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CHROMIUM(VI) REMOVAL FROM ELECTROPLATING WASTEWATER USING CHEMICALLY TREATED ZEOLITE

机译:使用化学处理的沸石从电镀废水中去除铬(VI)

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In this research, the technical feasibility of zeolite for Cr(VI) removal is investigated in batch and column studies using real and synthetic wastewater with initial Cr concentration of 8 and 10 mg/L, respectively. Chemical treatment of zeolite with NaCl is also conducted to improve its Cr removal performance. The removal performance of all types of zeolite is evaluated and statistically compared. Column regeneration for both types of zeolite is also performed using NaOH and their regeneration efficiency is evaluated. It is conclusively evident that chemical treatment of zeolite with NaCl significantly improves its Cr adsorption capacity. The results of batch studies show that the Cr adsorption capacities of NaCl–treated zeolite for real (5.97 mg/g) and synthetic Cr wastewater (6.66 mg/g) are relatively higher than those of asreceived zeolite for real (3.06 mg/g) and synthetic wastewater (3.55 mg/g), respectively. The Langmuir isotherm is found to be applicable for both types of zeolite. Similarly, the results of column studies also demonstrate that the Cr column capacities of NaCl-treated zeolite for real (6.18 mg/g) and synthetic wastewater (6.95 mg/g) are remarkably higher than those of as-received zeolite for real (3.82 mg/g) and synthetic wastewater (4.08 mg/g), respectively. It is important to note that the Cr adsorption capacities of zeolite vary, depending on the extent of chemical pretreatment and the initial concentration of chromium.
机译:在该研究中,使用具有8和10mg / L的初始Cr浓度的真实和合成废水,分批和柱研究中研究了沸石的技术可行性。还进行了用NaCl的沸石的化学处理,以改善其Cr去除性能。评估所有类型的沸石的去除性能和统计学比较。使用NaOH还进行两种类型沸石的柱再生,并评估它们的再生效率。得出明显的是,沸石与NaCl的化学处理显着提高了其Cr吸附能力。批量研究结果表明,Real(5.97mg / g)和合成Cr废水(6.66mg / g)的NaCl处理的沸石的Cr吸附能力比真实的沸石(3.06 mg / g)相对较高和合成废水(3.55 mg / g)。发现Langmuir等温此适用于两种类型的沸石。类似地,柱研究的结果还表明,真实(6.18mg / g)和合成废水(6.95mg / g)的NaCl处理的沸石的Cr柱容量比真实的沸石的沸石显着高(3.82 Mg / g)和合成废水(4.08 mg / g)。重要的是要注意,沸石的Cr吸附能力随着化学预处理的程度和铬的初始浓度而变化。

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