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Technoeconomic analysis for hydrogen and carbon Co-Production via catalytic pyrolysis of methane

机译:甲烷催化热解的氢气共同生产技术经济分析

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摘要

Catalytic Methane Pyrolysis (CMP) is an innovative method to convert gaseous methane into valuable H-2 and carbon products. The catalytic approach to methane pyrolysis has the potential to decrease the required operating temperature for methane decomposition from 1000 degrees C to under 700 degrees C. In this work, a novel inexpensive catalyst is discussed that displays low operating temperatures, while still maintaining high reactivity and long proven lifetimes. The kinetics associated with the catalyst's performance are modeled and a correlation was developed for use with practical simulation tools. A techno-economic assessment was conducted applying experimentally determined kinetics for the CMP reaction with the specific catalyst. Two process concepts that utilize CMP using the novel catalyst are presented in this work. Optimizations were considered in these processes and the CO2 emissions and cost of hydrogen production of the two optimized cases, CMP with H-2 combustion (CMP-H-2) and CMP with CH4 Combustion (CMP-CH4), are compared to that of the current industrial standard for hydrogen production, Steam Methane Reforming with carbon capture and sequestration (SMR-CCS). Both of the proposed concepts convert methane into gaseous hydrogen and valuable carbon products, graphitic carbon to carbon Nano fibers. The carbon price was treated as a variable to determine the sensitivity of hydrogen production cost to the carbon price. The analysis indicates that cost of hydrogen production is highly dependent on the recovery and sale of carbon byproducts. Based on Aspen modeling of these two concepts for large scale hydrogen production (216 tons/day), the cost of hydrogen production, without considering carbon sales, was estimated to be $3.25/kg, assuming a natural gas price of $7/MMBTU and conservative catalyst cost of $8/kg. Assuming 100% recovery of carbon, the price can be reduced to $0/kg by selling the carbon at $1/kg. A market assessment suggests that values of graphitic carbon and carbon fibers range from similar to$10/kg and similar to$25-113/kg, respectively. The cost of H-2 production via conventional SMR is similar to$2.2/kg when accounting for the cost of CO2 sequestration. The proposed processes produce a maximum of 0-2 kg CO2/kg H-2 in contrast to the 10 kg CO2/kg H-2 produced via conventional SMR-CCS. The process displays an enormous potential for competitive economics accompanied by reduced greenhouse gas emissions. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:催化甲烷热解(CMP)是将气态甲烷转化为有价值的H-2和碳产物的创新方法。甲烷热解的催化方法有可能降低甲烷分解所需的操作温度,从而减少1000℃至700摄氏度下的甲烷分解。在这项工作中,讨论了一种新的廉价催化剂,其显示出低的工作温度,同时仍然保持高效反应性和长期验证的生命。与催化剂性能相关的动力学是建模的,并开发了与实用仿真工具一起使用的相关性。进行了技术经济评估,将实验确定的动力学应用于与特定催化剂的CMP反应。在这项工作中提出了使用使用新型催化剂使用CMP的两个工艺概念。在这些过程中考虑了优化,并将二氧化碳排放量和氢生产的两种优化案例的排放和成本具有H-2燃烧(CMP-H-2)和CMP燃烧(CMP-CH4)的CMP(CMP-CH4)。氢气生产工业标准,蒸汽甲烷重整碳捕获和封存(SMR-CCS)。这两种提出的概念都将甲烷转化为气态氢和有价值的碳产品,石墨碳对碳纳米纤维。碳价格被视为一种变量,以确定氢生产成本对碳价格的敏感性。分析表明,氢生产成本高度依赖于碳副产品的恢复和销售。基于这两个概念的ASPEN建模,用于大规模氢气生产(216吨/天),氢生产的成本估计为$ 3.25 / kg,假设天然气价格为7美元/ MMBTU和保守催化剂成本为8美元/千克。假设碳的100%恢复,通过在&lt中销售碳,价格可以减少到0美元/千克。市场评估表明,石墨碳和碳纤维的价值范围从类似于10美元/千克,分别类似于25-113 / kg。通过常规SMR的H-2生产的成本类似于2.2 / kg时,占CO2封存的成本。所提出的方法与通过常规SMR-CCS产生的10kg CO 2 / kg H-2相反,产生最多0-2kg的CO 2 / kg H-2。该过程展示了竞争经济学的巨大潜力,伴随着减少温室气体排放量。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2021年第39期|20338-20358|共21页
  • 作者单位

    US DOE Natl Energy Technol Lab 3610 Collins Ferry Rd POB 880 Morgantown WV 26507 USA|US DOE Leidos Res Support Team NETL 3610 Collins Ferry Rd POB 880 Morgantown WV 26507 USA|Oak Ridge Inst Sci & Educ POB 117 Oak Ridge TN 37831 USA;

    US DOE Natl Energy Technol Lab 3610 Collins Ferry Rd POB 880 Morgantown WV 26507 USA|US DOE Leidos Res Support Team NETL 3610 Collins Ferry Rd POB 880 Morgantown WV 26507 USA;

    US DOE Natl Energy Technol Lab 3610 Collins Ferry Rd POB 880 Morgantown WV 26507 USA;

    US DOE Natl Energy Technol Lab 3610 Collins Ferry Rd POB 880 Morgantown WV 26507 USA;

  • 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

    Catalytic methane pyrolysis; Techno-economic study; Hydrogen economy;

    机译:催化甲烷热解;技术经济研究;氢气经济;

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