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首页> 外文期刊>The Science of the Total Environment >Effect of alkali-treated HZSM-5 zeolite on the production of aromatic hydrocarbons from microwave assisted catalytic fast pyrolysis (MACFP) of rice husk
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Effect of alkali-treated HZSM-5 zeolite on the production of aromatic hydrocarbons from microwave assisted catalytic fast pyrolysis (MACFP) of rice husk

机译:碱处理HZSM-5沸石对稻壳微波辅助催化快速热解(MACFP)芳烃生产的影响

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We performed microwave-assisted catalytic fast pyrolysis (MACFP) of rice husk (RH) over an alkali-treated HZSM-5 zeolite, for production of hydrocarbons. The treatment consisted in the modification of the HZSM-5 by the organic base tetrapropylammonium hydroxide (TPAOH) solution at several concentrations. We characterized the resulting catalysts by powder X-ray diffraction (XRD), transmission electron microscopy (TEM), N_2 adsorption-desorption, and temperature-programmed sorption of ammonia (NH_3-TPD). The results suggest that the TPAOH treatment generated mesoporous structures in the HZSM-5, while preserving its microporous structure and crystallinity. We obtained the highest yield (45.9%) of hydrocarbons from MACFP of rice husk (RH) at 550 °C. As the TPAOH concentration increases, the relative content of BTEX hydrocarbons (benzene, toluene, ethylbenzene, and xylene) reaches a maximum value of 22.9% at 2.0 mol/L. A comparison of results obtained over the organic base TPAOH (HZSM-5 modified by 2.0 mol/L TPAOH solution) with those obtained over an inorganic base (HZSM-5 modified by 2.0 mol/L NaOH solution) shows a 4.3% increase in the relative content of monocyclic aromatic hydrocarbons for the TPAOH. In addition, the TPAOH-treated catalyst shows excellent selectivity of BTEX (58.5%), which is higher than the selectivity obtained with the parent HZSM-5 Catalytic fast pyrolysis; Microwave assisted heating; Alkali-treated HZSM-5; Upgrading bio-oil; Rice husk (51.2%) and NaOH-treated HZSM-5 (53.9%). The TPAOH-modified HZSM-5 catalyst effectively reduced coke formation by 4.6% compared to MACFP over the parent HZSM-5. most likely because TPAOH decreases the concentration of strong acidic sites on the outer surface of the catalyst, creating a meso-porous structure while retaining the weak acidic sites on the HZSM-5 inner surface. The new catalyst generated in this work contains a moderate amount of mesopores structures, which allows for effective upgrading of pyrolysis vapors while simultaneously reducing coke formation, thereby addressing a significant problem in the development of the catalytic fast pyrolysis process.
机译:我们在碱处理的HZSM-5沸石上进行微波辅助催化快速热解(MACFP),用于生产烃。用几种浓度的有机碱四氟乙基氢氧化铵(TPAOH)溶液改变HZSM-5的处理。我们用粉末X射线衍射(XRD),透射电子显微镜(TEM),N_2吸附 - 解吸和氨的温度编程吸附的所得催化剂的表征。结果表明,TPAOH处理在HZSM-5中产生了介孔结构,同时保持其微孔结构和结晶度。我们在550℃下获得了从稻壳(RH)的MacFP的最高产量(45.9%)烃。随着TPAOH浓度的增加,BTEX烃(苯,甲苯,乙苯和二甲苯)的相对含量达到2.0mol / L的最大值22.9%。在有机碱TPAOH(由2.0mol / L TPAOH溶液改性HZSM-5改性的HZSM-5改性的结果的比较,所述碱(20mol / L NaOH溶液改性HZSM-5)显示出4.3%单环芳烃对TPAOH的相对含量。此外,TPAOH处理的催化剂显示出优异的BTEX(58.5%)选择性,其高于用母体HZSM-5催化快速热解获得的选择性;微波炉辅助加热;碱处理HZSM-5;升级生物油;稻壳(51.2%)和NaOH处理的HZSM-5(53.9%)。与母体HZSM-5上的MACFP相比,TPAOH改性的HZSM-5催化剂有效地将焦炭形成减少了4.6%。最有可能的是因为TPAOH降低了催化剂外表面上的强酸性位点的浓度,产生了一种中间多孔结构,同时保持HZSM-5内表面上的弱酸位点。本作作用中产生的新催化剂含有适量的中孔结构,其允许有效地升级热解蒸汽,同时减少焦炭形成,从而解决催化快速热解过程中的显着问题。

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  • 来源
    《The Science of the Total Environment 》 |2020年第1期| 134605.1-134605.13| 共13页
  • 作者单位

    Key Laboratory of Energy Thermal Conversion and Control of Ministry of Education School of Energy and Environment Southeast University Nanjing 210096 China School of Environmental and Forest Sciences University of Washington Seattle Washington 98195-2100 United States;

    Key Laboratory of Energy Thermal Conversion and Control of Ministry of Education School of Energy and Environment Southeast University Nanjing 210096 China;

    Key Laboratory of Energy Thermal Conversion and Control of Ministry of Education School of Energy and Environment Southeast University Nanjing 210096 China;

    Key Laboratory of Energy Thermal Conversion and Control of Ministry of Education School of Energy and Environment Southeast University Nanjing 210096 China;

    School of Environmental and Forest Sciences University of Washington Seattle Washington 98195-2100 United States;

    School of Environmental and Forest Sciences University of Washington Seattle Washington 98195-2100 United States;

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