Han Unghyun, Imhoff Paul T, Yazdani Ramin
Department of Civil and Environmental Engineering, University of Delaware, 360 DuPont Hall, Newark, Delaware 19716, USA.
Environ Sci Technol. 2007 Jan 1;41(1):277-83. doi: 10.1021/es061233e.
Two field-scale partitioning gas tracer tests (PGTTs) were performed to evaluate the utility of the PGTT method for measuring water saturation and moisture content in a full-scale bioreactor landfill, where waste biodegradation resulted in elevated temperatures and significant landfill gas production. The average water saturation and moisture content were measured for waste volumes of approximately 20 m(3) and results were compared to gravimetric measurement of moisture content made on samples collected from the landfill. In the center of the landfill, the moisture content estimated from the PGTT was Mc = 0.26 +/-0.03, which was nearly identical to the gravimetric measurement of waste samples taken from the same region (Mc = 0.28). PGTT-estimated moisture contents in a dry area of the landfill were much smaller (Mc = 0.10+/-0.01) and consistent with available gravimetric measurements. Biodegradation of tracers and temporal variations in landfill gas production were minimal and did not influence the tests. These field experiments demonstrate the utility of the PGTT method for measuring water saturation and estimating moisture content in bioreactor landfills with active waste degradation and generation of landfill gases. However, use of the PGTT to estimate the in situ moisture content requires estimates of the refuse porosity, dry bulk density, and temperature, which might limit its application.
进行了两项现场规模的分区气体示踪试验(PGTT),以评估PGTT方法在全尺寸生物反应器填埋场中测量水饱和度和含水量的实用性,该填埋场中废物的生物降解导致温度升高和大量填埋气产生。对大约20立方米的废物量测量了平均水饱和度和含水量,并将结果与从填埋场采集的样品的重量法含水量测量结果进行了比较。在填埋场中心,PGTT估计的含水量为Mc = 0.26±0.03,这与从同一区域采集的废物样品的重量法测量结果(Mc = 0.28)几乎相同。填埋场干燥区域PGTT估计的含水量要小得多(Mc = 0.10±0.01),并且与现有的重量法测量结果一致。示踪剂的生物降解和填埋气产量的时间变化很小,并且没有影响试验。这些现场试验证明了PGTT方法在测量具有活跃废物降解和填埋气产生的生物反应器填埋场中的水饱和度和估计含水量方面的实用性。然而,使用PGTT估计原位含水量需要估计垃圾孔隙率、干容重和温度,这可能会限制其应用。