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首页> 外文期刊>New Journal of Chemistry >Dual adsorbent-photocatalytic keratin-TiO(2)nanocomposite for trimethoprim removal from wastewater
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Dual adsorbent-photocatalytic keratin-TiO(2)nanocomposite for trimethoprim removal from wastewater

机译:双吸附剂 - 光催化角蛋白-TIO(2)纳米复合材料,用于摩擦摩擦除去

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摘要

Trimethoprim is an emerging pollutant that has been found in ground water in alarming concentrations. Thus, the development of economical and efficient advanced water treatment technologies is crucially needed. In this paper, a keratin hydrogel with immersed TiO(2)nanoparticles (nTiO(2)) was developed. The material was characterized by using FT-IR and FT-Raman spectroscopies that showed that a physical interaction between nTiO(2)and the keratin hydrogel took place. Dielectric spectroscopy confirmed the influence of this interaction on the keratin structure. Swelling studies showed that it depended on the medium pH, being higher at basic pH values. Photocurrent measurements revealed an enhanced photocurrent of the hydrogels, which may be due to the improved transport of the photogenerated carriersviathe porous network structure. The model pollutant was trimethoprim, an emerging pollutant. These hydrogels showed the ability to adsorb and degrade trimethoprim in the presence of simulated solar light under batch conditions for at least four cycles with no significant decrease in efficiency. Experimental variables (time, temperature, and pH) were studied in order to characterize the material adsorption and photodegradation performance, concluding that temperature is the main variable to consider in the adsorption process.
机译:甲氧苄啶是已在地下水被发现报警浓度的新型污染物。因此,关键的是需要经济高效的先进水处理技术的发展。在本文中,用浸渍的TiO(2)纳米颗粒的角蛋白的水凝胶(NTIO(2))的开发。该材料特征在于,使用FT-IR和FT-拉曼光谱的是表明NTIO(2)和角蛋白的水凝胶之间的物理相互作用发生。介电谱证实角蛋白结构这种相互作用的影响。肿胀的研究表明,它依赖于培养基pH值,处于碱性pH值较高。光电流测量结果表明水凝胶,其可以是增强的光电流由于改进的传输的光生carriersviathe多孔网络结构。该模型污染物为甲氧苄啶,一种新兴的污染物。这些水凝胶显示出模拟太阳光的批次条件下在存在至少四个周期与效率没有降低显著的能力,以吸附和降解甲氧苄啶。实验变量(时间,温度和pH)进行了研究,以表征材料吸附和光降解性能,得出的结论是温度是在吸附过程要考虑的主要变量。

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  • 来源
    《New Journal of Chemistry 》 |2020年第26期| 共9页
  • 作者单位

    Univ Buenos Aires UBA Fac Farm &

    Bioquim Dept Quim Analit &

    Fisicoquim Junin 956 C1113AAD Buenos Aires DF Argentina;

    Univ Buenos Aires UBA Fac Farm &

    Bioquim Dept Quim Analit &

    Fisicoquim Junin 956 C1113AAD Buenos Aires DF Argentina;

    Univ Buenos Aires UBA CONICET Inst Quim &

    Metab Farmaco IQUIMEFA Buenos Aires DF Argentina;

    Univ Buenos Aires UBA Fac Farm &

    Bioquim Dept Quim Analit &

    Fisicoquim Junin 956 C1113AAD Buenos Aires DF Argentina;

    Univ Buenos Aires UBA Fac Farm &

    Bioquim Dept Quim Analit &

    Fisicoquim Junin 956 C1113AAD Buenos Aires DF Argentina;

    Univ Buenos Aires UBA Fac Farm &

    Bioquim Dept Quim Analit &

    Fisicoquim Junin 956 C1113AAD Buenos Aires DF Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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