He Qingdong, Qi Jie, Liu Xiangyu, Zhang Huan, Wang Yiwen, Wang Wenbo, Guo Fang
College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, China.
Nanomaterials (Basel). 2023 Sep 23;13(19):2627. doi: 10.3390/nano13192627.
The complete removal of low concentration organic pollutants from wastewater to obtain clean water has always been a highly desired but challenging issue. In response to this, we proposed a new strategy to fabricate a carbon-in-silicate nanohybrid composite by recycling dye-loaded layered clay adsorbent and converting them to new heterogeneous carbon-in-silicate nanocomposite through an associated calcination-hydrothermal activation process. It has been confirmed that most of the dye molecules were present in waste rectorite adsorbent using an intercalation mode, which can be in situ converted to carbon in the confined interlayer spacing of rectorite. The further hydrothermal activation process may further improve the pore structure and increase surface active sites. As expected, the optimal composite shows extremely high removal rates of 99.6% and 99.5% for Methylene blue (MB) and Basic Red 14 (BR) at low concentrations (25 mg/L), respectively. In addition, the composite adsorbent also shows high removal capacity for single-component and two-component dyes in deionized water and actual water (i.e., Yellow River water, Yangtze River water, and seawater) with a removal rate higher than 99%. The adsorbent has good reusability, and the adsorption efficiency is still above 93% after five regeneration cycles. The waste clay adsorbent-derived composite adsorbent can be used as an inexpensive material for the decontamination of dyed wastewater.
从废水中完全去除低浓度有机污染物以获得清洁水一直是一个备受期待但具有挑战性的问题。针对这一问题,我们提出了一种新策略,即通过回收负载染料的层状粘土吸附剂,并通过相关的煅烧-水热活化过程将其转化为新型非均相硅基碳纳米复合吸附剂。已证实,大多数染料分子以插层模式存在于废累托石吸附剂中,可在累托石的受限层间距中原位转化为碳。进一步的水热活化过程可能会进一步改善孔隙结构并增加表面活性位点。正如预期的那样,最佳复合材料在低浓度(25 mg/L)下对亚甲基蓝(MB)和碱性红14(BR)的去除率分别高达99.6%和99.5%。此外,该复合吸附剂在去离子水和实际水(即黄河水、长江水和海水)中对单组分和双组分染料也表现出高去除能力,去除率高于99%。该吸附剂具有良好的可重复使用性,经过五次再生循环后吸附效率仍高于93%。由废粘土吸附剂衍生的复合吸附剂可作为一种廉价材料用于印染废水的净化。