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Mesophilic Anaerobic Digestion with High- Temperature Microwave Pretreatment and Importance of Inoculum Acclimation

机译:高温微波预处理的中温厌氧消化及接种物驯化的重要性

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Thickened waste activated sludge (TWAS) was pretreated with microwave irradiation to temperatures higher than the boiling point (between 110 and 175℃) using different microwave intensities. Biochemical methane potential (BMP) assays demonstrated that, although mesophilic anaerobic digestion (MAD) inoculum used was acclimated for 4 months with microwave pretreated TWAS (to 175℃), acute methan-ogenic inhibition was observed. Additionally, the microwave conditions applied increased the soluble chemical oxygen demand (sCOD)-to-total COD (tCOD) ratio; however, no significant enhancement in the rate or extent of TWAS stabilization was observed for the microwave-pretreated samples. Microwave pretreatment to between 110 and 175℃ at lower microwave intensity with a better acclimated MAD inoculum (acclimatized for an additional 3 months) resulted in minimal methanogenic inhibition (improved acclimation) and improved the rate and extent of TWAS biodegradation, as determined by volatile solids removal and biogas production (microwave applied at lower microwave intensity). The TWAS pretreated to 175℃ produced 31 ± 6% more biogas than the control (raw TWAS) by the 18th day of the BMP test, whereas the highest improvement observed from the first set of BMP experiments was 13 ± 1%.
机译:使用不同的微波强度,将稠化的废活性污泥(TWAS)进行微波辐射预处理,使其温度高于沸点(110至175℃)。生化甲烷潜能(BMP)分析表明,尽管使用微波预处理的TWAS使中温厌氧消化(MAD)接种物适应了4个月(至175℃),但仍观察到了急性产甲烷的抑制作用。另外,所施加的微波条件增加了可溶性化学需氧量(sCOD)与总COD(tCOD)的比率。然而,对于微波预处理的样品,未观察到TWAS稳定速率或程度的显着提高。微波预处理在较低的微波强度下进行,并采用适应性更好的MAD接种物(适应了另外3个月),从而将产甲烷抑制作用最小化(适应性得到改善),并提高了TWAS生物降解的速率和程度(由挥发性固体确定)去除和产生沼气(以较低的微波强度施加微波)。在BMP试验的第18天,预处理到175℃的TWAS产生的沼气比对照(原始TWAS)多31±6%,而从第一组BMP实验观察到的最高改进是13±1%。

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