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Towards sustainability: An integrated life cycle environmental-economic insight into cow manure management

生命周期评估 肥料 持续性 粪便管理 农业 环境影响评价 业务 环境科学 自然资源经济学 碳足迹 种植 温室气体 环境经济学 生产(经济) 经济 农学 生态学 宏观经济学 生物
作者
Tianzuo Zhang,Yueyang Bai,Xinying Zhou,Ziheng Li,Ziyue Cheng,Jinglan Hong
出处
期刊:Waste Management [Elsevier]
卷期号:172: 256-266 被引量:1
标识
DOI:10.1016/j.wasman.2023.10.038
摘要

Waste management signifies an equilibrium between environmental and economic factors. However, a comprehensive understanding of the integrated life cycle environmental-economic performance of waste management activities remains unclear. To facilitate a systematic linkage between the economic and environmental sectors, a regionalized life cycle assessment-based life cycle costing method was developed based on China's actual status quo. The cow manure utilization was set as an entry point to explored long-term environmental-economic performance of milk production under various manure utilization pathways. The results show that trade-offs were observed between internal and external costs as well as various environmental indicators. The choice of waste utilization is the focal point of environmental-economic trade-offs in the cow raising system. The optimal environmental-economic performance was achieved through the manure fertilizer utilization pathway, yielding a remarkable three-fold increase in marginal environmental benefits. Compared with fertilizer utilization, the manure direct returning to field reduced the carbon footprint by 12% while induced an external cost of $14.3. The wastewater treatment pathway is $ 5.5 lower in internal costs but $ 11.7 higher in external costs than those of fertilizer utilization. Overall, utilizing manure has potential to mitigate the upward trend of carbon footprint and external costs. However, achieving the carbon peak remains a significant challenge. A promising solution is the recycling of straw resources within cropping systems, particularly in hotspot regions (e.g., Inner Mongolia, Heilongjiang, Hebei, and Shandong). A comprehensive analysis of the dynamic interplay between cropping systems and cow raising systems is critical steps towards realizing a carbon-neutral future within the dairy production.
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