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超临界生物柴油生产及联合发电:技术与经济可行性。

Supercritical biodiesel production and power cogeneration: technical and economic feasibilities.

机构信息

Dept of Biomedical and Chemical Engineering, Syracuse University, Syracuse, NY 13244, United States.

出版信息

Bioresour Technol. 2010 Mar;101(6):1834-43. doi: 10.1016/j.biortech.2009.10.034. Epub 2009 Nov 24.

DOI:10.1016/j.biortech.2009.10.034
PMID:19939671
Abstract

An integrated supercritical fluid technology with power cogeneration to produce biodiesel fuels, with no need for the costly separations involved with the conventional technology, is proposed, documented for technical and economic feasibility, and preliminarily designed. The core of the integrated system consists of the transesterification of various triglyceride sources (e.g., vegetable oils and animal fats) with supercritical methanol/ethanol. Part of the reaction products can be combusted by a diesel power generator integrated in the system which, in turn, provides the power needed to pressurize the system and the heat of the exhaust gases necessary in the transesterification step. The latter energy demand can also be satisfied by a fired heater, especially for higher plant capacities. Different versions of this system can be implemented based on the main target of the technology: biodiesel production or diesel engine applications, including power generation. The process options considered for biodiesel fuel production estimate break-even processing costs of biodiesel as low as $0.26/gal ($0.07/L) with a diesel power generator and $0.35/gal ($0.09/L) with a fired heater for a plant capacity of 15,000 gal/day (56,775 L/day). Both are significantly lower than the current processing costs of approximately $0.51/gal ($0.13/L) of biodiesel produced by conventional catalytic methods. A retail cost of biodiesel produced by the proposed method is likely to be competitive with the prices of diesel fuels.

摘要

提出了一种集成的超临界流体技术,具有功率联产功能,可用于生产生物柴油燃料,无需采用传统技术中涉及的昂贵分离方法。该技术已进行了技术和经济可行性论证,并进行了初步设计。集成系统的核心由各种甘油三酯源(例如植物油和动物脂肪)与超临界甲醇/乙醇的酯交换反应组成。部分反应产物可由集成在系统中的柴油动力发电机燃烧,该发电机反过来为系统加压和酯交换步骤所需的废气热量提供所需的动力。后者的能源需求也可以通过燃烧器来满足,特别是对于更高的工厂产能。可以根据该技术的主要目标实施该系统的不同版本:生物柴油生产或柴油发动机应用,包括发电。考虑用于生物柴油燃料生产的过程选项估计,使用柴油动力发电机的生物柴油加工成本低至 0.26 美元/加仑(0.07 升/升),使用燃烧器的生物柴油加工成本低至 0.35 美元/加仑(0.09 升/升),工厂产能为 15000 加仑/天(56775 升/天)。这两个成本都明显低于目前通过传统催化方法生产生物柴油的加工成本约 0.51 美元/加仑(0.13 升/升)。采用所提出的方法生产的生物柴油的零售价格很可能具有竞争力,可与柴油燃料的价格相媲美。

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