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Simultaneous removal of hydrogen sulfide and ammonia using a combined system with absorption and electrochemical oxidation

机译:使用具有吸收和电化学氧化的组合系统同时除去硫化氢和氨

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Hydrogen sulfide (H2S) and ammonia (NH3), common impurities in biogas, need to be removed before utilizing it. In this study, a combined system, which consisted of an absorption column and an electrochemical oxidation reactor, was tested to simultaneously remove these impurities. The effects of the current density and the chemical loading rate on the system performance were investigated. Firstly, the mass transfer coefficients for the absorption column were determined at various gas flow rates. More mass of NH3 was transferred, compared with that of H2S, because of its higher solubility. In the electro-oxidation reactor, reactive chlorine species (RCSs) were generated and oxidized both H2S and NH3; however, NH3 started to degrade only after H2S was completely eliminated. At a current density of 400 A/m(2), the current efficiencies of H2S and NH3 were 23.1% and 5.9%, respectively. In the combined system, the removal efficiency of H2S was closely related to the mass ratio of the H2S transferred and the RCSs generated. The removal efficiency of H2S was greater than 99% when the ratio was less than 1. The mass transfer potential and the oxidation kinetics should be balanced to improve the system performance for the simultaneous removal of H2S and NH3.
机译:硫化氢(H2S)和氨(NH3),沼气中的常见杂质,在使用之前需要除去。在该研究中,测试了由吸收塔和电化学氧化反应器组成的组合系统,同时除去这些杂质。研究了电流密度和化学加载率对系统性能的影响。首先,在各种气流速率下测定吸收塔的传质系数。与H2S相比,转移更多的NH 3质量,因为其溶解度较高。在电氧化反应器中,产生反应性氯物质(RCS)并氧化H2S和NH 3;然而,只有在完全消除H2S后,NH3就开始降解。在电流密度为400A / m(2)中,H 2 S和NH 3的当前效率分别为23.1%和5.9%。在组合系统中,H 2 S的去除效率与转移的H 2 S的质量比和产生的RCSS密切相关。当比例小于1时,H2S的去除效率大于99%。应平衡传质电位和氧化动力学以提高同时除去H2S和NH3的系统性能。

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