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51.
Abstract

The wood charcoal treated by 1N HNO3 (WCT) was used to remove toxic chlorinated pesticide lindane (y‐HCH) residue from water by the sorption process. Using a simple first order reversible kinetics constants and half time equations, the film and pore diffusion coefficients were determined. Film diffusion was found to be rate limiting step in sorbing lindane by WCT. This was further authenticated by kinetics studies at different initial sorbate concentrations, different sorbent sizes, and different agitation speeds besides interruption test. A pore diffusion model was used to fit the data of kinetics in continuously mixed batch reactors (CMBR), and the tortuosity, external resistance, and surface diffusion effects on lindane sorption by WCT were noticed. The tortuosity values of 15 to 28 were obtained for WCT‐lindane system.  相似文献   
52.
Abstract

The sorption and desorption characteristics of four herbicides (diuron, fluometuron, prometryn and pyrithiobac‐sodium) in three different cotton growing soils of Australia was investigated. Kinetics and equilibrium sorption and desorption isotherms were determined using the batch equilibrium technique. Sorption was rapid (> 80% in 2 h) and sorption equilibrium was achieved within a short period of time (ca 4 h) for all herbicides. Sorption isotherms of the four herbicides were described by Freundlich equation with an r2 value > 0.98. The herbicide sorption as measured by the distribution coefficient (Kd) values ranged from 3.24 to 5.71 L/kg for diuron, 0.44 to 1.13 L/kg for fluometuron, 1.78 to 6.04 L/kg for prometryn and 0.22 to 0.59 L/kg for pyrithiobac‐sodium. Sorption of herbicides was higher in the Moree soil than in Narrabri and Wee Waa soils. When the Kd values were normalised to organic carbon content of the soils (KoC), it suggested that the affinity of the herbicides to the organic carbon increased in the order: pyrithiobac‐sodium < fluometuron < prometryn < diuron. The desorption isotherms were also adequately described by the Freundlich equation. For desorption, all herbicides exhibited hysteresis and the hysteresis was stronger for highly sorbed herbicides (diuron and prometryn) than the weakly sorbed herbicides (fluometuron and pyrithiobac‐sodium). Hysteresis was also quantified as the percentage of sorbed herbicides which is not released during the desorption step ω = [nad / nde ‐1] x 100). Soil type and initial concentration had significant effect on ω. The effect of sorption and desorption properties of these four herbicides on the off‐site transport to contaminate surface and groundwater are also discussed in this paper.  相似文献   
53.
Abstract

Chemical transport in soil is a major factor influencing soil and water contamination. Four soils and turfgrass thatch, representing a wide range of organic carbon OC content were studied to determine sorption Kd and Kf parameters for the insecticides chlorpyrifos and fonofos. The batch equilibrium method was used. The concentration of insecticide was measured in the solution as well as in the solid phase to determine the most accurate sorption data. Four soils and thatch were equilibrated for 24 h at 22 ± 1OC with aqueous insecticide solutions. Four concentrations of the insecticides, each <50% of their respective water solubilities, were selected for the experiments. After extraction with an organic solvent, the concentration of insecticides in the aqueous solution was determined by gas liquid chromatography using electron capture detection for chlorpyrifos, and nitrogen/phosphorus detection for fonofos. Data obtained were fitted to the log and simple linear form of the Freundlich equation. Mass balance Freundlich isotherm exponents n ranged between 0.82 and 0.93 for chlorpyrifos. 0.82 and 1.21 for fonofos, with r2 ≥ 0.97. Koc (percent of organic carbon %OC normalized Sorption coefficient) values were calculated by using experimentally developed Kd and Kf coefficients in relation to OC levels from 0.29 to 34.85%. Kd and Kf coefficients of both insecticides were positively correlated with OC (r2 ≥ 0.96). organic matter OM (r2 0.96), and cation exchange capacity CEC (r2 ≥ 0.90).  相似文献   
54.
Selenium (Se) is an essential trace nutrient for mammals; however, the range between deficit and toxic levels is narrow. In this study, the potential sorption of selenite onto pyrite particles from an aqueous solution was investigated. An intraparticle diffusion model was used to describe kinetic data of sorption, yielding diffusivity values of 5 × 10?7 cm2/s. The Langmuir isotherm equation could be used to describe the experimental data. The fitting results indicated that b and {Se(IV)}max have values of 0.37 L/mg and 3.49 mg/g, respectively. The sorption of selenite onto the surface of pyrite particles was dependent on a pH range of 2–12, and the quantity of sorption onto pyrite was negatively correlated with pH; that is, the amount of sorption onto pyrite increased with a decrease in pH. In addition, organic matter did not exert a significant effect on removal of selenite. With a reaction time greater than 1 week, sorption of selenite onto pyrite particles was found to partially reduce the amount of elemental Se.  相似文献   
55.
Banana peels were employed for the removal of metribuzin from aqueous solution. Sorption in the batch mode was optimized regarding pH, contact time, sorbent dose, initial pesticide concentrations, and temperature. The sorption data were fitted to pseudo-first-order, pseudo-second-order, intraparticle diffusion, Elovich, and liquid film diffusion model, the pseudo-second-order exhibiting best fit (R2 = 0.9803). Of the four most common sorption isotherm models (Langmuir, Freundlich, Tempkin, and Dubinin–Radushkevich), the data followed the Langmuir isotherm with highest correlation. The maximum adsorption capacity was found to be 167 mg g?1. Gibbs free energy, enthalpy, and entropy showed that the sorption was exothermic and spontaneous.  相似文献   
56.

