Evaluation of demulsifiers efficiency for coal tar dehydration according to the value of its viscosity reduction

L. Bannikov, D. Miroshnichenko, O. Borisenko, A. Bannikov
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Abstract

For the first time, the relationship between the efficiency of dehydration and the value of reducing the viscosity of the coal tar by adding demulsifier has been studied for “water in tar” emulsions. The dewatering of coal tar emulsions was investigated using 12 demulsifiers with different relative water solubility indices (RSN = 8.2–14.5) for tars of different pyrolysis grades. The effect of a series of demulsifiers on the viscosity of the dispersion medium of “water-in-tar” emulsions was studied. A low-pyrolysis tar was taken as a model of dispersion medium of emulsions with 1.2 % moisture content and 1.0 % of quinoline insoluble substances. A bottle test was used for a comparative evaluation of the demulsifying activity. The rheological characteristics of the studied tars were determined with a rotational controlled-shear rate rheometer Brookfield DV2T in a temperature range between 30 and 65 °C. When demulsifiers were added to the tar and the mixture was aged for 24 h, a decrease in viscosity was observed. When measured without withstanding, the viscosity of the mixture decreases in some cases only at a sufficiently high heating temperature (58 °C). The comparison of the dewatering efficiency with the mixture viscosity at 58 °C shows a linear dependence: the more the tar viscosity decreases when the demulsifier is added, the higher the dewatering efficiency when using this demulsifier for tars of different pyrolytic degree. Decreasing the viscosity of the tar promotes the coalescence of water drops and the diffusion rate of the demulsifier through the dispersion medium to the water-tar interface, which increases the efficiency of dewatering. The selectivity of tar dehydration by the studied demulsifiers is preserved for both low- and high-pyrolyzed coal tars. In the area of low viscosity reduction of the dispersion medium, the role of RSN is considerably higher, and an increase in the hydrophilicity of the reagent contributes to better dehydration. This may be due to the increased wetting ability of demulsifiers concerning emulsion stabilizers.
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根据煤焦油的降粘值评价破乳剂脱水效果
首次研究了“焦油包水”乳剂的脱水效率与加入破乳剂降低煤焦油粘度值之间的关系。采用12种不同相对水溶性指数(RSN = 8.2 ~ 14.5)的破乳剂对不同热解等级的煤焦油乳剂进行脱水研究。研究了一系列破乳剂对油包水乳状液分散介质粘度的影响。以低热解焦油为模型,以1.2%的含水率和1.0%的喹啉不溶性物质为分散介质。用瓶子试验对破乳活性进行了比较评价。在30 ~ 65℃的温度范围内,用布鲁克菲尔德DV2T旋转可控剪切速率流变仪测定了沥青的流变特性。当在焦油中加入破乳剂并将混合物陈化24小时时,观察到粘度降低。当不耐压测量时,混合物的粘度在某些情况下只有在足够高的加热温度(58°C)下才会下降。在58℃时,脱水效率与混合物粘度的比较显示出线性关系:当加入破乳剂时,焦油粘度越降低,对于不同热解程度的焦油,使用该破乳剂时脱水效率越高。降低焦油粘度,促进了水滴的聚并,加快了破乳剂通过分散介质向水-焦油界面的扩散速度,提高了脱水效率。所研究的破乳剂对低热解煤焦油和高热解煤焦油的脱水都保持了选择性。在分散介质的低粘度还原区,RSN的作用要高得多,试剂亲水性的提高有助于更好的脱水。这可能是由于破乳剂对乳液稳定剂的润湿能力增强。
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