Department of Radiochemistry and Environmental Chemistry, Faculty of Chemistry, Institute of Chemical Sciences, Maria Curie- Sklodowska University in Lublin, M. Curie-Sklodowska Sq. 3, 20-031 Lublin, Poland.
Department of Applied Chemistry, Faculty of Chemistry, Adam Mickiewicz University in Poznań, Uniwersytetu Poznańskiego 8, 61-614 Poznań, Poland.
Molecules. 2022 Nov 4;27(21):7557. doi: 10.3390/molecules27217557.
Nettle and the sage herbs were used to obtain carbonaceous adsorbents. For the biochar preparation the precursors were dried and subjected to conventional pyrolysis. Activated carbons were obtained during precursor impregnation with phosphoric(V) acid and multistep pyrolysis. The textural parameters and acidic-basic properties of the obtained adsorbents were studied. The activated carbons prepared from the above herbs were characterized by the largely developed specific surface area. The obtained carbonaceous adsorbents were used for polymer removal from aqueous solution. Poly(acrylic acid) (PAA) and polyethylenimine (PEI) were chosen, due to their frequent presence in wastewater resulting from their extensive usage in many industrial fields. The influence of polymers on the electrokinetic properties of activated carbon were considered. PAA adsorption caused a decrease in the zeta potential and the surface charge density, whereas PEI increased these values. The activated carbons and biochars were used as polymer adsorbents from their single and binary solutions. Both polymers showed the greatest adsorption at pH 3. Poly (acrylic acid) had no significant effect on the polyethylenimine adsorbed amount, whereas PEI presence decreased the amount of PAA adsorption. Both polymers could be successfully desorbed from the activated carbons and biochar surfaces. The presented studies are innovatory and greatly required for the development of new environment protection procedures.
荨麻和鼠尾草等草药被用于制备碳质吸附剂。在制备生物炭时,将前体干燥并进行常规热解。通过在前驱体中浸渍磷酸(V)和多步热解,得到了活性炭。研究了所得吸附剂的结构参数和酸碱性质。上述草药制备的活性炭具有较大的比表面积。所得碳质吸附剂用于从水溶液中去除聚合物。选择聚丙烯酸 (PAA) 和聚乙烯亚胺 (PEI),是因为它们在许多工业领域广泛使用,经常出现在废水当中。考虑了聚合物对活性炭电动特性的影响。PAA 吸附会导致 ζ 电位和表面电荷密度降低,而 PEI 则会增加这些值。活性炭和生物炭被用作单一和二元溶液中聚合物的吸附剂。两种聚合物在 pH 值为 3 时的吸附量最大。PEI 的存在对 PAA 吸附量没有显著影响,而 PAA 的存在会降低 PEI 的吸附量。两种聚合物都可以从活性炭和生物炭表面上成功解吸。所进行的研究具有创新性,对开发新的环境保护程序具有重要意义。