Suppr超能文献

水热条件下制备的不同形貌勃姆石和氧化铝对五价砷的吸附作用

Adsorption of As(V) by boehmite and alumina of different morphologies prepared under hydrothermal conditions.

作者信息

Dubey Shashi Prabha, Dwivedi Amarendra Dhar, Sillanpää Mika, Lee Hongshin, Kwon Young-Nam, Lee Changha

机构信息

School of Urban and Environmental Engineering, Ulsan National Institute of Science and Technology (UNIST), 100 Banyeon-ri, Eonyang-eup, Ulju-gun, Ulsan 698-805, Republic of Korea; Laboratory of Green Chemistry, LUT Chemtech, Lappeenranta University of Technology, Sammonkatu 12, 50130 Mikkeli, Finland.

Laboratory of Green Chemistry, LUT Chemtech, Lappeenranta University of Technology, Sammonkatu 12, 50130 Mikkeli, Finland.

出版信息

Chemosphere. 2017 Feb;169:99-106. doi: 10.1016/j.chemosphere.2016.11.052. Epub 2016 Nov 16.

Abstract

Morphology-controlled materials at the micro- and nanoscale levels are of great significance to the design and application of materials. Stable and well-dispersed boehmite and alumina with different morphologies were fabricated under hydrothermal conditions. The nitrate, chloride, and sulfate aluminum salts yielded nanoplate, microspindle, and microsphere morphologies, respectively. Calcination of the prepared boehmite samples yielded alumina samples with retention of the morphologies. In comparisons of samples with identical morphologies, alumina exhibited better uptake of As(V) than boehmite; the As(V) concentration was analyzed by the standard molybdenum blue method. The adsorption capabilities of the morphologically controlled materials are ranked microspindle > microsphere > nanoplate. The impacts of process parameters, such as reaction time; initial As(V) concentration; solution pH; competing ions (Ca, Mg, NO, PO), which are common in most aquatic ecosystems; and co-contaminants (Cr(VI), Pb(II)), on removal efficiencies were examined. A well-defined mesostructure, superior surface area, chemical and electrostatic interaction, and surface charge distribution over the aluminol surface sites could be factors in the uptake of As(V). The design and synthesis of functional hierarchical micro- and nanostructured materials with the desired adsorptive properties, which are suitable for water treatment applications, can be achieved through environmentally benign hydrothermal fabrication.

摘要

微米和纳米尺度上形态可控的材料对于材料的设计和应用具有重要意义。在水热条件下制备了具有不同形态的稳定且分散良好的勃姆石和氧化铝。硝酸铝盐、氯化铝盐和硫酸铝盐分别生成了纳米片、微纺锤体和微球形态。对制备的勃姆石样品进行煅烧得到了保留形态的氧化铝样品。在相同形态样品的比较中,氧化铝对As(V)的吸附能力比勃姆石更好;采用标准钼蓝法分析As(V)浓度。形态可控材料的吸附能力排序为微纺锤体>微球>纳米片。研究了反应时间、初始As(V)浓度、溶液pH值、大多数水生生态系统中常见的竞争离子(Ca、Mg、NO、PO)以及共污染物(Cr(VI)、Pb(II))等工艺参数对去除效率的影响。明确的介观结构、优异的比表面积、化学和静电相互作用以及铝醇表面位点上的表面电荷分布可能是吸附As(V)的因素。通过环境友好的水热制备方法,可以实现具有所需吸附性能的功能性分级微纳结构材料的设计与合成,这些材料适用于水处理应用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验