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Quantification of Greenhouse Gas Emissions from Windrow Composting of Garden Waste

机译:庭院垃圾堆肥堆肥产生的温室气体排放量的量化

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Microbial degradation of organic wastes entails the production of various gases such as carbon dioxide (CO2), methane (CH4), nitrous oxide (N2O), and carbon monoxide (CO). Some of these gases are classified as greenhouse gases (GHGs), thus contributing to climate change. A study was performed to evaluate three methods for quantifying GHG emissions from central composting of garden waste. Two small-scale methods were used at a windrow composting facility: a static flux chamber method and a funnel method. Mass balance calculations based on measurements of the C content in the in- and out-going material showed that 91 to 94% of the C could not be accounted for using the small-scale methods, thereby indicating that these methods significantly underestimate GHG emissions. A dynamic plume method (total emission method) employing Fourier Transform Infra Red (FTIR) absorption spectroscopy was found to give a more accurate estimate of the GHG emissions, with CO2 emissions measured to be 127 pl 15% of the degraded C. Additionally, with this method, 2.7 pl 0.6% and 0.34 pl 0.16% of the degraded C was determined to be emitted as CH4 and CO. In this study, the dynamic plume method was a more effective tool for accounting for C losses and, therefore, we believe that the method is suitable for measuring GHG emissions from composting facilities. The total emissions were found to be 2.4 pl 0.5 kg CH4C Mg1 wet waste (ww) and 0.06 pl 0.03 kg N2O-N Mg1 ww from a facility treating 15,540 Mg of garden waste yr1, or 111 pl 30 kg CO2equivalents Mg1 ww.
机译:有机废物的微生物降解需要产生各种气体,例如二氧化碳(CO2),甲烷(CH4),一氧化二氮(N2O)和一氧化碳(CO)。其中一些气体被归类为温室气体(GHGs),从而加剧了气候变化。进行了一项研究,以评估量化花园垃圾堆肥产生的温室气体排放的三种方法。在堆肥堆肥设施中使用了两种小规模方法:静态通量室法和漏斗法。根据进出物料中C含量的测量进行的质量平衡计算表明,使用小规模方法无法解释91%至94%的C,因此表明这些方法大大低估了温室气体排放量。发现采用傅里叶变换红外(FTIR)吸收光谱法的动态羽流法(总排放法)可以更准确地估算GHG排放量,测量的CO2排放量为降解C的127 pl 15%。该方法确定了降解后的C的2.7 pl 0.6%和0.34 pl 0.16%是以CH4和CO的形式排放的。在这项研究中,动态羽流方法是解决C损失的更有效工具,因此,我们认为该方法适用于测量堆肥设施的温室气体排放。发现来自处理15540毫克园林废弃物yr1的工厂的总排放量为2.4磅0.5千克CH4C Mg1湿废物(ww)和0.06磅0.03千克N2O-N Mg1废物,或111磅30千克二氧化碳当量的Mg1废物。

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