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UPGRADING FOOD PROCESSING SIDE STREAMS

机译:升级食品加工侧流

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Wheat-derived Distillers' Dried Grains with Solubles (DDGS) and wet solids (in-process sample) were utilised as raw material for the production of biopolymers and oligosaccharides. The protein content of samples was extracted under aqueous ethanol conditions (70%, v/v) at 70 °C, in the presence of 1 % (w/w) sodium metabisulfite as reducing agent. DDGS protein extracts had a protein content of ~45% (w/w) and the wet solid-derived extracts ~58% (w/w). The achieved protein yield for DDGS was 30.1% (w/w) whereas 55.3% (w/w) of the total protein was recovered from wet solids. The lower protein extractability from DDGS could be attributed to the decreased solubility of protein aggregates formed during the intensive thermal treatment of the drum drying stage. Protein extracts from both samples were utilised for the development of biodegradable films, with DDGS protein-derived films exhibiting a darker colour compared to wet solid ones, possibly due to heat-induced Maillard reactions during the DDGS production process. DDGS and wet solids protein films showed higher moisture sensitivity, compared to films produced using commercial gluten. This feature could be advantageous for using the films for agricultural and horticultural applications, e.g. as fertiliser release matrices and soil conditioners. Moreover, the solid residues of DDGS and wet solids after protein extraction had high carbohydrate content (49%, w/w) consisting primarily of water unextractable arabinoxylans. Enzymatic treatment of the residues with a food-grade endo-xylanase led to the production of potentially prebiotic xylo-oligosaccharide (XOS) mixtures with a degree of polymerisation (DP) of up to 7, and a XOS purity (DP>2) of 70.2% in the DDGS hydrolysates and 51.8% in the wet solids hydrolysates.
机译:用可溶物(DDGS)和湿固体(内部样品)的小麦衍生的蒸馏器干燥的晶粒作为原料作为生产生物聚合物和寡糖。在70℃下在70℃下在70℃下在70℃下萃取样品的蛋白质含量,其中1%(w / w)硫酸钠作为还原剂。 DDGS蛋白质提取物的蛋白质含量为〜45%(w / w),湿固体衍生的提取物〜58%(w / w)。达到DDG的蛋白质产率为30.1%(w / w),而从湿固体中回收总蛋白的55.3%(w / w)。 DDGS的较低蛋白质可提取性可归因于在鼓式干燥阶段的强烈热处理期间形成的蛋白质聚集体的溶解度降低。来自两种样品的蛋白质提取物用于在可生物降解的薄膜的发育中发育,DDGS蛋白质衍生的膜与湿固体相比表现出较深的颜色,可能是由于在DDGS生产过程中热诱导的美丽的Maillard反应。与使用商业麸质产生的薄膜相比,DDGS和湿固体蛋白膜显示出更高的湿度敏感性。例如,这种特征对于使用农业和园艺应用的电影是有利的,例如,作为肥料释放基质和土壤调节剂。此外,蛋白质萃取后DDGS和湿固体的固体残基具有高碳水化合物含量(49%,W / W),主要由水不可分割的Arabinoxylans组成。用食品级内托 - 木聚糖酶的残留物的酶处理导致潜在的普生聚酰胺醇寡糖(XOS)混合物的聚合程度(DP)和XOS纯度(DP> 2)的产生在DDGS水解产物中70.2%,湿固体水解产物中的51.8%。

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