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首页> 外文期刊>Journal of Kermanshah University of Medical Sciences >The study of Effective Factors in Mercury Removed from Aqueous Solutions Using Granular Activated Carbon
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The study of Effective Factors in Mercury Removed from Aqueous Solutions Using Granular Activated Carbon

机译:粒状活性炭去除水溶液中汞的影响因素研究

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Introduction: Wastewaters of chemical, petrochemical, electrical, pharmaceutical and paper industries are the main sources of mercury and its compounds. Mercury is one of the toxic elements, so its removal from water and industrial wastewaters seems to be important and essential. The objective of this study was to investigate effective factors such as PH, contact time, absorbent dose, mixing rate and initial concentration in mercury removed by employing Granular Activated Carbon (GAC). Materials and Methods: In this study GAC was used as absorbent of the mercury. Mercury solution was prepared by mercury chloride. 136 samples were analyzed and the mixture of samples and activated carbon in 100 cc flasks were shaked. Then the samples filtered and the filtrates were tested to determine the mercury concentration by employing Cold Vapor Atomic Absorption Method at the wavelength of 253.7 nm. Results: Mercury removal increased at pH from 2 to 4 and optimum pH occurred in the range of 4-8. Increasing processing time to more than 10 min, had no significant effect on the absorption rate of mercury. Removal percentage increased with increasing weight of GAC but the amount of absorbed mercury ion per unit weight decreased from 2.216 mg to 0.0806 mg. conclusion: Increasing the amount of mercury at pH>4 was due to formation of predominant species of Hg(OH) 2 which retained in micro pores of GAC particles. The kinetic of mercury absorption by GAC was remarkably fast and increasing processing time to more than 10 min up to equilibrium absorption had no significant effect The results showed that the mercury removal had increased with increasing weight of GAC. This phenomenon happened as the result of increasing absorbent surface.
机译:简介:化工,石化,电气,制药和造纸工业的废水是汞及其化合物的主要来源。汞是有毒元素之一,因此从水和工业废水中去除汞似乎是重要且必不可少的。这项研究的目的是研究有效的因素,如PH,接触时间,吸收剂剂量,混合速率和采用颗粒活性炭(GAC)去除的汞的初始浓度。材料和方法:在本研究中,GAC被用作汞的吸收剂。通过氯化汞制备汞溶液。分析了136个样品,并摇动了样品和活性炭在100 cc烧瓶中的混合物。然后过滤样品,并通过使用冷蒸气原子吸收法在253.7 nm波长下测试滤液以确定汞浓度。结果:在pH值从2到4时,汞的去除率增加,最佳pH值在4-8范围内。将处理时间增加到10分钟以上对汞的吸收速率没有明显影响。随着GAC重量的增加,去除百分数增加,但单位重量吸收的汞离子量从2.216 mg减少至0.0806 mg。结论:pH> 4时汞含量的增加是由于形成了主要的Hg(OH)2物种,该物种保留在GAC颗粒的微孔中。 GAC吸收汞的动力学非常快,将处理时间增加到10分钟以上直至达到平衡吸收没有明显影响。结果表明,随着GAC重量的增加,脱汞量也增加了。这种现象是由于吸收剂表面增加而产生的。

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