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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Life Cycle Assessment and Technoeconomic Analysis of Thermochemical Conversion Technologies Applied to Poultry Litter with Energy and Nutrient Recovery
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Life Cycle Assessment and Technoeconomic Analysis of Thermochemical Conversion Technologies Applied to Poultry Litter with Energy and Nutrient Recovery

机译:热化学转换技术的生命周期评估与技术经济分析应用于能量和养分回收的家禽凋落物

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摘要

Thermochemical technologies provide promising pathways to recover energy and reduce environmental impacts from biomass wastes. Poultry manure or litter additionally provides an opportunity for recovering and recycling nutrients and producing valuable soil amendments. This study compared the life cycle environmental impacts and technoeconomic performance of six thermochemical technologies for treating poultry litter waste-slow pyrolysis, fast pyrolysis, gasification, hydrothermal liquefaction, hydrothermal carbonization, and supercritical water gasification-with direct land application. Using life cycle assessment (LCA), the technologies were compared through 15 different environmental impact categories (midpoints) using the IMPACT 2002+ method. On converting the midpoints to damage categories (end points), it was found that these technologies outperformed the conventional land application method with respect to human health (92-149% improvement), climate change impact (15-53% improvement), ecosystem quality (124-160% improvement), and resource depletion (-24-530% improvement). The technoeconomic analysis (TEA) identified carbon price (breakeven of $127/1000 kg CO2 equiv for slow pyrolysis) and high capital costs as influential parameters for large-scale applications of these technologies. The TEA results were most sensitive to carbon price and transportation distance (0.69 and 0.52% changes in revenue per change in input, respectively).
机译:热化学技术提供了承诺的途径来恢复能源,从生物质废物中减少环境影响。家禽粪便或垃圾另外为恢复和回收营养成分和生产有价值的土壤修正案提供了机会。本研究比较了六种热化学技术的生命周期环境影响和技术经济性能,用于治疗家禽凋落物废弃物缓慢慢热解,快速热解,气化,水热液化,水热碳化和超临界水气化 - 直接陆地应用。使用生命周期评估(LCA),通过使用2002+方法的影响,通过15种不同的环境影响类别(中点)进行比较。将中点转换为损伤类别(终点),发现这些技术在人类健康方面表现优于传统的土地应用方法(92-149%),气候变化影响(改善15-53%),生态系统质量(改进124-160%)和资源耗尽(改善 - 24-530%)。技术经济分析(茶)确定了碳价格(Breakeven of 127/1000公斤Co2当量,用于缓慢热解),以及高资本成本作为这些技术的大规模应用的有影响力的参数。茶叶结果对碳价格和运输距离最敏感(0.69和0.52%,进入的收入收入的变化分别)。

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