首页> 外文会议>SWANA(Solid Waste Association of North America)'s Annual Landfill Gas Symposium; 20070304-08; Monterey,CA(US) >LANDFILL GAS UTILIZATION FEASIBILITY ASSESSMENT AND PERIMETER MIGRATION CONTROL SYSTEM OPERATION OPTIMIZATION
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LANDFILL GAS UTILIZATION FEASIBILITY ASSESSMENT AND PERIMETER MIGRATION CONTROL SYSTEM OPERATION OPTIMIZATION

机译:填埋气利用可行性评估和污染物迁移控制系统的运行优化

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Assessing the feasibility of landfill gas (LFG) utilization at small sites is often overlooked, as numerous challenges face small landfills when balancing the capital and operating expense versus potential revenues of a utilization project. With the new electricity pricing environment in Ontario, Canada, the potential for utilization facilities at smaller landfills has substantially improved, providing an enhanced potential for small landfills to effectively use their landfill gas resource. The North Sheridan Landfill (Site) in Mississauga, Ontario, is a closed landfill with LFG challenges for utilization: declining landfill gas production within the Site, decreasing operating performance of its perimeter LFG migration control system, poor site setting for landfill gas control, and the close proximity of residential properties. Extending the service life of the perimeter LFG migration control system during the declining phases of the gas production at the Site was an immediate and positive outcome from conducting a feasibility assessment for a small scale LFG utilization project at the Site. In this paper, Conestoga-Rovers & Associates Limited (CRA) and the Regional Municipality of Peel (Region) will present the steps taken to conduct the initial feasibility assessment for landfill gas utilization at the Site. This will include the preliminary results from the utilization assessment and the improvement in the operation of the landfill gas migration control system. Details will include the preliminary results from the utilization assessment and improvements in the operation of the landfill gas migration control system. Additionally, considerations relating to conversion of the perimeter control system to a collection system with a utilization objective will be presented. Further, a financial analysis of potential technology for LFG utilization at the Site will be detailed and put in the context of the current electrical pricing. As a function of the basic economics, combining the improvement of the existing landfill gas migration control systems with a feasibility assessment for a landfill gas utilization project provides a potential win-win situation for this landfill site.
机译:在小型站点使用填埋气(LFG)的可行性常常被忽略,因为在平衡资本和运营费用与利用项目的潜在收入时,小型填埋场面临着许多挑战。随着加拿大安大略省新的电价环境,较小的垃圾填埋场的利用设施的潜力已大大提高,为小型垃圾填埋场有效利用其垃圾填埋气资源提供了更大的潜力。安大略省密西沙加的北谢里登垃圾填埋场(场址)是封闭的填埋场,LFG的利用面临挑战:场地内垃圾填埋气的产量下​​降,周边LFG迁移控制系统的运行性能下降,垃圾填埋气控制的场地设置不佳以及住宅物业近在咫尺。通过在现场进行小型LFG利用率项目的可行性评估,在现场天然气产量下降的阶段延长外围LFG迁移控制系统的使用寿命是直接而积极的结果。在本文中,Conestoga-Rovers&Associates Limited(CRA)和Peel区域市政当局(地区)将提出采取步骤,对场址的填埋气利用进行初步可行性评估。这将包括利用评估的初步结果以及垃圾填埋气迁移控制系统运行的改进。详细信息将包括利用评估的初步结果以及垃圾填埋气迁移控制系统运行的改进。另外,将提出与将周边控制系统转换为具有利用目标的收集系统有关的考虑。此外,将对现场使用LFG的潜在技术进行详细的财务分析,并结合当前的电价进行分析。根据基本经济学,将现有垃圾填埋气迁移控制系统的改进与垃圾填埋气利用项目的可行性评估相结合,可为该垃圾填埋场带来潜在的双赢局面。

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