Akhtar Mubeena, Iqbal Shahid, Bhanger M I, Zia-Ul-Haq Muhammad, Moazzam Muhammad
National Center of Excellence in Analytical Chemistry, University of Sindh, Jamshoro 76080, Pakistan.
Colloids Surf B Biointerfaces. 2009 Feb 15;69(1):63-70. doi: 10.1016/j.colsurfb.2008.10.019. Epub 2008 Nov 11.
The sorption efficiency of chickpea husk of black gram variety (BGH), for the removal of organophosphorous pesticides (OPPs), i.e. triazophos (TAP) and methyl parathion (MP) from aqueous media has been investigated. Optimization of operating sorption parameters, i.e. particle size, sorbent dose, agitation time, pH, initial concentration of sorbates, and temperature has been studied. The sorption data fitted well to Freundlich, Langmuir and Dubinin-Radushkevich (D-R) sorption isotherms. The maximum sorption capacities of BGH for TAP and MP were calculated to be 3.5+/-0.45 and 10.6+/-0.83 mmol g(-1) by Freundlich, 0.0077+/-0.021 and 0.025+/-0.0094 mmol g(-1) by Langmuir and 0.48+/-0.037 and 0.15+/-0.077 mmol g(-1) by D-R isotherms respectively, employing 0.2g of sorbent, at pH 6, 90 min agitation time and at 303 K. Application of first order Lagergren and Morris-Weber equations to the kinetic data yielded correlation coefficients, close to unity and showed partial intra-particle diffusion. The negative values of thermodynamic parameters, i.e. DeltaH (kJ mol(-1)), DeltaS (J mol(-1) K(-1)) and DeltaG (kJ mol(-1)) indicate the exothermic and spontaneous nature of the sorption process. The sorbed pesticides were recovered by sonication with methanol, making the regeneration and reutilization of the sorbents promising. The investigated sorbent exhibited potential applications in water decontamination, treatments of industrial and agricultural waste waters and thus productively demonstrated viable use of agricultural waste material.
研究了黑绿豆品种鹰嘴豆壳(BGH)从水介质中去除有机磷农药(OPPs),即三唑磷(TAP)和甲基对硫磷(MP)的吸附效率。研究了操作吸附参数的优化,即粒径、吸附剂剂量、搅拌时间、pH值、吸附质初始浓度和温度。吸附数据与Freundlich、Langmuir和Dubinin-Radushkevich(D-R)吸附等温线拟合良好。在pH值为6、搅拌时间为90分钟、温度为303K的条件下,使用0.2g吸附剂,通过Freundlich计算得出BGH对TAP和MP的最大吸附容量分别为3.5±0.45和10.6±0.83 mmol g(-1),通过Langmuir计算得出分别为0.0077±0.021和0.025±0.0094 mmol g(-1),通过D-R等温线计算得出分别为0.48±0.037和0.15±0.077 mmol g(-1)。将一级Lagergren和Morris-Weber方程应用于动力学数据,得到的相关系数接近1,表明存在部分颗粒内扩散。热力学参数的负值,即ΔH(kJ mol(-1))、ΔS(J mol(-1) K(-1))和ΔG(kJ mol(-1))表明吸附过程是放热的且自发的。通过用甲醇超声处理回收吸附的农药,这使得吸附剂的再生和再利用具有前景。所研究的吸附剂在水净化、工业和农业废水处理中显示出潜在应用,从而有效地证明了农业废料的可行用途。