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Theoretical study of the expansion of supercritical water in a capillary device at the output of a hydrothermal oxidation process

机译:水热氧化过程中毛细管装置中超临界水膨胀的理论研究

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This paper deals with the expansion of supercritical water at the output of the reactor of a supercritical water oxidation process. Inside such reactors, a common value of the working pressure is approximately 25 MPa. The fluid exhausting the reactor mainly contains water and carbon dioxide and salts. The operating pressure needs to be dropped in order to separate the different constituent of the fluid and to send back to environment the clean effluents. The behaviour of the salts held within the supercriticall water is very specific. Indeed, at high pressure, the salts are present at the solid state, but once some liquid water appears, a part of the salts is dissolved into this liquid. Thus, in order to be separated by classical gas/solid separation at moderate pressure, the process stream needs to be carefully expanded. This paper presents a mathematical model that has been build in order to design a capillary device for this expansion. The governing equations of the model are presented as well as the way it has been solved. Some computations around a nominal operating conditions point are performed. These computations have led us to the design of an experimental device. (C) 2006 Elsevier B.V. All rights reserved.
机译:本文涉及超临界水氧化过程反应器输出处超临界水的膨胀。在这样的反应器内,工作压力的通常值为大约25MPa。排出反应器的流体主要包含水,二氧化碳和盐。需要降低工作压力,以分离出不同的流体成分,并将干净的废水送回环境。超临界水中所含盐的行为非常特殊。实际上,在高压下,盐以固态存在,但是一旦出现一些液态水,则一部分盐会溶解到该液体中。因此,为了在中等压力下通过经典的气/固分离进行分离,需要小心地扩大工艺物流。本文介绍了一个数学模型,该模型已经建立,以便设计用​​于该扩展的毛细管装置。给出了模型的控制方程以及求解方法。在标称工作条件点附近进行一些计算。这些计算使我们得以设计实验装置。 (C)2006 Elsevier B.V.保留所有权利。

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