首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Removal of Synthetic Dye by Chlorella vulgaris Microalgae as Natural Adsorbent
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Removal of Synthetic Dye by Chlorella vulgaris Microalgae as Natural Adsorbent

机译:Chlarla Vallara Microalgae作为天然吸附剂去除合成染料

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摘要

Owing to its abundant availability in the nature, microalgae can be served as a potential natural sorbent for water remediation. In this study, Chlorella vulgaris (a species of microalgae) was used to remove two synthetic dyes (i.e. positively charged methylene blue and negatively charged acid orange 7) from water. Results showed that the C. vulgaris able to remove methylene blue by surface adsorption through electrostatic interaction. Nevertheless, poor or even no removal was attained for acid orange 7. Apparently, the adsorption of dye on the C. vulgaris is oriented by the surface charge effect. In the case of methylene blue, the highest removal efficiency was attained at 100 mg/L initial dye concentration, whereby 83.04±2.94% of removal was recorded after 3 days of adsorption. Additionally, the removal mechanism was found to fit better into the Freundlich isotherm which indicates the presence of the multilayer adsorption in this experiment. Biochemical composition of the C. vulgaris was studied after dye removal in order to investigate the effect of dye adsorption on the quality of microalgal biomass and the potential by-products produced from the microalgal biomass. Result showed that the total carbohydrates and total chlorophyll were at the highest amount after 1 week of the adsorption process. Here, the concentration of both total carbohydrates and total chlorophyll was 46.65±2.6 mg/L and 247.31±17.88 mg/L, respectively.
机译:由于其具有丰富的性质,微藻可以作为潜在的天然吸附剂供水,用于水处理。在这项研究中,使用来自水的小球藻(一种微藻)除去两个合成染料(即带正电荷的亚甲基蓝色和带负电荷的酸橙7)。结果表明,v语文能够通过静电相互作用通过表面吸附除去亚甲蓝。然而,酸性橙7达到差或甚至没有去除。显然,染料对C.Vulgaris的吸附是通过表面电荷效应定向的。在亚甲基蓝色的情况下,以100mg / L初始染料浓度达到最高的去除效率,从而在吸附3天后记录83.04±2.94%的去除。另外,发现去除机制适合于Freundlich等温线,这表明在该实验中存在多层吸附。在去除染料后,研究了C.Vulgaris的生化组合物,以研究染料吸附对微藻生物量质量的影响和微藻生物量产生的潜在产物。结果表明,在吸附过程的1周后,总碳水化合物和总叶绿素最多。这里,总碳水化合物和总叶绿素的浓度分别为46.65±2.6mg / L和247.31±17.88 mg / L.

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  • 作者单位

    Department of Petrochemical Engineering Faculty of Engineering and Green Technology Universiti Tunku Abdul Rahman 31900 Kampar Perak Malaysia;

    Department of Petrochemical Engineering Faculty of Engineering and Green Technology Universiti Tunku Abdul Rahman 31900 Kampar Perak Malaysia;

    Department of Petrochemical Engineering Faculty of Engineering and Green Technology Universiti Tunku Abdul Rahman 31900 Kampar Perak Malaysia;

    Department of Chemical and Petroleum Engineering Faculty of Engineering Technology and Built Environment UCSI University 56000 Cheras Kuala Lumpur Malaysia;

    Faculty of Chemical and Natural Resources Universiti Malaysia Pahang 26300 Gambang Pahang Malaysia;

    Department of Petrochemical Engineering Faculty of Engineering and Green Technology Universiti Tunku Abdul Rahman 31900 Kampar Perak Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microalgae; Dye removal; Natural adsorbent; Electrostatic interaction; Biomass quality;

    机译:微藻;去除染料;天然吸附剂;静电相互作用;生物质质量;
  • 入库时间 2022-08-18 21:04:44

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