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Enhancement of Enzymatic Hydrolysis of Lignocellulosic Materials by Nonionic Surfactant

机译:非离子表面活性剂增强木质纤维素材料的酶促水解

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Palm fruit bunch (PFB) and palm fruit residue (PFR) are considered as potential raw materials for ethanol production due to their large availability from palm oil industry. However, the presence of lignin can retard the rate of enzymatic hydrolysis. Both PFB and PFR were pretreated with a 10% w/v sodium hydroxide solution. The amounts of their hemicellulose were substantially decreased whereas their lignin contents were slightly reduced. After that, they were hydrolyzed using cellulase from Trichoderma reesei (ATCC 26921) at 50 °C and pH 5. An addition of Tween 80, nonionic surfactant, with 0.25% w/v concentration provided an increase in reducing sugar production about 50.5% at 10 FPU/g PFB cellulase loading, while the addition of Tween 80 with 0.5% w/v concentration increased reducing sugar production by 38.8% at 20 FPU/g PFR cellulase loading. The greater the amount of lignin in the lignocellulosic materials, the higher the dosages of enzyme and surfactant required for the enzymatic hydrolysis. The adsorption of added nonionic surfactant onto the hydrophobic surface of lignin resulted in an increase in the availability of added enzyme to both cellulose and hemicellulose, leading to the enhancement of enzymatic hydrolysis. Additionally, the adsorption of cellulase on PFB and PFR were well fitted with the Freundlich isotherm.
机译:棕榈果束(PFB)和棕榈果实残留物(PFR)被认为是由于棕榈油工业的巨大可用性而被认为是乙醇产量的潜在原料。然而,木质素的存在可以延缓酶水解速率。 PFB和PFR两者都用10%w / v氢氧化钠溶液预处理。它们的半纤维素的量显着降低,而它们的木质素含量略微降低。之后,在50℃和pH 5处使用从richodermareesei(ATCC 26921)的纤维素酶来水解它们。添加吐温80,非离子表面活性剂,0.25%w / v浓度,提供了减少约50.5%的糖产量增加约50.5% 10 FPU / g PFB纤维素酶负载,同时添加0.5%w / v浓度的吐温80增加,在20fpu / g pfr纤维素酶负载下将降低糖产生减少38.8%。木质纤维素材料中木质素的量越大,酶水解所需的酶和表面活性剂的剂量越高。添加的非离子表面活性剂在木质素疏水表面上的吸附导致添加酶与纤维素和半纤维素的可用性增加,导致酶水解的增强。另外,纤维素酶对PFB和PFR的吸附很好地配合了Freundlich等温线。

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