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Application of hybrid anaerobic reactor: Treatment of increasing cyanide containing effluents and microbial composition identification

机译:混合厌氧反应器的应用:不断增加的含氰废水处理和微生物成分鉴定

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The study endeavors the anaerobic treatment of cyanide-containing effluents using the hybrid anaerobic reactor, with self-immobilized granules under high up-flow velocities. Comparison of one-year time-course analyses of HARs treating high strength effluents containing cyanide and control indicates the importance of wastewater characteristics in development and maintenance of microbiome. Efforts were directed towards associating process performance with microbial dynamics. Presence of cyanide results in the accumulation of intermediates paralleled with a drop in abundance of sensitive aceticlastic methanogens. HAR appear to have better resilience than other identified digesters because of shielding effects and enhanced granule-wastewater contact. The predominance of Methanobacteriales in the presence of cyanide can be linked to its tolerance. It was found that methane yield is positively correlated with abundance of aceticlastic guilds (R = 0.830, CI = 0.01). Tolerant bacterial groups were also identified. The study advances our knowledge related to less energy intensive technology with the focus on the development of efficient HAR.
机译:该研究致力于使用混合厌氧反应器对厌氧处理含氰化物的废水进行处理,并在高流速下使用自固定颗粒。对使用含氰化物的高强度废水进行处理的HARs进行的一年时间过程分析与对照的比较表明,废水特性在微生物组的开发和维护中很重要。致力于将过程性能与微生物动力学相关联。氰化物的存在会导致中间体的积累,同时导致敏感的弹塑性产甲烷菌的丰度下降。由于具有屏蔽作用和增强的颗粒与废水接触,HAR的回弹力似乎优于其他已确定的蒸煮器。甲烷在氰化物存在下的优势可以与其耐受性相关。已发现甲烷产率与回弹协会的丰度正相关(R = 0.830,CI = 0.01)。还确定了耐性细菌群。这项研究将重点放在开发高效的HAR上,从而提高了我们与耗能较少的技术相关的知识。

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