School of Environmental and Sustainability Science, Kean University, United States.
Department of Bioproducts and Biosystems Engineering and Center for Biorefining, University of Minnesota, 1390 Eckles Ave., St. Paul, MN 55108, United States.
Bioresour Technol. 2016 Mar;204:89-97. doi: 10.1016/j.biortech.2015.12.063. Epub 2016 Jan 2.
This study used life cycle assessment and technical economic analysis tools in evaluating a novel Scum-to-Biodiesel technology and compares the technology with scum digestion and combustion processes. The key variables that control environmental and economic performance are identified and discussed. The results show that all impacts examined for the Scum-to-Biodiesel technology are below zero indicating significant environmental benefits could be drawn from it. Of the three technologies examined, the Scum-to-Biodiesel technology has the best environmental performance in fossil fuel depletion, GHG emissions, and eutrophication, whereas combustion has the best performance on acidification. Of all process inputs assessed, process heat, glycerol, and methanol uses had the highest impacts, much more than any other inputs considered. The Scum-to-Biodiesel technology also makes higher revenue than other technologies. The diesel price is a key variable for its economic performance. The research demonstrates the feasibility and benefits in developing Scum-to-Biodiesel technology in wastewater treatment facilities.
本研究采用生命周期评价和技术经济分析工具来评估一种新型的浮渣制生物柴油技术,并将该技术与浮渣消化和燃烧工艺进行比较。确定并讨论了控制环境和经济性能的关键变量。结果表明,浮渣制生物柴油技术考察的所有影响均为负值,表明该技术可带来显著的环境效益。在所考察的三种技术中,浮渣制生物柴油技术在化石燃料枯竭、温室气体排放和富营养化方面具有最佳的环境性能,而燃烧在酸化方面具有最佳的性能。在所评估的所有工艺投入中,工艺热、甘油和甲醇的使用产生的影响最大,远远超过任何其他考虑的投入。浮渣制生物柴油技术的收入也高于其他技术。柴油价格是其经济效益的关键变量。研究证明了在污水处理厂开发浮渣制生物柴油技术的可行性和益处。