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Total fractionation of green tea residue by microwave-assisted alkaline pretreatment and enzymatic hydrolysis

机译:通过微波辅助碱预处理和酶水解的绿茶残留物的总分馏

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Total refinery of constituents of green tea residue was achieved by combination of microwave-assisted alkaline pretreatment and enzymatic hydrolysis. Alkaline pretreatment was effective at separating pectic polysaccharides, protein, phenolic compounds and aliphatic compounds (probably originating from cuticular components), and the solubilization rate was attained 64-74% by heating at 120-200 °C. The higher heating value (HHV) of alkali-soluble fraction attained 20.1. MJ/kg, indicating its usability as black-liquor-like biofuel. Successive cellulolytic enzymatic hydrolysis mainly converted cellulose into glucose and attained the maximum solubilization rate of 89%. Final residue was predominantly composed of aliphatic cuticular components with high proportion in 9,10,18-trihydroxyoctadecanoic acid (30.1-48.6%). These cuticular components are potential alternative feedstock for aliphatic compounds commonly found in oil plants.
机译:通过微波辅助碱预处理和酶水解组合实现了绿茶残留物成分的总炼油厂。 碱性预处理在分离果糖,蛋白质,酚类化合物和脂族化合物(可能是来自切割组分的脂族化合物的有效性,通过在120-200℃下加热达到64-74%的溶解速率。 碱溶性馏分的较高的加热值(HHV)达到20.1。 MJ / kg,表明其可用性作为黑色酒样的生物燃料。 连续的纤维素酶水解主要将纤维素转化为葡萄糖,并获得了89%的最大溶解速率。 最终残留物主要由脂族切入癸酸(30.1-48.6%)中具有高比例的脂族切口组分。 这些切口组分是常见于油植物中常见的脂族化合物的潜在替代原料。

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