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A Single-Source Precursor Approach to Self-Supported Nickel-Manganese-Based Catalysts with Improved Stability for Effective Low-Temperature Dry Reforming of Methane

机译:具有改进的甲烷有效低温干燥重整的稳定性的自支持镍锰催化剂的单源前体方法

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Self-supported nickel-manganese-based catalysts were synthesized from heterobimetallic nickel manganese oxalate precursors via a versatile reverse micelle approach. The precursors were subjected to thermal degradation (400 degrees C) in the presence of synthetic air to form respective metal oxides, which were treated under hydrogen (500 degrees C) to form Ni2MnO4-O-2-H-2, Ni6MnO8-O-2-H-2 and NiO-O-2-H-2. Similarly, the precursors were also treated directly under hydrogen at the same temperature to form Ni2MnO4-H-2 and Ni6MnO8-H-2. The catalysts were extensively investigated by PXRD, SEM, TEM, XPS and BET analyses. The resulting catalysts were applied for dry reforming of methane (DRM) and exhibit better stability and resistance to coking than coprecipitated catalysts. Further, we show that addition of manganese, which is not an active catalyst for DRM alone, to nickel has a significant promotion effect on both the activity and stability of DRM catalysts, and a Ni/Mn ratio lower than 6:1 enables optimized activity for this system.
机译:通过多功能反向胶束方法从异常的镍锰前体合成自支持的镍锰催化剂。在合成空气存在下对前体进行热降解(400℃)以形成各自的金属氧化物,其在氢气(500℃)下处理,形成Ni2mNO 4-O-2-H-2,Ni6mnO8-O- 2-H-2和NIO-O-2-H-2。类似地,在相同温度下也直接在氢气下直接在氢气下进行处理,以形成Ni2mNO 4-H-2和Ni6mNO8-H-2。通过PXRD,SEM,TEM,XPS和BET分析广泛研究催化剂。将所得催化剂用于甲烷(DRM)的干燥重整,并表现出比共沉淀催化剂更好的稳定性和对焦化的抗性。此外,我们表明,对于单独的DRM不是活性催化剂,对镍具有对DRM催化剂的活性和稳定性的显着促进作用,并且Ni / Mn比率低于6:1,可以实现优化的活性对于这个系统。

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