School of Engineering, University of British Columbia, EME 3218, 3333 University Way, Kelowna, BC, Canada V1V 1V7.
J Hazard Mater. 2013 Nov 15;262:539-44. doi: 10.1016/j.jhazmat.2013.09.025. Epub 2013 Sep 19.
The sustainability of ion-exchange treatment processes using high capacity single use resins to remove nitrate from contaminated drinking water can be achieved by regenerating the exhausted resin and reusing it multiple times. In this study, multi cycle loading and bioregeneration of tributylamine strong base anion (SBA) exchange resin was studied. After each cycle of exhaustion, biological regeneration of the resin was performed using a salt-tolerant, nitrate-perchlorate-reducing culture for 48 h. The resin was enclosed in a membrane to avoid direct contact of the resin with the culture. The results show that the culture was capable of regenerating the resin and allowing the resin to be used in multiple cycles. The concentrations of nitrate in the samples reached a peak in first 0.5-1h after placing the resin in medium because of desorption of nitrate from resin with desorption rate of 0.099 ± 0.003 hr(-1). After this time, since microorganisms began to degrade the nitrate in the aqueous phase, the nitrate concentration was generally non-detectable after 10h. The average of calculated specific degradation rate of nitrate was -0.015 mg NO3(-)/mg VSS h. Applying 6 cycles of resin exhaustion/regeneration shows resin can be used for 4 cycles without a loss of capacity, after 6 cycles only 6% of the capacity was lost. This is the first published research to examine the direct regeneration of a resin enclosed in a membrane, to allow reuse without any disinfection or cleaning procedures.
使用高容量一次性树脂去除受污染饮用水中的硝酸盐的离子交换处理过程的可持续性,可以通过再生耗尽的树脂并多次重复使用来实现。本研究研究了三丁胺强碱阴离子(SBA)交换树脂的多循环负载和生物再生。在每次耗尽循环之后,使用耐盐、硝酸盐-高氯酸盐还原培养物进行 48 小时的生物再生。树脂被包裹在膜中以避免树脂与培养物直接接触。结果表明,该培养物能够再生树脂,并允许树脂在多个循环中使用。将树脂放入培养基中后的 0.5-1 小时内,样品中的硝酸盐浓度达到峰值,因为硝酸盐从树脂中解吸,解吸速率为 0.099±0.003hr(-1)。在此之后,由于微生物开始降解水相中硝酸盐,因此在 10 小时后硝酸盐浓度通常无法检测到。计算出的硝酸盐的平均特定降解速率为-0.015mgNO3(-)/mgVSSh。应用 6 个树脂耗尽/再生循环表明,树脂可以在没有容量损失的情况下使用 4 个循环,在 6 个循环之后,只有 6%的容量损失。这是第一篇研究在膜中封装的树脂的直接再生的研究,无需任何消毒或清洁程序即可允许重复使用。