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Elementary sulfur recovery by H2-regeneration of SO2-adsorbed CuO/Al2O3-Effect of operation parameters

机译:通过SO2吸附的CuO / Al2O3-的H2再生来回收基本硫磺操作参数的影响

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摘要

CuO/Al2O3 is capable of removing SO2 and NOx from flue gas simultaneously at around 400 degC. After the SO2 removal, the SO2-adsorbed CUO/Al2O3 needs to be treated to regenerate its SO2 removal capacity and to recover the removed sulfur. This paper reports recent research on direct formation of elementary sulfur during H2-regeneration of the SO2-adsorbed Cu0/Al2O3 through recycling of the regeneration tail gas. In such a way, the SO2 removal, the sorbent-catalyst's regeneration and elementary sulfur recovery can be carried out in a single reactor. The operating parameters studied include the amounts of H2 fed into the reactor, H2 feed strategy and O2 treatment of the H2-regenerated CuO/Al2O3. An intermittent H2 feeding mode is found to give a higher elementary sulfur yield (91%), less residual sulfur-compounds in the system after the regeneration, and higher SO2 capacity in the subsequent SO2 removal process. An O2 treatment after the H2-regeneration improves the elementary sulfur yield further and results in a number of other advantages.
机译:CuO / Al2O3能够在大约400℃同时从烟道气中去除SO2和NOx。去除SO2后,需要对吸附有SO2的CUO / Al2O3进行处理,以再生其SO2去除能力并回收去除的硫。本文报道了最近的研究,即通过再生尾气的再循环,在SO2吸附的Cu0 / Al2O3的H2再生过程中直接形成单质硫。这样,可以在单个反应器中进行SO 2的去除,吸附剂-催化剂的再生和基本硫的回收。研究的操作参数包括进料到反应器中的H2量,H2进料策略和H2再生的CuO / Al2O3的O2处理。发现间歇性的H2进料模式可提供更高的基本硫收率(91%),再生后系统中较少的残留硫化合物以及在后续的SO2去除过程中具有更高的SO2容量。 H2再生后进行O2处理可进一步提高元素硫的产率,并带来许多其他优势。

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