Muedi Khathutshelo Lilith, Masindi Vhahangwele, Maree Johannes Philippus, Haneklaus Nils, Brink Hendrik Gideon
Department of Chemical Engineering, Faculty of Engineering, Built Environment and Information Technology, University of Pretoria, Pretoria 0028, South Africa.
Magalies Water, Scientific Services, Research & Development Division, Erf 3475, Stoffberg Street, Brits 0250, South Africa.
Nanomaterials (Basel). 2022 Feb 25;12(5):776. doi: 10.3390/nano12050776.
This study presents the first known exploration of Congo red dye (CR) adsorption by a polycationic Fe/Al Di-metal nanostructured composite (PDFe/Al) synthesised using Fe(III) and Al(III) recovered from authentic acid mine drainage (AMD). The PDFe/Al successfully removed CR from the aqueous solution. The mineralogical, microstructural, and chemical properties of the synthesised PDFe/Al adsorbent (before and after adsorption) were studied using state-of-the-art analytical instruments. The optimum conditions were observed to be 100 mg·L CR, 1 g of the PDFe/Al in 500 mL adsorbate solution, 20 min of shaking, pH = 3-8, and a temperature of 35 °C. At optimised conditions, the PDFe/Al showed ≥99% removal efficacy for CR dye and an exceptionally high Langmuir adsorption capacity of 411 mg·g. Furthermore, a diffusion-limited adsorption mechanism was observed, with two distinct surfaces involved in the adsorption of CR from an aqueous solution. It was determined that the adsorption of CR induced internal strain and deformation within the matrices and interlayers of the PDFe/Al which resulted in a marked increase in the adsorbent pore surface area and pore volume. The remarkably high adsorption capacity could be attributed to the high surface area. A regeneration study showed that the adsorbent could be reused more than four times for the adsorption of CR. The findings from this study demonstrated the feasibility of recovering valuable minerals from toxic and hazardous AMD and demonstrated their potential for the treatment of industrial wastewaters.
本研究首次探索了利用从真实酸性矿山排水(AMD)中回收的铁(III)和铝(III)合成的聚阳离子铁/铝双金属纳米结构复合材料(PDFe/Al)对刚果红染料(CR)的吸附作用。PDFe/Al成功地从水溶液中去除了CR。使用最先进的分析仪器研究了合成的PDFe/Al吸附剂(吸附前后)的矿物学、微观结构和化学性质。观察到最佳条件为:CR浓度100 mg·L,在500 mL吸附质溶液中加入1 g PDFe/Al,振荡20分钟,pH = 3 - 8,温度35°C。在优化条件下,PDFe/Al对CR染料的去除效率≥99%,Langmuir吸附容量高达411 mg·g。此外,观察到一种扩散限制吸附机制,在从水溶液中吸附CR的过程中有两个不同的表面参与。确定CR的吸附在PDFe/Al的基质和层间引起内部应变和变形,这导致吸附剂孔表面积和孔体积显著增加。极高的吸附容量可归因于高表面积。再生研究表明,该吸附剂对CR的吸附可重复使用四次以上。本研究结果证明了从有毒有害的AMD中回收有价值矿物的可行性,并展示了它们在处理工业废水中的潜力。