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首页> 外文期刊>Separation and Purification Technology >On the effect of the operating parameters for two-phase olive-oil washing wastewater combined phenolic compounds recovery and reclamation by novel ion exchange resins
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On the effect of the operating parameters for two-phase olive-oil washing wastewater combined phenolic compounds recovery and reclamation by novel ion exchange resins

机译:关于两相橄榄油洗涤废水的操作参数的影响,新型离子交换树脂复合酚类化合物的回收和填海

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摘要

Olive oil is produced by a technological procedure based on physical operations, without use of chemicals. This industry is concerned to make the whole process environmentally friendly, which includes the treatment of the wastewater produced in the mills. In the present work, the isolation, purification and recovery of high-added value phenolic compounds from two-phase olive-oil washing wastewater (OOWW) and the simultaneous effluent treatment by a 'green process' based on resins adsorption/ion exchange (strong-base anionic Amberlyst A26 (R), weak-base anionic. Dowex 66 (R) and non-ionic macroreticular Amberlite XAD4 (R)) was studied. Results showed the resins performances were optimal at the raw effluent pH and ambient temperature conditions, thus no acidification or basification, nor cooling or heating, would be necessary: the effluent could be directly driven from the exit of the vertical centrifuges at the outlet temperature and raw pH to the proposed resins process, boosting the economic feasibility. The strong anionic resin ensured optimum results: upon 150 min maximum contact time and 60-80 g resin/L, a final treated effluent containing only 8.7 mg/L total phenolic compounds was obtained. The effluent could be partially discharged on suitable terrains or disposed to biological treatments, avoiding phytotoxicity or inhibition due to the phenolic content. The obtention of this concentrated pool of added-value antioxidant compounds for food, cosmetics, pharmaceutical and biotechnological industrial sectors could help counter-balance the economic feasibility of the reclamation process.
机译:橄榄油是通过基于物理操作的技术程序生产的,而无需使用化学品。该行业致力于使整个过程环境友好,包括处理厂中生产的废水。在本作的工作中,基于树脂吸附/离子交换的“绿色工艺”(强-Base阴离子Amberlyst A26(R),弱碱阴离子。研究了Dowex 66(R)和非离子大糠酰胺Xad4(R))。结果表明,在原始流出物pH和环境温度条件下,树脂性能在最佳状态下,因此不会酸化或碱化,也不是冷却或加热,是必需的:流出物可以直接从出口温度的垂直离心机的出口直接驱动。原始pH值到拟议的树脂过程,提高了经济可行性。强的阴离子树脂确保了最佳结果:在150分钟的最大接触时间和60-80g树脂/ L中,获得仅含有8.7mg / L总酚类化合物的最终处理过的流出物。流出物可以在合适的地形上部分地排出或者被设置为生物处理,避免由于酚含量引起的植物毒性或抑制。对食品,化妆品,制药和生物技术工业部门的这种浓缩的添加价值抗氧化剂化合物的基因可以帮助平衡填海过程的经济可行性。

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