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Natural deep eutectic solvent as a unique solvent for valorisation of orange peel waste by the integrated biorefinery approach

机译:通过综合生物填充方法作为橙皮浪费储存的独特溶剂的天然深度共晶溶剂

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This research investigates the use of seven natural deep eutectic solvents (NADESs) for valorisation of orange peel waste, with the final goal to propose a unique NADES for integrated biorefinery. Initial screening of NADESs revealed the excellent ability of cholinium-based NADES with ethylene glycol as hydrogen bond donor (ChEg50) to serve as a medium for orange peel-catalysed kinetic resolution (hydrolysis) of (R,S)-1-phenylethyl acetate with high enantioselectivity (ee = 83.2%, X = 35%), as well as it's stabilizing effect on the hydrolytic enzymes (hydrolytic enzymes within ChEg50 peel extract were stabile during 20 days at 4 °C). The ChEg50 also showed a satisfactory capacity to extract D-limonene (0.5 mg g_(FW)~(-1)), and excellent capacity to extract polyphenols (45.7 mg g_(FW)~(-1)), and proteins (7.7 mg g_(FW)~(-1) from the peel. Based on the obtained results, the integrated biorefinery of orange peel waste using ChEg50 in a multistep process was performed. Firstly, enantioselective kinetic resolution was performed (step Ⅰ; ee = 83.2%,X = 35%), followed by isolation of the product 1-phenylethanol (step Ⅱ; h = 82.2%) and extraction of polyphenols (step Ⅲ; h = 86.8%) from impoverished medium. Finally, the residual orange peel was analysed for sugar and lignin content, and results revealed the potential of waste peel for the anaerobic co-digestion process. The main bottlenecks and futures perspective of NADES-assisted integrated biorefinery of orange peel waste were outlined through SWOT analysis.
机译:本研究调查了七种天然深凝胶溶剂(NADESS)对橙皮废物的储存,最终目标是为整合生物烹制提出独特的NADE。 Nadess的初始筛查显示了基于乙二醇作为乙二醇作为氢键供体(Cheg50)的优异能力,用作乙酸(R,S)-1-苯基乙酯的橙皮催化动力学分辨率(水解)的介质高对映射性(EE = 83.2%,x = 35%),以及它对水解酶的稳定作用(Cheg50剥离提取物的水解酶在4℃下20天稳定。 Cheg50还表现出令人满意的提取D-柠檬烯(0.5mg G_(FW)〜(-1))的容量,以及优异的提取多酚(45.7mg G_(FW)〜(-1))和蛋白质(7.7从剥离中的mg g_(fw)〜(-1)。基于所得的结果,进行了使用Cheg50在多步骤过程中使用Cheg50的橙皮废物的综合生物烹饪。首先,进行了对映选择性的动力学分辨率(步骤Ⅰ; ee = 83.2 %,x = 35%),然后分离产物1-苯基乙醇(步骤Ⅱ; h = 82.2%),并从贫亚培养基中提取多酚(步骤Ⅲ; h = 86.8%)。最后,残留的橙皮是分析糖和木质素含量,结果显示了厌氧共消化过程的废果皮的潜力。通过SWOT分析概述了NADES辅助综合生物烹调的主要瓶颈和期货观点。

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