首页> 外文期刊>The Journal of Supercritical Fluids >Integrated supercritical fluid extraction and subcritical water hydrolysis for the recovery of bioactive compounds from pressed palm fiber
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Integrated supercritical fluid extraction and subcritical water hydrolysis for the recovery of bioactive compounds from pressed palm fiber

机译:集成的超临界流体萃取和亚临界水水解技术,可从压榨的棕榈纤维中回收生物活性化合物

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摘要

Pressed palm fiber (PPF), a residue obtained from palm oil industry, is a source of bioactive compounds, such as carotenoids, which are used as food additives. It also has cellulose and hemicellulose that can be used to yield fermentable sugars for the production of second generation ethanol. Supercritical fluid extraction (SFE) of pressed palm fiber provides an oil rich in carotenoids while subcritical water hydrolysis (SubWH) produces hydrolysates with high amounts of fermentable sugars. In this work, the effects of pressure (15-30 MPa) and temperature (318 and 328 K) on SFE of carotenoids were investigated. The SFE extract with highest carotenoid content was obtained at 318 K and 15 MPa (2.3% d.b., 0.81 mg β-carotene/g extract). After the extraction, the influence of process temperature (423-633 K), pressure (15 and 25 MPa), solvent:feed ratio (120 and 240), and residence time (1.25-5min) on SubWH of the extraction residue was studied. At the temperature of 523 K, the highest total reducing sugar yield (11-23g glucose/100g carbohydrate) and the highest biomass conversion (40-97%) were obtained for any pressure and solvent:feed ratio. The highest selectivity for saccharide formation was found at 423 K (20-59 mol glucose/mol furfural equivalent). Optimal conditions for high saccharide formation and low sugar degradation product in subcritical hydrolysis were obtained at 523 K, 15 MPa, solvent:feed ratio of 120, residence time of 2.5 min with a total reducing sugar yield of 22.9 g glucose/100 g carbohydrate and a conversion of 84.9%.
机译:压榨棕榈纤维(PPF)是一种从棕榈油工业中获得的残留物,是生物活性化合物的来源,例如类胡萝卜素,可用作食品添加剂。它还具有纤维素和半纤维素,可用于生产第二代乙醇的可发酵糖。压榨棕榈纤维的超临界流体萃取(SFE)提供了富含类胡萝卜素的油,而亚临界水水解(SubWH)则产生了含有大量可发酵糖的水解产物。在这项工作中,研究了压力(15-30 MPa)和温度(318和328 K)对类胡萝卜素SFE的影响。在318 K和15 MPa下获得了最高类胡萝卜素含量的SFE提取物(2.3%d.b.,0.81 mgβ-胡萝卜素/ g提取物)。萃取后,研究了工艺温度(423-633 K),压力(15和25 MPa),溶剂:进料比(120和240)和停留时间(1.25-5min)对萃取残留物SubWH的影响。 。在523 K的温度下,在任何压力和溶剂:进料比下,最高还原糖总产量(11-23 g葡萄糖/ 100 g碳水化合物)和最高生物量转化率(40-97%)。发现糖形成的最高选择性为423 K(20-59 mol葡萄糖/ mol糠醛当量)。亚临界水解中高糖形成和低糖降解产物的最佳条件是在523 K,15 MPa,溶剂:进料比为120,停留时间为2.5分钟,总还原糖产量为22.9 g葡萄糖/ 100 g碳水化合物和转化率为84.9%。

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