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An Engineering-Economic Model for Analyzing Dairy Plug-Flow Anaerobic Digesters: Cost Structures and Policy Implications

机译:一种工程经济模型,用于分析乳头塞流厌氧消化器:成本结构和政策含义

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摘要

Treating animal wastes through anaerobic digestion (AD) yields methane-rich biogas that can be used for power generation or heating, and a nutrient-rich digestate that can be land-applied as fertilizer. Furthermore, AD reduces odors from stored and land-applied manures. Despite these benefits, AD deployment rates in the U.S. are only 5% for dairy farms identified as suitable for AD by the U.S. Environmental Protection Agency. The objective of this study was to analyze the economic and technical limitations of farm-scale anaerobic digesters using a simple model permitting insight into the fundamental constraints on the technology. A model was developed to determine the cost of methane produced via AD based on operation size. Dairy plug-flow systems were modeled because of their well-documented economic performance, and model validation used data from AgSTARu27s FarmWare program. The analysis shows that farm size is critical to make digestion-derived methane cost-competitive with natural gas. At low herd sizes (u3c400 u3eanimals), carbon credits and odor reductions alone appear insufficient to overcome the low commercial energy rates in the U.S. However, moderate reductions in digester cost and interest rate, coupled with moderate increases in amortization period and/or natural gas prices, could make AD more competitive with commercial energy in the U.S. even at relatively small herd sizes (approx. 400 animals).
机译:通过厌氧消化(AD)处理动物废物可产生可用于发电或供热的富含甲烷的沼气,以及可在土地上用作肥料的富含营养的消化物。此外,AD减少了储存和土地施用的粪便的气味。尽管有这些好处,但美国环境保护署认定适合于AD的奶牛场在美国的AD部署率仅为5%。这项研究的目的是使用一个简单的模型来分析农场规模厌氧消化池的经济和技术局限性,该模型可以洞察该技术的基本限制条件。开发了一个模型,用于根据运营规模确定通过AD生产的甲烷成本。乳品塞流系统的建模是有据可查的,因为它们的经济表现良好,模型验证使用了来自AgSTAR u27的FarmWare程序的数据。分析表明,养殖场规模对于使消化衍生甲烷与天然气的价格竞争力至关重要。在较低的畜群规模( u3c400 u3eanimals)下,仅靠碳信用和减少气味似乎不足以克服美国的低商业能源价格。但是,沼气池成本和利率的适度降低,以及摊销期和/或适度的增加天然气价格上涨,即使在相对较小的畜群规模(约400只动物)的情况下,也可以使AD与美国的商业能源更具竞争力。

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