4.7 Article

Simultaneous sensing and photocatalytic degradation to free water from toxic dye pollutants for possible agricultural and household applications: Role of generated holes and hydroxyl radicals

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ELSEVIER SCI LTD
DOI: 10.1016/j.jece.2022.108919

关键词

Sensing and degradation; Environment hazardous dye pollutants; Clean water; Holes as oxidants; ROS; Hydroxyl radicals; Germination and plant growth; HEK293 mammalian cell; Cytotoxicity

资金

  1. DBT [BT/PR5169/BMB/2015/39]

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Careless discharge of textile/industry effluents containing carcinogenic organic dyes into local water bodies has become a major source of wastewater pollution in India. To address this issue, the researchers developed I5+/TiO2 as a smart catalyst with dual functions: colorimetric visual sensing and degradation of the dyes. The catalyst showed excellent ability in both colorimetric sensing and degradation of methyl orange and methylene blue dyes. The treated water was found to be safe for plants and human health, making it suitable for agricultural and household activities.
Careless discharge of textile/industry effluents containing carcinogenic organic dyes into local water bodies like lakes, rivers, and ponds has become the major source of wastewater pollution, threatening public health in India. Therefore, herein for the first time, we have developed I5+/TiO2 as a smart catalyst serving a dual role. Thus, the catalyst is efficient in (a) colourimetric visual sensing/discrimination of methyl orange (MeO) and Methylene blue (MeB) in water through color change and (b) degradation of such dyes upon irradiation of light (lambda > 400 nm). The I5+/TiO2 has been synthesized through a simple thermal-assisted chemical synthesis route which has shown the specific interaction with MeO resulting in color change through various photophysical experiments. We have established our synthesized nanomaterial as an excellent photocatalyst with excellent ability in photoassisted catalytic degradation of MeO and MeB dyes within 60 min. The role of various active species in the photocatalytic reaction as well as the degradation pathway of the targeted dyes have also been thoroughly studied. To establish the effectiveness of our photocatalyst, we have further extended our study to find the effect of the treated water on the germination of Vigna radiata (green gram seeds) and monitored the plants' growth until the 16th day. Additionally, we also tested the treated water on HEK293 mammalian cell lines for cytotoxicity analysis. The results obtained suggested that the treated water is completely safe and devoid of any toxicity toward plants and human health. Therefore, the I5+/TiO(2)(-)assisted photocatalytic treated dye water can be utilized for agricultural and other household activities like washing, cleaning and gardening.

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