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Effect of calcination on adsorption performance of Mg-Al layered double hydroxide prepared by a water-in-oil microemulsion method

机译:煅烧对油包水微乳液法制备的Mg-Al层状双氢氧化物吸附性能的影响

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Herein, Mg-Al layered double hydroxide (LDH) was firstly prepared by a water-in-oil microemulsion method and the prepared LDH sample was further calcined at different temperatures. The calcined LDH samples were carefully characterized using XRD, nitrogen adsorption, TEM, TGA, XPS, FTIR and zeta potential measurements. Calcined and uncalcined LDH samples were used as adsorbents to remove orange II (O-II) dye in water. Adsorption experiments indicated calcination temperatures had an obvious influence on the adsorption affinity of LDH, and the 500 degrees C calcined LDH sample (LDH-500) exhibited the maximum adsorption capacity of 602 mg g(-1) larger than that of LDH (224 mg g(-1)). The pseudosecond-order model was the best kinetic model to describe O-II adsorbed on the surface of the adsorbent, and the dye adsorption was fitted well using the Langmuir model for the prepared samples. The adsorption mechanism of O-II dye onto the calcined and uncalcined LDHs samples was mainly related to electrostatic interaction between the anionic O-II molecules and positively charged surface of the adsorbents, and the slow intercalation of O-II into the layers of LDH and reconstruction of LDH-500.
机译:在此,首先通过油包水微乳液法制备Mg-Al层状双氢氧化物(LDH),并将所制备的LDH样品在不同温度下进一步煅烧。使用XRD,氮吸附,TEM,TGA,XPS,FTIR和Zeta电位测量对经过煅烧的LDH样品进行仔细表征。煅烧和未煅烧的LDH样品用作吸附剂,以去除水中的橙色II(O-II)染料。吸附实验表明煅烧温度对LDH的吸附亲和力有明显影响,并且500℃煅烧的LDH样品(LDH-500)的最大吸附容量比LDH(224 mg)大602 mg g(-1)。 g(-1))。伪二级模型是描述吸附在吸附剂表面的O-II的最佳动力学模型,对于所制备的样品,使用Langmuir模型可以很好地拟合染料吸附。 O-II染料在煅烧和未煅烧的LDH样品上的吸附机理主要与阴离子O-II分子与吸附剂带正电的表面之间的静电相互作用以及O-II缓慢插入LDH和LDH层中有关重建LDH-500。

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