Sorption characteristics of phenanthrene (PHE) were studied on eight soils with organic carbon contents spanning over an order of magnitude using phase distribution relationships (PDRs) at 1 h, 48 h, and 720 h contact times. A new algebraic method was employed to describe the sorption characteristics at different time intervals (between 1 h and 48 h, and 1 h and 720 h). It was found that nonlinearity increased with increasing contact time and sorption that occurred in the subsequent time interval following the initial 1 h exhibited stronger isotherm nonlinearity. Sorption coefficients were positively correlated with the organic carbon contents of the soils. Detailed sorption dynamics were also examined on these soils. A two-compartment, first-order model was used to describe the sorption dynamics. The rate constants of the two compartments differed 18–170 times, suggesting the dissimilar sorption behaviors of the mathematically separated compartments. These two compartments were labeled fast and slow sorption compartment according to the rate constants. Calculation showed that the fast compartment accounted for over 80% of the overall sorption at the initial 1 h, while the slow compartment predominated the total sorption in the following 47 h. By combining the discussion of PDRs and sorption dynamics, the contributions of the two compartments to linear and nonlinear sorption were differentiated. The slow sorption compartment made a major contribution to nonlinear sorption and possibly to sequestration of organic pollutants by these soils.  相似文献   
57.
Kinetic (batch) sorption and desorption experiments for some organochlorine insecticides in silt‐water suspensions are described. The effect of possible experimental artifacts on the results is examined. The influence of the silt/water ratio on the linear sorption coefficient and on the “nonextractable”; solute fraction is determined. The sorption process is described in terms of some kinetic models.  相似文献   
58.
活性污泥对四环素的吸附性能研究   总被引:3,自引:2,他引:1  
通过批量平衡法研究了四环素在活性污泥上的吸附行为.结果表明,污泥混合液浓度和四环素初始浓度对吸附平衡时间、污泥吸附量和污泥吸附率均有较大影响.伪二级反应动力学模型较伪一级反应动力学模型更符合本吸附实验.在10、25℃条件下,四环素在活性污泥上的吸附行为较符合Langmuir模型,最大吸附量分别是31.14、70.95 mg.g-1;在40℃下,符合Henry模型.应用D-R模型判定吸附类型,10℃(平均吸附能为9.13 kJ.mol-1)下,化学吸附占主导;40℃(平均吸附能为7.07 kJ.mol-1)下,物理吸附占主导.温度升高,污泥对四环素的吸附能力增大.离子交换是四环素在活性污泥上吸附的一种机制.四环素的初始浓度为5、10、20 mg.L-1,钠离子浓度由0 mol.L-1增加到0.1 mol.L-1时,吸附量分别下降15.32%、15.00%、20.12%.当pH在5~10之间时,pH为6的条件下污泥对四环素的吸附量最大.  相似文献   
59.
通过批量平衡法,研究开放系统条件下方解石对磷的去除特性.结果表明:1方解石在开放系统中的预平衡过程,在24h左右便能完成;2动力学的结果表明,当初始浓度为0.5 mg·L~(-1)时,磷去除在前10 h内便完成很大部分,推测其去除行为主要由表面吸附进行;当初始浓度为2.5 mg·L~(-1)时,磷去除主要是靠后期的磷沉淀方式来完成.3当初始磷浓度≤2.5 mg·L~(-1)时,反应时间设为10 h,磷的去除过程可用Langmuir等温吸附模型来较好地拟合,推测在该条件下,表面吸附是磷去除过程中的主导作用方式.4加入邻苯二甲酸的情况下,当初始磷浓度2.5 mg·L~(-1)时,磷的去除率下降了一些,这是因为此时磷去除主要通过表面吸附完成,而邻苯二甲酸与磷共同竞争表面上的吸附位点;当初始磷浓度2.5 mg·L~(-1)时,磷的去除率增大了一些,这是因为邻苯二甲酸的加入促进了钙浓度的增加,从而促进磷通过钙以沉淀的形式去除.  相似文献   
60.
糠醛渣对水中甲基橙的吸附性能   总被引:1,自引:0,他引:1       下载免费PDF全文
为了探究糠醛生产中的废料糠醛渣对水体中甲基橙的吸附性能和吸附机制,利用FT-IR(傅里叶变换红外光谱)和SEM(扫描电镜)对糠醛渣的结构特性进行表征,浅析糠醛渣对甲基橙的吸附机制;通过模拟试验,考察了吸附剂用量、pH、吸附时间和温度等因素对糠醛渣吸附甲基橙过程的影响;采用吸附动力学模型和吸附等温模型,进一步探讨了糖醛渣吸附机制.结果表明:①糠醛渣结构疏松多孔,表面具有丰富的官能团,有利于吸附.②糠醛渣能高效吸附水中甲基橙,在温度为293 K、pH为4~9、吸附剂用量为0.2 g时,糠醛渣对400 mg/L的甲基橙吸附效果最好;吸附过程在60 min左右达到平衡,并且较好地符合准二级动力学模型(R2=0.999 9);吸附量随温度的升高而减少,表明该吸附过程为放热过程;在293 K时最大理论吸附量为54.35 mg/g,吸附数据更符合Langmuir吸附等温模型(R2=0.993 3),表明糠醛渣对甲基橙的吸附主要为单层吸附.③糠醛渣可再生重复利用,吸附甲基橙后的糠醛渣用0.1 mol/L氢氧化钠溶液进行解吸再生试验,第5次使用时对甲基橙仍然具有较好的吸附效果.研究显示,糠醛渣在室温条件下、较宽的pH范围内能快速高效地吸附水中的甲基橙,并且重复利用性好,是一种在偶氮染料废水处理中具有发展前景的廉价、可再生生物质吸附材料.   相似文献   
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