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Degradation of metaldehyde in water by nanoparticle catalysts and powdered activated carbon

机译:纳米颗粒催化剂和粉末状活性炭降解水中的乙醛

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摘要

Metaldehyde, an organic pesticide widely used in the UK, has been detected in drinking water in the UK with a low concentration (<1 μg L−1) which is still above the European and UK standard requirements. This paper investigates the efficiency of four materials: powdered activated carbon (PAC) and carbon-doped titanium dioxide nanocatalyst with different concentrations of carbon (C-1.5, C-40, and C-80) for metaldehyde removal from aqueous solutions by adsorption and oxidation via photocatalysis. PAC was found to be the most effective material which showed almost over 90% removal. Adsorption data were well fitted to the Langmuir isotherm model, giving a q m (maximum/saturation adsorption capacity) value of 32.258 mg g−1 and a K L (Langmuir constant) value of 2.013 L mg−1. In terms of kinetic study, adsorption of metaldehyde by PAC fitted well with a pseudo-second-order equation, giving the adsorption rate constant k 2 value of 0.023 g mg−1 min−1, implying rapid adsorption. The nanocatalysts were much less effective in oxidising metaldehyde than PAC with the same metaldehyde concentration and 0.2 g L−1 loading concentration of materials under UV light; the maximum removal achieved by carbon-doped titanium dioxide (C-1.5) nanocatalyst was around 15% for a 7.5 ppm metaldehyde solution. >Graphical abstract
机译:在英国的饮用水中检测到低浓度(<1μgL −1 )的甲醛,这是一种在英国广泛使用的有机农药,仍高于欧洲和英国的标准要求。本文研究了四种材料的效率:粉状活性炭(PAC)和具有不同碳浓度(C-1.5,C-40和C-80)的碳掺杂二氧化钛纳米催化剂通过吸附和脱除水溶液中的乙醛的效率。通过光催化氧化。发现PAC是最有效的材料,其去除率几乎超过90%。吸附数据非常适合Langmuir等温线模型,其aqm(最大/饱和吸附容量)值为32.258 mg g -1 和KL(Langmuir常数)值为2.013 L mg - 1 。在动力学研究方面,PAC对甲醛的吸附与拟二阶方程拟合良好,吸附速率常数k 2值为0.023 g mg -1 min -1 < / sup>,表示快速吸附。在相同的甲醛浓度和0.2 g L −1 紫外光下材料负载量的情况下,纳米催化剂对甲醛的氧化效率远低于PAC。对于7.5 ppm的甲醛溶液,碳掺杂的二氧化钛(C-1.5)纳米催化剂实现的最大去除率约为15%。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!- fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->ᅟ

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