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Chitosan–lignin carbon framework-encapsulated Cu catalyst facilitates base-free hydrogen evolution from methanol/water

机译:壳聚糖 - 林蛋白碳框架封装的Cu催化剂促进甲醇/水的无基氢进化

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Methanol reforming in aqueous solution provides a significantly attractive and promising pathway to release hydrogen with mild H2 release conditions and high H2 storage capacity. Exploring non-noble metal-based catalysts with sufficiently high activity, stability, and selectivity for H2 remains a great challenge. We report here the construction of a chitosan–lignin (CS–LN) carbon framework bio-composite-encapsulated Cu catalyst (Cu@CS–LN) with high loading and dispersion for base-free hydrogen generation from aqueous-phase methanol reforming below 210 °C. With optimized conditions, the hydrogen generation rate of Cu@CS–LN (2.5 × 105 μmolH2 gCu−1 h−1) represents an approximately 2-fold enhancement compared with Cu@CS without lignin incorporation, and more than 3–5 times higher than commercial Cu-based catalysts such as Rainie Cu or CuO/ZnO. The catalyst underwent an intensified water gas shift reaction (WGSR), and it also exhibited extraordinary selectivity toward the CO byproduct. The unique carbon framework structure of CS–LN through electrostatic densification self-assembly not only enhanced the adsorption and dispersion of Cu species, but it also stabilized and further reduced the Cu particles to active phase Cu during the hydrogen generation reaction to promote catalytic activity and stability without obvious catalyst deactivation detected after running for 150 hours. This specific hydrogen production technology exhibits great potential for hydrogen-powered polymer electrolyte membrane (PEMFCs) fuel cells.
机译:水溶液中的甲醇重整提供了一种具有轻度H2释放条件和高H2存储能力的释放氢的途径,可释放出非常有吸引力的途径。探索具有足够高活性,稳定性和对H2的选择性的非诺布金属催化剂仍然是一个巨大的挑战。我们在这里报告构造壳聚糖 - 利尼(CS – LN)碳框架生物复合封装的Cu催化剂(CU@CS – LN),并具有高负载和分散剂,以从低于210以下水溶液甲醇改良的无碱基氢生成°C。在优化条件下,与没有木质素掺杂的Cu@CS相比,CU@CS@CS-LN(2.5×105μmolh2GCU-1 H-1)的增强率约为2倍,并且高于木质素掺入的CU@比基于CU的商业催化剂,例如Rainie Cu或Cuo/ZnO。该催化剂进行了加强的水气转反应(WGSR),并且对CO副产品也表现出非凡的选择性。通过静电致密化组装CS – LN独特的碳框架结构不仅增强了Cu物种的吸附和分散,而且还稳定并进一步将Cu颗粒降低到氢生成过程中的活性相CU,以促进催化活性和催化活性和促进催化活性和稳定性未在运行150小时后检测到没有明显的催化剂失活。这种特定的氢生产技术对氢供电的聚合物电解质膜(PEMFCS)燃料电池具有很大的潜力。

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