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通过水热处理和高岭土包覆改性制备γ相颜料红170。

Preparation of γ-phase pigment Red 170 through hydrothermal treatment and kaolin coating modification.

作者信息

Lv Dongjun, Zhang Xiaolei, Zhang Zilong, Zhang Jiahui, Li Yi, Qi Ruobing, Zhang Yuxue, Tang Jing

机构信息

Department of Chemical Engineering, School of Chemistry and Chemical Engineering, De Zhou University Dezhou 253023 China

Shandong Universities Engineering Research Center of Integrated Circuits Functional Materials and Expanded Applications Dezhou 253023 China.

出版信息

RSC Adv. 2023 Oct 2;13(41):28843-28851. doi: 10.1039/d3ra04857h. eCollection 2023 Sep 26.

Abstract

Research on the dynamics of crystal transformation can guide production practices and improve the coloration performance of pigment Red 170. As one of the most important azo dyes, the low hiding power, inferior weather resistance, thermal instability, and low flowability of pigment Red 170 limit its applications. To enhance these properties, it is essential to modify the surface of the pigment. Herein, the crystal transformation and isothermal crystallisation kinetics of colour index (C.I.) pigment Red 170 during a hydrothermal process were studied through X-ray powder diffraction. During isothermal crystallisation, the Avrami indexes () were 2.65 and 3.01, and the kinetic rate constants () were 6.02 × 10 and 8.34 × 10 at 140 and 150 °C, respectively. The apparent activation energies () are 10.42 and 24.31 kcal mol for the incubation period and total transition, respectively. Pigment Red 170 completely transferred from an α-phase to γ-phase upon hydrothermal treatment at 140 and 150 °C for 180 and 90 min, respectively. The effects of heat treatment temperature and time on the colour hue, tinctorial strength, flowability, particle size and distribution, contact angle, thermal stability, and morphology of pigment Red 170 were investigated. In addition, kaolin was used as an inorganic additive to modify γ-phase pigment Red 170. After hydrothermal treatment and kaolin modification, C.I. pigment Red 170 had a small particle size and exhibited a narrow size distribution and improved hydrophilicity. The γ-phase pigments had a tinctorial strength of 189.5%. The flowability and thermal stability of the kaolin-modified pigment were also enhanced. This study promotes the development of pigments with enhanced colour properties, thermal stability, and processability.

摘要

晶体转变动力学研究能够指导生产实践,并提高颜料红170的着色性能。作为最重要的偶氮染料之一,颜料红170的低遮盖力、较差的耐候性、热不稳定性和低流动性限制了其应用。为了改善这些性能,对颜料表面进行改性至关重要。在此,通过X射线粉末衍射研究了水热过程中色指数(C.I.)颜料红170的晶体转变和等温结晶动力学。在等温结晶过程中,140℃和150℃下的阿弗拉米指数()分别为2.65和3.01,动力学速率常数()分别为6.02×10和8.34×10。诱导期和总转变的表观活化能()分别为10.42和24.31 kcal mol。在140℃和150℃分别水热处理180分钟和90分钟后,颜料红170完全从α相转变为γ相。研究了热处理温度和时间对颜料红170的色相、着色强度、流动性、粒度及分布、接触角、热稳定性和形态的影响。此外,使用高岭土作为无机添加剂对γ相颜料红170进行改性。经过水热处理和高岭土改性后,C.I.颜料红170粒径小,粒径分布窄,亲水性提高。γ相颜料的着色强度为189.5%。高岭土改性颜料的流动性和热稳定性也得到了提高。本研究促进了具有增强颜色性能、热稳定性和可加工性的颜料的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99fb/10543990/db00e1690157/d3ra04857h-f1.jpg

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