Yue Yiying, Wang Xianhui, Wu Qinglin, Han Jingquan, Jiang Jianchun
College of Biology and the Environment, Nanjing Forestry University, Nanjing 210037, China.
School of Renewable Natural Resources, Louisiana State University Agricultural Center, Baton Rouge, LA 70803, USA.
Polymers (Basel). 2019 Jul 26;11(8):1239. doi: 10.3390/polym11081239.
Hydrogels have been widely used in water purification. However, there is not much discussion and comparison about the effects of different nanofillers on the reinforcement and adsorption performances of hydrogels, which can be subjected to rapid water flow and possess strong adsorption ability. In this work, polyacrylamide (PAAM)-sodium alginate (SA) interpenetrating polymer network-structured hydrogels were prepared by in situ polymerization. PAAM formed the first flexible network and SA constructed the second rigid network. Three kinds of inorganic nanoparticles including carbon nanotubes (CNTs), nanoclays (NCs), and nanosilicas (NSs) were incorporated into a PAAM-SA matrix via hydrogen bond. The obtained hydrogels exhibited a macroporous structure with low density (≈1.4 g/cm) and high water content (≈83%). Compared with neat PAAM-SA, the hydrogels with inorganic nanoparticles possessed excellent mechanical strengths and elasticities, and the compression strength of PAAM-SA-NS reached up to 1.3 MPa at ε = 60% by adding only 0.036 g NS in a 30 g polymer matrix. However, CNT was the best filler to improve the adsorption capacity owing to its multi-walled hollow nanostructure, and the adsorption capacity of PAAM-SA-CNT was 1.28 times higher than that of PAAM-SA. The prepared hydrogels can be potential candidates for use as absorbents to treat wastewater.
水凝胶已广泛应用于水净化领域。然而,对于不同纳米填料对水凝胶增强和吸附性能的影响,目前的讨论和比较并不多,这些水凝胶能够承受快速水流并具有强大的吸附能力。在这项工作中,通过原位聚合法制备了聚丙烯酰胺(PAAM)-海藻酸钠(SA)互穿聚合物网络结构的水凝胶。PAAM形成了第一个柔性网络,SA构建了第二个刚性网络。通过氢键将包括碳纳米管(CNT)、纳米黏土(NC)和纳米二氧化硅(NS)在内的三种无机纳米粒子引入PAAM-SA基质中。所得水凝胶呈现出大孔结构,密度低(约1.4 g/cm)且含水量高(约83%)。与纯PAAM-SA相比,含有无机纳米粒子的水凝胶具有优异的机械强度和弹性,在30 g聚合物基质中仅添加0.036 g NS时,PAAM-SA-NS在ε = 60%时的压缩强度高达1.3 MPa。然而,由于其多壁中空纳米结构,CNT是提高吸附容量的最佳填料,PAAM-SA-CNT的吸附容量比PAAM-SA高1.28倍。所制备的水凝胶有望成为处理废水的吸附剂候选材料。