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用于提高热稳定性和减轻涂料污染物的工业级磁铁矿颗粒的表面处理

Surface Treatment of Industrial-Grade Magnetite Particles for Enhanced Thermal Stability and Mitigating Paint Contaminants.

作者信息

Sinhababu Mohua, Roy Anurag, Kumar Narendra, Dutta Monojit, Sundaram Senthilarasu, Karazhanov Smagul, Udayabhanu Gopalkrishnan

机构信息

Department of Chemistry, Indian Institute of Technology (Indian School of Mines), Dhanbad 826004, India.

Research & Development, Tata Pigments Limited, Boulevard, Sakchi, Jamshedpur 831002, India.

出版信息

Nanomaterials (Basel). 2021 Sep 4;11(9):2299. doi: 10.3390/nano11092299.

Abstract

Pigments can retain their color for many centuries and can withstand the effects of light and weather. The paint industry suffers from issues like aggressive moisture, corrosion, and further environmental contamination of the pigment materials. Low-cost, long-lasting, and large-scale pigments are highly desirable to protect against the challenges of contamination that exist in the paint industry. This exploratory study reinforces the color and thermal stability of industrial-grade (IG) magnetite (FeO). IG FeO pigments were further considered for surface treatment with sodium hexametaphosphate (SHMP). This metaphosphate hexamer sequestrant provides good dispersion ability and a high surface energy giving thermal and dust protection to the pigment. Various physicochemical characterizations were employed to understand the effectiveness of this treatment across various temperatures (180-300 °C). The X-ray diffraction, Raman, and X-ray photoelectron spectroscopy techniques signify that the SHMP-treated FeO acquired magnetite phase stability up to 300 °C. In addition, the delta-E color difference method was also adopted to measure the effective pigment properties, where the delta-E value significantly decreased from 8.77 to 0.84 once treated with SHMP at 300 °C. The distinct color retention at 300 °C and the improved dispersion properties of surface-treated FeO positions this pigment as a robust candidate for high-temperature paint and coating applications. This study further encompasses an effort to design low-cost, large-scale, and thermally stable pigments that can protect against UV-rays, dust, corrosion, and other color contaminants that are endured by building paints.

摘要

颜料可以保持其颜色长达数百年,并能抵御光线和天气的影响。涂料行业面临着诸如侵蚀性湿气、腐蚀以及颜料材料进一步的环境污染等问题。低成本、持久且大规模的颜料对于应对涂料行业中存在的污染挑战非常必要。这项探索性研究增强了工业级(IG)磁铁矿(FeO)的颜色和热稳定性。IG FeO颜料进一步考虑用六偏磷酸钠(SHMP)进行表面处理。这种偏磷酸六聚体螯合剂具有良好的分散能力和高表面能,能为颜料提供热保护和防尘保护。采用了各种物理化学表征方法来了解这种处理在不同温度(180 - 300°C)下的有效性。X射线衍射、拉曼光谱和X射线光电子能谱技术表明,经SHMP处理的FeO在高达300°C时获得了磁铁矿相稳定性。此外,还采用了Δ-E色差法来测量有效的颜料性能,在300°C下用SHMP处理后,Δ-E值从8.77显著降至0.84。在300°C时明显的颜色保留以及表面处理后的FeO改善的分散性能,使这种颜料成为高温涂料和涂层应用的有力候选材料。这项研究还进一步致力于设计低成本、大规模且热稳定的颜料,以抵御紫外线、灰尘、腐蚀以及建筑涂料所面临的其他颜色污染物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92ed/8466128/188f97d2ca02/nanomaterials-11-02299-g001.jpg

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