Simsek Halis, Kobya Mehmet, Khan Eakalak, Bezbaruah Achintya N
a Department of Agricultural and Biosystems Engineering , North Dakota State University , Fargo , ND , USA.
Environ Technol. 2015 Jul-Aug;36(13-16):1612-22. doi: 10.1080/09593330.2014.999829. Epub 2015 Jan 27.
The removal of cyanide (CN-) from aqueous solutions using a strongly basic ion-exchange resin, Purolite A-250, was investigated. The effects of contact time, initial CN- concentration, pH, temperature, resin dosage, agitation speed, and particle size distribution on the removal of CN- were examined. The adsorption equilibrium data fitted the Langmuir isotherm very well. The maximum CN- adsorption capacity of Purolite A-250 was found to be 44 mg CN- g(-1) resin. More than 90% CN- adsorption was achieved for most CN- solutions (50, 100, and 200 mg CN- L(-1)) with a resin dose of 2 g L(-1). The equilibrium time was ∼20 min, optimum pH was 10.0-10.5, and optimum agitation speed was 150 rpm. An increase in adsorption of CN- with increasing resin dosage was observed. Adsorption of CN- by the resin was marginally affected (maximum 4% variation) within an environmentally relevant temperature range of 20-50 °C. Fixed-bed column (20.5 mm internal diameters) experiments were performed to investigate the effects of resin bed depth and influent flow rate on breakthrough behaviour. Breakthrough occurred in 5 min for 0.60 cm bed depth while it was 340 min for 5.40 cm bed depth. Adsorption capacity was 25.5 mg CN- g(-1) for 5 mL min(-1) flow rate and 3.9 mg CN- g(-1) for 20 mL min(-1) flow rate. The research has established that the resin can be effectively used for CN- removal from aqueous solutions.
研究了使用强碱性离子交换树脂Purolite A - 250从水溶液中去除氰化物(CN⁻)的情况。考察了接触时间、初始CN⁻浓度、pH值、温度、树脂用量、搅拌速度和粒径分布对CN⁻去除效果的影响。吸附平衡数据与朗缪尔等温线拟合良好。发现Purolite A - 250对CN⁻的最大吸附容量为44 mg CN⁻ g⁻¹树脂。对于大多数CN⁻溶液(50、100和200 mg CN⁻ L⁻¹),当树脂用量为2 g L⁻¹时,CN⁻吸附率超过90%。平衡时间约为20分钟,最佳pH值为10.0 - 10.5,最佳搅拌速度为150 rpm。观察到随着树脂用量增加,CN⁻的吸附量增加。在20 - 50 °C的环境相关温度范围内,树脂对CN⁻的吸附受到的影响很小(最大变化4%)。进行了固定床柱(内径20.5 mm)实验,以研究树脂床深度和进水流量对穿透行为的影响。对于0.60 cm的床深,5分钟出现穿透,而对于5.40 cm的床深,穿透时间为340分钟。对于5 mL min⁻¹的流速,吸附容量为25.5 mg CN⁻ g⁻¹,对于20 mL min⁻¹的流速,吸附容量为3.9 mg CN⁻ g⁻¹。该研究表明,该树脂可有效用于从水溶液中去除CN⁻。