Zhou Haibin, Shen Yujun, Meng Haibo, Zhao Lixin, Cheng Hongsheng, Huo Lili, Dong Shanshan. Research on rural waste recycling mode and its evaluation in village[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2018, 34(23): 206-212. DOI: 10.11975/j.issn.1002-6819.2018.23.026
    Citation: Zhou Haibin, Shen Yujun, Meng Haibo, Zhao Lixin, Cheng Hongsheng, Huo Lili, Dong Shanshan. Research on rural waste recycling mode and its evaluation in village[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2018, 34(23): 206-212. DOI: 10.11975/j.issn.1002-6819.2018.23.026

    Research on rural waste recycling mode and its evaluation in village

    • Abstract: In recent years, China's rural areas have witnessed rapid economic development, and the living and production waste in rural areas has been gradually increased. However, due to the limited economic development level, some villages is still lack of facilities for collection, treatment, and disposal of these waste. The recycling of living and production wastes in villages is an important way of environmental protection in the rural area and to improve the efficiency of resource utilization. It is easy to find some practical and mature technology to treat one kind of wastes in rural area, but lack of overall consideration for the recycling of production and living waste in the village. In this paper, we took a typical village (village A) in the mountainous area of Xingtai City, Hebei Province as an example, and constructed a recycling system of production and living waste. Fruit planting and rural tourism are the leading industries in village A. The main waste in village A are fruit trees pruning, household solid waste, sewage, and manure. The recycling system of the village was constructed using technologies and facilities such as composting of organic wastes, pyrolysis of fruit tree pruning, sewage treatment, and the collection and treatment of solid waste. The energy recovery and fertilizer use were realized in the village, and residential environment governance achieved a higher level. A combination of analytic hierarchy process (AHP) and fuzzy evaluation method was adopted to construct the index system to evaluate the technology system of the recycling of wastes from living and production. A total of 26 indexes were chosen in the index system, which contained technological, economic and social, and environmental indexes. And the weight of each index was determined by the expert scoring method. Such as residents' acceptance, cost for garbage collection, average steady running time of the treatment facilities, and qualification rate of surface water and soil showed higher weights in rural area of North China. The method was used to evaluate the recycling system of village A, and result showed that the technology system of recycling of wastes from living and production in village A was level excellent. The evaluation method could fully reflect the characteristics of the recycling mode of living and production waste in rural areas. The evaluation methods in this study would provide the methodology reference for assessing, selecting, integrating, and promoting the technology system of recycling of wastes from living and production in China. It is a new thought that committing an overall design of the recycling system of the village, according to the village type, location, and reginal economic, and modifying through scientific evaluation, which could greatly improve the quality of rural area development, governance, and environmental protection. We will conduct evaluation and research on different types of typical villages in the southern area and the plain area of northern China in the future, further improve the evaluation method, and provide guidance for the construction and operation of recycling system of living and production waste in natural villages.
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