首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Process for calcium xylonate production as a concrete admixture derived from in-situ fermentation of wheat straw pre-hydrolysate
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Process for calcium xylonate production as a concrete admixture derived from in-situ fermentation of wheat straw pre-hydrolysate

机译:亚硝酸钙的方法作为源自麦秸预水解产物的原位发酵的混凝土酶促

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摘要

One of the major obstacles in process of lignocellulosic biorefinery is the utilization of pre-hydrolysate from pretreatment. Although lignocellulosic pre-hydrolysate can serve as an economic starting material for xylonic acid production, the advancement of xylonic acid or xylonate is still limited by further commercial value or applications. In the present study, xylose in the high concentration wheat straw pre-hydrolysate was first in-situ biooxidized to xylonate by Gluconobacter oxydans. To meet the needs of commercialization, crude powdered calcium xylonate was prepared by drying process and calcium xylonate content in the prepared crude product was more than 70%. Then, the calcium xylonate product was evaluated as concrete admixture without any complex purification steps and the results demonstrated that xylonate could improve the performance of concrete. Overall, the crude xylonate product directly produced from low-cost wheat straw pre-hydrolysate can potentially be developed as retarding reducer, which could subsequently benefit lignocellulosic biorefinery.
机译:木质纤维素生物骨质过程中的主要障碍之一是利用预处理的预水解物。尽管木质纤维素预水解产物可以用作二甲酸产生的经济原料,但是二甲酸或亚朗酸盐的进步仍然受到进一步的商业价值或应用的限制。在本研究中,在高浓度小麦秸秆中预水解产物中的木糖首先是通过葡糖糖苷的葡萄糖杆菌对亚麻酸二氧化的原位。为了满足商业化的需求,通过干燥方法制备粗粉钙钴,制备的粗产物中的钙酸钙含量大于70%。然后,在没有任何复杂的纯化步骤的情况下评价氧化钙产物作为混凝土混合物,结果表明亚朗酸可以提高混凝土的性能。总体而言,直接由低成本小麦秸秆预防水解产物生产的粗亚丹酸酯产品可能是延迟减速器的延迟减速器,这可能会使木质纤维素生物灌注物受益。

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