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Hydrodynamics, mass transfer and gas scrubbing in a co-current droplet column operating at high gas velocities

机译:在高气体流速下运行的并流液滴塔中的流体力学,传质和气体洗涤

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The main objective of this work was to propose a new process for household fume incineration treatment: the droplet column. A feature of this upward gas-liquid reactor which makes it original, is to use high superficial gas velocities (13 ms(-1)) which allow acid gas scrubbing at low energy costs. Tests were conducted to characterize the hydrodynamics, mass transfer performances, and acid gas scrubbing under various conditions of superficial gas velocity (from 10.0 to 12.0 ms(-1)) and superficial liquid velocity (from 9.4. 10(-3) to 18.9. 10(-3) in s(-1)). The following parameters characterized the hydrodynamics: pressure drops, liquid hold-ups, and liquid residence time distribution were identified and investigated with respect to flow conditions. To characterize mass transfer in the droplet Column, three parameters were determined: the gas-liquid interfacial area (a), the liquid-phase volumetric mass transfer coefficient (k(L)a) and the gas-phase volumetric mass transfer coefficient (k(G)a). Gas absorption with chemical reaction methods were applied to evaluate a and k(G)a, while a physical absorption method was used to estimate k(L)a. The influence of the gas and liquid velocities on a, k(L)a, and k(G)a were investigated. Furthermore, tests were conducted to examine the utility of the droplet column for the acid gas scrubbing, of gases like hydrogen chloride (HCl) and sulfur dioxide (SO2). This is a process of high efficiency and the amount of pollutants in the cleaned air is always much lower than the regulatory European standards imposed on household waste incinerators.
机译:这项工作的主要目的是提出一种用于家庭烟气焚化处理的新工艺:液滴塔。该向上的气液反应器的独特之处在于使用了较高的表观气速(13 ms(-1)),该速度允许以较低的能源成本洗涤酸性气体。进行了测试,以表征在表观气体速度(从10.0到12.0 ms(-1))和表观液体速度(从9.4。10(-3)到18.9)的各种条件下的流体动力学,传质性能和酸性气体洗涤。 s(-1)中的10(-3))。以下参数表征了流体力学:识别了压降,液体滞留率和液体停留时间分布,并针对流动条件进行了研究。为了表征液滴塔中的传质,确定了三个参数:气液界面面积(a),液相体积传质系数(k(L)a)和气相体积传质系数(k (G)a)。采用化学反应方法吸收气体来评估a和k(G)a,而物理吸收方法用来评估k(L)a。研究了气体和液体速度对a,k(L)a和k(G)a的影响。此外,还进行了测试,以检查液滴塔对酸性气体洗涤(如氯化氢(HCl)和二氧化硫(SO2))的效用。这是一个高效率的过程,清洁空气中的污染物含量始终远低于对家庭垃圾焚化炉实施的欧洲法规标准。

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