Experimental study on ratio optimization and application of improved bonded dust suppressant based on wetting effect.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-05-01 DOI:10.1080/10962247.2023.2189173
Ming Li, Wanjie Yin, Jiao Tang, Linling Qiu, Xudong Fei, Huaizhen Yang, Zhenhong Tang, Fashun Chen, Xingbo Qin, Gang Li
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引用次数: 1

Abstract

Traditional bonded dust suppressants have high viscosity, insufficient fluidity and poor permeability problems, which is adverse to the formation of a continuous and stable solidified layer of dust suppressant solution on the surface of a dust pile. Gemini surfactant has efficient wetting performance and environmental protection performance, it is introduced as a wetting component to improve the flow and penetration performance of bonded dust suppressant solution, polymer absorbent resin (SAP) and sodium carboxymethyl starch (CMS) were selected as the main components of dust suppressant. A proportioning optimization model was constructed based on response surface methodology (RSM), and the concentration of each dust suppression component was selected as the independent variable, water loss rate, moisture retention rate, wind erosion rate and solution viscosity were chosen as the dependent variables in this model. The optimal formulation of the improved bonded dust suppressant was obtained by analyzing the laboratory experiments and field tests data. The results show that the effective time (≥15d) of the newly developed dust suppressant is 45 times longer than that of pure water (≈1/3d), and 1.875 times longer than that of the comparative dust suppressant (8d), the comprehensive cost is 27.36% lower than that of the similar dust suppressant product for mining enterprises.Implications: This paper presents the research idea of optimizing the bonded dust suppressant based on the improvement of wetting performance. And the paper used response surface method to obtain a wetting and bonding composite dust suppressant formulation. The field test shows that the dust suppressant has good dust suppression performance and economic benefits. This study laid the foundation for the development of new and efficient dust suppressants, and had important theoretical and application values for reducing dust environmental hazards and preventing occupational diseases.

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基于润湿效果的改性粘结型抑尘剂配比优化及应用试验研究。
传统粘结型抑尘剂存在粘度高、流动性不足、渗透性差等问题,不利于在尘堆表面形成连续稳定的抑尘溶液固化层。Gemini表面活性剂具有高效的润湿性能和环保性能,作为改善粘结型抑尘溶液流动和渗透性能的润湿组分,选用高分子吸收树脂(SAP)和羧甲基淀粉钠(CMS)作为抑尘剂的主要组分。以各抑尘组分的浓度为自变量,以失水率、保湿率、风蚀率和溶液粘度为因变量,建立了基于响应面法(RSM)的比例优化模型。通过对室内试验和现场试验数据的分析,得出了改进粘结型抑尘剂的最佳配方。结果表明,新研制的降尘剂的有效时间(≥15d)是纯水降尘剂的45倍(≈1/3d),是同类降尘剂(8d)的1.875倍,综合成本比矿山企业同类降尘产品低27.36%。意义:本文提出了在提高润湿性能的基础上对粘结型抑尘剂进行优化的研究思路。并利用响应面法得到了一种湿润粘结复合抑尘剂配方。现场试验表明,该抑尘剂具有良好的抑尘性能和经济效益。本研究为开发新型高效抑尘剂奠定了基础,对减少粉尘环境危害、预防职业病具有重要的理论和应用价值。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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