首页> 外文期刊>ACS catalysis >Effects of Li Doping on MgO-Supported Sm2O3 and TbO_x Catalysts in the Oxidative Coupling of Methane
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Effects of Li Doping on MgO-Supported Sm2O3 and TbO_x Catalysts in the Oxidative Coupling of Methane

机译:锂掺杂对甲烷氧化偶联反应中MgO负载Sm2O3和TbO_x催化剂的影响

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摘要

Rare earth oxides (REOs), particularly the sesqui- oxides, such as Sm2O3 and La2O3, have been investigated as promising catalysts in the oxidative coupling of methane (OCM). Much less attention has been paid to the reducible REOs because they are expected to give oxidation products, such as CO and CO2 (CO_x), rather than the desirable ethane and ethylene (C_(2+)). Because Li addition can improve the performance of Sm2O3 in the OCM reaction and Li/MgO is commonly used as a reference OCM catalyst, the effects of lithium addition to a reducible oxide, TbO_x, were investigated in detail in this study and compared with a Sm2O3 catalyst, which is the best single component OCM catalyst. Because of the well-documented volatility of lithium under OCM conditions, particularly for the Li/MgO system, the stability of lithium- doped samaria and terbia catalysts was examined as a function of preparation methods in this study. As expected, terbia supported on nanoparticle magnesia (n-MgO) is not a very active or selective OCM catalyst, and most of the observed selectivity toward C_(2+) products is likely due to the n-MgO support. In contrast, Li-doped TbO_x-MgO prepared using a coimpregnation method yields a highly active and selective catalyst. The Li-TbO_x-MgO catalyst yields the same methane conversion as pure Sm2O3, and has a higher C_(2+) selectivity than the Li-Sm2O3-MgO catalyst. The stability of the Li-TbO_x-MgO catalyst is also higher than that of the Li-Sm2O3-MgO catalyst, and the loss of activity for the lithium-doped terbia catalyst appears to be the same as for the undoped Sm2O3-MgO catalyst (and undoped TbO_x-MgO). The characterization data indicate stronger interactions between Li and TbO_x than between Li and Sm2O3, which may explain the higher stability of the Li-TbO_x-MgO catalysts. There are also indications that Li enters the TbO_x lattice and reduces TbO_(1.81),toTb2O3 during reaction, which can explain the higher C_(2+) selectivity compared with undoped TbO_x-MgO. Furthermore, the Li-TbO_x-MgO catalyst in this study is active at lower temperatures (600-700 °C) than typically used in the OCM (around 800 °C). Therefore, the Li-TbO_x/ n-MgO catalysts have potential to be very effective OCM catalysts, even though undoped TbO_x-MgO catalysts are more selective toward COx than C products.
机译:稀土氧化物(REO),特别是倍半氧化物,如Sm2O3和La2O3,已被研究作为甲烷氧化偶联(OCM)的有前途的催化剂。由于可还原的REO预期会生成氧化产物,例如CO和CO2(CO_x),而不是所需的乙烷和乙烯(C_(2+)),因此人们对它的关注较少。由于添加Li可以改善Sm2O3在OCM反应中的性能,并且Li / MgO通常用作参考OCM催化剂,因此在本研究中详细研究了添加锂对可还原氧化物TbO_x的影响,并将其与Sm2O3进行了比较。催化剂,这是最佳的单组分OCM催化剂。由于在OCM条件下,尤其是对于Li / MgO系统,锂的挥发性已得到充分证明,因此本研究考察了掺杂锂的samaria和terbia催化剂的稳定性。不出所料,负载在纳米氧化镁(n-MgO)上的二氧化钛不是非常活泼或选择性的OCM催化剂,观察到的对C_(2+)产物的大部分选择性可能是由于n-MgO的支持。相比之下,使用共浸渍法制备的掺Li的TbO_x / n-MgO产生了高活性和选择性的催化剂。 Li-TbO_x / n-MgO催化剂产生的甲烷转化率与纯Sm2O3相同,并且比Li-Sm2O3 / n-MgO催化剂具有更高的C_(2+)选择性。 Li-TbO_x / n-MgO催化剂的稳定性也高于Li-Sm2O3 / n-MgO催化剂的稳定性,并且掺锂的三氧化二钛催化剂的活性损失似乎与未掺杂的Sm2O3相同/ n-MgO催化剂(和未掺杂的TbO_x / n-MgO)。表征数据表明,Li与TbO_x之间的相互作用比Li与Sm2O3之间的相互作用强,这可以解释Li-TbO_x / n-MgO催化剂的更高稳定性。也有迹象表明,Li进入TbO_x晶格并在反应过程中将TbO_(1.81)还原为Tb2O3,这可以解释与未掺杂的TbO_x / n-MgO相比,C_(2+)选择性更高。此外,本研究中的Li-TbO_x / n-MgO催化剂在比OCM中通常使用的温度(约800°C)低的温度(600-700°C)下具有活性。因此,即使未掺杂的TbO_x / n-MgO催化剂对COx的选择性高于C产物,Li-TbO_x / n-MgO催化剂也有可能成为非常有效的OCM催化剂。

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