Synthesis of Silicon-Modified Pseudoboehmite with High Specific Surface Area by the Nitric Acid Method
作者:Yufei Yuan, Wenqi Tang, Ting Wang, Ruiqi Cheng, Zhaohui Yang, Chaopeng Fu, Jiao Zhang · 发表于:Langmuir · 年份:2025 · DOI:10.1021/acs.langmuir.5c01963 · 被引用次数:3 · 研究领域:Layered Double Hydroxides Synthesis and Applications、Mesoporous Materials and Catalysis、Supercapacitor Materials and Fabrication
As a significant source of catalyst support for FCC (Fluid Catalytic Cracking), pseudoboehmite is widely applied in the petrochemical industry. In FCC processes, the performance of catalyst supports is often limited by insufficient pore volume and surface area, which hinders the dispersion of active components and reduces accessibility for large hydrocarbon molecules. Therefore, developing pseudoboehmite with improved textural properties is essential for high-performance FCC units. In this paper, pseudoboehmite with a high specific surface area and large pore volume is prepared using nitric acid and sodium aluminate as raw materials, and sodium silicate as a pore-expanding agent. During the reaction process, the silicon atoms enter the crystal lattice of the product to cause changes in the pore structure. The results show that the pore parameters of the pseudoboehmite are improved to varying degrees with different amounts of silicon (0, 6, 9, 12, 18, and 24 wt % Si). Compared with the addition amount of 0 wt %, the pseudoboehmite produced with 9 wt % silicon has the largest specific surface area, reaching 506.67 m 2 g –1 (increased by 33%), with a pore volume of 1.134 cm 3 g –1 (increased by 253%) and an average pore size of 8.279 nm (increased by 120%). It is found that silicon promotes the formation of AlO 4 coordination and disrupts the lamellar structure of the product. Additionally, it inhibits the growth of crystals along the (020) face and alters the morphology of the ...