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Surface dealuminated Beta zeolites supported WO3 catalyst and its catalytic performance in tetralin hydrocracking 被引量:3
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作者 yan-ting zhang Ni-Ni zhang +2 位作者 Sheng-Li Chen Hui Dang Tao Wu 《Petroleum Science》 SCIE CAS CSCD 2022年第6期3116-3123,共8页
In this study,selective dealumination of Beta zeolites was performed through partially removing the templating agent in Beta zeolites by calcination and then removing the aluminum on the external surface of Beta zeoli... In this study,selective dealumination of Beta zeolites was performed through partially removing the templating agent in Beta zeolites by calcination and then removing the aluminum on the external surface of Beta zeolites with acid treatment.Hydrocracking catalysts were prepared by loading WO_(3)onto these dealuminated Beta zeolites.It was shown that the surface SiO_(2)/Al_(2)O_(3)of selectively dealuminated Beta zeolites was higher than that of conventionally dealuminated samples for the same bulk SiO_(2)/Al_(2)O_(3),and the hydrogenation activity of the catalyst of the selectively dealuminated Beta zeolites was lower than that of conventionally dealuminated Beta zeolites.The experimental results for tetralin hydrocracking to BTX showed that the catalysts based on the selectively dealuminated Beta zeolites had higher BTX selectivity and lower coke formation rate than that the catalysts based on the conventionally dealuminated Beta zeolites. 展开更多
关键词 Beta zeolites DEALUMINATION CALCINATION HYDROCRACKING
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Ferronickel enrichment by fine particle reduction and magnetic separation from nickel laterite ore 被引量:1
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作者 Xiao-hui Tang Run-zao Liu +3 位作者 Li Yao Zhi-jun Ji yan-ting zhang Shi-qi Li 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2014年第10期955-961,共7页
Ferronickel enrichment and extraction from nickel laterite ore were studied through reduction and magnetic separation. Reduction experiments were performed using hydrogen and carbon monoxide as reductants at different... Ferronickel enrichment and extraction from nickel laterite ore were studied through reduction and magnetic separation. Reduction experiments were performed using hydrogen and carbon monoxide as reductants at different temperatures (700-1000℃). Magnetic separa- tion of the reduced products was conducted using a SLon-100 cycle pulsating magnetic separator (1.2 T). Composition analysis indicates that the nickel laterite ore contains a total iron content of 22.50wt% and a total nickel content of 1.91wt%. Its mineral composition mainly con- sists of serpentine, hortonolite, and goethite. During the reduction process, the grade of nickel and iron in the products increases with in- creasing reduction temperature. Although a higher temperature is more favorable for reduction, the temperature exceeding 1000℃ results in sintering of the products, preventing magnetic separation. After magnetic separation, the maximum total nickel and iron concentrations are 5.43wt% and 56.86wt%, and the corresponding recovery rates are 84.38% and 53.76%, respectively. 展开更多
关键词 LATERITES ore reduction magnetic separation thermodynamics fine particle metallurgy
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