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Integration of subcritical water pretreatment and anaerobic digestion technologies for valorization of acai processing industries residues

机译:亚临界水预处理与Anaerobic消化技术的集成,以扶贫加工产业残留物的算法

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The objective of this work was to study the valorization of residual biomass and wastewater from acai fruit processing to obtain energy products and higher added value from such residues, through the integration between subcritical waterpretreatment and anaerobic digestion technologies. Subcritical watertechnology was performed to pretreat the residual biomass. For this process, the reactorwas feed with 5 g of acai residue and a solvent to biomass mass ratio of 80 g of water per gram of acai residue was used. The process was carried out at 170 and 200 degrees C, during 20 min, using water flow of 20 mL min(-1) (15 Mpa system). Then, the residual biomass was submitted to the anaerobic digestion process using a reactor with pretreatment (integration) and a control reactor, both in semi-continuous regime and under mesophilic conditions (35 degrees C). The acai stone had a high carbohydrate concentration including 43.81% cellulose and 25.89% hemicellulose. For the evaluated conditions, subcritical water pretreatment at 200 degrees C gave the bestresultsforyield of reducing sugars, total reducing sugars and monosaccharide concentration. Anaerobic digestion experiments resulted in analkalinity between 150 and 1537 mgCaCO3.L-1 for the control reactor and between 249 and 491 mgCaCO3.L-1 for the reactor integration.Acetic acid was the main volatile fatty acid produced in both reactors, but butyric acid also had a very high concentration in the control reactor. The methane composition in the biogas for the integration reactor in the stabilization phase was between 60 and 80%, while for the control reactor it was in the range between 40 and 60%. The accumulated biogas yield was 7.79 and 791.81 L.KgTVS(-1) for the control and integration reactor, respectively. Anaerobic digestion using the acai hydrolysate obtained by subcritical water pretreatment showed a significant advantage over the control digestion, resulting in 30% more methane in the biogas and 100 times higheryield. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是研究通过亚临界水性水果和厌氧消化技术之间的集成来研究来自ACAI果实处理的残留生物质和废水的储存,从而获得能量产品和从这些残留物中的较高值。进行亚临界水技术进行预处理残留生物质。对于该方法,使用具有5g Acai残基的反应器饲料和每克ACAI残基的80g水的生物质质量比。使用20mL min(-1)(15MPa系统)的水流,在20分钟内以170和200℃进行该方法。然后,使用具有预处理(整合)和对照反应器的反应器在半连续制度和中抚化条件下(35℃),将残留生物质与厌氧消化过程提交至厌氧消化过程。 Acai石头具有高碳水化合物浓度,包括43.81%纤维素和25.89%的半纤维素。对于评估的条件,200摄氏度的亚临界水预处理给予还原糖,总还原糖和单糖浓度的最佳蛋糕。厌氧消化实验导致对照反应器的150和1537mgcaco3.1-1之间的载载物。反应器整合的249和491mgcaco3.1-1之间。乙酸是在两种反应器中产生的主要挥发性脂肪酸,但丁酸在对照反应器中也具有非常高的浓度。在稳定相的整合反应器中的沼气中的甲烷组合物在60至80%之间,而对照反应器在40至60%之间。累积的沼气产量分别为控制和整合反应器分别为7.79和791.81L.kgtvs(-1)。使用亚临界水预处理获得的Acai水解产物的厌氧消化表现出对控制消化的显着优势,导致沼气中的甲烷增加30%,并在100倍的Higheryield中得到30%。 (c)2019 Elsevier Ltd.保留所有权利。

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