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Biological Hydrogen Sulfide and Sulfate Removal from Rubber Smoked Sheet Wastewater for Enhanced Biogas Production

机译:硫化物硫化物和硫酸盐从橡胶熏制的污水中除去增强沼气生产

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The sulfate-rich wastewater from rubber smoked sheet industry could generate hydrogen sulfide (H2S) under anaerobic condition, which created bad smell to the community and might cause toxicity and damage to the environment. The H2S can be removed from the biogas by sulfur-oxidizing bacteria (SOB) with the ability to converted H2S to sulfate. Sulfate-reducing bacteria (SRB) could remove sulfate in wastewater before anaerobic treatment for biogas production. The microbial sludge from wastewater and anaerobic digestion system was collected and test for sulfate and H2S removal efficiency. Anaerobic microbial sludge has a high ability to produced methane from gelatin with a specific methane production rate of 92.4 ml CH4 gVSS~(-1) day~(-1). Anaerobic microbial sludge has lower methane production when gelatin and sulfate used as a substrate with a specific methane production rate of 81.4 ml CH4 gVSS~(-1) day~(-1). The biomethane potential, hydrogen sulfide removal and sulfate removal in anaerobic digestion system by addition of enriched cultures of SOB and SRB were investigated. The methane yield of SRB consortium was 60.1 ml CH4/gCOD with 20% sulfate reduction from wastewater and no sulfide reduction. The methane yield of SOB consortium was 41.9 ml CH4/gCOD with no sulfate and sulfide reduction from wastewater. The addition of SRB consortium could increase methane production by reducing sulfate concentration in wastewater consequently to a reduced concentration of H2S in biogas.
机译:橡胶烟熏板工业的硫酸盐废水可能会在厌氧条件下产生硫化氢(H2S),这为社区产生了糟糕的气味,可能会导致环境毒性和损害。可以通过硫氧化细菌(SOB)从沼气中除去H 2 S,其能够将H2S转化为硫酸盐。减少硫酸盐的细菌(SRB)可以在厌氧处理前除去废水中的硫酸盐,用于沼气生产。收集来自废水和厌氧消化系统的微生物污泥并测试硫酸盐和H2S去除效率。厌氧微生物污泥具有高能力从明胶产生甲烷,具有92.4ml CH 4 GVSS〜(-1)天〜(-1)的特定甲烷生产速率。厌氧微生物污泥具有较低的甲烷生产,当明胶和硫酸盐用作具有81.4ml CH 4 GVSS〜(-1)天〜(-1)的特异性甲烷的基材〜(-1)。研究了通过添加富含富集的SOB和SRB培养物的厌氧消化系统中的生物甲烷势,硫化氢除去和硫酸盐去除。 SRB联盟的甲烷产率为60.1ml CH 4 / GCOD,废水中的硫酸盐20%,硫化物不降低。 SOB联盟的甲烷产率为41.9ml CH 4 / GCOD,废水不具有硫酸盐和硫化物。通过减少废水中的硫酸盐浓度,加入SRB联盟可以通过降低沼气中的H 2 S浓度降低,增加甲烷产生。

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