Shi Yilei, Zhou Lu, Xu Yangyu, Zhou Hongjie, Shi Lei
School of Environment, Tsinghua University, Beijing, 100084, PR China.
J Clean Prod. 2018 Sep 20;196:1188-1197. doi: 10.1016/j.jclepro.2018.06.129.
The rich content of nutrients in human waste provides an outlook for turning it from pollutants to potential resources. The pilot-scale resource-oriented toilet with forward osmosis technology was demonstrated to have advantages to recover clean water, nitrogen, phosphorus, potassium, biogas, and heat from urine and feces. For the possibility of further full-scale implementation in different scenarios, six resource-oriented toilet systems and one conventional toilet system were designed in this study. The methodology of cost-benefit analysis and life cycle assessment were applied to analyze the life cycle economic feasibility and environmental sustainability of these systems. As results indicated, resource-oriented toilets with forward osmosis technology concentrating urine proved to have both economic and environmental benefit. The economic net present value results of new resource-oriented toilets were much better than conventional toilet. The energy consumption in resource-oriented toilets contributes a lot to the environmental impacts while resource recovery such as the fertilizer production and fresh water harvest in resource-oriented toilet systems offsets a lot. Taking both life cycle economic feasibility and environmental sustainability into consideration, the partial resource-oriented toilet (only recovering nutrients from urine) is the best choice, and the totally independent resource-oriented toilet could be applied to replace conventional toilets in areas without any external facilities such as sewer and water supply system .
人类排泄物中丰富的营养成分使得将其从污染物转化为潜在资源成为可能。采用正向渗透技术的中试规模资源导向型厕所已被证明在从尿液和粪便中回收清洁水、氮、磷、钾、沼气和热量方面具有优势。为了探讨在不同场景下进一步全面实施的可能性,本研究设计了六种资源导向型厕所系统和一种传统厕所系统。应用成本效益分析和生命周期评估方法来分析这些系统的生命周期经济可行性和环境可持续性。结果表明,采用正向渗透技术浓缩尿液的资源导向型厕所具有经济和环境效益。新型资源导向型厕所的经济净现值结果远优于传统厕所。资源导向型厕所的能源消耗对环境影响较大,而资源导向型厕所系统中的肥料生产和淡水收获等资源回收则抵消了大量影响。综合考虑生命周期经济可行性和环境可持续性,部分资源导向型厕所(仅从尿液中回收养分)是最佳选择,完全独立的资源导向型厕所可用于在没有下水道和供水系统等任何外部设施的地区取代传统厕所。