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Manuscript: Sector-wide GHG Emissions with Normalized Process and Effluent N_2O, Sewer CH_4, and Methanol CO_2

机译:手稿:标准化工艺和废水N_2O、下水道CH_4和甲醇CO_2的行业GHG排放

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Sewer methane (CH_4) and methanol carbon dioxide (CO_2) have been poorly covered in greenhouse-gas (GHG) emissions protocols. Domestic-sewage treatment nitrous oxide (N_2O) has been treated either holistically on a population-based basis or more recently split out to differentiate N_2O emitted from biological processing of nitrogen and by effluent-nitrogen discharge and subsequent production of N_2O from biological processes in the receiving environment. Willis et. al (2017) and Willis et. al (2020) used DC Water GHG inventories before and after digestion upgrades at the Blue Plains Advanced Wastewater Treatment Plant (Blue Plains) to estimate that methanol (CH_3OH) CO_2 and sewer- CH_4 respectively represented 55.5% and 12.8% of the US centralized-sewage treatment industry's Scope GHG emissions. These publications noted that, due to the use of Blue Plains' extremely low process N_2O emission rates, that process N_2O was necessarily under-accounted for in those national estimates. This paper coordinates those prior estimates with process-specific N_2O emissions to provide an initial, better-reconciled assessment of the US wastewater industry's Scope-1 GHG emissions.
机译:下水道甲烷(CHU 4)和甲醇二氧化碳(CO 2)在温室气体(GHG)排放协议中的覆盖率很低。生活污水处理一氧化二氮(N_2O)已在人群基础上进行整体处理,或最近进行分离,以区分氮的生物处理、废水氮排放和随后从接收环境中的生物过程中产生N_2O排放的N_2O。Willis等人(2017年)和Willis等人(2020年)使用了Blue Plains高级污水处理厂(Blue Plains)消化升级前后的直流水GHG清单,以估算甲醇(CHU 3OH)CO2和下水道CHU 4分别占美国集中污水处理行业范围GHG排放量的55.5%和12.8%。这些出版物指出,由于使用了Blue Plains极低的工艺N_2;2O排放率,该工艺N_2O在这些国家估算中必然被低估。本文将这些先前的估计值与特定于工艺的N_2O排放量相协调,以便对美国废水行业的Scope-1 GHG排放量进行初步的、更协调的评估。

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