Ostman M, Wahlberg O, Gren S, Mårtensson A
Department of Soil Sciences, P.O. Box 7014, SE-750 07 Uppsala, Sweden.
Waste Manag. 2006;26(1):29-40. doi: 10.1016/j.wasman.2005.01.012.
A combined household/industrial landfill in a humid and cold temperate climate was characterised with respect to its chemical composition. Cores taken at three randomly chosen sites on the landfill and at different depths at each site were analysed. Carbon, nitrogen and pH were measured by standard laboratory methods. The chemical elements analysed included metals and the non-metals B, P and S. pH ranged between 8.0 and 8.5. The total carbon content was in the interval 4.5-26.9% and the total nitrogen content in the interval 0.05-0.48%. The C/N ratio was high, indicating that there was not enough nitrogen available to ensure the stabilisation of carbon. The metal contents varied substantially. The water and carbon contents were related to each other as well as to the metal content, which increased with the content of water. Based on the results obtained regarding the chemical composition of the landfill, it is evident that the landfill consists of two layers. This indicates that the landfill body might have different levels of chemical development, due to water content, and different long-term leachability in the future.
对潮湿和寒冷温带气候下的一个混合式家庭/工业垃圾填埋场的化学成分进行了表征。在垃圾填埋场随机选择的三个地点以及每个地点的不同深度采集岩芯进行分析。通过标准实验室方法测量碳、氮和pH值。分析的化学元素包括金属以及非金属硼、磷和硫。pH值在8.0至8.5之间。总碳含量在4.5%至26.9%之间,总氮含量在0.05%至0.48%之间。碳氮比很高,表明没有足够的氮来确保碳的稳定。金属含量差异很大。水和碳含量相互关联,也与金属含量相关,金属含量随水含量增加而增加。根据关于垃圾填埋场化学成分的研究结果,很明显该垃圾填埋场由两层组成。这表明由于含水量的原因,垃圾填埋体可能具有不同程度的化学发展,并且在未来具有不同的长期可沥滤性。