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Concept for Recycling Waste Biomass from the Sugar Industry for Chemical and Biotechnological Purposes

机译:从制糖业中回收废生物质用于化学和生物技术目的的概念

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摘要

The objective of this study was to develop a method for the thermally-assisted acidic hydrolysis of waste biomass from the sugar industry (sugar beet pulp and leaves) for chemical and biotechnological purposes. The distillates, containing furfural, can be catalytically reduced directly into furfurayl alcohol or tetrahydrofurfuryl alcohol. The sugars present in the hydrolysates can be converted by lactic bacteria into lactic acid, which, by catalytic reduction, leads to propylene glycol. The sugars may also be utilized by microorganisms in the process of cell proliferation, and the biomass obtained used as a protein supplement in animal feed. Our study also considered the effects of the mode and length of preservation (fresh, ensilage, and drying) on the yields of furfural and monosaccharides. The yield of furfural in the distillates was measured using gas chromatography with flame ionization detector (GC-FID). The content of monosaccharides in the hydrolysates was measured spectrophotometrically using enzymatic kits. Biomass preserved under all tested conditions produced high yields of furfural, comparable to those for fresh material. Long-term storage of ensiled waste biomass did not result in loss of furfural productivity. However, there were significant reductions in the amounts of monosaccharides in the hydrolysates.
机译:这项研究的目的是开发一种用于化学和生物技术目的的热辅助酸水解糖业废糖(甜菜浆和叶)的方法。含有糠醛的馏出物可以直接催化还原为糠醛醇或四氢糠醇。存在于水解产物中的糖可以被乳酸菌转化为乳酸,通过催化还原可以生成丙二醇。糖也可以在细胞增殖过程中被微生物利用,获得的生物质可以用作动物饲料中的蛋白质补充剂。我们的研究还考虑了保存方式和保存时间(新鲜,青贮和干燥)对糠醛和单糖产量的影响。使用带有火焰离子化检测器(GC-FID)的气相色谱法测量馏出物中的糠醛收率。使用酶试剂盒分光光度法测量水解产物中单糖的含量。在所有测试条件下保存的生物质产生的糠醛产量高,可与新鲜原料相比。青贮废料生物量的长期储存不会导致糠醛生产率的损失。但是,水解产物中单糖的量明显减少。

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