School of chemistry and materials science, Hunan Agricultural University, Changsha 410128, PR China.
Powder Metallurgy Research Institute, Central South University, Changsha 410083, PR China.
Sci Total Environ. 2022 Jul 20;831:154751. doi: 10.1016/j.scitotenv.2022.154751. Epub 2022 Mar 24.
The metal catalysts X-Mo@MgO (X = Ni, Fe, Co) was studied as excellent catalyst for catalytic pyrolysis conversion of biomass and plastics into functional carbon nanocomposite. The proper reaction mechanism of the process was explored through the gas composition, and explored the bactericidal performance of functional carbon nanocomposite. The results showed that the Ni, Fe and Co-based catalysts elevated H gas yield reached to 57%, 34% and 44% as the addition of Mo, due to Mo or its oxide species for scission of small molecule compound. The introduction of NiMo@MgO catalyst produced lower CH, and higher H and MWCNTs, which indicated that the formation of MWCNTs is mainly attributed to CH dehydrogenation. As a comparison, FeMo@MgO catalyst for CO disproportionation reaction could generate more MWCNTs and lower H. The functional carbon nanocomposite from FeMo@MgO catalyst were comprehensively evaluated by multiple characterizations. TPO and Raman results confirmed that FeMo@MgO catalyst can provide an excellent carrier to generate MWCNTs with few defects and high graphitization. The functional carbon nanocomposite were initially applied to E.coli extinguishing. The core-shell structure catalyst not only has excellent bactericidal performance, but also has strong resistance to metal leaching.
研究了金属催化剂 X-Mo@MgO(X=Ni、Fe、Co)作为将生物质和塑料催化热解转化为功能性碳纳米复合材料的优异催化剂。通过气体成分探讨了该过程的适当反应机制,并探讨了功能性碳纳米复合材料的杀菌性能。结果表明,由于 Mo 或其氧化物物种对小分子化合物的断裂,Ni、Fe 和 Co 基催化剂的 H 气体产率分别提高到 57%、34%和 44%。NiMo@MgO 催化剂的引入产生了较低的 CH 和较高的 H 和 MWCNTs,这表明 MWCNTs 的形成主要归因于 CH 的脱氢。相比之下,FeMo@MgO 催化剂的 CO 歧化反应可以生成更多的 MWCNTs 和较低的 H。通过多种特性评估了来自 FeMo@MgO 催化剂的功能性碳纳米复合材料。TPO 和 Raman 结果证实,FeMo@MgO 催化剂可以提供一个极好的载体,以生成具有较少缺陷和高石墨化程度的 MWCNTs。初步将功能性碳纳米复合材料应用于大肠杆菌灭火。核壳结构催化剂不仅具有优异的杀菌性能,而且具有较强的抗金属浸出性。