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Bio-refinery of orange peels waste: A new concept based on integrated green and solvent free extraction processes using ultrasound and microwave techniques to obtain essential oil, polyphenols and pectin

机译:橙皮废弃物的生物精炼:基于使用超声波和微波技术的综合绿色和无溶剂萃取工艺获得精油,多酚和果胶的新概念

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摘要

In this study, extraction of essential oil, polyphenols and pectin from orange peel has been optimized using microwave and ultrasound technology without adding any solvent but only ‘‘in situ’’ water which was recycled and used as solvent. The essential oil extraction performed by Microwave Hydrodiffusion and Gravity (MHG) was optimized and compared to steam distillation extraction (SD). No significant changes in yield were noticed: 4.22 ± 0.03% and 4.16 ± 0.05% for MHG and SD, respectively. After extraction of essential oil, residual water of plant obtained after MHG extraction was used as solvent for polyphenols and pectin extraction from MHG residues. Polyphenols extraction was performed by ultrasoundassisted extraction (UAE) and conventional extraction (CE). Response surface methodology (RSM) using central composite designs (CCD) approach was launched to investigate the influence of process variables on the ultrasound-assisted extraction (UAE). The statistical analysis revealed that the optimized conditions of ultrasound power and temperature were 0.956 W/cm2 and 59.83°C giving a polyphenol yield of 50.02 mg GA/100 g dm. Compared with the conventional extraction (CE), the UAE gave an increase of 30% in TPC yield. Pectin was extracted by conventional and microwave assisted extraction. This technique gives a maximal yield of 24.2% for microwave power of 500Win only 3 min whereas conventional extraction gives 18.32% in 120 min. Combination of microwave, ultrasound and the recycled ‘‘in situ’’ water of citrus peels allow us to obtain high added values compounds in shorter time and managed to make a closed loop using only natural resources provided by the plant which makes the whole process intensified in term of time and energy saving, cleanliness and reduced waste water.
机译:在该研究中,使用微波和超声波技术优化了精油,聚酚和果胶的精油,多酚和果胶,而无需添加任何溶剂,而是仅在再循环并用作溶剂的水中。通过微波氢化物和重力(MHG)进行的精油提取并与蒸汽蒸馏萃取(SD)进行了优化。对于MHG和SD,毫无明显的产率变化:4.22±0.03%和4.16±0.05%。在提取精油后,使用MHG萃取后获得的植物的残留水作为多酚和果胶萃取的溶剂与MHG残基。通过超声波萃取(UAE)和常规提取(CE)进行多酚提取。使用中央复合设计(CCD)方法的响应面方法(RSM)被启动以研究过程变量对超声辅助提取(UAE)的影响。统计分析显示,超声功率和温度的优化条件为0.956W / cm 2和59.83℃,给出50.02mg Ga / 100g Dm的多酚产率。与常规提取(CE)相比,亚麻酸植物的增长率升高30%。通过常规和微波辅助提取提取果胶。该技术的最大产率为24.2%,微波功率仅为300英寸,而常规提取在120分钟内给出18.32%。微波,超声波和再循环的“原位”柑橘皮的组合允许我们在较短的时间内获得高附加值化合物,并仅使用工厂提供的自然资源进行闭合环,这使得整个过程加剧了整个过程在时间和节能,清洁和减少废水中。

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