Environmental Engineering Research · 2016 · 13 citations · 12 references
Sewage Sludge TreatmentEngineeringEutrophication PotentialEnvironmental Impact AssessmentWastewater CollectionMunicipal WastewaterLife Cycle CostingLife Cycle ManagementWastewater TreatmentWater TreatmentMonthly Environmental LoadsIndustrial Wastewater ManagementWastewater Treatment PlantWater QualityWastewater ManagementIndustrial WastewaterWaste ManagementEnvironmental EngineeringLife Cycle Assessment
Life cycle assessment (LCA) methodology can be used to assess impacts on the environment that might be generated during treatment of wastewater and sludge treatment. In this work, LCA methodology was suggested to evaluate monthly environmental impact of wastewater treatment plants (WWTPs). Two field scale WWTPs, A2/O process and conventional activated sludge process (CAS), were selected as target plants and the operational data were collected from those plants. As the function units, the unit volume of treated wastewater of 1 m3 and 1 kg T-N eq. removed were selected. The environmental effect of target WWTPs operation were assessed as impact categories such as global warming potential, eutrophication potential, and so on. From monthly profiles of each index, it was shown that the environmental impact of WWTPs has seasonal patterns influenced by the influent flow rate variation causing higher impacts in winter than summer. This is due to the fact that there were no significant increase in the electricity consumption and chemical usage during the summer while the treated volume of wastewater was increased. Keywords: Eutrophication potential, Global warming potential, Human toxicity, Life cycle assessment(LCA), Marine aquatic eco-toxicity, Wastewater treatment plant
12
Life Cycle Assessment: Past, Present, and Future
Jeroen B. Guinée, Reinout Heijungs, Gjalt Huppes et al. · Environmental Science & Technology · 2010 · 1.6K citations
Valerie J. Fuchs, James R. Mihelcic, John S. Gierke · Water Research · 2011 · 151 citations
Engineering, Environmental Engineering, Municipal Wastewater +7