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探索膨润土的构效关系以强化再生植物油的精炼

Exploring the Structure-Activity Relationship of Bentonites for Enhanced Refinement of Recycled Vegetable Oil.

作者信息

Mannu Alberto, Castia Simona, Petretto Giacomo Luigi, Garroni Sebastiano, Castiglione Franca, Mele Andrea

机构信息

Department of Chemistry, Materials and Chemical Engineering "G. Natta", Politecnico di Milano, Piazza L. da Vinci 32, 20133 Milano, Italy.

Department of Chemical, Physics, Mathematics and Natural Science, INSTM, University of Sassari, Via Vienna 2, 07100 Sassari, Italy.

出版信息

Materials (Basel). 2025 Feb 27;18(5):1059. doi: 10.3390/ma18051059.

Abstract

The use of bentonite for recycling vegetable oils presents challenges, as even minor variations in the clay composition and structure can lead to significant differences in its ability to retain various chemical groups. This study investigates the structure-activity relationship of four bentonites-two hydrophilic and two hydrophobic (both in commercial and ground forms)-to better understand these effects. Solid-state NMR spectroscopy revealed subtle differences between hydrophobic and hydrophilic materials, as well as distinctions between ground and unground hydrophilic clays, through Si and Al experiments. These structural variations directly influenced the bentonites' capacity to retain specific chemical groups, which in turn affected the pour point and volatile profile of the processed oils. A simplex lattice design of experiments, combined with multivariate analysis, facilitated the development of a predictive model to optimize process efficiency. Remarkably, this model achieved an improvement in pour point of up to 14.5 °C (from -2 °C to -16.5 °C) for oils treated with hydrophilic unground bentonite. This research underscores the critical role of bentonite morphology in enhancing the efficiency of vegetable oil recycling.

摘要

使用膨润土回收植物油存在挑战,因为即使粘土的组成和结构有微小变化,也可能导致其保留各种化学基团的能力出现显著差异。本研究调查了四种膨润土(两种亲水性和两种疏水性,均有商业形式和研磨形式)的结构-活性关系,以更好地理解这些影响。固态核磁共振光谱通过硅和铝实验揭示了疏水性和亲水性材料之间的细微差异,以及研磨和亲水性未研磨粘土之间的区别。这些结构变化直接影响了膨润土保留特定化学基团的能力,进而影响了加工油的倾点和挥发性特征。实验的单纯形格子设计与多变量分析相结合,有助于开发预测模型以优化工艺效率。值得注意的是,该模型使亲水性未研磨膨润土处理的油的倾点提高了14.5°C(从-2°C提高到-16.5°C)。这项研究强调了膨润土形态在提高植物油回收效率方面的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54e2/11901139/7a26f7b059d7/materials-18-01059-g001.jpg

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