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镍掺杂Y型沸石上棉籽压榨饼的热催化分解:氢气提高生物油产率并生成高选择性的燃料范围碳氢化合物

Thermo-catalytic decomposition of cotton seed press cake over nickel doped zeolite Y, hydrogen: enhanced yield of bio-oil with highly selective fuel-range hydrocarbons.

作者信息

Afraz Marrij, Nisar Jan, Shah Afzal, Ali Ghulam, Muhammad Faisal, Anwar Farooq, Wan Abdul Karim Ghani Wan Azlina

机构信息

National Centre of Excellence in Physical Chemistry, University of Peshawar Peshawar 25120 Pakistan

Department of Chemistry, Quaid-i-Azam University Islamabad 45320 Pakistan

出版信息

RSC Adv. 2024 Oct 4;14(43):31549-31559. doi: 10.1039/d4ra06163b. eCollection 2024 Oct 1.

Abstract

This research reports the yield of bio-oil from cotton seed press cake (CSPC) an optimized thermo-catalytic pyrolysis using nickel impregnated zeolite Y, hydrogen catalyst. The catalyst, raw biomass and catalyst impregnated biomass were characterized using different analytical techniques. The ideal temperature, duration, and catalyst concentration for pyrolysis experiments were determined to be 300 °C, 20 minutes, and 5% of Ni-doped zeolite Y, hydrogen, respectively, in order to achieve the best bio-oil yield (35%). Gas chromatography-mass spectrometry (GC-MS) of pyrolytic bio-oil depicted the presence of C-C hydrocarbons. The findings of this investigation showed that the synthesis of bio-oil with highly selective fuel-range hydrocarbons could be efficiently induced through the pyrolysis of CSPC biomass employing nickel impregnated zeolite Y, hydrogen catalyst. Moreover, thermogravimetric analysis (TGA) of cotton seed press cake with catalyst was carried out at various heating rates to find out the kinetic parameters. Employing Kissinger model, activation energy ( ) and frequency factor () for various components of biomass , hemicellulose, cellulose and lignin were calculated as 83.14 kJ mol, 99.76 kJ mol, 124.71 kJ mol and 1.9 × 10 min, 1.0 × 10 min, 1.0 × 10 min, respectively. It can be concluded from the results that cotton seed press cake waste has potential for use as a pyrolysis feedstock in large-scale bio-fuel production.

摘要

本研究报告了棉籽压榨饼(CSPC)通过使用负载镍的Y型沸石氢催化剂进行优化的热催化热解所产生的生物油产量。使用不同的分析技术对催化剂、原始生物质和负载催化剂的生物质进行了表征。为了获得最佳生物油产量(35%),热解实验确定的理想温度、持续时间和催化剂浓度分别为300℃、20分钟和5%的镍掺杂Y型沸石氢。热解生物油的气相色谱-质谱(GC-MS)分析表明存在碳-碳烃类。本研究结果表明,通过使用负载镍的Y型沸石氢催化剂对CSPC生物质进行热解,可以有效地诱导合成具有高选择性燃料范围烃类的生物油。此外,对含有催化剂的棉籽压榨饼进行了不同加热速率下的热重分析(TGA),以确定动力学参数。采用基辛格模型,计算出生物质各组分(半纤维素、纤维素和木质素)的活化能()和频率因子()分别为83.14 kJ/mol、99.76 kJ/mol、124.71 kJ/mol和1.9×10^10 min^-1、1.0×10^10 min^-1、1.0×10^10 min^-1。从结果可以得出结论,棉籽压榨饼废料在大规模生物燃料生产中具有作为热解原料的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6da9/11450969/07a9eb2ecb5b/d4ra06163b-f1.jpg

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