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Elucidating how two different types of bleaching earths widely used in vegetable oils industry remove carotenes from palm oil: Equilibrium, kinetics and thermodynamic parameters

机译:阐明在植物油工业中广泛应用于植物油行业的两种不同类型的漂白地球,从棕榈油中除去Carotenes:均衡,动力学和热力学参数

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This work compared the mechanisms of adsorption of carotenes from hybrid palm oil onto two kinds of bleaching earths widely used by industrial refiners (acid-activated and neutral). First, it was performed a deep characterization of adsorbent surfaces: acid activated adsorbent showed micropore volumes twice larger than the neutral. FTIR analysis of adsorbent after adsorption demonstrated that active site was Si-O-Si for both adsorbents. However, comparison of peak shapes suggested distinctive interactions between adsorbent/adsorbate for each adsorbent. Latterly, an extensive kinetic and equilibrium study was performed. Kinetic data were in accordance with pseudo-first and pseudo-second-order models. Adjusting to the intra-particle diffusion model evidenced more than one mechanism controlling the adsorption process. Equilibrium data demonstrated adsorption is only favorable at low carotene concentration at liquid phase for acid adsorbent (lower than 1 mg/mL). For neutral adsorbent, it was not clearly observed a favorable region with the studied conditions. The acid adsorbent could adsorb more carotenes per adsorbent weight than neutral. Finally, neutral adsorbent showed higher heterogeneity of interaction between adsorbate and adsorbent than the acid, especially at low adsorbent coverages.
机译:这项工作与杂交棕榈油从杂交棕榈油吸附的机制与工业精炼厂(酸活化和中性)广泛使用的两种漂白地球。首先,它进行了吸附表面的深度表征:酸活性吸附剂显示微孔体积大于中性的两倍。吸附后吸附剂的FTIR分析表明,对于两个吸附剂,活性位点是Si-O-Si。然而,峰形状的比较表明每种吸附剂的吸附剂/吸附物之间的显着相互作用。后者,进行了广泛的动力学和均衡研究。动力学数据符合伪第一和伪二阶模型。调整到颗粒内扩散模型,证明了多于一种控制吸附过程的机制。平衡数据证明吸附仅在酸吸附剂(低于1mg / ml)的液相下的低胡萝卜素浓度。对于中性吸附剂,没有清楚地观察到具有研究条件的有利区域。酸吸附剂可以根据中性为每种吸附重量吸附更多的辅病症。最后,中性吸附剂在比酸之间的吸附剂和吸附剂之间的相互作用相互作用更高,特别是在低吸附剂覆盖范围内。

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