Pacific Northwest National Laboratory, Richland, Washington99352, United States.
National Renewable Energy Laboratory, Golden, Colorado80401, United States.
Environ Sci Technol. 2022 Dec 6;56(23):17206-17214. doi: 10.1021/acs.est.2c03960. Epub 2022 Nov 21.
Renewable, low-carbon biofuels offer the potential opportunity to decarbonize marine transportation. This paper presents a comparative techno-economic analysis and process sustainability assessment of four conversion pathways: (1) hydrothermal liquefaction (HTL) of wet wastes such as sewage sludge and manure; (2) fast pyrolysis of woody biomass; (3) landfill gas Fischer-Tropsch synthesis; and (4) lignin-ethanol oil from the lignocellulosic ethanol biorefinery utilizing reductive catalytic fractionation. These alternative marine biofuels have a modeled minimum fuel selling price between $1.68 and $3.98 per heavy fuel oil gallon equivalent in 2016 U.S. dollars based on a mature plant assessment. The selected pathways also exhibit good process sustainability performance in terms of water intensity compared to the petroleum refineries. Further, the O and S contents of the biofuels vary widely. While the non-HTL biofuels exhibit negligible S content, the raw biocrudes HTL pathways from sludge and manure show relatively high S contents (>0.5 wt %). Partial or full hydrotreatment can effectively lower the biocrude S content. Additionally, co-feeding with other low-sulfur wet wastes such as food waste can provide another option to produce raw biocrude with lower S content to meet the target with further hydrotreatment. This study indicates that biofuels could be a cost-effective fuel option for the marine sector. Marine biofuels derived from various feedstocks and conversion technologies could mitigate marine biofuel adoption risk in terms of feedstock availability and biorefinery economics.
可再生、低碳的生物燃料为实现海洋运输的脱碳提供了潜在的机会。本文对四种转化途径进行了技术经济分析和工艺可持续性评估:(1)湿热液化(HTL)处理污水污泥和粪便等湿废物;(2)快速热解木质生物质;(3)垃圾填埋气费托合成;(4)利用木质纤维素乙醇生物炼制厂的还原催化分级制取木质素-乙醇油。基于成熟工厂评估,这四种替代海洋生物燃料在 2016 年美元的每重油等效燃料油加仑的模型最低燃料销售价格在 1.68 美元至 3.98 美元之间。与石油精炼厂相比,所选途径在水耗方面也具有较好的工艺可持续性表现。此外,生物燃料的 O 和 S 含量差异很大。虽然非 HTL 生物燃料的 S 含量可以忽略不计,但来自污泥和粪便的 HTL 生物粗油的 S 含量相对较高(>0.5wt%)。部分或完全加氢处理可以有效地降低生物粗油的 S 含量。此外,与其他低硫湿废物(如食物垃圾)共进料可以提供另一种选择,即用更低硫含量的原料生物粗油进一步加氢处理来满足目标。本研究表明,生物燃料可能是海洋部门具有成本效益的燃料选择。从各种原料和转化技术中获得的海洋生物燃料可以降低海洋生物燃料采用的风险,包括原料的可用性和生物炼制厂的经济性。