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Study on Preparation of 13X/SBA-15 Composite Molecular Zeolite and Its Performance in Treatment of Papermaking Wastewater
Received:March 12, 2020  
DOI:10.11980/j.issn.0254-508X.2020.07.014
Key Words:composite molecular zeolite  post-synthesis method  papermaking wastewater treatment
Fund Project:煤盐资源高效利用河南省工程实验室(河南城建学院)开放基金,项目名称:基于偏最小二乘法的炼焦配煤预测模型研究。
Author NameAffiliationPostcode
SONG Chengjian School of Materials and Chemical Engineering, He’nan University of Urban Construction, Pingdingshan, He’nan Province, 467036 467036
XU Pengxiang Pingdingshan Construction Project Quality Supervision Station, Pingdingshan He’nan Province, 467036 467036
WANG Wenbo Pingdingshan Tianan Coal Co. Ltd., Pingdingshan, He’nan Province, 467036 467036
ZHANG Yanbing School of Materials and Chemical Engineering, He’nan University of Urban Construction, Pingdingshan, He’nan Province, 467036 467036
CHENG Xianglong School of Materials and Chemical Engineering, He’nan University of Urban Construction, Pingdingshan, He’nan Province, 467036 467036
DING Mingjie School of Materials and Chemical Engineering, He’nan University of Urban Construction, Pingdingshan, He’nan Province, 467036 467036
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Abstract:In this study, 13X microporous molecular sieves and SBA-15 mesoporous molecular sieves were functionalized and modified, and then were prepared into a kind of composite molecular sieve by post synthesis method. The structure of the composite molecular sieve was characterized by various methods. Finally, the treatment effect of the wastewater from the middle stage of papermaking was evaluated. The physical characterization experiment showed that the synthesized composite molecular sieve had both microporous and mesoporous structures, with a specific surface area of 620.2 m2/g, a total pore volume of 1.15 cm3/g, and an average pore size of 6.18 nm. The wastewater treatment experiments showed that under the conditions of 60℃, molecular sieve dosage of 1.0 g/L, pH value of 7.8, and adsorption time of 60 mins, the removal rates of chroma, SS and CODCr in papermaking wastewater by composite molecular sieve were 98.8%, 85.7% and 81.4%, respectively. The regeneration test showed that the modified composite molecular sieve had good regeneration and adsorption performance and could be reused for many times.
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