U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, OH 45234, USA.
J Air Waste Manag Assoc. 2010 Jan;60(1):91-7. doi: 10.3155/1047-3289.60.1.91.
Prediction of the rate of gas production from bioreactor landfills is important for the optimization of energy recovery and for estimating greenhouse gas emissions. To improve the predictability of gas production, landfill gas (LFG) composition and flow rates were monitored for 4 yr from one conventional and two bioreactor landfill cells at the Outer Loop Landfill in Louisville, KY. The ultimate methane yield (L(o)) was estimated from the biochemical methane (CH4) potential of freshly buried refuse and the decay rate constant (k) was estimated from measured CH4 collection. The site-specific L(o) was estimated to be 48.4 m3-CH4 wet Mg(-1). The estimated decay rate in the conventional cell (0.06 yr(-1)) was comparable to the AP-42 default value of 0.04 yr(-1), whereas estimates for the two bioreactor cells were substantially higher (approximately 0.11 yr(-1)). The data document the ability of the bioreactor operation to enhance landfill CH4 generation, although the estimated decay rate is sensitive to the selected L(o). The more rapid decomposition in the bioreactor cells reduces the length of time over which gas will be produced and emphasizes the importance of having a LFG collection system operational once the waste receives added moisture.
预测生物反应器垃圾填埋场的产气量对于优化能源回收和估算温室气体排放非常重要。为了提高产气量的可预测性,对肯塔基州路易斯维尔市外环垃圾填埋场的一个常规填埋场和两个生物反应器填埋场中的填埋气 (LFG) 成分和流速进行了长达 4 年的监测。从新填埋废物的生化甲烷 (CH4) 潜力估算了最终甲烷产量 (L(o)),并从测量的 CH4 收集估算了衰减率常数 (k)。该场地的 L(o) 估计值为 48.4 m3-CH4 湿 Mg(-1)。在常规填埋场中估算的衰减率(0.06 yr(-1))与 AP-42 的默认值 0.04 yr(-1)相当,而两个生物反应器填埋场的估算值则要高得多(约 0.11 yr(-1))。这些数据证明了生物反应器操作能够增强垃圾填埋场的 CH4 生成能力,尽管衰减率的估算值对所选的 L(o) 值敏感。生物反应器中更快的分解会减少产生气体的时间长度,并强调一旦废物吸收了额外的水分,就必须使 LFG 收集系统投入运行。