纳米TiO2掺杂强碱阴离子交换树脂对水溶液中铬(VI)的吸附研究

Q3 Materials Science
R. Kulkarni, P. Koujalagi, Harish N. Revankar, Vijayendra R Gurjar
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引用次数: 0

摘要

近年来,人们对处理废水,特别是城市和工业废水中危险化学品的环境安全方法的发展越来越感兴趣。含铬废水来源于钢铁、冶金、电镀、化工、耐火材料、皮革制革、染料制造、采矿、水泥、纺织等行业。因此,先进的技术是处理铬污染水的必要条件。这项工作的主要目的是评估掺杂纳米TiO2(平均晶粒尺寸19.15nm的纳米颗粒)的强碱阴离子交换树脂(TD Tulsion)对Cr(VI)的吸附性能与宿主Tulsion A-62(MP)的吸附能力,将含有Cr(VI)的30ml水溶液和一定量的树脂在303K下搅拌6小时。使用标准二苯基碳酰肼(DPC)程序在540nm下对溶液进行Cr(Ⅵ)的分光光度分析。大多数Cr(VI)离子被阴离子交换树脂Tulsion a-62(MP)吸附,TD Tulsion的pH范围为4.0至5.0。Tulsion A-62(MP)和TD Tulsion对Cr(VI)的最大吸附能力分别为181.5和204.8 mg/g。在类似条件下,TD Tulsion比Tulsion a-62(MP)具有更好的吸附能力。结果表明,用纳米二氧化钛改性阴离子交换树脂可以提高饮用水和污水中Cr(VI)的吸附性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adsorption of Chromium (VI) from Aqueous Solution Using Nano TiO2 Doped Strong Base Anion Exchange Resin
The evolution of environmentally-safe methods for treating hazardous chemicals in wastewater, particularly urban and industrial wastewater, has increased interest over recent years. The chromium-containing wastewater is produced by industries from steel, metallurgical, electroplating, chemical, refractory, leather tanning, dye manufacturing, mining, cementing, textiles, etc. Consequently, advanced techniques are essential for treating chromium-polluted water. The prime objective of this effort was to assess the adsorption performance of nanoTiO2 (nanoparticles of average crystallite size 19.15 nm) doped strong base anion exchange resin (TD-Tulsion) for Cr(VI)to that of the host Tulsion A-62 (MP). The tests were carried out in batches in the temperature-controlled water bath shaking unit, with 30 ml of the aqueous solution containing Cr(VI) and a certain amount of resin being stirred for 6 hours at 303 K. Using a standard diphenylcarbazide (DPC) procedure at 540 nm, the solution was spectrophotometrically analyzed for Cr(VI). The majority of the Cr(VI) ions are adsorbed by the anion exchange resins Tulsion A-62(MP), and TD-Tulsion is in the pH range of 4.0 to 5.0. The maximal sorption capacity of Cr (VI) was established to be 181.5 and 204.8 mg/g for Tulsion A-62(MP) and TD-Tulsion, respectively. The TD-Tulsion has a substantially better adsorption capacity than Tulsion A-62(MP) under similar conditions. The outcomes show that modifying anion-exchange resin with nano titanium dioxide improves adsorption performance in Cr(VI) removal from drinking water and contaminated water.
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来源期刊
Current Nanomaterials
Current Nanomaterials Materials Science-Materials Science (miscellaneous)
CiteScore
1.60
自引率
0.00%
发文量
53
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