Evaluation of Behavior of 13X Zeolite Modified with Transition Metals for Catalytic Applications.

IF 4.7 3区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Bioinorganic Chemistry and Applications Pub Date : 2022-10-26 eCollection Date: 2022-01-01 DOI:10.1155/2022/7352074
Elena David
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引用次数: 1

Abstract

This work was intended to develop catalysts based on 13X zeolite modified with transition metals for catalytic applications. In this regard, 13X zeolite was modified by loading of transition metals such as Fe, Co, Cu and various types of catalysts such as Fe-, Co-, Cu-, Fe-Co-, Fe-Cu-, and Co-Cu/13X zeolite were obtained. To prepare these catalysts, the wet impregnation method and metallic precursors were used. The catalysts were characterized by SEM, XRD, BET, and ammonia adsorption. Then the catalytic performance was investigated during upgrading of rapeseed residual biomass pyrolysis vapors using this catalysts and a fixed-bed reactor in two stages. Experimental results showed that the addition of transition metals improved the catalytic selectivity towards aromatic hydrocarbons and Fe-Cu/13X zeolite catalyst was the best and had a high deoxygenation activity (from 62.45% to 20.56%), produced maximum monoaromatic hydrocarbons (of 27.45%), the oxygen content in bio-oil was reduced from 34.98 wt% to 16.06 wt%, the calorific value increased and thus the bio-oil quality was improved.

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过渡金属改性13X沸石的催化性能评价
本工作旨在开发以过渡金属改性13X沸石为基础的催化剂,用于催化应用。为此,通过加载Fe、Co、Cu等过渡金属对13X沸石进行改性,得到了Fe-、Co-、Cu-、Fe-Co-、Fe-Cu-、Co-Cu -、Co-Cu/13X沸石等多种催化剂。采用湿浸渍法和金属前驱体制备催化剂。采用SEM、XRD、BET和氨吸附等手段对催化剂进行了表征。采用该催化剂和固定床反应器分两段对油菜籽残渣生物质热解蒸汽进行了催化性能研究。实验结果表明,过渡金属的加入提高了对芳香烃的催化选择性,其中Fe-Cu/13X分子筛催化剂效果最好,具有较高的脱氧活性(从62.45%提高到20.56%),产生的单芳香烃最多(27.45%),生物油中氧含量从34.98 wt%降低到16.06 wt%,热值提高,从而改善了生物油的质量。
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来源期刊
Bioinorganic Chemistry and Applications
Bioinorganic Chemistry and Applications 化学-生化与分子生物学
CiteScore
7.00
自引率
5.30%
发文量
105
审稿时长
>12 weeks
期刊介绍: Bioinorganic Chemistry and Applications is primarily devoted to original research papers, but also publishes review articles, editorials, and letter to the editor in the general field of bioinorganic chemistry and its applications. Its scope includes all aspects of bioinorganic chemistry, including bioorganometallic chemistry and applied bioinorganic chemistry. The journal welcomes papers relating to metalloenzymes and model compounds, metal-based drugs, biomaterials, biocatalysis and bioelectronics, metals in biology and medicine, metals toxicology and metals in the environment, metal interactions with biomolecules and spectroscopic applications.
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