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首页> 外文期刊>RSC Advances >Fischer–Tropsch synthesis: effect of Cu, Mn and Zn addition on activity and product selectivity of cobalt ferrite
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Fischer–Tropsch synthesis: effect of Cu, Mn and Zn addition on activity and product selectivity of cobalt ferrite

机译:Fischer-Tropsch合成:Cu,Mn和Zn添加对钴铁氧体的活性和产品选择性的影响

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The effect of Cu, Mn and Zn addition on cobalt ferrite was investigated for Fischer–Tropsch synthesis (FTS). Oxalate co-precipitation followed by decomposition under inert conditions was used to obtain various metal containing cobalt ferrites (Co _(0.7) M _(0.3) Fe _(2) O _(4) ). The carburization of cobalt ferrite in flowing CO at 270 °C and 175 psig yielded iron carbides (χ-Fe _(5) C _(2) and ε′-Fe _(2.2) C) along with a bimetallic FeCo alloy. The extent of carburization was compared among Cu, Mn, and Zn doped catalysts with undoped cobalt ferrites under similar conditions. XRD and M?ssbauer spectroscopy analysis of the freshly carburized samples followed by passivation revealed that carburization of cobalt ferrite did not change appreciably with addition of Cu or Mn. On the other hand, Zn was found to retard the carburization of cobalt ferrite. Analysis of the used FT catalysts suggests that Cu is less efficient over Mn and Zn in stabilizing the iron carbides ( i.e. , active form of iron) during FT synthesis. The FT activity remains more or less the same for the undoped, Cu and Zn containing cobalt ferrites at higher temperatures. The CO conversion of Co _(0.7) Mn _(0.3) Fe _(2.0) catalyst was much lower than the other catalysts tested. Addition of Zn or Mn to cobalt ferrite was found to promote alcohol formation, particularly at higher reaction temperatures. The water–gas shift activity of the catalysts was found to decrease in the following order, Co _(1.0) Fe _(2.0) > Co _(0.7) Mn _(0.3) Fe _(2.0) > Co _(0.7) Zn _(0.3) Fe _(2.0) > Co _(0.7) Cu _(0.3) Fe _(2.0) .
机译:研究了Cu,Mn和Zn加入对钴铁素体的影响,用于Fischer-Tropsch合成(FTS)。草酸盐共沉淀,然后在惰性条件下进行分解,得到各种含有钴铁氧体的金属(Co _(0.7)M _(0.3)Fe _(2)O _(4))。在270℃和175psig的流动CO中钴铁氧体的渗碳产生铁碳化铁(χ-Fe_(5)C _(2)和ε'-Fe _(2.2))以及双金属FECO合金。在类似条件下,在Cu,Mn和Zn掺杂催化剂中比较了渗碳的程度,并在类似条件下具有未掺杂的钴铁氧体。 XRD和M?SSBauer光谱分析新渗碳样品,然后钝化显示,钴铁氧体的渗碳在加入Cu或Mn的添加没有明显变化。另一方面,发现Zn延缓了钴铁氧体的渗碳。使用过的FT催化剂的分析表明,在FT合成期间,Cu通过Mn和Zn稳定铁碳化铁(即,活性形式的铁)。对于在较高温度下含有钴铁氧体的未掺杂,Cu和Zn,FT活性仍然是或多或少相同的。 CO _(0.7)Mn _(0.3)Fe _(2.0)催化剂的CO转化远低于测试的其他催化剂。发现Zn或Mn达钴铁氧体的添加促进醇形成,特别是在更高的反应温度下。发现催化剂的水气移活性以下列顺序降低,CO _(1.0)Fe _(2.0)> Co _(0.7)Mn _(0.3)Fe _(2.0)> Co _(0.7) Zn _(0.3)FE _(2.0)> CO _(0.7)CU _(0.3)FE _(2.0)。

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