首页> 外文会议>AIChE annual meeting >HYDROGEN PRODUCTION IN A NOVEL CFB MEMBRANE REFORMER AND CATALYST DEACTIVATION AND ENGINEERING CONTROL
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HYDROGEN PRODUCTION IN A NOVEL CFB MEMBRANE REFORMER AND CATALYST DEACTIVATION AND ENGINEERING CONTROL

机译:新型CFB膜重整器和催化剂停用和工程控制中的氢气生产

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The catalyst deactivation and reformer performance in a novel circulating fluidized bed membrane reformer (CFBMR) is investigated. A number of palladium based hydrogen permeable membranes are used. A catalyst deactivation model is developed. The results show that the reforming system has a strong tendency for carbon deposition and significant catalyst deactivation at low steam to carbon feed ratios (<1.4 mol/mol) for the operation under high reaction temperatures (>700 K) and pressures (>506.5 kPa). The results for the cases without and with hydrogen membranes are similar. Based on this preliminary investigation, an engineering control approach, in-site control with a concept of critical steam to carbon feed ratio is proposed and used to determine the carbon deposition free boundary for both cases without and with hydrogen membranes in the CFBMR.
机译:研究了一种新型循环流化床膜重整器(CFBMR)中的催化剂去激活和重整器性能。使用许多钯氢可渗透膜。开发了催化剂停用模型。结果表明,重整系统具有强烈的碳沉积倾向,在低蒸汽下与碳进料比(<1.4mol / mol)在高反应温度(> 700k)和压力下(> 506.5kPa)下的碳进料比(<1.4mol / mol)。 )。没有氢膜的病例的结果是相似的。基于这一初步调查,提出了一种工程控制方法,提出了与碳进料比的临界蒸汽概念的现场控制,并用于确定两种情况下的碳沉积自由边界,并且在CFBMR中用氢膜。

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