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Evaluation of a two-stage hydrothermal process for enhancing acetic acid production using municipal biosolids

机译:评估使用市政生物固体提高乙酸生产的两阶段水热工艺

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A two-stage hydrothermal process aimed at improving acetic acid production using municipal biosolids was evaluated against thermal hydrolysis and conventional wet oxidation process in a 600 ml Parr batch reactor. Thermal hydrolysis was conducted at 140 °C, wet oxidation at 220 °C and the two-stage process, which acted as a series combination of thermal hydrolysis and wet oxidation, at 220 °C. Initial pressure of 1 MPa was maintained in all the three processes. The results indicated that the highest acetic acid production of up to 58 mg/g dry solids feed was achieved in the wet oxidation process followed by the two-stage process with 36 mg/g dry solids feed and 1.8 mg/g dry solids feed for thermal hydrolysis. The acetic acid yield obtained by the thermal processes increased from 0.4% in the thermal hydrolysis process to 12% during the single stage wet oxidation, with the two-stage process achieving 8%. The purity of the acetic acid improved from 1% in thermal hydrolysis to 38% in the wet oxidation process. The two-stage process achieved acetic acid purity of 25%. This work demonstrated no enhancement of acetic acid production by the two-stage concept compared with the single stage wet oxidation process. This is in contrast to similar work by other researchers, investigated on carbohydrate biomass and vegetable wastes using hydrogen peroxide as the oxidant. However, the data obtained revealed that substrate specificity, reaction severity or oxidant type is clearly important in promoting reaction mechanisms which support enhanced acetic acid production using municipal biosolids.
机译:在600毫升的帕尔间歇式反应器中,针对热水解和常规湿式氧化过程,评估了旨在改善使用市政生物固体的乙酸生产的两阶段水热过程。在140°C下进行热水解,在220°C下进行湿式氧化,然后在220°C下进行热水解和湿式氧化的串联两个阶段。在所有三个过程中,初始压力均保持在1 MPa。结果表明,在湿法氧化过程中,最高乙酸产量达到58 mg / g干固体进料,然后进行两阶段工艺,其中36 mg / g干固体进料和1.8 mg / g干固体进料热水解。通过热过程获得的乙酸产率从热水解过程中的0.4%增加到单阶段湿式氧化过程中的12%,而两阶段过程达到8%。乙酸的纯度从热水解中的1%提高到湿式氧化过程中的38%。两步法实现了乙酸纯度为25%。这项工作表明,与单级湿式氧化工艺相比,两级概念没有增加乙酸的生产。这与其他研究人员使用过氧化氢作为氧化剂对碳水化合物生物量和蔬菜废物进行研究的类似研究形成了鲜明对比。但是,获得的数据表明,底物特异性,反应强度或氧化剂类型在促进支持使用市政生物固体提高乙酸生产的反应机理方面显然很重要。

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