首页> 外文期刊>Frontiers in Energy Research >Methane Production of Full-Scale Anaerobic Digestion Plants Calculated from Substrate’s Biomethane Potentials Compares Well with the One Measured On-Site
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Methane Production of Full-Scale Anaerobic Digestion Plants Calculated from Substrate’s Biomethane Potentials Compares Well with the One Measured On-Site

机译:从基质的生物甲烷势计算得出的全规模厌氧消化装置的甲烷产量与一种现场测量的结果相比很好

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Biomethane potential (BMP) tests are used to determine the amount of methane that can be produced from organic materials in order to design different components of full-scale anaerobic digestion plants such as size of the digesters and units exploiting the produced biogas. However, little is known on how well BMPs compare with biogas production from the same organic materials in full-scale installations. In this study, two anaerobic digestion plants were chosen to carry out such comparisons, a dry anaerobic digestion (AD) plant treating green waste from urban areas and food waste from restaurants and supermarkets, and a liquid AD plant treating waste sludge from wastewater treatment and seven additional organic wastes. The BMPs of multiple samples of the individual organic materials collected during a period of seven to nine months were determined. Separate tests of mixtures of organic materials confirmed that the BMP of the mixtures can be calculated by adding the BMPs of the individual materials. The weekly methane production during the investigated periods was calculated from the full-scale installation data on the feeding of the digesters and the BMP’s of each substrate fed into the digesters and compared with the weekly methane production measured on-site. The latter was calculated from the most accurately measured entity, either the electricity or the volume of purified biomethane injected into the grid. The weekly methane production rates calculated from BMPs and the one measured on-site were very similar and followed the same pattern. Some exceptions could be explained by e.g. an overload of the full-scale installation. The measured weekly methane production accounted for 94.0±6.8% and 89.3±5.7% of the calculated weekly methane production for the wet and dry AD plant, respectively. For 26 out of 29 weeks, the calculated weekly methane production overestimated the measured one in the case of the wet AD plant and for 37 out of 39 weeks for the dry AD plant. Based on these results, it is proposed using an extrapolation coefficient of 0.8 to 0.9 to estimate the methane production of full-scale AD plants from BMPs of the substrates to be digested and their specific organic loads.
机译:沼气潜力(BMP)测试用于确定可从有机材料中产生的甲烷量,以设计全尺寸厌氧消化厂的不同组件,例如消化池的大小和利用产生的沼气的装置。但是,对于全规模装置中的BMP与由相同有机材料生产沼气的效果相比,还知之甚少。在这项研究中,我们选择了两家厌氧消化厂进行这种比较,分别是处理城市地区的绿色废物,餐馆和超市的食品废物的干式厌氧消化(AD)厂,以及处理废水和污水处理厂的废渣的液态AD工厂。另外七种有机废物。确定了在七到九个月的时间内收集的单个有机材料的多个样品的BMP。对有机材料混合物的单独测试证实,可以通过添加单个材料的BMP来计算混合物的BMP。根据有关消化池供料的全面安装数据以及向消化池供料的每种底物的BMP,计算出调查期间的每周甲烷产量,并将其与现场测量的每周甲烷产量进行比较。后者是根据最精确测量的实体(注入电网中的电或纯化的生物甲烷的体积)计算得出的。由BMP计算出的每周甲烷生产率与现场测得的甲烷生产率非常相似,并且遵循相同的模式。某些例外情况可以通过例如全面安装的过载。测得的每周甲烷产量分别占湿式和干式AD工厂每周甲烷产量的94.0±6.8%和89.3±5.7%。在29周的26周中,对于湿式AD工厂,计算出的每周甲烷产量高估了所测得的甲烷产量;而在39周的干AD工厂中,计算出的每周甲烷产量高估了所测量的甲烷产量。基于这些结果,建议使用0.8到0.9的外推系数来估计要消化的底物的BMP产生的全规模AD植物的甲烷产量及其比重。

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