Comparative Study of Different Pretreatment and Combustion Methods on the Grindability of Rice-Husk-Based SiO2

Author:

Ma Yunhai12,Yuan Shengwang1,Ma Zichao3,Hou Yihao1,Niu Shichao1ORCID,Lekai Li1,Liu Guoqin1,Cao Feipeng2

Affiliation:

1. Key Laboratory of Bionic Engineering (Ministry of Education, China), Jilin University, 5988 Renmin Street, Changchun 130022, China

2. Institute of Structured and Architected Materials, Liaoning Academy of Materials, Shenyang 110167, China

3. Department of Mechanical Engineering, The Pennsylvania State University, State College, PA 16802-4400, USA

Abstract

The rice husk (RH) combustion pretreatment method plays a crucial role in the extraction of nanoscale SiO2 from RH as a silicon source. This study examined the effects of diverse pretreatment methods and combustion temperatures on the particle size distribution of nanoscale high-purity amorphous SiO2 extracted from rice husk ash (RHA) post RH combustion. The experiment was structured using the Taguchi method, employing an L9 (21 × 33) orthogonal mixing table. The median diameter (D50) served as the output response parameter, with the drying method (A), combustion temperature (B), torrefaction temperature (C), and pretreatment method (D) as the input parameters. The results showed the torrefaction temperature (C) as being the predominant factor affecting the D50, which decreased with an increasing torrefaction temperature (C). The optimal parameter combination was identified as A2B2C3D2. The verification test revealed that roasting could improve the abrasiveness of Rh-based silica and reduce the average particle size. Torrefaction at medium temperatures might narrow the size distribution range of RHA-SiO2. We discovered that the purity of silica increased with an increasing roasting temperature by evaluating the concentration of silica in the sample. The production of RHA with silica concentrations up to 92.3% was investigated. X-ray diffraction analysis affirmed that SiO2’s crystal structure remained unaltered across different treatment methods, consistently presenting as amorphous. These results provide a reference for extracting high-value products through RH combustion.

Funder

National Natural Science Foundation of China

National Key Research Program of China

Jilin Provincial Science and Technology Department

Jilin Province Education Department’s

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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