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Insights into the competitive adsorption of pollutants on a mesoporous alumina–silica nano-sorbent synthesized from coal fly ash and a waste aluminium foil

机译:探讨污染物对由煤粉煤灰和废铝箔合成的中孔氧化铝 - 二氧化硅纳米吸附剂的竞争吸附

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A highly efficient and low-cost alumina–silica nano-sorbent was fabricated and characterized to understand the key factors responsible for its superiority over the existing adsorbents in treating the industry-discharged wastewater for the removal of dyes and heavy metals. As compared to the properties of raw fly ash, the following fundamental improvements were observed for the alumina–silica nano-sorbent: (a) transformation of throttled mesopores into slit-type pores, (b) increment in the surface area by 65-fold, (c) change in the morphology from spherical particles to a flake-type structure with sharp edges, (d) reduction in the average crystal size from 61.143 to 27.176 nm, and (e) increase in the pore volume from 0.005 to 0.50 cm ~(3) g ~(?1) . These desired properties of the nano-sorbent were obtained by blending a waste aluminium foil with fly ash. This process increased the ratio of alumina to silica from 0.59?:?1 to an optimum ratio of 1.9?:?1, beyond which the particles agglomerated and the pore volume reduced. Eventually, the precipitated hydroxides were calcined at 700 °C that favoured the formation of γ-alumina. Moreover, this heat treatment changed its crystallinity and morphology of γ-alumina, which abruptly enhanced its activity towards the pollutants. The obtained product (nano-sorbent) was tested for the removal of lead and malachite green from a model wastewater solution over a wide range of initial pollutant concentrations and adsorbent dosages. After observing almost complete removal capacity and reusability for the pollutants, we propose this synthesized adsorbent as a universal material for treating industrial wastewater.
机译:制造了一种高效且低成本的氧化铝 - 二氧化硅纳米吸附剂,并表征了解其对现有吸附剂的优越性的关键因素,用于处理工业排出的废水,以去除染料和重金属。与原料粉煤灰的性质相比,对氧化铝 - 二氧化硅纳米吸附剂的以下基本改善:(a)将节流的中孔转化为狭缝型孔,(b)在表面积中的增量65倍(c)(c)(c)从球面颗粒的形态变化到具有锋利边缘的薄片式结构,(d)从61.143至27.176nm的平均晶体尺寸的降低,(e)孔体积增加0.005至0.50cm 〜(3)g〜(?1)。通过将废铝箔与粉煤灰混合来获得纳米吸附剂的这些所需性质。该方法将氧化铝与二氧化硅的比例增加0.59?:Δ1至最佳比为1.9?:1,超出颗粒附聚并且孔体积降低的颗粒。最终,沉淀的氢氧化物在700℃下煅烧,最有利于形成γ-氧化铝。此外,这种热处理改变了γ-氧化铝的结晶度和形貌,突然提高了污染物的活性。测试所得产物(纳米吸附剂)以在各种初始污染物浓度和吸附剂剂量上从模型废水溶液中去除铅和孔雀石绿色。观察几乎完全的去除能力和污染物的可重用性后,我们将这种合成的吸附剂作为治疗工业废水的通用材料提出。

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