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Comparison of Processes for Producing Better Rice Husk Silica Produced from a Field-scale Incinerator

机译:田间规模焚化炉生产优质稻壳二氧化硅的工艺比较

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Aim: The “amorphous” state of silica is the critical characteristic necessary for its use in various applications. Extensive experimentation has determined that the highest quality rice husk ash is obtained after treating the ash in two steps: a burning step followed by a curing step. The purpose of this study was to determine how to conduct these two steps such that the highest quality silica possible could be obtained from the ash. Study Design: Using the solubility of silica as an indicator of the amorphous state, the quality of silica in rice husk ash produced by three treatment processes was evaluated; after all, rice husks were incinerated as a basic treatment. Location and Duration of Study: The experiments were conducted from 2013 to 2016 at Toyama Prefectural University. Methodology: Three treatment methods for the curing step were evaluated: a heating drum, insulating drums, and a sink within the incinerator system. Results: As a result, the highest solubility silica was obtained from the sink, which produced silica with more than 70% solubility, compared to about 40% in other treatments. Conclusions: It can be concluded that the ash should be treated within the incinerator system without being exposed to cold temperatures outside.
机译:目的:二氧化硅的“无定形”状态是其在各种应用中使用所必需的关键特性。广泛的实验已经确定,在两个步骤中处理灰分后,可获得最高质量的稻壳灰分:燃烧步骤然后是固化步骤。这项研究的目的是确定如何进行这两个步骤,以便可以从灰中获得最高质量的二氧化硅。研究设计:使用二氧化硅的溶解度作为非晶态的指标,评估了三种处理方法产生的稻壳灰中二氧化硅的质量。毕竟,稻壳被焚化为基本处理方法。研究的地点和持续时间:实验于2013年至2016年在富山县立大学进行。方法:评估了固化步骤的三种处理方法:加热鼓,绝缘鼓和焚烧炉系统内的水槽。结果:结果,从水槽中获得了最高溶解度的二氧化硅,生成的二氧化硅的溶解度超过70%,而其他处理中的溶解度约为40%。结论:可以得出结论,灰渣应在焚烧炉系统内进行处理,而不会暴露在外界的低温下。

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