首页> 外文期刊>International journal of hydrogen energy >Hydrogen production by steam methane reforming in a membrane reactor equipped with a Pd composite membrane deposited on a porous stainless steel
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Hydrogen production by steam methane reforming in a membrane reactor equipped with a Pd composite membrane deposited on a porous stainless steel

机译:在装有沉积在多孔不锈钢上的Pd复合膜的膜反应器中通过蒸汽甲烷重整制氢

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摘要

With the aim of producing hydrogen at low cost and with a high conversion efficiency, steam methane reforming (SMR) was carried out under moderate operating conditions in a Pd-based composite membrane reactor packed with a commercial Ru/Al2O3 catalyst. A Pd-based composite membrane with a thickness of 4-5 mu m was prepared on a tubular stainless steel support (diameter of 12.7 mm, length of 450 mm) using electroless plating (ELP). The Pd-based composite membrane had a hydrogen permeance of 2.4 x 10(-3) mol m(-1) s(-1) Pa-0.5 and an H-2/N-2 selectivity of 618 at a temperature of 823 K and a pressure difference of 10.1 kPa. The SMR test was conducted at 823 K with a steam-to-carbon ratio of 3.0 and gas hourly space velocity of 1000 h(-1); increasing the pressure difference resulted in enhanced methane conversion, which reached 82% at a pressure difference of 912 kPa. To propose a guideline for membrane design, a process simulation was conducted for conversion enhancement as a function of pressure difference using Aspen HYSYS (R). A stability test for SMR was conducted for similar to 120 h; the methane conversion, hydrogen production rate, and gas composition were monitored. During the SMR test, the carbon monoxide concentration in the total reformed stream was 1%, indicating that a series of water gas shift reactors was not needed in our membrane reactor system. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:为了以低成本和高转化率生产氢气,在装有商业化Ru / Al2O3催化剂的Pd基复合膜反应器中,在适度的操作条件下进行了蒸汽甲烷重整(SMR)。使用化学镀(ELP)在管状不锈钢支撑体(直径为12.7mm,长度为450mm)上制备厚度为4-5μm的Pd基复合膜。钯基复合膜在823 K温度下的氢渗​​透率为2.4 x 10(-3)mol m(-1)s(-1)Pa-0.5,H-2 / N-2选择性为618压力差为10.1 kPa。 SMR试验在823 K下进行,蒸汽/碳比为3.0,气体时空速为1000 h(-1);压力差的增加导致甲烷转化率提高,在912 kPa的压力差下达到82%。为了提出膜设计的指导方针,使用Aspen HYSYS(R)进行了过程仿真,以提高转化率与压力差的关系。 SMR的稳定性测试进行了约120小时;监测甲烷转化率,氢气产生速率和气体组成。在SMR测试过程中,总重整物流中的一氧化碳浓度<1%,这表明在我们的膜反应器系统中不需要一系列水煤气变换反应器。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2018年第15期|7684-7692|共9页
  • 作者单位

    Korea Inst Energy Res, Separat & Convers Mat Lab, 152 Gajeong Ro, Daejeon 305343, South Korea;

    Korea Inst Energy Res, Separat & Convers Mat Lab, 152 Gajeong Ro, Daejeon 305343, South Korea;

    Catholic Univ Daegu, Dept Adv Mat & Chem Engn, 13-13 Hayang Yep, Gyongsan 38430, Gyeongbuk, South Korea;

    Catholic Univ Daegu, Dept Adv Mat & Chem Engn, 13-13 Hayang Yep, Gyongsan 38430, Gyeongbuk, South Korea;

    Catholic Univ Daegu, Dept Adv Mat & Chem Engn, 13-13 Hayang Yep, Gyongsan 38430, Gyeongbuk, South Korea;

    Korea Univ, Dept Chem & Biol Engn, 5-1 Anam Dong, Seoul 136701, South Korea;

    Korea Inst Energy Res, Separat & Convers Mat Lab, 152 Gajeong Ro, Daejeon 305343, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Steam methane reforming; Membrane reactor; Pd-based composite membrane; Hydrogen; Stability; Process simulation;

    机译:蒸汽甲烷重整膜反应器钯基复合膜氢稳定性过程模拟;

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