Botte Gerardine G, Donneys-Victoria Dayana, Alvarez-Pugliese Christian E, Adjei Jedidian, Sahin Selin, Wilson Nathan W, Millerick Kayleigh, Hardberger Amy, Furst Ariel L, Hu Nicole, Medford Andrew J
Institute for Sustainability and Circular Economy, Chemical and Electrochemical Technology and Innovation Laboratory, Department of Chemical Engineering, Texas Tech University, Lubbock, Texas 79409, United States.
Department of Civil, Environmental, and Construction Engineering, Texas Tech University, Lubbock, Texas 79409, United States.
ACS Omega. 2024 Dec 7;9(50):49692-49706. doi: 10.1021/acsomega.4c07926. eCollection 2024 Dec 17.
Efforts addressing sludge management, food security, and resource recovery have led to novel approaches in these areas. Electrically assisted conversion of sludge stands out as a promising technology for sewage sludge valorization, producing nitrogen and phosphorus-based fertilizers. The adoption of this technology, which could lead to a fertilizer circular economy, holds the potential to catalyze a transformative change in wastewater treatment facilities toward process intensification, innovation, and sustainability. This paper provides insights into the economic aspects of the technology, policy considerations, and challenges involved in realizing the potential of electrified processes for sludge valorization. To demonstrate the impact of the technology, a case study for its implementation in the United States assuming the municipal wastewater treatment plants market is discussed. It was found that electrically assisted sludge conversion could enable the recovery of nitrogen and phosphorus from waste, representing up to 9% of the nitrogen and 32% of the phosphorus consumption of the U.S. for fertilizer use. This technology also enables full electrification and modularization of the process, thereby presenting significant economic and environmental opportunities.
在污泥管理、粮食安全和资源回收方面所做的努力催生了这些领域的新方法。电辅助污泥转化作为一种有前景的污水污泥增值技术脱颖而出,可生产氮磷基肥料。采用该技术有望形成肥料循环经济,有可能促使废水处理设施朝着工艺强化、创新和可持续性方向发生变革。本文深入探讨了该技术的经济层面、政策考量以及实现污泥增值电化工艺潜力所涉及的挑战。为说明该技术的影响,本文讨论了一个假设在美国市政污水处理厂市场实施该技术的案例研究。研究发现,电辅助污泥转化能够从废物中回收氮和磷,分别占美国肥料使用中氮消费量的9%和磷消费量的32%。该技术还能实现工艺的全电气化和模块化,从而带来重大的经济和环境机遇。