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COMPARISON OF THERMOPHILIC AND MESOPHILIC ONE-STAGE, BATCH, HIGH-SOLIDS ANAEROBIC DIGESTION

机译:嗜热和中性单级,间歇,高固体厌氧消化的比较

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The concept of starting up a batch, high-solids anaerobic digester by simply flooding the bed with a pH-buffer solution was tested using a mixture of vegetable waste and wood chips as feedstock at mesophilic (38℃) and thermophilic (55℃) conditions. At both temperatures stable and balanced methanogenesis was rapidly established within four days and was sustained until substrate was exhausted. Methanogenesis was more rapidly initiated in the thermophilic digester than in the mesophilic digester. Acetic, propionic and butyric acids accumulated in the leachate of both digesters during the start-up of digestion of uninoculated batch of waste. Thereafter all acids were degraded; which was quicker in the thermophilic digester. The accumulation and degradation of these acids was slower in the mesophilic digester. These studies showed that inoculum for carrying out thermophilic and mesophilic anaerobic digestion is readily available within the waste and its activity for complete mineralization of organic matter can be enhanced and sustained by providing adequate alkalinity. By employing a process in which anaerobic digestion of subsequent batches of waste was carried out by flooding with leachate drained from the digestion of a previous batch of waste, the volatile organic acid accumulation was maintained low and 95% of the methane yield potential of the waste was produced in 11 days under thermophilic conditions as opposed to 27 days under mesophilic conditions.
机译:通过在中温(38℃)和嗜热(55℃)条件下,使用植物废料和木屑的混合物作为原料,通过仅用pH缓冲溶液充溢床来启动批量高固体厌氧消化池的概念进行了测试。 。在这两个温度下,在四天内迅速建立了稳定且平衡的产甲烷作用,并持续存在直至底物耗尽。与嗜温消化器相比,在嗜热消化器中甲烷生成的启动速度更快。未消化的一批废物开始消化时,两个消化池的沥出液中会积聚乙酸,丙酸和丁酸。此后,所有酸都被降解;在嗜热消化器中速度更快。这些酸的积累和降解在中温消化池中较慢。这些研究表明,在废物中很容易获得用于进行嗜热和中温厌氧消化的接种物,并且通过提供足够的碱度,可以增强和维持其对有机物完全矿化的活性。通过采用以下工艺进行厌氧消化:通过淹没从前一批废弃物的消化液中排出的沥滤液,对后一批废弃物进行厌氧消化,从而使挥发性有机酸的蓄积量保持在较低水平,并保持了该废弃物甲烷生成潜力的95%在嗜热条件下的生产天数为11天,而在嗜温条件下的生产天数为27天。

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