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Concept of bifunctional Redox iron-chelate process for H2S removal in pulp and paper atmospheric emissions

机译:双功能氧化还原铁螯合物工艺概念,用于去除纸浆和造纸中的硫化氢

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Utilization of ferric chelates for the oxidation of hydrogen sulfide is beneficial from the standpoint of iron-sequestration and protection against precipitation in the alkaline environments characteristic of the Kraft mill effluents. Availability of oxygen along with hydrogen sulfide in the atmospheric emissions of pulp and paper industries is beneficial for the simultaneous Redox regeneration from ferrous to ferric chelates. By putting together these two premises, the concept of a multifunctional Redox process for the scrubbing of hydrogen-sulfide-contaminated atmospheric effluents emanating from the Kraft mills is formulated, modeled and simulated. This paper discusses from a multiphase reactor engineering perspective, the design of a countercurrent packed-bed bifunctional scrubber by setting an exhaustive modeling framework in which are solved both the oxidation of hydrogen sulfide in reactive ferric chelate solutions of ethylenediaminetetraacetic acid (EDTA chelate) and the simultaneous oxidative regeneration of ferrous chelates resulting from oxidation of hydrogen sulfide. A one-dimensional model based on the transient species balance equations in the gas and liquid phases coupled with the transient film model according to the film-penetration theory was developed for the description of the time and space evolution of the species concentrations along the scrubber. The oxidative regeneration of the ferrous chelate showed a synergistic effect resulting in increased enhancement factor for the hydrogen sulfide oxidation. Availability of plenty of oxygen in the atmospheric effluent precluded starvation of the ferric form and maintained high reaction rates of hydrogen sulphide removal along the whole reactor length. (C) 2003 Elsevier Ltd. All rights reserved. [References: 37]
机译:从螯合铁的观点以及在牛皮纸厂出水所特有的碱性环境中防止沉淀的观点出发,利用铁螯合物氧化硫化氢是有益的。纸浆和造纸工业向大气排放的氧气以及硫化氢的可利用性,对于从铁到铁螯合物的同时氧化还原再生是有益的。通过将这两个前提放在一起,就可以构造,建模和模拟多功能氧化还原工艺的概念,该工艺用于洗涤硫酸盐法制浆厂排放的硫化氢污染的大气废水。本文从多相反应器工程的角度讨论了通过建立详尽的建模框架设计逆流填充床双功能洗涤塔的方法,该方法解决了乙二胺四乙酸(EDTA螯合物)反应性铁螯合物溶液中硫化氢的氧化和硫化氢氧化产生的螯合亚铁的同时氧化再生。建立了基于气相和液相中瞬态物质平衡方程的一维模型,并根据膜渗透理论,结合瞬态膜模型,建立了沿洗涤塔的物种浓度随时间和空间演化的描述。螯合亚铁的氧化再生显示出协同作用,导致硫化氢氧化的增强因子增加。大气流出物中大量氧气的可利用性避免了三价铁形式的饥饿,并在整个反应器长度上保持了高的硫化氢去除反应速率。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:37]

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