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Aqueous process intensification through enhanced oxygen mass transfer using oxygen vector: An application to cleaner leaching

机译:通过使用氧气载体增强氧气质量转移来增强水处理过程:在清洁浸出中的应用

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Intensification of chemical processes has surfaced many challenging but promising areas. Enhancement of Oxygen Mass Transfer (OMT) is one such area in aqueous chemical processes. Several attempts made to alleviate OMT limitation, however, remains futile in lowering energy and material requirement. In this regard, the use of n-Dodecane, an Oxygen Vector, could be a radically promising route for enhancing OMT. The present work explores the use of n-Dodecane (Oxygen Vector) for the enhancement of OMT, corroborated with the Classical Molecular Dynamic (MD) simulations. The results showed that 2.5% (v/v) n-Dodecane addition in aqueous systems ('Na2SO3 solution - n-Dodecane' and 'H2O - n-Dodecane') would lead to enhancement up to 750%. MD simulation results confirm the transfer of oxygen from n-Dodecane-to-aqueous medium with diffusivity of 10(-8) m(2)/s, thus becomes the dominating route for the enhancement in OMT. In addition, it has been found that n-Dodecane fraction, temperature and the rate of oxygen consumption reaction are the dictating parameters for enhancement. The concept of Oxygen Vector for enhancing OMT has been successfully exploited for cleaner leaching of metals (95 % Cu, Ni and Co) from refractory complex sulfides at moderate temperature-pressure conditions (T similar to 95 degrees C and pO(2)similar to 3 Bar), which would have otherwise been possible at T 200 degrees C and pO(2) 10 Bar. in addition, recyclability of n-Dodecane, Oxygen Vector, in leaching system is an added advantage. Thus, this study offers a promising route in enhancing kinetics of oxidative aqueous processes and provides suggestive insights for lowering the material and energy requirements. (C) 2017 Elsevier Ltd. All rights reserved.
机译:化学过程的强化已经出现了许多具有挑战性但有希望的领域。氧气传质的增强(OMT)是水性化学过程中的此类领域之一。然而,减轻OMT限制的一些尝试在降低能量和材料需求方面仍然是徒劳的。在这方面,使用正十二烷(一种氧气载体)可能是增强OMT的根本途径。本工作探索了使用正十二烷(氧气矢量)增强OMT的能力,这与经典分子动力学(MD)模拟得到了证实。结果表明,在水性体系(“ Na2SO3溶液-正十二烷”和“ H2O-正十二烷”)中添加2.5%(v / v)的正十二烷会导致提高至750%。 MD模拟结果证实了氧从正十二烷向水介质的扩散速率为10(-8)m(2)/ s,从而成为增强OMT的主要途径。此外,已经发现正十二烷分数,温度和耗氧反应速率是增强的决定性参数。氧载体增强OMT的概念已被成功地用于在中等温度-压力条件下(T类似于95摄氏度和pO(2)相似)从难熔复合硫化物中更干净地浸出金属(> 95%Cu,Ni和Co)至3 Bar),否则在T> 200摄氏度且pO(2)> 10 Bar时是可能的。此外,在浸出系统中正十二烷,氧载体的可回收性是一个额外的优势。因此,这项研究为增强氧化水过程的动力学提供了一条有希望的途径,并为降低材料和能量需求提供了有益的见解。 (C)2017 Elsevier Ltd.保留所有权利。

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