Zhao Shuang, Wang Feng, Jia Wenlin, Sun Qianshu, Zou Zhangjian
School of Chemistry and Materials Science, Jiangsu Normal University Xuzhou 221116 China
Center for Energy, Environment and Ecology Research, UR-BNU, Beijing Normal University Beijing 100875 China.
RSC Adv. 2019 Dec 5;9(69):40316-40325. doi: 10.1039/c9ra08206a. eCollection 2019 Dec 3.
Silver nanoparticles (AgNPs) in surface water cause a serious threat to the health of humans and aquatic organisms. However, it is difficult to remove AgNPs completely since they could adsorb onto the surface of humic acid (HA) and meanwhile release Ag into water. In this paper, polysaccharides (Ep) were applied as a coagulant aid with polyaluminum chloride (PAC) to solve this problem. The influences of Ep dosage, dosing sequence and solution pH on the coagulation efficiency, kinetics and removal mechanism of AgNPs were discussed systematically. Results showed that when Ep was applied, AgNPs could be removed effectively due to charge neutralization of PAC hydrolysate and the bridging-sweeping role of Ep gel network. When Ep was added 30 s after PAC dosing, the coagulation efficiency was about 10-20% higher than that of the reverse order. Under this condition, flocs sizes achieved 450 μm when the solution pH was 6.0, which is much larger than that using Ep-PAC. Additionally, Ep showed an ability to promote the re-aggregation of broken flocs, and AgNP-HA flocs exhibited larger sizes, better shear resistance, higher recovery ability and denser structure at pH 6.0. Factorial analysis results indicated that PAC dosage had the greatest impact on HA and AgNP removal, while Ag removal is more sensitive to Ep dosage.
地表水中的银纳米颗粒(AgNPs)对人类和水生生物的健康构成严重威胁。然而,由于AgNPs会吸附在腐殖酸(HA)表面并同时向水中释放银,因此很难将其完全去除。本文采用多糖(Ep)作为聚合氯化铝(PAC)的助凝剂来解决这一问题。系统地讨论了Ep投加量、投加顺序和溶液pH值对AgNPs混凝效率、动力学及去除机理的影响。结果表明,投加Ep时,由于PAC水解产物的电荷中和作用和Ep凝胶网络的架桥-卷扫作用,AgNPs能够被有效去除。当在PAC投加30 s后添加Ep时,混凝效率比相反顺序高约10-20%。在此条件下,溶液pH值为6.0时絮体尺寸达到450μm,远大于使用Ep-PAC时的尺寸。此外,Ep表现出促进破碎絮体重新聚集的能力,并且在pH值为6.0时,AgNP-HA絮体尺寸更大、抗剪切性更好、恢复能力更高且结构更致密。因子分析结果表明,PAC投加量对HA和AgNP去除的影响最大,而Ag去除对Ep投加量更敏感。