Han Jiahui, Liu Yin, Li Wenqing, Huang Feini, Shen Wenhao, Liu Tianlong, Corriou Jean-Pierre, Seferlis Panagiotis
State Key Laboratory of Pulp & Paper Engineering, South China University of Technology, Guangzhou 510640, PR China.
State Key Laboratory of Pulp & Paper Engineering, South China University of Technology, Guangzhou 510640, PR China.
Sci Total Environ. 2024 May 10;924:171637. doi: 10.1016/j.scitotenv.2024.171637. Epub 2024 Mar 11.
Wastewater treatment plants (WWTPs) have been regarded as the main sources of greenhouse gas (GHG) emissions. This study compares the influent characteristics of industrial wastewater represented by the WWTP of paper mill and that of domestic sewage represented by the Benchmark Simulation Model No. 1 (BSM1) under stormy weather. The various sources of GHG emissions from the two processes are calculated, and the contribution of each source to the total GHG emissions is assessed. Firstly, based on the mass balance analysis and the recognized emission factors, a GHG emission calculation model was established for the on-site and off-site GHG emission sources from the WWTP of paper mill. Simultaneously, a GHG emission experimental model was established by determining the dissolved concentrations of carbon dioxide (CO) and nitrous oxide (NO) in the papermaking wastewater, to verify the accuracy of the developed GHG calculation model. Subsequently, an optimum aeration rate for the paper mill was investigated to comply with the discharging norms. Under the optimum aeration rate of 10 h, the obtained calculation accuracies of CO and NO emissions were 94.6 % and 91.1 %, respectively. The mean total GHG emission in the WWTP of paper mill was 550 kg CO-eq·h, of which 44.6 % came from the on-site emission sources and 55.4 % from the off-site emission sources. It was also uncovered that the electrical consumption for aeration was the largest contributor to the total GHG emissions with a proportion of 25.2 %, revealing that the control strategy of the aeration rate is highly significant in reducing GHG emissions in WWTP of paper mills.
污水处理厂(WWTPs)被视为温室气体(GHG)排放的主要来源。本研究比较了造纸厂污水处理厂所代表的工业废水与基准模拟模型1(BSM1)所代表的生活污水在暴雨天气下的进水特征。计算了这两个过程中温室气体排放的各种来源,并评估了每个来源对温室气体总排放量的贡献。首先,基于质量平衡分析和公认的排放因子,建立了造纸厂污水处理厂现场和场外温室气体排放源的温室气体排放计算模型。同时,通过测定造纸废水中二氧化碳(CO)和一氧化二氮(NO)的溶解浓度,建立了温室气体排放实验模型,以验证所开发的温室气体计算模型的准确性。随后,研究了造纸厂的最佳曝气速率,以符合排放标准。在10小时的最佳曝气速率下,获得的CO和NO排放计算准确率分别为94.6%和91.1%。造纸厂污水处理厂的平均温室气体总排放量为550 kg CO-eq·h,其中44.6%来自现场排放源,55.4%来自场外排放源。研究还发现,曝气用电是温室气体总排放量的最大贡献者,占比25.2%,这表明曝气速率控制策略对减少造纸厂污水处理厂的温室气体排放具有重要意义。