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室温下由聚合物凝胶形成的分散颗粒凝胶的制备与机理研究。

Investigation of preparation and mechanisms of a dispersed particle gel formed from a polymer gel at room temperature.

机构信息

State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Qingdao, Shandong, P. R. China.

出版信息

PLoS One. 2013 Dec 6;8(12):e82651. doi: 10.1371/journal.pone.0082651. eCollection 2013.

Abstract

A dispersed particle gel (DPG) was successfully prepared from a polymer gel at room temperature. The polymer gel system, morphology, viscosity changes, size distribution, and zeta potential of DPG particles were investigated. The results showed that zirconium gel systems with different strengths can be cross-linked within 2.5 h at low temperature. Scanning electron microscopy (SEM), transmission electron microscopy (TEM), and atomic force microscopy (AFM) results showed that the particles were polygonal particles with nano-size distribution. According to the viscosity changes, the whole preparation process can be divided into two major stages: the bulk gel cross-linking reaction period and the DPG particle preparation period. A polymer gel with a 3-dimensional network was formed in the bulk gel cross-linking reaction period whereas shearing force and frictional force were the main driving forces for the preparation of DPG particles, and thus affected the morphology of DPG particles. High shearing force and frictional force reduced the particle size distribution, and then decreased the zeta potential (absolute value). The whole preparation process could be completed within 3 h at room temperature. It could be an efficient and energy-saving technology for preparation of DPG particles.

摘要

一种分散颗粒凝胶(DPG)在室温下成功地从聚合物凝胶中制备得到。研究了聚合物凝胶体系、形态、粘度变化、DPG 颗粒的粒径分布和zeta 电位。结果表明,不同强度的锆凝胶体系可以在低温下 2.5 小时内交联。扫描电子显微镜(SEM)、透射电子显微镜(TEM)和原子力显微镜(AFM)结果表明,颗粒为具有纳米级分布的多边形颗粒。根据粘度变化,整个制备过程可分为两个主要阶段:大块凝胶交联反应期和 DPG 颗粒制备期。在大块凝胶交联反应期形成具有三维网络的聚合物凝胶,而剪切力和摩擦力是制备 DPG 颗粒的主要驱动力,从而影响 DPG 颗粒的形态。高剪切力和摩擦力会减小颗粒的粒径分布,从而降低 zeta 电位(绝对值)。整个制备过程可以在室温下 3 小时内完成。这是一种高效节能的 DPG 颗粒制备技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb9b/3855795/01c78fedf44e/pone.0082651.g001.jpg

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