Case Study of Transportation Benefits Using GIS in Distributed Preprocessing of Corn Stover into Crude Biobutanol

IF 1.4 4区 农林科学 Q3 AGRICULTURAL ENGINEERING Transactions of the ASABE Pub Date : 2021-01-01 DOI:10.13031/TRANS.13896
Joshua J. Jackson, M. Montross
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Abstract

HighlightsTotal transportation costs were reduced by 32% to 63% with distributed biobutanol depots.An 8 km distance to the depot manifested the most desirable transportation costs.Across regions, biomass transport costs from field to depot were similar at equivalent distances.Abstract. The transportation efficiencies of centralized biomass processing facilities were compared to a proposed distributed preprocessing network with centralized refining facilities. Centralized biomass processing was defined as transport of baled corn stover directly from the field to the refinery. Distributed preprocessing with centralized refining was defined as transport of baled corn stover from the field to a biobutanol preprocessing depot and transport of completely dewatered crude biobutanol solution from the depot to a centralized refinery. For both systems, the locations of the corn fields, as identified through the cropland data layer, and of the refinery were fixed. For the distributed system, the biobutanol depot locations were variable and depended on different maximum transport distances (8 to 80 km) from the field to the depot. In this case study, site-specific transportation costs and biobutanol production capacities were developed for different agricultural regions in Kentucky. The distributed system produced a 32% to 63% reduction in total transportation cost with decreased (50% to 90%) fuel use as compared to the centralized system. The GIS transportation model demonstrated that on-farm biofuel production could be an effective means of producing biofuel and reducing transportation costs. Keywords: Biomass transport, Depot, Distributed biomass collection, GIS location-allocation, Minimize facilities, Satellite facilities.
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基于GIS的玉米秸秆粗生化丁醇分布式预处理的运输效益案例研究
使用分布式生物丁醇仓库,总运输成本降低了32%至63%。到仓库8公里的距离显示出最理想的运输成本。在不同地区,在相同距离下,生物质从田间到仓库的运输成本是相似的。将集中式生物质处理设施的运输效率与集中式精炼设施的分布式预处理网络进行了比较。集中生物质处理被定义为将玉米秸秆从田间直接运输到精炼厂。集中精炼的分布式预处理定义为将玉米秸秆从田间运输到生物丁醇预处理库,并将完全脱水的生物丁醇粗溶液从仓库运输到集中炼油厂。对于这两个系统,玉米田的位置(通过农田数据层识别)和炼油厂的位置都是固定的。对于分布式系统,生物丁醇储存库的位置是可变的,并且取决于从现场到储存库的不同最大运输距离(8至80公里)。在本案例研究中,针对肯塔基州不同的农业地区,开发了特定地点的运输成本和生物丁醇生产能力。与集中式系统相比,分布式系统的总运输成本降低了32%至63%,燃料使用量减少了50%至90%。GIS运输模型表明,农场生物燃料生产可能是生产生物燃料和降低运输成本的有效手段。关键词:生物质运输,仓库,分布式生物质收集,GIS位置分配,最小化设施,卫星设施
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来源期刊
Transactions of the ASABE
Transactions of the ASABE AGRICULTURAL ENGINEERING-
CiteScore
2.30
自引率
0.00%
发文量
0
审稿时长
6 months
期刊介绍: This peer-reviewed journal publishes research that advances the engineering of agricultural, food, and biological systems. Submissions must include original data, analysis or design, or synthesis of existing information; research information for the improvement of education, design, construction, or manufacturing practice; or significant and convincing evidence that confirms and strengthens the findings of others or that revises ideas or challenges accepted theory.
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