首页> 外文期刊>Chemical Physics Letters >Architectured mesoporous materials modified with nickel for alternative energy and environmental applications: Hydrogen storage and photo-Fenton contaminant degradation
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Architectured mesoporous materials modified with nickel for alternative energy and environmental applications: Hydrogen storage and photo-Fenton contaminant degradation

机译:用镍镍的建筑介孔材料进行替代能源和环境应用:储氢和光芬污染物降解

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Ni-MCM-41 nanocomposites were prepared by direct hydrothermal synthesis with different Ni contents. Various characterization techniques were conducted in order to study the properties of the materials. H-2 storage capacity and degradation of atrazine by heterogeneous photo-Fenton-like process were studied. The results indicated that the structural, chemical, adsorption and catalytic properties of the resulting materials strongly depend on the hydrothermal treatment days and the nickel content. The increase in the Si/Ni molar ratio leads to higher presence of nickel oxide and increment in hydrothermal treatment days favours the Ni incorporation inside mesoporous walls, decreasing the accessibility to the active sites.
机译:通过用不同的Ni含量直接水热合成制备Ni-MCM-41纳米复合材料。 进行各种表征技术以研究材料的性质。 研究了异均相光 - 芬顿的储存过程的H-2储存能力和脱毒水的降解。 结果表明,所得材料的结构,化学,吸附和催化性能强烈取决于水热处理天和镍含量。 Si / Ni摩尔比的增加导致氧化镍的较高存在和水热处理天中的增量,利用Ni掺入在中孔壁内,降低了活性位点的可接近性。

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