Tu Qingshi, Zhu Chao, McAvoy Drew C
Department of Biomedical, Chemical and Environmental Engineering, College of Engineering and Applied Science, University of Cincinnati, 2600 Clifton Avenue, Cincinnati, OH 45221, USA.
Department of Biomedical, Chemical and Environmental Engineering, College of Engineering and Applied Science, University of Cincinnati, 2600 Clifton Avenue, Cincinnati, OH 45221, USA.
Waste Manag. 2015 May;39:258-65. doi: 10.1016/j.wasman.2015.01.016. Epub 2015 Feb 16.
This paper evaluates the implementation of three waste-to-energy projects at the University of Cincinnati: waste cooking oil-to-biodiesel, waste paper-to-fuel pellets and food waste-to-biogas, respectively. The implementation of these waste-to-energy (WTE) projects would lead to the improvement of campus sustainability by minimizing waste management efforts and reducing GHG emissions via the displacement of fossil fuel usage. Technical and economic aspects of their implementation were assessed and the corresponding GHG reduction was estimated. Results showed that on-site implementation of these projects would: (1) divert 3682L (974 gallons) of waste cooking oil to 3712L (982 gallons) of biodiesel; (2) produce 138tonnes of fuel pellets from 133tonnes of waste paper (with the addition of 20.75tonnes of plastics) to replace121tonnes of coal; and (3) produce biogas that would be enough to replace 12,767m(3) natural gas every year from 146tonnes of food waste. The economic analysis determined that the payback periods for the three projects would be 16months for the biodiesel, 155months for the fuel pellet, and 74months for the biogas projects. The reduction of GHG emission from the implementation of the three WTE projects was determined to be 9.37 (biodiesel), 260.49 (fuel pellets), and 11.36 (biogas) tonnes of CO2-eq per year, respectively.
分别是将废弃食用油转化为生物柴油、将废纸转化为燃料颗粒以及将食物垃圾转化为沼气。这些能源回收(WTE)项目的实施将通过减少废物管理工作量以及通过替代化石燃料使用来减少温室气体排放,从而提高校园的可持续性。对这些项目实施的技术和经济方面进行了评估,并估算了相应的温室气体减排量。结果表明,在现场实施这些项目将:(1)将3682升(974加仑)废弃食用油转化为3712升(982加仑)生物柴油;(2)用133吨废纸(外加20.75吨塑料)生产138吨燃料颗粒以替代121吨煤炭;(3)从146吨食物垃圾中产生的沼气每年足以替代12767立方米天然气。经济分析确定,这三个项目的投资回收期分别为:生物柴油项目16个月,燃料颗粒项目155个月,沼气项目74个月。实施这三个WTE项目所减少的温室气体排放量分别确定为每年9.37(生物柴油)、260.49(燃料颗粒)和11.36(沼气)吨二氧化碳当量。