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Noncatalytic gasification of isooctane in supercritical water: A Strategy for high-yield hydrogen production

机译:超临界水中异辛烷的非催化气化:高产氢生产的策略

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摘要

Continuous supercritical water gasification of isooctane, a model gasoline compound, is investigated using an updraft gasification system. A new reactor material, Haynes~® 230~® alloy, is employed to run gasification reactions at high temperature and pressure (763 ± 2 ℃; 25 MPa). A large-volume reactor is used (170 mL) to enable the gasification to be run at a long residence time, up to 120 s. Various gasification experiments are performed by changing the residence time (60-120 s), the isooctane concentration (6.3-14.7 wt%), and the oxidant concentration (equivalent oxidant ratio 0-0.3). The total gas yield and the hydrogen gas yield increase with increasing residence time. At 106 s and an isooctane concentration of 6.3 wt%, a very high hydrogen gas yield of 12.4 mol/mol isooctane, which is 50% of the theoretical maximum hydrogen gas yield and 92% of the equilibrium hydrogen gas yield under the given conditions, is achieved. Under these conditions, supercritical water partial oxidation does not increase the hydrogen gas yield significantly. The produced gases are hydrogen (68 mol%), carbon dioxide (20 mol%), methane (9.8 mol%), carbon monoxide (1.3 mol%), and ethane (0.9 mol%). The carbon gasification efficiency is in the range 75-91%, depending on the oxidant concentration. A comparison of supercritical water gasification with other conventional methods, including steam reforming, auto-thermal reforming, and partial oxidation, is also presented.
机译:使用上升气流气化系统研究了异辛烷(一种典型的汽油化合物)的连续超临界水气化。一种新的反应器材料Haynes®230〜®合金用于在高温和高压(763±2℃; 25 MPa)下进行气化反应。使用大容量反应器(170毫升)使气化可以在长达120 s的较长停留时间内进行。通过改变停留时间(60-120 s),异辛烷浓度(6.3-14.7 wt%)和氧化剂浓度(当量氧化剂比0-0.3)来进行各种气化实验。总的气体产率和氢气的产率随着停留时间的增加而增加。在106 s且异辛烷浓度为6.3 wt%的情况下,异辛烷的氢气产率很高,为12.4 mol / mol,在给定条件下为理论最大氢气产率的50%和平衡氢气产率的92%,已完成。在这些条件下,超临界水的部分氧化不会显着增加氢气的产率。产生的气体是氢气(68摩尔%),二氧化碳(20摩尔%),甲烷(9.8摩尔%),一氧化碳(1.3摩尔%)和乙烷(0.9摩尔%)。取决于氧化剂浓度,碳气化效率在75-91%的范围内。还介绍了超临界水气化与其他常规方法(包括蒸汽重整,自热重整和部分氧化)的比较。

著录项

  • 来源
    《International journal of hydrogen energy》 |2011年第6期|p.3895-3906|共12页
  • 作者单位

    Clean Energy Center, Energy Division, Korea Institute of Science and Technology (KIST), 39-1 Hawolgok-dong, Seoungbuk-gu, Seoul 136-791, Republic of Korea,Department of Clean Energy and Chemical Engineering, University of Science and Technology (UST), 113 Gwahangno, Yuseong-gu, Daejeon 305-333, Republic of Korea;

    Clean Energy Center, Energy Division, Korea Institute of Science and Technology (KIST), 39-1 Hawolgok-dong, Seoungbuk-gu, Seoul 136-791, Republic of Korea,Department of Clean Energy and Chemical Engineering, University of Science and Technology (UST), 113 Gwahangno, Yuseong-gu, Daejeon 305-333, Republic of Korea;

    Clean Energy Center, Energy Division, Korea Institute of Science and Technology (KIST), 39-1 Hawolgok-dong, Seoungbuk-gu, Seoul 136-791, Republic of Korea;

    Clean Energy Center, Energy Division, Korea Institute of Science and Technology (KIST), 39-1 Hawolgok-dong, Seoungbuk-gu, Seoul 136-791, Republic of Korea;

    Clean Energy Center, Energy Division, Korea Institute of Science and Technology (KIST), 39-1 Hawolgok-dong, Seoungbuk-gu, Seoul 136-791, Republic of Korea,Department of Clean Energy and Chemical Engineering, University of Science and Technology (UST), 113 Gwahangno, Yuseong-gu, Daejeon 305-333, Republic of 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

    hydrogen production; supercritical water gasification; haynes® 230~® alloy; isooctane;

    机译:制氢超临界水气化haynes®230〜®合金;异辛烷;
  • 入库时间 2022-08-18 00:28:49

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