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Adsorption and Photodegradation of Methylene Blue by Allophane and Nanocomposite Bismuth Oxyiodide-Allophane

机译:偏爱亚硫氰酸铋 - 苯甲酸铋亚甲基蓝的吸附和光降解

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摘要

This study examines the ability of allophane as an adsorbent and photocatalytic capability of nanocomposite bismuth oxyiodide (BiOI)-allophane in removal of methylene blue dye. Adsorption was performed by using 50 mg of allophane from volcanic soil of mount Gamalama. The adsorption results showed that the optimum contact time is 10 min with adsorption percentage 91.81%. The percentage of adsorption decreases with increasing contact time and reaches equilibrium at about in 120 min. The initial concentration of methylene blue has an effect on the adsorption percentage. This is evidenced by the increased adsorption percentage of 73.35,78.78, 82.12, 87.81 %, respectively for concentrations of 20, 50,80 and 100 ppm. The photodegradation test results showed an excellent photocatalytic ability of BiOI-allophane composites. Using direct sunlight for 45 min, the percentage of photodegradation is 99.46 %. Increased contents of allophane in BiOI-allophane nanocomposite increases the photocatalytic ability.
机译:本研究检测司胺作为纳米复合铋氧碘酰胺(BioI) - 除去亚甲基蓝染料中的吸附剂和光催化能力。通过使用Mount Gamalama的Volcanic土壤中使用50mg羟色胺进行吸附。吸附结果表明,最佳接触时间为10分钟,吸附百分比91.81%。吸附的百分比随着接触时间的增加而降低,并在120分钟内达到平衡。亚甲基蓝的初始浓度对吸附百分比有影响。这可以通过增加20,50,80和100ppm的浓度增加73.35,78.78,82.12,87.81%的吸附百分比。光降解试验结果表明生物 - 苯胺嘧啶复合材料的优异光催化能力。使用直射阳光45分钟,光降解的百分比为99.46%。生物嘧烷纳米复合材料中的所有硫酮的含量增加增加了光催化能力。

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