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Effect of harvest maturity on carbohydrates for ethanol production from sugar enhanced temperate x tropical maize hybrid

机译:采收期对糖分温带x热带玉米杂交种生产乙醇的碳水化合物的影响

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摘要

A northern adapted sugar maize (Zea mays L.) hybrid was bred by crossing temperate x tropical maize for bioethanol production. Temperate x tropical maize (TTM) has a prolonged vegetative growth and accumulates more sugar in the stalk compared to its respective tropical and temperature parents (White et al., 2012). In this study, the sugar concentration in the stalk was further increased by preventing pollination by shoot bagging (covering) ears. It was observed that starch content was eliminated and sugar content increased to 30.1% (w/w) in the stalks. The whole plant biomass (grain, sugars and stover) was evaluated for ethanol production. Ethanol produced from sugars and starch was comparable from milk (R3) to dent (R5) reproductive growth stages between pollinated and non-pollinated TTM, indicating that soluble sugar contents increased correspondingly with decreased starch contents. Temperate x tropical maize samples from both pollinated and non-pollinated treatments had high extractives. Glucan and xylan percentages were increased in non-pollinated extractive free samples. Ethanol produced from cellulosic material was similar for both treatments. The total ethanol yield (from starch, sugar and stover) was comparable from milk (R3) to dent (R5) stages and ranged from 0.20 to 0.22 g/g biomass. The pollinated TTM produced higher biomass in the field and resulted in 624.7 gal of ethanol per acre of land. Future research in TTM could be focused on increasing biomass yield of non-pollinated TTM
机译:通过杂交温带x热带玉米来生产生物乙醇,从而培育出一种北方适应性糖玉米(Zea mays L.)杂种。与各自的热带和温度亲本相比,温带x热带玉米(TTM)的营养生长时间更长,并且茎中积累了更多的糖(White等,2012)。在这项研究中,通过防止套袋(覆盖)耳朵授粉来进一步提高茎中的糖浓度。观察到茎中的淀粉含量被消除并且糖含量增加到30.1%(w / w)。评价了整个植物的生物量(谷物,糖和秸秆)的乙醇产量。由糖和淀粉生产的乙醇在授粉和非授粉的TTM之间的牛奶(R3)和凹痕(R5)生殖生长阶段相当,表明可溶性糖含量随淀粉含量的降低而相应增加。来自传粉和未传粉处理的温带x热带玉米样品均具有较高的提取物。葡聚糖和木聚糖的百分比在非授粉的提取自由样品中增加。两种处理方法由纤维素材料产生的乙醇均相似。牛奶(R3)和凹痕(R5)阶段的总乙醇产量(来自淀粉,糖和秸秆)相当,范围为0.20至0.22 g / g生物量。授粉的TTM在田间产生更高的生物量,每英亩土地产生624.7加仑乙醇。 TTM的未来研究可能集中在提高非授粉TTM的生物量产量上

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