首页> 外文期刊>International Journal of Innovative Research in Science, Engineering and Technology >Improvement by Micro-Aeration of Anaerobic Digestion of Slaughterhouse Wastewater At 38?°C
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Improvement by Micro-Aeration of Anaerobic Digestion of Slaughterhouse Wastewater At 38?°C

机译:通过微曝气在38°C下对屠宰场废水进行厌氧消化改善

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The anaerobic digestion of slaughterhouse wastewaters, used as a model of fluids with high TSS content, was improved by application of micro-aeration of the influent. Digestibility of the total suspended solids (TSS) was improved to prevent their accumulation in the sludge and protect methanogens from their inhibition effect. This was ensured by a controlled dissolution of oxygen in the influent, prior to the anaerobic digestion, by continuous aeration with air at a rate of 15 ml/min, corresponding to 0.05 vvm (volume of air per volume of feeding solution per minute). The methane production yields were of almost 350 and 200 ml CH4 per removed g of CODsol and CODtot, respectively. The micro-aeration of the influent also lead to application of higher organic loads to the treatment system, besides the high methane production yields. These results were obtained at 38°C, which is not common and suitable to anaerobic digestion, but appropriate for enhanced hydrolytic enzymes activities. It was clearly shown, that the improvement of methane production yields was associated to dissolution of TSS. These findings are of great importance from the practical point of view, and technically evidence the emerging idea of tolerance of low aeration in anaerobic technologies.
机译:屠宰场废水的厌氧消化(用作高TSS含量流体的模型)通过使用进水的微曝气得到改善。改善了总悬浮固体(TSS)的消化率,以防止其在污泥中积累并保护产甲烷菌免受其抑制作用。在厌氧消化之前,通过以15 ml / min的速度用空气连续充气(对应于0.05 vvm(每分钟进料溶液每分钟的空气体积))对通气进行控制,可确保氧气在进水口中的溶解度得以确保。每去除1 g CODsol和CODtot,甲烷产量分别接近350和200 ml CH4。除了甲烷产量高以外,进水的微曝气还导致向处理系统施加更高的有机负荷。这些结果是在38°C时获得的,该温度并不普遍,不适合厌氧消化,但适合增强水解酶的活性。清楚地表明,甲烷产量的提高与TSS的溶解有关。从实践的角度来看,这些发现非常重要,并从技术上证明了厌氧技术中低曝气耐受性的新兴思想。

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