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THE ETHANOL-WATER HUMIDIFICATION PROCESS IN EVGT CYCLES

机译:EVGT循环中的乙醇 - 水加湿过程

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Ethanol from bio-products has become an important fuel for future power production. However, the present production technology is rather expensive. This paper focuses on how to lower the production cost of ethanol extraction from mash, and to use the ethanol as a primary fuel in gas turbines for heat and power production. Today, ethanol is produced during distillation by supplying energy to extract the ethanol from the mash. Using the evaporation process in the evaporative gas turbine to extract the ethanol from the mash before the distillation step, a lot of energy can be saved. In the evaporation process, the ethanol is extracted directly from the mash using energy from low-level energy sources. The evaporation technology is therefore expected to reduce the cost for the ethanol production. Simultaneous heat and mass transfer inside the ethanol humidification tower drives a mixture of ethanol and water into the compressor discharge air. To investigate the evaporation of a binary mixture into air at elevated pressures and temperatures, a test facility was constructed and integrated into the evaporative gas turbine pilot-plant. The concentration of ethanol in the mash is not constant but depends on the sugar content in the feedstock used in the fermentation process. Tests were therefore conducted at different concentrations of ethanol in the ethanol-water mixture. Tests were also performed at different temperature and flow conditions to establish the influence of these parameters on the lower heating value of the produced low calorific gas. It has been shown that this technology extracts about 80% of the ethanol from the mash. It has also been shown that the composition of the resulting gas depends on the temperatures, flow rates and composition of the incoming streams. The tests have shown that the produced gas has a lower heating value between of 1.8 to 3.8 MJ/kg. The produced gas with heating values in the upper range is possible to use as fuel in the gas turbine without any pilot flame. Initial models of the ethanol humidification process have been established and the initial test results have been used for validating developed models.
机译:生物产品的乙醇已成为未来电力生产的重要燃料。然而,目前的生产技术相当昂贵。本文重点介绍如何降低乙醇提取的乙醇萃取的生产成本,并使用乙醇作为用于热量和电力生产的燃气轮机的主要燃料。如今,通过供应能量从醪中提取乙醇来蒸馏产生乙醇。在蒸发燃气轮机中使用蒸发过程以从蒸馏步骤之前从醪中提取乙醇,可以节省大量的能量。在蒸发过程中,使用来自低水平能源的能量直接从醪中提取乙醇。因此,预期蒸发技术将降低乙醇生产的成本。乙醇加湿塔内的同时热量和质量转移将乙醇和水的混合物驱动到压缩机排出空气中。为了研究升高的压力和温度下的二元混合物在空气中的蒸发,构造并整合到蒸发燃气涡轮机导液中的测试设施。醪中乙醇的浓度不是恒定的,但取决于发酵过程中使用的原料中的糖含量。因此,在乙醇 - 水混合物中以不同浓度的乙醇进行试验。在不同的温度和流动条件下也进行试验,以建立这些参数对所产生的低热量气体的较低加热值的影响。已经表明,该技术从醪中提取约80%的乙醇。还表明所得气体的组成取决于环物流的温度,流速和组成。该试验表明,产气的加热值较低,在1.8至3.8mJ / kg之间。在上部范围内具有加热值的产生的气体可以在没有任何先导火焰的情况下用作燃气轮机中的燃料。已经建立了乙醇加湿过程的初始模型,并且初始测试结果已被用于验证开发的模型。

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