西北生态脆弱区畜禽粪污处理技术综合评价

Comprehensive evaluation research of livestock and poultry waste treatment technologies in the ecological fragile areas of Northwest China

  • 摘要: 畜禽粪污处理技术在不同地区适用性有较大差异。为全面、客观、科学地筛选出适宜西北地区的畜禽粪污处理技术,将生命周期评价、费用效益评价与层次分析法耦合,从技术、经济、气候、直接环境影响与间接环境影响5个方面,建立了包含18项指标的西北生态脆弱区畜禽粪污处理技术评价体系;以兰州市畜禽粪污处理技术为例,分析好氧堆肥、厌氧发酵、垫料利用3种处理技术的适用性。结果表明:兰州市畜禽粪污处理技术适用性综合排序为垫料利用(72.21分)>好氧堆肥(71.55分)>厌氧发酵(68.79分),垫料利用技术更适宜在西北地区推广;垫料利用技术环境友好性明显优于厌氧发酵和好氧堆肥技术;使用好氧堆肥和厌氧发酵技术处理畜禽粪污可为养殖场增加额外收益。该研究可为西北地区畜禽粪污处理技术模式构建和优化提供指导。

     

    Abstract: The applicability of livestock and poultry waste treatment technology is quite different in different regions. In order to comprehensively, objectively and scientifically screen out suitable livestock and poultry waste treatment technologies in Northwest China, the life cycle assessment, cost benefit analysis (CBA) and analytic hierarchy process (AHP) methods were coupled to establish a screening system for livestock and poultry waste treatment technologies in Northwest China. The system included five factors of technology, economy, climate, direct and indirect environmental impacts, with a total of 18 indicators. Taking the livestock and poultry waste treatment technologies in Lanzhou as an example, the applicability of the technologies of aerobic composting, anaerobic fermentation, and litter utilization were analyzed. The results showed that the comprehensive ranking of the applicability of livestock and poultry waste treatment technologies in Lanzhou City was litter utilization technology (72.21 points)>aerobic composting technology (71.55 points) > anaerobic fermentation technology (68.79 points). It was more suitable to use litter utilization technology in Northwest China. The environmental friendliness of litter utilization technology is obviously better than that of anaerobic fermentation and aerobic composting technologies. The use of aerobic composting and anaerobic fermentation technologies could generate additional profits for the breeding farm. This research could provide guidance for the construction and optimization of livestock and poultry waste treatment technology models in Northwest China.

     

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