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Micro-Oxygenation in Upflow Anaerobic Sludge Bed (UASB) Reactors Using a Silicon Membrane for Sulfide Oxidation

机译:在上流厌氧污泥床(UASB)反应器中的微氧化合物用于硫化物氧化

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摘要

Sulfide produced by sulphate-reducing bacteria in anaerobic reactors can seriously affect biogas quality. Microaeration has become a reliable way to remove sulfide, by promoting its oxidation. However, limited research is available regarding its application in upflow anaerobic sludge bed (UASB) reactors. In this research, silicon membranes were studied as a mechanism to dose oxygen in USAB reactors. Two configurations were tested: the membrane placed inside the reactor or in an external module. Our results show that the external membrane proved to be a more practical alternative, providing conditions for sulfide oxidation. This led to a reduction in its concentration in the liquid effluent and biogas. External membrane configuration achieved a sulfide conversion rate of 2.4 g-S m2 d−1. Since the membrane was not sulfide-selective, methane losses were observed (about 9%). In addition, excessive oxygen consumption was observed, compared to the stoichiometric requirement. As is the case for many membrane-based systems, membrane area is a key factor determining the correct operation of the system.
机译:厌氧反应器中硫酸盐还原细菌产生的硫化物可以严重影响沼气质量。通过促进其氧化,微曝气已成为除去硫化物的可靠方法。然而,有关其在上流厌氧污泥床(UASB)反应器中的应用有限的研究。在该研究中,研究了硅膜作为USAB反应器中氧的机制。测试了两种配置:将膜放置在反应器内或外部模块内。我们的结果表明,外部膜被证明是一种更实用的替代方案,为硫化物氧化提供条件。这导致液体流出物和沼气中的浓度降低。外部膜构型耐硫化物转化率为2.4g-s m 2 d-1。由于膜不是硫化物选择性,因此观察到甲烷损失(约9%)。此外,与化学计量要求相比,观察到过量的氧气消耗。与许多基于膜的系统的情况一样,膜面积是确定系统正确操作的关键因素。

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