Jorgensen T C, Weatherley L R
Department of Chemical & Process Engineering, University of Canterbury, Christchurch, New Zealand.
Water Res. 2003 Apr;37(8):1723-8. doi: 10.1016/S0043-1354(02)00571-7.
The scope of this study was the removal of ammonium by ion exchange from simulated wastewater. The study looks at the effect of organics upon ammonium ion exchange equilibrium uptake. The ion exchangers included a natural zeolite clinoptilolite, and two polymeric exchangers, Dowex 50w-x8, and Purolite MN500. The organic compounds studied included citric acid and a number of proteins. The traditional method for removal of ammonium and organic pollutants from wastewater is biological treatment, but ion exchange offers a number of advantages including the ability to handle shock loadings and the ability to operate over a wider range of temperatures. The results show that in most of the cases studied, the presence of organic compounds enhances the uptake of ammonium ion onto the ion exchangers.
本研究的范围是通过离子交换从模拟废水中去除铵。该研究考察了有机物对铵离子交换平衡吸附的影响。离子交换剂包括天然沸石斜发沸石以及两种聚合离子交换剂,即陶氏化学公司的Dowex 50w - x8和漂莱特公司的Purolite MN500。所研究的有机化合物包括柠檬酸和多种蛋白质。从废水中去除铵和有机污染物的传统方法是生物处理,但离子交换具有许多优点,包括能够处理冲击负荷以及能够在更宽的温度范围内运行。结果表明,在所研究的大多数情况下,有机化合物的存在会增强铵离子在离子交换剂上的吸附。