Tahir S S, Rauf Naseem
Central Laboratory for Environmental Analysis, Pakistan Environmental Protection Agency, Islamabad, Pakistan.
J Environ Manage. 2004 Dec;73(4):285-92. doi: 10.1016/j.jenvman.2004.06.009.
Bentonite clay has been used for the adsorption of Fe(II) from aqueous solutions over a concentration range of 80-200 mg/l, shaking time of 1-60 min, adsorbent dosage from 0.02 to 2 g and pH of 3. The process of uptake follows both the Langmuir and Freundlich isotherm models and also the first-order kinetics. The maximum removal (>98%) was observed at pH of 3 with initial concentration of 100 mg/l and 0.5 g of bentonite. The efficiency of Fe(II) removal was also tested using wastewater from a galvanized pipe manufacturing industry. More than 90% of Fe(II) can be effectively removed from the wastewater by using 2.0 g of the bentonite. The effect of cations (i.e. zinc, manganese, lead, cadmium, nickel, cobalt, chromium and copper) on the removal of Fe(II) was studied in the concentration range of 10-500 mg/l. All the added cations reduced the adsorption of Fe(II) at high concentrations except Zn. Column studies have also been carried out using a certain concentration of wastewater. More than 99% recovery has been achieved by using 5 g of the bentonite with 3M nitric acid solution.
膨润土已被用于从水溶液中吸附浓度范围为80 - 200毫克/升的Fe(II),振荡时间为1 - 60分钟,吸附剂用量为0.02至2克,pH值为3。吸附过程遵循朗缪尔和弗伦德里希等温线模型以及一级动力学。在pH值为3、初始浓度为100毫克/升且膨润土用量为0.5克的情况下,观察到最大去除率(>98%)。还使用镀锌管制造行业的废水测试了Fe(II)的去除效率。使用2.0克膨润土可从废水中有效去除超过90%的Fe(II)。研究了阳离子(即锌、锰、铅、镉、镍、钴、铬和铜)在10 - 500毫克/升浓度范围内对Fe(II)去除的影响。除锌外,所有添加的阳离子在高浓度下都会降低Fe(II)的吸附。还使用一定浓度的废水进行了柱实验。使用5克膨润土和3M硝酸溶液实现了超过99%的回收率。