首页> 外文会议>Annual transportation research forum >The Transportation Emission Impact of the Biomass Feedstock Traffic of A Potential Commercial-Scale Biorefinery in East Tennessee
【24h】

The Transportation Emission Impact of the Biomass Feedstock Traffic of A Potential Commercial-Scale Biorefinery in East Tennessee

机译:田纳西州东部一家潜在的商业规模生物精炼厂的生物质原料运输的运输排放影响

获取原文

摘要

The logistics required to supply biomass feedstock a refinery is crucial to the development of the cellulosic biofuel industry because of the importance of the quality and quantity and bulky nature associated with cellulosic feedstock to the biofuel conversion process. In addition, the potential social and environmental impact of biomass feedstock transportation has also received increasing attention due to the expansion of truck traffic on the current road system. This study applies a spatial-oriented mixed-integer mathematical programming model linked to a GIS resource model to generate a least cost solution of a typical feedstock harvest and logistic system for a potential biorefinery with the capacity of 50 million gallons per year. Moreover, U.S. EPA's MOVES2010a was used to estimate the baseline emissions for 2010 with national scale option in study region and additional emissions generated from hauling those feedstock with project scale option. Results showed that the transportation cost accounted for nearly one-quarter of total plant gate costs of the large round bales. Also, it was estimated that the biorefinery received about 50,000 truckloads per year, hence creating annually 100,000 truck trips (or 274 truck trips per day) on the road linking the entrance of the biorefinery to the supply regions. The overall VMT increase resulting from additional feedstock truck traffics was 3.7 million miles and the emissions of NO_x, CO_2, PM_(10), and PM_(2.5) emissions increased by 0.32%, 0.13%, 0.60%, and 0.71%, respectively, in these 13 counties studied when comparing with the overall baseline emissions.
机译:向生物质原料提炼所需要的物流对于纤维素生物燃料产业的发展至关重要,因为与纤维素原料相关的质量和数量以及大体积性质对生物燃料转化过程至关重要。另外,由于卡车在当前道路系统上的运输量的增加,生物质原料运输的潜在社会和环境影响也日益受到关注。这项研究应用了与GIS资源模型链接的面向空间的混合整数数学规划模型,以为潜在的生物炼制厂(年产能为5000万加仑)生成典型原料收割和物流系统的最低成本解决方案。此外,美国EPA的MOVES2010a用于估算研究区域内具有国家规模选择的2010年基准排放量,以及采用项目规模选择的运输这些原料所产生的额外排放量。结果表明,运输成本约占大型圆形草捆工厂大门总成本的四分之一。另外,据估计,该生物精炼厂每年收到约50,000卡车载货量,因此,在将生物精炼厂入口与供应区域相连的道路上,每年产生100,000卡车出行(或每天274卡车出行)。额外的原料卡车运输导致的总体VMT增长为370万英里,NO_x,CO_2,PM_(10)和PM_(2.5)的排放量分别增加了0.32%,0.13%,0.60%和0.71%,在与总体基准排放量进行比较时,对这13个县进行了研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号