Jlassi Khouloud, Eid Kamel, Sliem Mostafa H, Abdullah Aboubakr M, Chehimi Mohamed M
Centre for advanced materials, Qatar University, Doha 2713, Qatar.
Gas Processing Center, College of Engineering, Qatar University, Doha 2713, Qatar.
Data Brief. 2021 Jan 30;35:106799. doi: 10.1016/j.dib.2021.106799. eCollection 2021 Apr.
Fresh water resources on the earth are less than 0.2%; meanwhile, around 80% of the freshwater is consumed daily in agriculture, industries, and household activities [1], [2]. There is an essential need to develop efficient adsorbents for wastewater treatment [1], [2], [3], [4], [5], [6], in this regards, hereafter we present the rationale synthesis and characterization of hybrid natural bentonite clay modified with Calix [4] arene (denoted as B-S-Calix) as efficient adsorbents for toxic metals from wastewater. This is driven by the facile photo-radical thiol-yne addition among the thiolated clay and an alkynylated calix[4]arene. The morphology, surface modifications, and Thermal degradation of B, B-S, and B-S-Calix were investigated using TEM, FTIR, and TGA techniques. The adsorption performance of B, BS and B-S-Calix towards toxic metals including cadmium (II) ion [Cd (II)], zinc (II) ion [Zn(II)], lead(II) ion [Pb(II)], strontium(II) ion [Sr (II)], cobalt(II) ion [Co (II)], copper(II) ion [Cu(II)], and mercury (II) ion [Hg(II)] from wastewater were benchmarked 25 °C. These data are related to the article entitled "hybrid Clay/Calix[4]arene Calix[4]arene-clicked clay through thiol-yne addition for the molecular recognition and removal of Cd(II) from wastewater'' [7].
地球上的淡水资源不足0.2%;与此同时,约80%的淡水每日被用于农业、工业和家庭活动[1,2]。因此,迫切需要开发高效的废水处理吸附剂[1,2,3,4,5,6]。在此方面,我们在此展示以杯[4]芳烃改性的杂化天然膨润土(表示为B-S-杯芳烃)作为废水中有毒金属高效吸附剂的合理合成与表征。这是由硫醇化粘土与炔基化杯[4]芳烃之间简便的光自由基硫醇-炔加成反应驱动的。使用透射电子显微镜(TEM)、傅里叶变换红外光谱(FTIR)和热重分析(TGA)技术研究了B、B-S和B-S-杯芳烃的形态、表面改性和热降解。在25℃下对B、BS和B-S-杯芳烃对包括镉(II)离子[Cd(II)]、锌(II)离子[Zn(II)]、铅(II)离子[Pb(II)]、锶(II)离子[Sr(II)]、钴(II)离子[Co(II)]、铜(II)离子[Cu(II)]和汞(II)离子[Hg(II)]等有毒金属的吸附性能进行了基准测试。这些数据与题为“通过硫醇-炔加成反应制备的杂化粘土/杯[4]芳烃用于分子识别和去除废水中的Cd(II)”的文章相关[7]。