Shandong Key Laboratory of Water Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Shandong University, 250100 Jinan, PR China.
Bioresour Technol. 2013 Sep;143:32-9. doi: 10.1016/j.biortech.2013.05.100. Epub 2013 May 30.
A novel wheat straw cellulose-g-poly (potassium acrylate)/polyvinyl alcohol (WSC-g-PKA/PVA) semi-interpenetrating polymer networks (semi-IPNs) superabsorbent resin (SAR) was prepared by graft copolymerization. The structure and performance of the WSC-g-PKA/PVA semi-IPNs SAR was studied and compared with those of wheat straw cellulose-g-poly (potassium acrylate) (WSC-g-PKA) SAR. The effects of various experimental parameters such as solution pH, concentration, contact time and ion strength on NH4(+) and PO4(3-) removal from solutions were investigated. Equilibrium isotherm data of adsorption of both NH4(+) and PO4(3-) were well fitted to the Freundlich model. Kinetic analysis showed that the pseudo-second-order kinetic model was more suitable for describing the whole adsorption process of NH4(+) and PO4(3-) on SARs. Overall, WSC-g-PKA/PVA semi-IPNs SAR showed better properties in comparison with WSC-g-PKA SAR and it could be considered as one efficient material for the removal and recovery of nitrogen and phosphorus with the agronomic reuse as a fertilizer.
一种新型的小麦秸秆纤维素-g-聚丙烯酸钾/聚乙烯醇(WSC-g-PKA/PVA)半互穿聚合物网络(半互穿网络)高吸水性树脂(SAR)是通过接枝共聚制备的。研究了 WSC-g-PKA/PVA 半互穿网络 SAR 的结构和性能,并与小麦秸秆纤维素-g-聚丙烯酸钾(WSC-g-PKA)SAR 进行了比较。考察了溶液 pH 值、浓度、接触时间和离子强度等各种实验参数对溶液中 NH4(+)和 PO4(3-)去除的影响。吸附 NH4(+)和 PO4(3-)的平衡等温线数据均很好地符合 Freundlich 模型。动力学分析表明,准二级动力学模型更适合描述 NH4(+)和 PO4(3-)在 SAR 上的整个吸附过程。总的来说,与 WSC-g-PKA SAR 相比,WSC-g-PKA/PVA 半互穿网络 SAR 具有更好的性能,可作为一种高效的氮磷去除和回收材料,具有农业再利用作为肥料的潜力。