Energy and Environment Interdisciplinary Center (CIENAM), Federal University of Bahia (UFBA), Barão de Jeremoabo Street n/a, Ondina, 40170-115, Salvador, Bahia, Brazil.
Department of Environmental Engineering, Federal University of Bahia (UFBA), Aristides Novis Street 2, 4° floor, Federação, 40210-630, Salvador, Bahia, Brazil; Energy and Environment Interdisciplinary Center (CIENAM), Federal University of Bahia (UFBA), Barão de Jeremoabo Street n/a, Ondina, 40170-115, Salvador, Bahia, Brazil.
Sci Total Environ. 2020 Jun 10;720:137593. doi: 10.1016/j.scitotenv.2020.137593. Epub 2020 Feb 26.
Reliable Life Cycle Assessment (LCA) indicators for wastewater treatment plants (WWTP) construction and operation phases are still a demand mainly in developing countries. Thus, the purpose of this paper was to present and discuss the environmental performance of a full-scale WWTP installed in a Brazilian city using LCA approach. The treatment process consists of a UASB reactor followed by constructed wetlands, which makes it particularly attractive to developing countries due to its operational simplicity. The Life Cycle Inventory (LCI) was developed from a WWTP design and operation data including those of untreated wastewater and effluent quality. The results show that the environmental impacts from construction phase should not be neglected in LCA studies of low complexity treatment technologies (e.g. UASB reactor, constructed wetlands and pond systems). There is a trade-off between the use of materials and energy for construction and the low energy and materials consumption during the operation phase in these systems. The majority share of hydroelectric generation in the energy matrix and the combination of anaerobic and natural processes for wastewater treatment have contributed to a smaller impact potential for the operation phase. The LCA approach should be associated with plans and actions to face the challenges of providing wastewater treatment in developing countries. Only in this way, compliance with the eco-efficiency targets and protect public health will be guaranteed.
可靠的生命周期评估(LCA)指标对于废水处理厂(WWTP)的建设和运营阶段仍然是发展中国家的主要需求。因此,本文的目的是使用生命周期评估方法展示和讨论安装在巴西城市的全规模 WWTP 的环境性能。该处理工艺由 UASB 反应器和人工湿地组成,由于其操作简单,对发展中国家特别有吸引力。生命周期清单(LCI)是根据 WWTP 的设计和运行数据(包括未经处理的废水和出水质量数据)开发的。结果表明,在低复杂性处理技术(如 UASB 反应器、人工湿地和池塘系统)的 LCA 研究中,不应忽视施工阶段的环境影响。在这些系统中,施工阶段的材料和能源使用与运行阶段的低能源和材料消耗之间存在权衡。能源矩阵中水电的主要份额以及废水处理的厌氧和自然过程的结合,有助于降低运行阶段的潜在影响。生命周期评估方法应与应对发展中国家提供废水处理挑战的计划和行动相结合。只有这样,才能保证符合生态效率目标和保护公众健康。