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验证一种基于证据的方法,以支持意大利区域碳足迹评估和污水处理服务脱碳。

Validation of an evidence-based methodology to support regional carbon footprint assessment and decarbonisation of wastewater treatment service in Italy.

机构信息

Department of Science and Engineering of Materials, Environment and Urban Planning-SIMAU, Marche Polytechnic University, Via Brecce Bianche,12, Ancona 60131, Italy.

Public-Owned Water Utility, Alto Trevigiano Servizi Srl, Via Schiavonesca Priula, 86 - 31044 Montebelluna, Treviso, Italy.

出版信息

Water Res. 2021 Dec 1;207:117831. doi: 10.1016/j.watres.2021.117831. Epub 2021 Nov 3.

Abstract

In this paper, a new regional methodological approach for determining direct and indirect emissions from wastewater treatment plants (WWTPs) is proposed. Additionally, an entire territorial wastewater treatment service located in the northern Italy and serving 411,484 PE was assessed. The most accurate emission factor identification is presented using appropriate on-site measurements, monitoring different aerated operational units and sampling several streams in 12 relevant WWTPs of different treatment capacities, ranging from 3000 to 73,000 PE. Dissolved greenhouse gas (GHG) concentrations from 0.2 to 24 mgNO/L, 0.1 to 1 mgCH/L and 1.8 to 52 mgCO/L in effluent flows were detected. Specific carbon footprints resulted in the emissions of 0.04-0.20 tonCO/PE/y, varying as per the size of the plants. The most impactful categories were identified for indirect emissions, associated with dissolved GHGs discharged in the surface water body and due to energy consumption, which accounted for 13-70% and 10-40%, respectively. The overall territorial carbon footprint of the wastewater treatment service was also quantified to provide evidence-based decision support system (DSS) and prepare systemic mitigation strategies.

摘要

本文提出了一种新的区域性方法,用于确定污水处理厂(WWTP)的直接和间接排放。此外,还对位于意大利北部的整个领土污水处理服务进行了评估,该服务为 411,484 人提供服务。通过对不同处理能力的 12 个相关 WWTP 的不同曝气操作单元进行适当的现场测量、监测和采样,确定了最准确的排放因子。在排放流中检测到 0.2 至 24mgNO/L、0.1 至 1mgCH/L 和 1.8 至 52mgCO/L 的溶解温室气体(GHG)浓度。特定的碳足迹导致排放量为 0.04-0.20 吨 CO/PE/y,具体取决于工厂的规模。对于间接排放,确定了最具影响力的类别,与排放到地表水体内的溶解 GHG 以及能源消耗有关,分别占 13-70%和 10-40%。还对污水处理服务的整个领土碳足迹进行了量化,以提供基于证据的决策支持系统(DSS)并制定系统缓解策略。

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