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Matrix Discriminant Analysis Evidenced Surface-Lithium as an Important Factor to Increase the Hydrolytic Saccharification of Sugarcane Bagasse

机译:基质判别分析表明表面锂是增加甘蔗蔗渣水解糖化的重要因素

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Statistical evidence pointing to the very soft change in the ionic composition on the surface of the sugar cane bagasse is crucial to improve yields of sugars by hydrolytic saccharification. Removal of Li+ by pretreatments exposing -OH sites was the most important factor related to the increase of saccharification yields using enzyme cocktails. Steam Explosion and Microwave:H2SO4 pretreatments produced unrelated structural changes, but similar ionic distribution patterns. Both increased the saccharification yield 1.74-fold. NaOH produced structural changes related to Steam Explosion, but released surface-bounded Li+ obtaining 2.04-fold more reducing sugars than the control. In turn, the higher amounts in relative concentration and periodic structures of Li+ on the surface observed in the control or after the pretreatment with Ethanol:DMSO:Ammonium Oxalate, blocked -OH and O? available for ionic sputtering. These changes correlated to 1.90-fold decrease in saccharification yields. Li+ was an activator in solution, but its presence and distribution pattern on the substrate was prejudicial to the saccharification. Apparently, it acts as a phase-dependent modulator of enzyme activity. Therefore, no correlations were found between structural changes and the efficiency of the enzymatic cocktail used. However, there were correlations between the Li+ distribution patterns and the enzymatic activities that should to be shown.
机译:指出甘蔗渣表面离子组成非常柔软变化的统计证据对于通过水解糖化提高糖产量至关重要。通过暴露于-OH位点的预处理除去Li +是与使用酶混合物提高糖化产率有关的最重要因素。蒸汽爆炸和微波:H2SO4预处理产生无关的结构变化,但离子分布模式相似。两者都提高了糖化产率1.74倍。 NaOH产生了与蒸汽爆炸有关的结构变化,但释放了表面结合的Li +,其还原糖比对照组多2.04倍。反过来,在对照中或在用乙醇:DMSO:草酸铵,封闭的-OH和O 2预处理后,在表面上观察到较高的Li +相对浓度和周期性结构。可用于离子溅射。这些变化与糖化产量降低1.90倍有关。 Li +是溶液中的活化剂,但是其在基质上的存在和分布方式不利于糖化。显然,它充当酶活性的相位依赖性调节剂。因此,在结构变化和所用酶混合物的效率之间未发现相关性。但是,Li +分布模式与应显示的酶活性之间存在相关性。

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