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Rapid Preparation of Ultrafine BaSO3 by SO2 Storage Material

机译:SO2储存材料快速制备超细BaSO3

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摘要

In this work, a green and efficient process was developed for the preparation of ultrafine BaSO3 with layered nanostructure surface via the reaction of BaCl2 with a SO2 storage material (SO2SM) at room temperature. The absorption of SO2 with equimolar ethylenediamine (EDA) and ethylene glycol (EG) afforded SO2SM, which not only offered alkyl sulfite but also released EDA and EG that served as efficient surfactants to promote the formation of BaSO3 with spherical morphology and porous structure in the process of synthesis of ultrafine BaSO3. The factors affecting the morphology and size of BaSO3 particle were assessed by investigating the effects of SO2SM concentration, BaCl2 concentration, stirring time and speed. It was found that a higher SO2SM concentration led to a higher degree of supersaturation, and the particle size of BaSO3 could be reduced by increasing SO2SM concentration. Moreover, under the identified optimal reaction conditions, ultrafine BaSO3 was obtained with an average diameter of 450 nm. In addition, a plausible formation process of BaSO3 was proposed to explain the observed reaction results. Overall, the developed process in this work provides an efficient method for the capture, utilization, and conversion of SO2 into a valuable chemical.
机译:本工作通过BaCl2与SO2储存材料(SO2SM)在室温下反应,开发了一种绿色高效的制备具有层状纳米结构表面的超细BaSO3的工艺。SO2与等摩尔乙二胺(EDA)和乙二醇(EG)的吸收产生了SO2SM,SO2SM不仅提供了烷基亚硫酸盐,还释放了EDA和EG,作为高效的表面活性剂,在超细BaSO3的合成过程中促进了具有球形形貌和多孔结构的BaSO3的形成。通过研究SO2SM浓度、BaCl2浓度、搅拌时间和速度的影响,评估了影响BaSO3颗粒形貌和粒径的因素。研究发现,较高的SO2SM浓度导致较高的过饱和度,并且通过增加SO2SM浓度可以减小BaSO3的粒径。此外,在确定的最佳反应条件下,获得了平均直径为450 nm的超细BaSO3。此外,还提出了一种合理的BaSO3形成过程来解释观察到的反应结果。总体而言,这项工作中开发的工艺为SO2的捕获、利用和转化为有价值的化学品提供了一种有效的方法。

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