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The Indigo Blue Dye Decolorization Potential of Immobilized Scenedesmus quadricauda

机译:固定的Scendesmus quadricauda的靛蓝染料脱色潜能

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摘要

In this study, Scenedesmus quadricauda ABU12 was immobilized with sodium alginate to determine its potential for decolorizing indigo blue dye under different incubation conditions. The microalga was incubated at different pH (6.5-9.5), biomass concentrations (0.1-1.0 g l~(-1)), dye concentrations (12-75 mg l~(-1)) and temperatures (25-40℃). The concentration of biomass used significantly determined the rate of dye decolorization, as the lowest biomass concentration (0.10 g) was able to completely decolorize the dye by day 3, while the highest biomass concentration (1.00 g l~(-1)) attained 100 % decolorization on day 4. Neutral pHs supported the highest dye decolorization rates compared alkaline pHs. The rate of dye decolorization had a linear relationship with the concentration of the dye in solution as increasing dye concentration in the medium significantly reduced the rate of decolorization (p<0.05). At 25℃, the rate of dye decolorization was consistently higher from day 2 to the end of the experiment. Infra-red analyses of the algal biomass and the dye solution was done in Kbr by pressing between flat aperture plates of sodium chloride and scanning from 4, 000 to 625 cm~(-1). This revealed the presence of functional groups associated with the biomass and dye that provided possible explanations for the decolorization of the dye under the different incubation conditions. These results showed that immobilized 5. quadricauda is capable of decolorizing indigo blue dye at low biomass when immobilized with sodium alginate. However, this was dependent on the incubation temperature and dye concentration.
机译:在这项研究中,海藻酸钠固定了Quadricauda Scenedesmus ABU12,以确定其在不同孵育条件下使靛蓝染料脱色的潜力。将微藻在不同的pH(6.5-9.5),生物质浓度(0.1-1.0 g l〜(-1)),染料浓度(12-75 mg l〜(-1))和温度(25-40℃)下孵育。所使用的生物量浓度显着决定了染料的脱色速度,因为最低的生物量浓度(0.10 g)能够在第3天之前使染料完全脱色,而最高的生物量浓度(1.00 gl〜(-1))达到100%在第4天进行脱色。与碱性pH相比,中性pH支持最高的染料脱色率。染料脱色率与溶液中染料浓度成线性关系,因为介质中染料浓度的增加显着降低了脱色率(p <0.05)。在第25天,从第2天到实验结束,染料的脱色率一直较高。藻类生物量和染料溶液的红外分析是在Kbr中进行的,方法是在氯化钠的平板孔径板之间按压并从4,000到625 cm〜(-1)进行扫描。这揭示了与生物质和染料相关的官能团的存在,这为在不同温育条件下染料脱色提供了可能的解释。这些结果表明,当固定有藻酸钠时,固定化的5. Quadricauda能够以低生物量使靛蓝染料脱色。但是,这取决于孵育温度和染料浓度。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2014年第4期|1920.1-1920.9|共9页
  • 作者单位

    Laboratorio de Cianobacterias, Escola Superior de Agriculture Luiz de Queiroz, University of Sao Paulo, Piracicaba, SP CEP 13418-900, Brazil;

    Department of Biological Sciences, Ahmadu Bello University, Zaria 810001, Nigeria;

    National Research Institute for Chemical Technology, Basawa, Zaria 810001, Nigeria;

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

    Color removal; Textile effluents; Microalgae; Sodium alginate; Encapsulation;

    机译:脱色;纺织废水;微藻;海藻酸钠;封装形式;
  • 入库时间 2022-08-17 13:39:17

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