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Production and characterisation of activated carbon and carbon nanotubes from potato peel waste and their application in heavy metal removal

机译:马铃薯剥离废物活性炭和碳纳米管的生产和表征及其在重金属中的应用

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Herein, activated carbon (AC) and carbon nanotubes (CNTs) were synthesised from potato peel waste (PPW). Different ACs were synthesised via two activation steps: firstly, with phosphoric acid (designated PP) and then using potassium hydroxide (designated PK). The AC produced after the two activation steps showed a surface area as high as 833 m(2) g(-1) with a pore volume of 0.44 cm(3) g(-1), where the raw material of PPW showed a surface area < 4 m(2) g(-1). This can help aid and facilitate the concept of the circular economy by effectively up-cycling and valorising waste lignocellulosic biomass such as potato peel waste to high surface area AC and subsequently, multi-walled carbon nanotubes (MWCNTs). Consequently, MWCNTs were prepared from the produced AC by mixing it with the nitrogen-based material melamine and iron precursor, iron (III) oxalate hexahydrate. This produced hydrophilic multi-wall carbon nanotubes (MWCNTs) with a water contact angle of theta = 14.97 degrees. Both AC and CNT materials were used in heavy metal removal (HMR) where the maximum lead absorption was observed for sample PK with a 84% removal capacity after the first hour of testing. This result signifies that the synthesis of these up-cycled materials can have applications in areas such as wastewater treatment or other conventional AC/CNT end uses with a rapid cycle time in a two-fold approach to improve the eco-friendly synthesis of such value-added products and the circular economy from a significant waste stream, i.e., PPW.
机译:在此,从马铃薯剥离废物(PPW)中合成了活性炭(AC)和碳纳米管(CNT)。通过两个活化步骤合成不同的AC:首先,用磷酸(指定PP),然后使用氢氧化钾(指定的PK)。在两个激活步骤后产生的AC显示出高达833m(2 )g(-1)的表面积,孔体积为0.44cm(3 )g(-1),其中PPW的原料显示出表面区域<4米(2)g(-1)。这可以通过有效地将循环和储存废木质纤维素生物质如薯剥离对高表面积AC和随后,多壁碳纳米管(MWCNT)(MWCNT),帮助辅助和促进循环经济的概念。因此,通过将其与氮基质三聚氰胺和铁前体,铁(III)草酸六水合物混合来由所产生的AC制备MWCNT。这产生了亲水性多壁碳纳米管(MWCNT),其水接触角= 14.97度。 AC和CNT材料均用于重金属去除(HMR),其中观察到最大铅吸收的样品PK,在测试后的第一小时后的84%的去除容量。该结果使得这些上循环材料的合成可以在废水处理或其他常规AC / CNT最终用途中具有两倍以两倍的方法,以改善这种价值的环保合成的迅速循环时间 - 从重要的废物流,即PPW的产品和循环经济。

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