Department of Environmental Engineering, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark.
Department of Environmental Engineering, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark.
Waste Manag. 2018 Mar;73:220-229. doi: 10.1016/j.wasman.2017.11.049. Epub 2017 Dec 15.
In this study, the total methane (CH) generation rate and gas recovery efficiency at two Danish landfills were determined by field measurements. The landfills are located close to each other and are connected to the same gas collection system. The tracer gas dispersion method was used for quantification of CH emissions from the landfills, while the CH oxidation efficiency in the landfill cover layers was determined by stable carbon isotopic technique. The total CH generation rate was estimated by a first-order decay model (Afvalzorg) and was compared with the total CH generation rate determined by field measurements. CH emissions from the two landfills combined ranged from 29.1 to 49.6 kg CH/h. The CH oxidation efficiency was 6-37%, with an average of 18% corresponding to an average CH oxidation rate of 8.1 kg CH/h. The calculated gas recovery efficiency was 59-76%, indicating a high potential for optimization of the gas collection system. Higher gas recovery efficiencies (73-76%) were observed after the commencement of gas extraction from a new section of one of the landfills. A good agreement was observed between the average total CH generation rates determined by field measurements (147 kg CH/h) and those estimated by the Afvalzorg model (154 kg CH/h).
在这项研究中,通过现场测量确定了丹麦两个垃圾填埋场的总甲烷 (CH) 生成率和气体回收效率。这些垃圾填埋场彼此靠近,并连接到同一个气体收集系统。示踪气体扩散法用于量化垃圾填埋场的 CH 排放,而稳定碳同位素技术用于确定填埋覆盖层中 CH 的氧化效率。总 CH 生成率通过一阶衰减模型 (Afvalzorg) 进行估计,并与现场测量确定的总 CH 生成率进行比较。这两个垃圾填埋场的 CH 排放量合计为 29.1 至 49.6 kg CH/h。CH 氧化效率为 6-37%,平均为 18%,对应于平均 CH 氧化速率为 8.1 kg CH/h。计算出的气体回收效率为 59-76%,表明气体收集系统具有很大的优化潜力。当其中一个垃圾填埋场的新部分开始抽取气体后,观察到更高的气体回收效率(73-76%)。现场测量确定的平均总 CH 生成率(147 kg CH/h)和 Afvalzorg 模型估计的平均总 CH 生成率(154 kg CH/h)之间观察到良好的一致性。