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Assessment of optimal location for a centralized biogas upgrading facility

机译:评估集中沼气升级设施的最佳位置

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Since the 1990s, the volume of biogas produced in the world has been increasing. Biomethane (upgraded biogas) is a more versatile renewable fuel. Biogas transportation from production sites to upgrading facilities induces a scale advantage and an efficiency increase. Therefore, exploration of costs and energy use of biogas transportation using dedicated infrastructure is needed. A mathematical model to determine the optimum location for a certain biogas upgrading plant has been presented. It was developed to describe a local biogas grid that is used to collect biogas from several digesters and to deliver it to a central upgrading point. The model minimizes operational and maintenance costs per volumetric unit of biogas. The results indicate that cooperation between biogas producers in collecting biogas by means of a star layout reduces the cost of biomethane production (investment costs by 22.4-24.8% and operating and maintenance costs by 1.7-10.9%) relative to using a decentralized method. Merging smaller digesters into a smaller number of larger biogas upgrading plants reduces the biomethane production costs for the same biogas volume source.
机译:自20世纪90年代以来,世界生产的沼气量一直在增加。生物甲烷(升级的沼气)是一种更通用的可再生燃料。从生产网站到升级设施的沼气运输突出了一个规模的优势和效率增加。因此,需要使用专用基础设施的成本和能源使用沼气运输的探讨。已经介绍了确定某些沼气升级工厂的最佳位置的数学模型。它开发用于描述一种用于从几个消化器中收集沼气的本地沼气网格,并将其传递给中央升级点。该模型最大限度地减少了每个体积的沼气单元的操作和维护成本。结果表明,沼气生产商之间通过星形布局收集沼气的合作将生物甲烷生产的成本降低了相对于使用分散的方法的生物甲烷生产的成本(投资成本22.4-24.8%,运营和维护成本为1.7-10.9%)。将较小的消化器合并成较少数量的较大的沼气升级植物降低了相同沼气量源的生物甲烷的生产成本。

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