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Determination of adsorptive and catalytic properties of copper, silver and iron contain titanium-pillared bentonite for the removal bisphenol A from aqueous solution

机译:测定钛柱撑膨润土对水溶液中双酚A的吸附和催化性能的测定。

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Tipillared bentonite, Cu, Ag and Fe modified Ti-pillared bentonite and Cu/Ti-and Fe/Ti-mixed pillared bentonite were synthesized using different titanium sources by direct synthesis or by modification after synthesis. The effects of synthesis conditions on the surface characteristics, pore structure and acidity of the pillared bentonites were investigated by SEM-EDS, XPS, XRD, N-2-adsorption/desorption and FTIR analyses before and after ammonia adsorption. The results of EDS, XPS and XRD analysis confirmed that titanium, copper, silver and iron were incorporated into the bentonite structure. In the XRD patterns, the formation of delaminated structure reflecting the non-parallel distribution of the bentonite layers by pillaring with Ti, Cu/Ti and Fe/Ti-pillars was observed. XPS spectra indicated the presence of TiO2, CuO, Ag and Ag2O and Fe2O3 species depending on the source of active metals in the synthesized samples. In the FTIR spectra, an increase in the Bronsted/Lewis peak intensity was observed with the loading of copper and iron, whereas a decrease in Lewis and Bronsted acidities was observed with incorporation of silver. Adsorption studies indicated that the adsorption capacity of the sample synthesized using titanium (IV) propoxide and incorporating iron to the structure by ion exchange (Fe-PTi-PILC) were higher than those in other samples. The adsorption of BPA (bisphenol A) by all tested samples was found to fit the Langmuir isotherm. In the catalytic wet peroxide oxidation (CWPO) over PTi-PILC (prepared by titanium (IV) propoxide), Fe-PTi-PILC and Cu-PTi-PILC (prepared by copper impregnated Ti-pillared bentonite) samples, BPA values close to complete conversion were achieved within 30 min at 25 degrees C, pH 4 and 5 g/L m(cat). CWPO results showed that increasement of pH causes a decrease the rate of oxidation. On the other hand, by the time catalyst and BPA concentration is increased, the rate of oxidation is increased as well. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用不同的钛源,通过直接合成或在合成后进行改性,合成了化膨润土,Cu,Ag和Fe改性的Ti柱状膨润土以及Cu / Ti和Fe / Ti混合柱状膨润土。通过SEM-EDS,XPS,XRD,N-2-吸附/解吸和FTIR分析研究了合成条件对柱撑膨润土的表面特性,孔结构和酸度的影响。 EDS,XPS和XRD分析的结果证实,钛,铜,银和铁已结合到膨润土结构中。在XRD图案中,观察到分层结构的形成,反映了通过用Ti,Cu / Ti和Fe / Ti柱柱撑撑膨润土层的不平行分布。 XPS光谱表明,取决于合成样品中活性金属的来源,TiO2,CuO,Ag和Ag2O和Fe2O3的存在。在FTIR光谱中,随着铜和铁的负载,观察到布朗斯台德/刘易斯峰强度增加,而当引入银时观察到路易斯和布朗斯台德酸度降低。吸附研究表明,使用丙氧基钛(IV)合成并通过离子交换(Fe-PTi-PILC)将铁结合到结构中的样品的吸附能力高于其他样品。发现所有测试样品对BPA(双酚A)的吸附均符合Langmuir等温线。在PTi-PILC(由四氧化钛(IV)制备),Fe-PTi-PILC和Cu-PTi-PILC(由铜浸渍的Ti柱状膨润土制备)上的催化湿式过氧化物氧化(CWPO)样品中,BPA值接近在25°C,pH 4和5 g / L m(cat)的30分钟内实现了完全转化。 CWPO结果表明,pH值升高会导致氧化速率降低。另一方面,随着催化剂和BPA浓度的增加,氧化速率也增加。 (C)2015 Elsevier B.V.保留所有权利。

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