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Changes in biomass composition, enzymatic hydrolysis and calculated ethanol yields with genotypic variation of corn

机译:玉米基因型变化导致生物量组成,酶水解和乙醇产量的变化

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Four corn genotypes (UM.NF-3, UM.NF-5, UM.NF-9 and UM.NF-12) developed from the cross of field and sweet corns at university of Malaya; Malaysia was studied for their biochemical composition, calculated ethanol yield (CEY) and enzymatic hydrolysis yield. Biochemical components of grains varied significantly (p<;0.05) with genotypic variation. Starch showed negative correlation with sugar (r = -0.793, p = 0.000) and protein (r = -0.558, p = 0.025). The maximum calculated ethanol yield (CEY) was found to be 4380.95 L ha1 in UM.NF-5 which coincided with having the highest grain yield (9.58 t ha-1) and starch content (73.33%). Two-step enzymatic hydrolysis yielded different reducing and total sugar concentration in the hydrolyzates that significantly (p<;0.05) varied with genotype, particle sizes and solid-water ratio. Maximum reducing sugar was found in UM.NF-5 (179.83 g/L), while UM.NF-3 yielded the highest total sugar content (189.94 g/L) as a result of having the highest amount of grain sugar. The study has shown that higher sugar containing corn genotypes has the potential to be used for bioethanol production as it produces higher fermentable sugar yields after hydrolysis.
机译:马来亚大学从田间杂交玉米和甜玉米中获得了四种玉米基因型(UM.NF-3,UM.NF-5,UM.NF-9和UM.NF-12);研究了马来西亚的生化成分,计算的乙醇收率(CEY)和酶促水解收率。谷物的生化成分随基因型的变化而显着变化(p <; 0.05)。淀粉与糖(r = -0.793,p = 0.000)和蛋白质(r = -0.558,p = 0.025)呈负相关。在UM.NF-5中发现最大的计算乙醇产量(CEY)为4380.95 L ha1,这与最高的谷物产量(9.58 t ha-1)和淀粉含量(73.33%)相吻合。两步酶解在水解物中产生不同的还原糖和总糖浓度,其显着(p <; 0.05)随基因型,粒径和固水比而变化。在UM.NF-5中发现最大的还原糖(179.83 g / L),而UM.NF-3的最高总糖含量(189.94 g / L)是谷物糖含量最高的结果。研究表明,含糖较高的玉米基因型具有潜在的生物乙醇生产潜力,因为它在水解后可产生较高的可发酵糖产量。

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