首页> 外文期刊>Journal of Molecular Liquids >Simultaneous removal of lead(II) ions and poly(acrylic acid) macromolecules from liquid phase using of biocarbons obtained from corncob and peanut shell precursors
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Simultaneous removal of lead(II) ions and poly(acrylic acid) macromolecules from liquid phase using of biocarbons obtained from corncob and peanut shell precursors

机译:通过玉米芯片和花生壳前体获得的生物羰及来自液相的铅(II)离子和聚(丙烯酸)大分子的同时除去铅(II)离子和聚(丙烯酸)大分子

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The activated biocarbons obtained from corncobs and peanut shells were applied for simultaneous removal of poly(acrylic acid) - PAA macromolecules and lead(II) ions from their mixed solution. The biocarbons were prepared via the two-step chemical activation, including pyrolysis of the precursors at 500 degrees C in nitrogen atmosphere, followed by impregnation with K2CO3 and heat treatment at 800 degrees C. The obtained materials were characterized using the low-temperature nitrogen adsorption-desorption method, elemental analysis and back-titration method. The activation products were micro/mesoporous biocarbons of medium developed surface area (862 and 654 m(2)/g, respectively), showing slightly acidic character of the surface. The average molecular weight of PAA ensured penetration of polymer coils into the adsorbent pores under specific pH conditions. The nanostructure of PAA adsorption layer without and with Pb(II) cations on the activated carbons surface was characterized based on the adsorption, electrokinetic, stability and microscopic data obtained from the spectrophotometric experiments, both potentiometric titration and zeta potential measurements, turbidimetric experiments and SEM imaging, respectively. It was shown that the micro/mesoporous biocarbons are effective and cheap adsorbents for simultaneous removal of polymeric macromolecules and heavy metal ions from the liquid medium (the presence of both adsorbates has an extremely favorable effect on their adsorbed amounts). (C) 2019 The Authors. Published by Elsevier B.V.
机译:从玉米板和花生壳获得的活化的生物羰基于与其混合溶液同时除去聚(丙烯酸) - Paa大分子和铅(II)离子。通过两步化学活化制备生物碳酸盐,包括在氮气氛中以500℃的500℃的前体热解,然后用K 2 CO 3浸渍并在800℃下热处理。使用低温氮吸附表征所得的材料 - 对方法,元素分析及返回滴定法。活化产物是中培养的表面积(分别为862和654m(2)/ g)的微/介孔生物羰,显示出表面的微酸性特性。 PAA的平均分子量确保在特定pH条件下将聚合物线圈渗入吸附孔中。基于从分光光度实验中获得的吸附,电动,稳定性和微观数据,浊度滴定和Zeta电位测量,浊度实验和SEM的吸附,电动,稳定性和显微镜数据,表征了PAA吸附层的PAA吸附层的纳米阳离子分别进行成像。结果表明,微/介孔生物碳是有效的,并且用于同时除去来自液体培养基的聚合物大分子和重金属离子的廉价吸附剂(两种吸附物的存在对其吸附量具有极其有利的影响)。 (c)2019年作者。由elsevier b.v出版。

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