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大气压力对垃圾填埋场甲烷排放的影响。

The influence of atmospheric pressure on landfill methane emissions.

作者信息

Czepiel P M, Shorter J H, Mosher B, Allwine E, McManus J B, Harriss R C, Kolb C E, Lamb B K

机构信息

Complex Systems Research Center, University of New Hampshire, Durham, NH, USA.

出版信息

Waste Manag. 2003;23(7):593-8. doi: 10.1016/S0956-053X(03)00103-X.

Abstract

Landfills are the largest source of anthropogenic methane (CH4) emissions to the atmosphere in the United States. However, few measurements of whole landfill CH4 emissions have been reported. Here, we present the results of a multi-season study of whole landfill CH4 emissions using atmospheric tracer methods at the Nashua, New Hampshire Municipal landfill in the northeastern United States. The measurement data include 12 individual emission tests, each test consisting of 5-8 plume measurements. Measured emissions were negatively correlated with surface atmospheric pressure and ranged from 7.3 to 26.5 m3 CH4 min(-1). A simple regression model of our results was used to calculate an annual emission rate of 8.4 x 10(6) m3 CH4 year(-1). These data, along with CH4 oxidation estimates based on emitted landfill gas isotopic characteristics and gas collection data, were used to estimate annual CH4 generation at this landfill. A reported gas collection rate of 7.1 x 10(6) m3 CH4 year(-1) and an estimated annual rate of CH4 oxidation by cover soils of 1.2 x 10(6) m3 CH4 year(-1) resulted in a calculated annual CH4 generation rate of 16.7 x 10(6) m3 CH4 year(-1). These results underscore the necessity of understanding a landfill's dynamic environment before assessing long-term emissions potential.

摘要

在美国,垃圾填埋场是向大气排放人为甲烷(CH₄)的最大来源。然而,关于整个垃圾填埋场CH₄排放量的测量报告却很少。在此,我们展示了一项在美国东北部新罕布什尔州纳舒厄市城市垃圾填埋场运用大气示踪剂方法对整个垃圾填埋场CH₄排放进行的多季节研究结果。测量数据包括12次单独的排放测试,每次测试由5 - 8次羽流测量组成。测量的排放量与地表大气压力呈负相关,范围为7.3至26.5立方米CH₄每分钟⁻¹。利用我们研究结果的一个简单回归模型计算出年排放率为8.4×10⁶立方米CH₄每年⁻¹。这些数据,连同基于排放的垃圾填埋气同位素特征和气体收集数据估算的CH₄氧化量,被用于估算该垃圾填埋场的年CH₄生成量。报告的气体收集率为7.1×10⁶立方米CH₄每年⁻¹,以及覆盖土壤对CH₄的估计年氧化率为1.2×10⁶立方米CH₄每年⁻¹,得出计算的年CH₄生成率为16.7×10⁶立方米CH₄每年⁻¹。这些结果强调了在评估长期排放潜力之前了解垃圾填埋场动态环境的必要性。

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