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The use of response surface methodology to determine governing factors driving a nanodiamond-based wastewater treatment method

机译:响应面方法的使用确定管理驱动因素nanodiamond-based废水处理方法

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摘要

The purpose of this study was to determine and characterize the factors involved in the treatment of wastewater containing an azo dye, Congo red, using nanodiamond (ND). A Box Behnken study was developed by the authors that considered the dye wastewater dilution, catalyst dose, and light source. Statistical analysis, XRD, and SEM analysis confirmed that ND loses its effectiveness when the concentration is below 0.025 g/100 mL of Congo red. It was also determined that at these catalyst doses ND is primarily driven by adsorption, confirmed by observing high treatment efficiency within 30 min of each experimental run. While one cannot absolutely confirm this is the case at much higher doses of ND, it was clear that adsorption plays a major role in color removal by the carbon allotrope. An additional EDS analysis shows that ND specifically adsorbs of sodium, lead, chlorine, and sulfur from Congo red. (c) 2018 American Institute of Chemical Engineers Environ Prog, 38: 246-253, 2019
机译:本研究的目的是确定和描述参与的因素含偶氮染料废水的治理,刚果红,使用金刚石(ND)。作者研究开发的考虑染料污水稀释、催化剂剂量和光源。XRD和SEM分析证实,失去了它当浓度低于有效性刚果红的0.025克/ 100毫升。确定在这些剂量ND是催化剂主要由吸附,证实了30分钟内观察治疗效率高每个实验的运行。在多绝对确认是这种情况高剂量的ND,很明显,吸附中起着重要作用的颜色由碳移除同素异形体。ND专门吸附钠、铅、从刚果红氯和硫。美国化学工程师学会环境学监,38岁:246 - 253,2019

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