@article{35650, keywords = {Life-cycle assessment, Wastewater, Cost analysis, Anaerobic digestion, Resource recovery, Nutrient recovery, Energy recovery, Food waste}, author = {Kevin D Orner and Sarah Josephine Smith and Sarah L Nordahl and Alicia Chakrabarti and Hanna Breunig and Corinne D Scown and Harold Leverenz and Kara L Nelson and Arpad Horvath}, title = {Environmental and Economic Impacts of Managing Nutrients in Digestate Derived from Sewage Sludge and High-Strength Organic Waste}, abstract = {
Increasingly stringent limits on nutrient discharges are motivating water resource recovery facilities (WRRFs) to consider the implementation of sidestream nutrient removal or recovery technologies. To further increase biogas production and reduce landfilled waste, WRRFs with excess anaerobic digestion capacity can accept other high-strength organic waste (HSOW) streams. The goal of this study was to characterize and evaluate the life-cycle global warming potential (GWP), eutrophication potential, and economic costs and benefits of sidestream nutrient management and biosolid management strategies following digestion of sewage sludge augmented by HSOW. Five sidestream nutrient management strategies were analyzed using environmental life-cycle assessment (LCA) and life-cycle cost analysis (LCCA) for codigestion of municipal sewage sludge with and without HSOW. As expected, thermal stripping and ammonia stripping were characterized by a much lower eutrophication potential than no sidestream treatment; significantly higher fertilizer prices would be needed for this revenue stream to cover the capital and chemical costs. Composting all biosolids dramatically reduced the GWP relative to the baseline biosolid option but had slightly higher eutrophication potential. These complex environmental and economic tradeoffs require utilities to consider their social, environmental, and economic values in addition to present or upcoming nutrient discharge limits prior to making decisions in sidestream and biosolids management.
}, year = {2022}, journal = {Environmental Science & Technology}, volume = {56}, pages = {17256 - 17265}, month = {12/2022}, issn = {0013-936X}, url = {https://pubs.acs.org/doi/10.1021/acs.est.2c04020}, doi = {10.1021/acs.est.2c0402010.1021/acs.est.2c04020.s001}, language = {eng}, }