Gogoi Pankaj, Adhikari Pooja, Maji Tarun K
Department of Chemical Sciences, Tezpur University, Napaam, Tezpur, Assam, 784028, India.
Environ Monit Assess. 2017 Aug;189(8):383. doi: 10.1007/s10661-017-6068-2. Epub 2017 Jul 7.
A green and novel approach was demonstrated for successful remediation of arsenic from contaminated water by citric acid (CA) cross-linked water hyacinth root powder (RP). Different analytical techniques were used to investigate the binding and structural properties of prepared materials. Titanium dioxide played a significant role in the cross-linking process. Incorporation of CA into RP enhanced its integrity, and thus removal efficiency remained unaffected after several cyclic runs. Also the turbidity which formed due to treatment with uncross-linked RP was reduced to below the permissible limit. Effect of the amount of CA, material dose, treatment time, initial ion concentration, and pH were investigated. Use of 10% (w/w) CA was found to be sufficient to bring down the turbidity of the treated water below 2.5 nephelometric turbidity unit (NTU) without hampering the removal capacity/rate. A material dose of 5 g/L removed successfully total inorganic arsenic concentration to below 10 μg/L. The sorption process could be reasonably explained by Langmuir isotherm, and the maximum adsorption capacity was found to be 28 μg of arsenic/g. The material was found to be more efficient at acidic pH (pH = 6.72). The sorption process was governed by a pseudo-second-order kinetic model.
一种绿色且新颖的方法被证明可通过柠檬酸(CA)交联凤眼蓝根粉(RP)成功修复受污染水中的砷。使用了不同的分析技术来研究制备材料的结合和结构特性。二氧化钛在交联过程中发挥了重要作用。将CA掺入RP增强了其完整性,因此在几次循环运行后去除效率仍不受影响。此外,未交联RP处理产生的浊度降低到了允许限度以下。研究了CA用量、材料剂量、处理时间、初始离子浓度和pH的影响。发现使用10%(w/w)的CA足以将处理后水的浊度降至2.5散射浊度单位(NTU)以下,同时不影响去除能力/速率。5 g/L的材料剂量成功地将总无机砷浓度降至10 μg/L以下。吸附过程可用朗缪尔等温线合理解释,最大吸附容量为28 μg砷/g。发现该材料在酸性pH(pH = 6.72)下更有效。吸附过程受准二级动力学模型控制。