Institute of Theoretical and Experimental Biophysics Russian Academy of Science, Institutskaya St., 3, 142290 Puschino, Moscow Region, Russia.
Int J Mol Sci. 2023 Feb 1;24(3):2834. doi: 10.3390/ijms24032834.
Anthropogenic activity negatively affects the environment by polluting it with the salts of various metals. One of the ways to reduce this influence is to use water purification methods for the salts of various metals. Water purification methods based on nanomaterials are promising. In this regard, we proposed to study polyelectrolyte microcapsules (PMC) as a promising sorption agent for the salts of various metals. It was found that the polystyrene sulfonate-polyallylamine (PSS-PAH) polyelectrolyte complex and polyelectrolyte microcapsules of different compositions are not able to adsorb salts CuSO, Pb(NO), FeCl, and CuCl. At the same time, it was found that all types of capsules, except for (PSS/PAH)/PSS, are capable of sorbing about 420 µg of K[Fe(CN)] and about 500 µg of K[Fe(CN)] from solution. The adsorption of polyelectrolyte microcapsules has an electrostatic nature which is confirmed by increases in the sorption capacity of PMC of K[Fe(CN)] and K[Fe(CN)] with decreases in the pH of the solution. Also, It was confirmed that the sorption process of PMC of K[Fe(CN)] and K[Fe(CN)] is concentration dependent and has the limitation of the number of binding sites.
人为活动通过污染各种金属盐来对环境造成负面影响。减少这种影响的一种方法是使用各种金属盐的水净化方法。基于纳米材料的水净化方法具有广阔的前景。在这方面,我们提出研究聚电解质微胶囊(PMC)作为各种金属盐的有前途的吸附剂。研究发现,聚苯乙烯磺酸钠-聚烯丙胺(PSS-PAH)聚电解质复合物和不同组成的聚电解质微胶囊不能吸附 CuSO、Pb(NO)、FeCl 和 CuCl 盐。同时,发现除了(PSS/PAH)/PSS 之外的所有类型的胶囊都能够从溶液中吸附约 420 µg 的 K[Fe(CN)]和约 500 µg 的 K[Fe(CN)]。聚电解质微胶囊的吸附具有静电性质,这一点通过降低溶液的 pH 值,增加 PMC 对 K[Fe(CN)]和 K[Fe(CN)]的吸附容量得到证实。此外,还证实了 PMC 对 K[Fe(CN)]和 K[Fe(CN)]的吸附过程是浓度依赖性的,并且存在结合位点数量的限制。