ALSamman Mohammad T, Sánchez Julio
Departamento de Ciencias del Ambiente, Facultad de Química y Biología, Universidad de Santiago de Chile (USACH), Santiago 9170022, Chile.
Polymers (Basel). 2023 May 5;15(9):2192. doi: 10.3390/polym15092192.
New biobased hydrogels were prepared via a semi-interpenetrating polymer network (semi-IPN) using polyacrylamide/chitosan (PAAM/chitosan) hydrogel for the adsorption of As(V) or poly acrylic acid/alginate (PAA/alginate) hydrogel for the adsorption of Cu(II). Both systems were crosslinked using N,N'-methylenebisacrylamide as the crosslinker and ammonium persulfate as the initiating agent. The hydrogels were characterized by SEM, Z-potential, and FTIR. Their performance was studied under different variables, such as the biopolymer effect, adsorbent dose, pH, contact time, and concentration of metal ions. The characterization of hydrogels revealed the morphology of the material, with and without biopolymers. In both cases, the added biopolymer provided porosity and cavities' formation, which improved the removal capacity. The Z-potential informed the surface charge of hydrogels, and the addition of biopolymers modified it, which explains the further metal removal ability. The FTIR spectra showed the functional groups of the hydrogels, confirming its chemical structure. In addition, the adsorption results showed that PAAM/chitosan can efficiently remove arsenic, reaching a capacity of 17.8 mg/g at pH 5.0, and it can also be regenerated by HNO for six cycles. On the other hand, copper-ion absorption was studied on PAA/alginate, which can remove with an adsorption capacity of 63.59 mg/g at pH 4.0, and the results indicate that it can also be regenerated by HNO for five cycles.
通过半互穿聚合物网络(semi-IPN)制备了新型生物基水凝胶,其中使用聚丙烯酰胺/壳聚糖(PAAM/壳聚糖)水凝胶吸附As(V),或使用聚丙烯酸/海藻酸盐(PAA/海藻酸盐)水凝胶吸附Cu(II)。两种体系均使用N,N'-亚甲基双丙烯酰胺作为交联剂、过硫酸铵作为引发剂进行交联。通过扫描电子显微镜(SEM)、Zeta电位和傅里叶变换红外光谱(FTIR)对水凝胶进行了表征。在不同变量下研究了它们的性能,如生物聚合物效应、吸附剂剂量、pH值、接触时间和金属离子浓度。水凝胶的表征揭示了有无生物聚合物时材料的形态。在这两种情况下,添加的生物聚合物都提供了孔隙率并形成了空洞,从而提高了去除能力。Zeta电位反映了水凝胶的表面电荷,生物聚合物的添加对其进行了修饰,这解释了进一步的金属去除能力。FTIR光谱显示了水凝胶的官能团,证实了其化学结构。此外,吸附结果表明,PAAM/壳聚糖在pH值为5.0时能有效去除砷,去除容量达到17.8 mg/g,并且还可以用硝酸再生六个循环。另一方面,对PAA/海藻酸盐上的铜离子吸附进行了研究,其在pH值为4.0时的吸附容量为63.59 mg/g,结果表明它也可以用硝酸再生五个循环。