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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >An experimental investigation on the effect of carboxymethyl cellulose on morphological characteristics of dust-suppression foam and its mechanism exploration
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An experimental investigation on the effect of carboxymethyl cellulose on morphological characteristics of dust-suppression foam and its mechanism exploration

机译:羧甲基纤维素对粉尘泡沫泡沫形态特征及其机制勘探作用的实验研究

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Foam dust suppression is an efficient method to control dust hazards, in which the foam morphology is closely related to its dust-suppression performance. As a commonly used foaming agent auxiliary, water-soluble polymer (e.g. carboxymethyl cellulose) is believed to be able to change foam morphology. To explore the effect of carboxymethyl cellulose (CMC) on the foam morphological characteristics, CMC was added in alpha-olefin sulfonate (AOS) solution at different concentrations and tested for the influence on bubble size, distribution and uniformity of AOS foams. The results showed that both during the foam formation and decay, the average bubble size decreased, and the foam uniformity simultaneously increased with an increase of AOS concentration, and furthermore, the size and uniformity gradually stabilized when the AOS concentration was higher than 0.1 %. After CMC addition, there is an optimal turning point (0.1 % AOS) where the effect of 800 mg/L CMC addition on foam morphology is most pronounced, the average radius of bubbles could reach a minimum of 0.13 mm, and the uniformity reaches the highest. Adding CMC of 800 mg/L in 0.1 % AOS solution is an effective way to optimize the morphology of dust-suppression foam. This study provides important reference for using water-soluble polymer to improve the performance of dust-suppression foam in engineering. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:泡沫粉尘抑制是一种控制粉尘危害的有效方法,其中泡沫形态与其灰尘抑制性能密切相关。作为常用的发泡剂助剂,被认为能够改变泡沫形态的水溶性聚合物(例如羧甲基纤维素)。为了探讨羧甲基纤维素(CMC)对泡沫形态特性的影响,在不同浓度下以α-烯烃磺酸盐(AOS)溶液中的CMC加入,并对AOS泡沫的泡沫尺寸,分布和均匀性进行测试。结果表明,在泡沫形成和衰减期间,平均气泡尺寸降低,并且随着AOS浓度的增加,泡沫均匀性同时增加,并且当AOS浓度高于0.1%时,尺寸和均匀性逐渐稳定。加入CMC后,有一个最佳的转折点(0.1%AOS),其中800mg / L CMC的效果添加到泡沫形态上最明显,气泡的平均半径可能达到最小0.13mm,并且均匀性达到最高。在0.1%AOS溶液中添加800mg / L的CMC是优化防尘泡沫的形态的有效方法。该研究为使用水溶性聚合物提供了重要的参考,以改善工程中的粉尘抑制泡沫的性能。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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