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Effect of Stillage Pretreatment During a Coupled Scoria-Supported Anaerobic Digestion Followed by Aerobic Degradation

机译:静止肠道载体消化过程中的静止术预处理的影响,然后是有氧降解

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The objective of this study was to evaluate the treatment efficiency of a coupled stillage anaerobic digestion, which was performed in scoria-packed continuous reactors and following aerobic degradation. The optimum organic loading rate was determined for the continuous anaerobic digestion of a molasses ethanol distillery stillage with and without wet air feed pretreatment. The pretreatment of the molasses ethanol distillery stillage brought a significantly higher chemical oxygen demand removal in anaerobic digestion with an increased loading rate of 2000?mg/L?d when compared with the raw stillage. The results also showed a complete removal of the biological oxygen demand following the coupling of anaerobic digestion with aerobic degradation. During the later stillage aerobic treatment, 68% of the chemical oxygen demand was removed within 8 hours of retention time. Despite the color, the removal of organics in stillage due to integrating wet air pretreatment, continuous anaerobic digestion, and aerobic degradation was successful. The pretreatment and hybrid technique also appears as a promising technique toward the sustainable management of stillage, thereby meeting discharge limit set for the ethanol industry by regulators.
机译:本研究的目的是评估偶联胃肠厌氧消化的治疗效率,其在恶性填充的连续反应器中进行并在有氧降解之后进行。测定最佳的有机加载速率,用于连续厌氧消化糖蜜乙醇蒸馏釜馏分的连续厌氧消化,无湿空气饲料预处理。糖蜜乙醇蒸馏液的预处理在厌氧消化中提高了较高的化学氧需求去除,与原始釜馏物相比,载入速率增加了2000〜Mg /L≤D。结果还表明厌氧消化偶联厌氧降解后完全去除生物需氧量。在后续静止的静止中,在保留时间的8小时内除去68%的化学氧需求。尽管颜色,由于整合湿空气预处理,连续的厌氧消化和有氧降解而导致的静止物有机物成功。预处理和杂化技术也表现为对静止的可持续管理的有希望的技术,从而通过监管机构满足乙醇行业的排放限制。

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