...
首页> 外文期刊>Journal of power sources >Start-up strategy of a diesel reformer using the decomposition heat of hydrogen peroxide for subsea applications
【24h】

Start-up strategy of a diesel reformer using the decomposition heat of hydrogen peroxide for subsea applications

机译:使用过氧化氢分解热的柴油重整器的启动策略,用于海底应用

获取原文
获取原文并翻译 | 示例
           

摘要

A diesel reformer start-up strategy using hydrogen peroxide (H2O2) decomposition heat is first proposed for subsea applications such as submarines and unmanned underwater vehicles (UUVs), requiring no oxygen. H2O2 can supply not only both the oxygen and steam required for the diesel autothermal reforming (ATR) reaction but also heat via the catalytic H2O2 decomposition reaction. We utilize the high-quality heat from H2O2 for the reformer start-up by evaporating and chemically decomposing the 50 wt% concentration H2O2. A comparative reformer start-up strategy study is performed between conventional diesel ATR and diesel-H2O2 ATR using a 1 kW(e)-class diesel reformer. For the conventional start-up, three steps of partial oxidation, partial load ATR, and full load ATR are required to heat the ATR reformer after electrically preheating the ATR catalyst. However, the proposed strategy requires only one full load ATR step after preheating the ATR catalyst using H2O2 decomposition heat. With the suggested start-up strategy, a simplified sequence with negligible temperature fluctuations and a 57% start-up time reduction are achieved. We find it significant that the full load flowrate of superheated steam generation from the H2O2 decomposer is a critical factor in simplifying and shortening the start-up procedure.
机译:最初提出了一种使用过氧化氢(H2O2)分解热的柴油重整器启动策略,用于水下应用,例如潜艇和无氧水下航行器(UUV),不需要氧气。 H2O2不仅可以提供柴油自热重整(ATR)反应所需的氧气和蒸汽,还可以通过催化H2O2分解反应提供热量。我们通过蒸发和化学分解浓度为50 wt%的H2O2,利用H2O2产生的高质量热量进行重整器启动。使用1 kW(e)级柴油重整器在常规柴油ATR和柴油H2O2 ATR之间进行了比较重整器启动策略研究。对于常规的启动,在电预热ATR催化剂后,需要三个部分的氧化步骤:部分氧化,部分负载ATR和完全负载ATR来加热ATR重整器。但是,在使用H2O2分解热预热ATR催化剂后,提出的策略仅需要一个满负荷的ATR步骤。通过建议的启动策略,可实现温度波动可忽略且启动时间减少57%的简化程序。我们发现重要的是,从H2O2分解器产生的过热蒸汽的满负荷流量是简化和缩短启动程序的关键因素。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号