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High yield hydrolysis of seaweed-waste biomass using peracetic acid and ionic liquid treatments

机译:使用过乙酸和离子液体治疗海藻废生物质的高产水解

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Seaweed is one of the most promising bioethanol feedstocks. This water plant has high carbohydrate content but low lignin content, as a result it will be easier to be hydrolysed. This paper described hydrolysis of seaweed-waste biomass from the carrageenan (SWBC) industry using enzymatic saccharification or ionic liquids-HCl hydrolysis. In the first work, SWBC pretreated by peracetic acid (PAA) followed by ionic liquid (IL) caused enhance the cellulose conversion of enzymatic saccharification. At 48h saccharification, the value conversion almost reached 100%. In addition, the untreated SWBC also produced the cellulose conversion 77%. In the second work, SWBC or Bagasse with or without pretreated by PAA was hydrolyzed using ILs-HCl hydrolysis. The ILs used were 1-buthyl-3-methylpyridium chloride, [Bmpy][Cl] and 1-butyl-3-metyl imidazolium chloride ([Bmim][Cl]). [Bmpy][Cl]-HCl hydrolysis produced higher cellulose conversion than [Bmim][Cl]-HCl hydrolysis. The phenomenon was clearly observed on the Bagasse, which without pretreated by PAA. Furthermore, SWBC hydrolyzed by both ILs in the presence low concentration of HCl produced cellulose conversion 70-98% at 60-90 min of hydrolysis time. High cellulose conversion of SWBC on the both hydrolysis was caused by SWBC had the low lignin (4%). Moreover, IL treatments caused lowering of cellulose hydrogen bonds or even changed the cellulose characteristics from cellulose I to cellulose II which easily to be hydrolyzed. In the case of [Bmpy][Cl], this IL may reduce the degree polymerization of celluloses.
机译:海藻是最有前途的生物乙醇原料之一。这种水植物具有高碳水化合物含量,但低木质素含量,因此含有较低的木质素含量。本文使用酶糖化或离子液体-HCL水解描述了来自角叉菜胶(SWBC)工业的海藻废物生物量的水解。在第一作物中,通过过乙酸(PAA)预处理的SWBC,其次是离子液体(IL)引起酶糖化纤维素转化。在48h糖化时,价值转换几乎达到100%。此外,未处理的SWBC还产生纤维素转化77%。在第二种工作中,使用ILS-HCl水解水解具有或不预处理的SWBC或BAGASSE进行水解。所用的IL是1-丁基-3-甲基吡啶氯化啶,[BMPY] [Cl] [Cl]和1-丁基-3-聚合物咪唑氯([Bmim] [Cl])。 [BMPY] [Cl] -HCL水解产生的纤维素转化率高于[Bmim] [Cl] -HCL水解。在甘蔗渣上清楚地观察到这种现象,没有PAA预处理。此外,在HCl的存在低浓度的HCl在存在低浓度的HCl中水解的SWBC产生纤维素转化率为60-98%的水解时间。 SWBC在两种水解中的高纤维素转化由SWBC引起低木质素(4%)。此外,IL治疗导致纤维素氢键的降低或甚至将纤维素I的纤维素特性改变为纤维素II,其容易被水解。在[BMPY] [CL]的情况下,该IL可以降低纤维素的程度聚合。

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