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Effective preparation of nitrogen-doped activated carbon by aniline thermal chemical vapor deposition for arsenate adsorption

机译:通过苯胺热化学气相沉积进行氮掺杂活性炭的有效制备用于砷化物吸附

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摘要

Nitrogen-free phenol resin fiber was used to examine the effect of nitrogen-introduction via thermal chemical vapor deposition (CVD) using nitrogen-containing chemicals. In this study, a combination of heat treatment, steam activation, aniline CVD was conducted to prepare the nitrogen-doped activated carbon (AC) and the effective procedure was studied to enhance arsenic adsorption capacity. As a result, consecutive treatment of steam activation as pre-treatment, aniline CVD, steam activation for porous structure, and at least heat treatment was the best processing order for the preparation of ACs. Heat-treated samples demonstrated their robustness against steam activation; therefore heat treatment should be conducted as post treatment for effective CVD process. One of the samples which was prepared by this procedure, 8ST30-8ANL10-8ST50-9.5HT30 (sample #5) showed 0.112 mmol/g of arsenate adsorption capacity, and it was at least 70% higher than that of any other prepared samples. To inspect the high adsorption capacity of this sample, the effect of solution pH, pore structure parameters, elemental analysis, and Boehm titration was conducted comparing with the other prepared samples.
机译:使用氮苯酚树脂纤维使用热化学气相沉积(CVD)使用含氮化学品来检查氮气引入的效果。在该研究中,进行了热处理,蒸汽活化,苯胺CVD的组合以制备氮掺杂的活性炭(AC),研究了有效方法以增强砷吸附能力。结果,连续处理蒸汽活化作为预处理,苯胺CVD,多孔结构的蒸汽活化,并且至少热处理是用于制备ACS的最佳加工顺序。热处理的样品证明了它们对蒸汽活化的鲁棒性;因此,应进行热处理作为有效CVD工艺的后处理。通过该方法制备的样品80-8Anl10-8St50-9.5HT30(样品#5)显示出0.112mmol / g的砷化物吸附能力,并且比任何其他制备的样品的样品高至少70%。为了检查该样品的高吸附能力,与其他制备的样品相比,对溶液pH,孔隙结构参数,元素分析和Boehm滴定的影响进行了影响。

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