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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Surface and colloidal properties of chalks: A novel approach using surfactants to convert normal chalks into dustless chalks
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Surface and colloidal properties of chalks: A novel approach using surfactants to convert normal chalks into dustless chalks

机译:粉笔的表面和胶体性质:一种使用表面活性剂将普通粉笔转换成无尘粉笔的新方法

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摘要

Two classes of chalks, calcium sulfate (gypsum) based normal chalks and calcium carbonate based dustless chalks are used in teaching institutions globally. The cost of dustless chalks is almost 10 times higher than normal chalks. In many developing countries, chalk manufacturing is a home-based industry and supports the families. However, the fine dust produced by normal chalks has been of great concern for the health of teachers and students. In the present study, we have used XRD, water penetration, contact angle, particle size of dust generated, breaking strength of chalks, abrasion, weight/density, and surface morphology by SEM to delineate the differences in the properties and performance of these two classes of chalks. The results showed that the particle size of dustless chalks produced during writing/erasing process is significantly larger than that of normal chalks. The normal chalks are hydrophilic and absorb considerably more water than dustless chalks. This led to an approach to add a dewetting agent (surfactant) to normal chalk slurry to decrease water penetration in chalk. In addition, this improved mechanical strength and abrasion resistance of the normal chalks due to hydrophobic-hydrophobic interactions between particles. We were able to produce approximately similar quality chalks as the dustless chalks by addition of small concentration of surfactant (0.5 wt% AOT) in gypsum slurry. This approach will assist many small-scale manufacturers for making better quality chalks and diminish occupational health hazard to teachers and students. (C) 2015 Elsevier B.V. All rights reserved.
机译:在全球的教学机构中,使用两类粉笔:基于硫酸钙(石膏)的普通粉笔和基于碳酸钙的无尘粉笔。无尘粉笔的价格几乎是普通粉笔的十倍。在许多发展中国家,粉笔制造业是家庭工业,并为家庭提供支持。然而,普通粉笔产生的细小灰尘已引起教师和学生健康的极大关注。在本研究中,我们使用XRD,透水率,接触角,产生的粉尘粒度,白垩的断裂强度,磨耗,重量/密度和表面形态(通过SEM)来描述这两者的性能和性能差异。粉笔类。结果表明,在书写/擦除过程中产生的无尘粉笔的粒径明显大于普通粉笔。普通粉笔是亲水性的,比无尘粉笔吸收更多的水。这导致向普通粉笔浆中添加去湿剂(表面活性剂)以减少粉笔中水的渗透的方法。此外,由于颗粒之间的疏水-疏水相互作用,普通粉笔的机械强度和耐磨性得到了改善。通过在石膏浆料中添加少量浓度的表面活性剂(0.5 wt%AOT),我们能够生产出与无尘粉笔近似质量的粉笔。这种方法将帮助许多小型制造商制造质量更好的粉笔,并减少对教师和学生的职业健康危害。 (C)2015 Elsevier B.V.保留所有权利。

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