钙基浆料润湿颗粒及润湿剂对浆料粘度的影响研究

Xiaowen Hao, Zhijun Zhang, Ran Liu
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引用次数: 1

摘要

化学团聚可以降低飞灰颗粒和湿法烟气脱硫系统排放的颗粒物(包括PM2.5)浓度。然而,与水相比,钙基浆料会影响团聚的调节,特别是颗粒的润湿性和钙基浆料的粘度。润湿性和粘度是影响团聚的重要因素,反之亦然。本文研究了钙基浆料的两个影响因素。接触角的测量采用固滴法。将4种钙基浆料(CaCO3、CaSO3、CaSO4、Ca(OH)2)分别掺入5种润湿剂湿粒,并对其润湿调控进行了研究。用粘度计测定了加入润湿剂后钙基浆料的粘度,并分析了浆料粘度的变化规律。结果表明:粒径越小越难润湿,润湿剂能显著提高钙基材料的润湿性,但润湿效果与钙基材料和润湿剂的性质有关。不同的钙基浆料在加入润湿剂后粘度变化。综上所述,化合物3在改善颗粒润湿性和保持高粘度钙基浆料方面具有最佳品质。因此,化合物3在促进化学团聚方面是最佳的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Particles Wetted by the Calcium-Based Slurries and the SlurriesViscosity with the Wetting Agents
Chemical agglomeration can reduce the particulates (including PM2.5) concentration emitted from fly ash par- ticulates and the wet flue gas desulfurization (WFGD) system. However, the calcium-based slurries affect the regulation of agglomeration compare to water, in particular, the wettability of the particulates and the viscosity of the calcium-based slurry. The wettability and the viscosity are of the important factors affecting agglomeration, conversely. This manuscript studied the two factors in the calcium-based slurries. The sessile drop method was used to measure the contact angle. Four kinds of calcium-based slurries (CaCO3, CaSO3, CaSO4, Ca(OH)2) respectively mixed with five kinds of wetting agents wet particles, and the wetting regulation was studied. The viscometer was used to measure the viscosity of the calcium- based slurry with the wetting agents, and the variation of the viscosity was analysed as well. The results showed that the smaller the particle size was, the more difficult to be wet, and the wetting agents could enhance the wettability greatly, but the effect was related to the properties of the calcium-based material and the wetting agents. There were variable viscosi- ties for different calcium-based slurries after adding the wetting agents. Overall, the Compound No. 3 had the optimal qualities in improving particle wettability and maintaining the calcium-based slurry with a high viscosity. Thereby the Compound No. 3 is optimal in facilitating chemical agglomeration.
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