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An Oxyfuel Combustion-Based Torrefaction Process: Technoeconomic Analysis

机译:基于氧燃料燃烧的烘焙过程:技术经济分析

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A torrefaction process operating on oxyfuel combustion concept is introduced. The working fluid employed in the process is carbon dioxide captured from the combustion products. The thermodynamic modeling of the process is carried out to determine the energy requirement, recycled CO_2 flow rate, energy yield, and CO_2 production rate at various torrefaction conditions. The total capital investment and production costs of the new system are also estimated. By increasing the torrefaction severity, the CO_2 production rate, recycled gas mass, and the process thermal energy requirement increase, whereas the grinding energy and the energy yield decrease. A comparison made between the performance and economic parameters of the new and a conventional torrefaction processes shows that the proposed process is expected to produce torrefied wood pellet of compatible fuel quality and overall efficiency while eliminating CO_2 and NO_x emissions at the expense of 11.5% and 9% increase in the capital and production costs, respectively. The proposed torrefaction process requires 91.8 M$ capital investment and 113.2$ to produce 1 ton of torrefied wood pellets with 91% energy yield and 88% overall plant efficiency. Sensitivity analysis shows that the reactor type and raw biomass costs have significant impact on cost structures.
机译:介绍了一种基于含氧燃料燃烧概念的焙烧工艺。该过程中使用的工作流体是从燃烧产物中捕获的二氧化碳。对过程进行热力学建模,以确定在各种烘焙条件下的能量需求,循环的CO_2流量,能量产率和CO_2生产率。还估算了新系统的总资本投资和生产成本。通过提高焙烧强度,CO_2生产率,再循环气体质量和过程热能需求会增加,而研磨能和能量产率会降低。在新的和传统的焙烧工艺的性能和经济参数之间进行的比较表明,所提议的工艺有望产生兼具燃料质量和总体效率的焙烤木屑颗粒,同时以11.5%和9的成本消除CO_2和NO_x排放分别增加了资本和生产成本的%。拟议的焙烧工艺需要9180万美元的资本投资和113.2美元的成本才能生产1吨焙干的木屑颗粒,其能量产率为91%,总工厂效率为88%。敏感性分析表明,反应器类型和原始生物质成本对成本结构有重大影响。

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