利用废煤气化细渣简便合成用于甲苯蒸汽转化的掺镍沸石基催化剂

IF 9 1区 工程技术 Q1 ENERGY & FUELS
Liya Xu , Lingwei Kong , Xiaoyong Men , Feiqiang Guo , Zhenjie Sun , Kaiming Dong , Biao Tang , Jiajun Wang , Nanjin Zhao , Yonghui Bai
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引用次数: 0

摘要

利用低成本固体废弃物制备高效稳定的生物质焦油转化催化剂对于实现绿色生物质气化具有重要价值。在这项工作中,利用废弃的 CGFS 作为前驱体,通过离子交换法形成了新型多孔掺杂镍的沸石催化剂。在适当的 NiO 负载含量下,催化剂()呈现出均匀的球形颗粒连通多孔结构,NaAlSiO 作为支撑基质,NiO 颗粒锚定在表面作为活性位点。在甲苯重整实验中研究了催化剂的催化性能,以评估其在生物质焦油转化方面的潜力。在优化条件下(720 °C、S/C = 1.5、氮气流量 25 mL/min),作为催化剂的甲苯转化率达到 92%,产生 2500 μmol/min CO 和 2800 μmol/min H;甲苯的连续蒸汽转化形成了铁镍合金,进而增强了催化剂的稳定性,在 450 分钟的连续实验中,甲苯转化率高达 81%,表明催化剂具有极佳的稳定性。这项工作证实了富含硅和铝的煤气化渣具有制备新型沸石基催化剂的潜力,是促进固体废弃物高值转化的重要探索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Facile synthesis of Ni-doped zeolite-based catalysts from waste coal gasification fine slag for steam reforming of toluene

Facile synthesis of Ni-doped zeolite-based catalysts from waste coal gasification fine slag for steam reforming of toluene

Facile synthesis of Ni-doped zeolite-based catalysts from waste coal gasification fine slag for steam reforming of toluene

The preparation of efficient and stable catalysts for biomass tar reforming using low-cost solid waste is of great value for achieving green biomass gasification. In this work, new porous Ni-doped zeolite catalysts were formed by an ion exchange method making use of the waste CGFS as the precursor. At a proper NiO loading content, the catalyst ([email protected]) exhibits a uniform spherical particle-linked porous structure with NaAlSiO4 as the supporting matrix and NiO particles anchoring on the surface as active sites. The catalytic performance of the catalysts was investigated in toluene reforming experiments to evaluate their potential for biomass tar conversion. Under optimized conditions (720 °C, S/C = 1.5, and N2 flow 25 mL/min), toluene conversion reached 92 % using [email protected] as a catalyst, yielding 2500 μmol/min CO and 2800 μmol/min H2. Continuous steam reforming of toluene formed to FeNi3 alloy, which in turn strengthens the stability of the catalyst, and a high toluene conversion of 81 % can be achieved in 450 min continuous experiment, indicating the excellent stability of the catalyst. This work has confirmed that coal gasification slag rich in silicon and aluminum has the potential to prepare new zeolite-based catalysts, which is an important exploration for promoting high-value conversion of solid waste.

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来源期刊
Renewable Energy
Renewable Energy 工程技术-能源与燃料
CiteScore
18.40
自引率
9.20%
发文量
1955
审稿时长
6.6 months
期刊介绍: Renewable Energy journal is dedicated to advancing knowledge and disseminating insights on various topics and technologies within renewable energy systems and components. Our mission is to support researchers, engineers, economists, manufacturers, NGOs, associations, and societies in staying updated on new developments in their respective fields and applying alternative energy solutions to current practices. As an international, multidisciplinary journal in renewable energy engineering and research, we strive to be a premier peer-reviewed platform and a trusted source of original research and reviews in the field of renewable energy. Join us in our endeavor to drive innovation and progress in sustainable energy solutions.
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