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Subcritical water as hydrolytic medium to recover and fractionate the protein fraction and phenolic compounds from craft brewer's spent grain

机译:亚临界水作为水解培养基,从工艺啤酒花籽粒中回收和分馏蛋白质级分和酚类化合物

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摘要

The valorization of the brewer's spent grain (BSG) generated in a craft beer industry was studied by subcritical water hydrolysis in a semi-continuous fixed-bed reactor. Temperature was varied from 125 to 185 degrees C at a constant flow rate of 4 mL/min. Biomass hydrolysis yielded a maximum of 78% of solubilized protein at 185 degrees C. Free amino acids presented a maximum level at 160 degrees C with a value of 55 mg free amino acids/gprotein-BSG. Polar amino acid presented a maximum at lower temperatures than non-polar amino acids. The maximum in total phenolic compounds was reached at 185 degrees C. This maximu m is the same for aldehyde phenolic compounds such as vanillin, syringic and protocatechuic aldehyde; however, for hydroxycinnamic acids, such as ferulic acid and p-coumaric, the maximum was obtained at 160 degrees C. This allows a fractionation of the bioactive compounds. Subcritical water addresses opportunities for smal l breweries to be incorporated within the biorefinery concept.
机译:通过半连续固定床反应器中的亚临界水水解研究了在工艺啤酒行业中产生的啤酒厂的花谷物(BSG)的算命。以4ml / min的恒定流速,温度从125-185℃变化。生物质水解在185℃下产生最多78%的溶解蛋白。游离氨基酸在160℃下呈现最大水平,其值为55mg游离氨基酸/ Gprotein-BSG。极性氨基酸在比非极性氨基酸的较低温度下呈现最大值。在185℃下达到总酚类化合物的最大值。该Maximu M对于醛酚酚类化合物如香草醛,注射器和Protocatechuic醛相同;然而,对于羟基氨基酸,例如阿魏酸和P-作用,在160℃下获得最大值。这允许生物活性化合物的分馏。亚临界水满足了Smal L Breweries的机会,以纳入生物遗料概念。

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