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Modeling of the Thermochemical Conversion of Biomass in Cement Rotary Kiln

机译:水泥旋转窑生物质热化学转化的建模

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摘要

Because of the depletion of fossil fuels and because of its increasing cost, waste has been used as alternative fuels in cement rotary kilns for several years. In order to fulfil the requirements of environmental protection and quality of the final product, it is necessary to understand and quantify the different processes occurring in the kiln. The aim of our work is to develop a mathematical model of the processes occurring in the kiln. This model will rely on the coupling between a CFD model and homemade software. More precisely, the CFD model, which will be fully three-dimensional will account for the homogeneous processes taking place in the freeboard of the bed of material being processed. This bed of material will be at the center of the second model which will represent it as a 1D plug flow reactor. In the present work, we focus on this 1D model. We first give insights on the main assumptions on which the model relies, and information on the reaction pathway leading to the production of cement. Indeed, it is considered that the bed is composed of a mixture of CaCO_3, MgCO_3, Al_2O_3, SiO_9, Fe_2O_3, MgO, CaO, C_2S, C_3A, C_4AF and C_3S undergoing thermochemical transformation. The bed under consideration is also composed of biomass (agricultural residues). During its transformation (pyrolysis, combustion of volatiles, combustion of the pyrolysis residue), this material contributes to thermal equilibrium of the reactor, by carrying the energy associated to its complete combustion. In this paper, the different equations that translate into mathematical formalism the processes of transport of the bed as well as mass and energy balance are also presented. The results show that the cement obtained complies with the requirements of Portland cements (73.06% of Silicates and 18.76% of Aluminates), the conversion of the biomass is total (100%), and the specific energy consumption is almost in conformity with the values of literature.
机译:由于化石燃料的枯竭,并且由于其成本增加,废物已被用作水泥转车窑的替代燃料几年。为了满足环境保护和最终产品质量的要求,有必要了解和量化窑中发生的不同过程。我们的作品的目的是开发在窑中发生的过程的数学模型。该模型将依靠CFD模型和自制软件之间的耦合。更确切地说,CFD模型,这将是完全三维的将考虑在正在处理的材料床的干燥器中进行的均匀过程。该材料床将在第二型型号的中心,其将其表示为1D插头流量反应器。在目前的工作中,我们专注于此1D模型。我们首先对模型依赖的主要假设和导致水泥生产的反应途径的信息进行了解。实际上,认为床由CaCO_3,MgCO_3,Al_2O_3,SiO_9,Fe_2O_3,MgO,CaO,C_2S,C_3A,C_4AF和C_3S进行热化学转化的混合物组成。正在考虑的床也由生物质(农业残留物)组成。在其转化期间(热解,挥发物的燃烧,热解渣的燃烧)中,通过承载与其完全燃烧相关的能量,该材料有助于反应器的热平衡。在本文中,还提出了转化为数学形式主义的不同方程式床和质量和能量平衡的运输过程。结果表明,所获得的水泥符合波特兰水泥的要求(73.06%的硅酸盐和18.76%的硅酸盐),生物质的转化率总计(100%),具体的能耗几乎符合价值文学。

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