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首页> 外文期刊>International Journal of Environmental Health Engineering >Adsorption of phenol from aqueous solution by modified zeolite with FeCl 3
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Adsorption of phenol from aqueous solution by modified zeolite with FeCl 3

机译:FeCl 3改性沸石对水溶液中苯酚的吸附

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Aims: The objective of this study was to evaluate phenol removal from a synthetic solution using modified zeolite (clinoptilolite) with FeCl 3 as an adsorbent. Materials and Methods: The zeolite samples were crushed and granulated using standard ASTM sieves (mesh size of 20). The prepared zeolite then was modified by FeCl 3 . The chemical composition and the surface area of the zeolite were analyzed using XRF and N 2 gas via BET isotherm and Belsorb software. In this study, different parameters including pH (3, 7, and 12), initial concentration of phenol (25-200 mg/l), contact time (20-240 min) and the amount of modified zeolite (0.25-3 g/l) were examined in a batch reactor. The concentration of phenol was measured at wavelength of 500 nm by a spectrophotometer. Results: The results of this study showed that as the initial concentration of phenol, the adsorbent dose and the pH in the range of 3-12 increased the adsorption / removal of phenol increased. Phenol adsorption equilibrium was achieved within 100 min contact time and the optimum pH for adsorption of phenol using zeolite was found as 3. The adsorption data complied with Langmuir isotherm (r 2 =0.98). Conclusions: The results showed that modified zeolite can be used effectively in removing phenol. The removal efficiency of phenol in lower pH was more than in higher pH. Also, due to the low price of the zeolite and its simple modification, it can be used for removing hazardous pollutants in water and wastewater.
机译:目的:本研究的目的是评估使用改性沸石(斜发沸石),FeCl 3 作为吸附剂从合成溶液中去除苯酚的方法。材料和方法:使用标准ASTM筛(筛孔大小为20)将沸石样品粉碎并制粒。然后用FeCl 3 对制备的沸石进行改性。通过XRF和N 2 气体,通过BET等温线和Belsorb软件分析了沸石的化学组成和表面积。在这项研究中,不同的参数包括pH值(3、7和12),苯酚的初始浓度(25-200 mg / l),接触时间(20-240分钟)和改性沸石的量(0.25-3 g / l)在间歇反应器中检查。用分光光度计在500nm的波长下测定苯酚的浓度。结果:本研究结果表明,随着苯酚初始浓度的增加,吸附剂量和pH值在3-12范围内增加,苯酚的吸附/去除率增加。在100分钟的接触时间内便达到了苯酚的吸附平衡,发现使用沸石吸附苯酚的最佳pH为3。吸附数据符合Langmuir等温线(r 2 = 0.98)。结论:结果表明,改性沸石可有效去除苯酚。较低pH值下苯酚的去除效率高于较高pH值下。另外,由于沸石的价格低廉并且其改性简单,因此可以用于去除水和废水中的有害污染物。

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