10.11648/j.ajche.20160402.14 T2 - American Journal of Chemical Engineering JF - American Journal of Chemical Engineering JO - American Journal of Chemical Engineering SP - 52 EP - 56 PB - Science Publishing Group SN - 2330-8613 UR - https://doi.org/10.11648/j.ajche.20160402.14 AB - With more and more serious impact on the environment by solid waste, the collection, treatment and utilization of solid waste have become the research focus in the current. This article mainly generalizes the collection ways and treatment methods for the living garbage, industrial waste and agricultural waste. The resource utilization techniques of solid wasteincluding separation technology, incineration and pyrolytictechniques, biological treatment technology, energy recovery via RDF and incineration power generationare analyzed and discussed in detail. The results will provide some proper proposals for handling and reusing solid waste effectively and contribute to the social sustainable development, the low carbon economy and the eco-development. VL - 4 IS - 2 ER -