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Enhancement of the Activated Carbon over Methylene Blue Removal Efficiency via Alkali-Acid Treatment

机译:通过碱性酸处理提高活性炭对亚甲基蓝色去除效率的影响

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The removal of contaminated dyes in wastewater via Activated Carbon (AC) technology is a promising alternative to current conventional pollution-free technologies. Herein, the commercial AC with enhanced adsorption performance capacity were comprehensively investigated via modulating with the alkali-acid treatment. The removal of a highly concentrated methylene blue solution was evaluated via a commercial AC treated with deionized water (AC-DI), potassium hydroxide (AC-KOH) and nitric acid (AC-HNO3). The physicochemical properties of the modified AC were characterized using Fourier Transform Infra-Red (FTIR), X-ray Diffraction (XRD), Field Emission Scanning Electron Microscope (FESEM) and Surface area analyzer and Porosity analysis (SAP). The AC modified with deionized water (AC-DI) exhibited superior adsorption performance with 99% of methylene blue removal within 8 hours. Gratifyingly, the AC-DI has the fastest adsorption uptake within 2 hours in comparison to AC, AC-KOH and AC-HNO3 samples. The superior methylene blue removal performance of AC-DI was attributed to the enhanced surface group functionalization over the surface of AC evidenced from the FTIR analysis. In addition, the better crystallinity of AC-DI sample as shown in XRD and FESEM micrograph analysis does help to improve the adsorption of contaminated dye molecules onto the surface complex of AC, results in a superior rate of methylene blue removal. These results suggest that the alkali-acid treatment shows promises in enhancing the adsorption rate capabilities of commercial AC for the removal of basic dyes from wastewater.
机译:通过活性炭(AC)技术的废水中去除污染的染料是一种很有前途的替代目前的常规无公害技术。在本文中,具有增强的吸附性能容量商用AC经由与碱酸处理调制进行了综合研究。高度浓缩的亚甲基蓝溶液的去除通过用去离子水(AC-DI)处理的商用AC,氢氧化钾(AC-KOH)和硝酸(AC-HNO 3)进行评价。使用傅里叶变换红外(FTIR),X射线衍射(XRD),场发射扫描电子显微镜(FESEM)和表面积分析仪和孔隙率分析(SAP)改性AC的物理化学性质进行了表征。交流改性用去离子水(AC-DI)显示出优异的吸附性能与在8小时内的亚甲基蓝除去99%。令人欣慰的AC-DI具有相比于AC,AC-KOH和AC-HNO3样品2小时内最快吸附摄取。 AC-DI的优异的亚甲基蓝除去性能归因于AC的表面上的提高的表面官能团从FTIR分析证实。此外,如在X射线衍射和FESEM显微照片分析示出AC-DI样品的更好的结晶确实有助于改善污染染料分子吸附到AC,结果在亚甲基蓝除去的优良率的表面复合物。这些结果表明,在提高商用交流的吸附速率能力用于除去从废水中的碱性染料的碱酸处理节目承诺。

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