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Effect of Ultrasonic Pretreatment on Methane Production Potential from Corn Ethanol Coproducts

机译:超声波预处理对玉米乙醇副产物产甲烷潜力的影响

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摘要

This article addresses the biochemical methane potential (BMP) production from anaerobic digestion of corn-ethanol coproducts including dried distiller grain with solubles (DDGS), distilleru27s wet grains (DWG), thin stillage, and condensed distilleru27s solubles (CDS) as well as evaluating the effects of ultrasonic pretreatment on methane production from these feedstocks. Ultrasonic pretreatment was applied with three amplitude settings of 33% (52.8 µmpp), 66% (105.6 µmpp), and 100% (160 µmpp) as well as five time settings (10, 20, 30, 40, and 50 s) to each of the four coproducts prior to conducting benchtop BMP trials. Ultrasonic pretreatment reduced mean particle size of DDGS and DWG by 45% and 43%, respectively. Without ultrasound pretreatment, CDS had the highest methane production potential (407 mL g-1 VS added) compared to the other coproducts. Ultrasonic pretreatment of DWG co-products (DDGS and DWG) resulted in greater increases in methane production than on liquid coproducts (CDS and thin stillage). Methane yields were increased by 25% and 12% for the ultrasound pretreated DDGS and DWG, respectively, compared with untreated samples. An energy balance for the DWG, thin stillage, and CDS coproducts indicated that ultrasonic pretreatment required more energy than was generated by the process in terms of additional biogas production. However, an energy balance for ultrasonic pretreatment of DDGS provided 70% more energy than was required to operate the ultrasonic unit.
机译:本文探讨了玉米-乙醇副产物的厌氧消化所产生的生化甲烷潜能(BMP),包括干燥的蒸馏水和可溶物(DDGS),蒸馏水的湿粮(DWG),稀釜馏物和冷凝蒸馏水的可溶物(CDS)。以及评估超声波预处理对这些原料产生的甲烷的影响。超声预处理应用了33%(52.8 µmpp),66%(105.6 µmpp)和100%(160 µmpp)的三个幅度设置以及五个时间设置(10、20、30、40和50 s),在进行台式BMP试验之前,应将这四个副产品中的每一个都进行。超声波预处理分别将DDGS和DWG的平均粒径降低了45%和43%。没有超声预处理,与其他副产品相比,CDS的甲烷生产潜力最高(添加了407 mL g-1 VS)。 DWG副产品(DDGS和DWG)的超声预处理比甲烷(CDS和稀釜馏物)产生的甲烷产量增加更多。与未处理的样品相比,超声预处理的DDGS和DWG的甲烷产率分别提高了25%和12%。 DWG,稀釜馏物和CDS副产品的能量平衡表明,就额外的沼气生产而言,超声预处理所需的能量比该工艺产生的能量更多。但是,DDGS超声预处理的能量平衡比操作超声单元所需的能量多70%。

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