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Optimization and modeling of two-phase olive-oil washing wastewater integral treatment and phenolic compounds recovery by novel weak-base ion exchange resins

机译:二相橄榄油洗涤废水积分治疗和酚类化合物通过新型弱碱离子交换树脂恢复的优化和建模

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摘要

In light of the Circular Economy concept, recently emerged as a need for sustainable production, olive oil industry should be concerned to transform the whole process into environmentally friendly, which necessarily implies the treatment of the wastewater by-produced in olive mills. In this work, concentration and recovery of high-added value phenolic compounds from two-phase olive-oil washing wastewater (OOWW) and parallel effluent treatment by a 'green process' based on novel weak-base ion exchange (IE) resins was addressed. The key operating input factors of the resin process for the treatment and valorization of OOWW were studied, optimized and further modelled. A Box-Behnken design was implemented and the obtained data were analyzed by ANOVA and interpreted by RSM methodology. The process was ulteriorly modelled by a second-grade quadratic fitting equation comprising the significant operating variables. The optimization of the IE process performance (20.3 degrees C, pH(0) 6.7 and 114 g/L M-resin) ensured up to 92.5% recovery of total phenols concentration. Moreover, the purified stream presented good quality (56.6-83.7 mg L-1 total phenols), following standard recommendations by the FAO. The obtained information would be of key importance for the scale-up of the proposed IE operation. Both the treatment and revalorization of OOWW would help implement a definite sustainable production process of olive-oil.
机译:鉴于循环经济概念,最近出现了对可持续生产的需求,橄榄油工业应致力于将整个过程转化为环保,这必然意味着在橄榄厂中生产废水。在这种作品中,通过基于新型弱碱离子交换(IE)树脂的“绿色过程”,从两相橄榄油洗涤废水(OOWW)和平行流出处理的高附加值酚类化合物的浓度和回收。研究,优化和进一步建模研究了用于治疗和储存的树脂工艺的关键操作输入因子。实施了一个box-behnken设计,通过ANOVA分析了所获得的数据并由RSM方法解释。该过程由包括显着操作变量的二级二次拟合方程来模拟。 IE工艺性能的优化(20.3℃,pH(0)6.7和114g / L m-树脂)可确保总酚浓度的高达92.5%回收。此外,纯化的流呈现出良好的质量(56.6-83.7 mg L-1总酚),按照粮农组织的标准建议。所获得的信息对所提出的IE操作的扩展来说是关键重要性。 OOWW的治疗和令人反转都有助于实施橄榄油的明确可持续生产过程。

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