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1.
以坡缕石粘土为原料,通过溶胶-凝胶法制备坡缕石/氧化铝复合材料,通过静态吸附实验研究了复合材料吸附水中磷的动力学特征、吸附平衡和热力学参数,探讨了吸附机理。结果表明,复合材料对磷有较好的吸附作用,吸附过程能较好地符合准二级动力学方程,吸附速率常数随初始浓度的增大而减小,随温度的升高有所增大;吸附平衡能较好地符合Langmuir方程和D-R方程,吸附过程吸热,ΔG为-25~-21 kJ/mol,是物理吸附和化学吸附并存的过程。  相似文献   

2.
以铁氧化物对坡缕石粘土进行包覆改性,通过静态吸附实验研究了改性坡缕石吸附Cr(Ⅵ)的特性,探讨了吸附的动力学特征、吸附平衡、热力学参数和吸附机理。结果显示,改性坡缕石对Cr(Ⅵ)的吸附随溶液初始pH值的升高显著减弱,在初始pH值为4.0时,吸附90 min可达平衡,吸附过程能较好地符合pseudo-second-order动力学方程,速率常数k2随温度的升高增大,表观活化能为18.90 kJ/mol;吸附平衡能较好地符合Langmuir方程,吸附过程吸热,ΔH为28.29 kJ/mol,ΔG为-25~-20 kJ/mol,是物理吸附和化学吸附并存的过程。  相似文献   

3.
Cd2+在甘肃靖远坡缕石粘土上的吸附作用研究   总被引:2,自引:1,他引:1  
以提纯后的甘肃靖远坡缕石粘土作吸附剂,常温下对水中Cd2 进行吸附实验,考察了吸附时间、吸附剂用量、振荡速率及pH值对吸附效果的影响,并对吸附动力学过程和吸附平衡进行了探讨.XRD和红外光谱分析结果显示,原矿在提纯后杂质石英被有效分离,得到了坡缕石含量较高的提纯样品.吸附实验结果显示,约60 min吸附反应可达平衡;pH值对吸附效果有显著影响,吸附率随pH值的升高而增加,当平衡溶液pH>8时吸附率超过99%;吸附过程与pseudo-second-order Lagergren动力学模型方程有较好的一致性,吸附平衡同时符合Langmuir和Freundlich等温吸附模型,由Langmuir方程得到饱和吸附量为31.65 mg/g.  相似文献   

4.
焙烧水滑石吸附脱除水中硫酸根离子的研究   总被引:5,自引:0,他引:5  
利用焙烧水滑石对水中硫酸根离子进行吸附性能研究,考查了初始pH值、吸附时间、吸附剂用量等条件对吸附的影响。结果表明,焙烧水滑石对水中硫酸根离子具有良好的吸附能力。X射线衍射分析结果表明,水滑石及其焙烧产物对硫酸根的吸附机理不同。pH值对吸附的影响较大,pH值较低时吸附效果较好。吸附平衡符合Langmuir方程,室温下饱和吸附量为32.895 mg/g。  相似文献   

5.
利用静态吸附实验研究了溶液pH值、反应时间、初始Cu2+浓度等因素对凹凸棒石粘土矿中粘土质白云岩去除Cu2+效 果的影响,将准一级、准二级、Elovich动力学方程与反应动力学进行拟合,再利用Langmuir、Freundlich等温方程对实验数 据进行等温式拟合,并与普通白云岩和凹凸棒石粘土进行了对比研究。结果表明,粘土质白云岩相对于其他两种材料受pH 影响较小,且在pH3~5范围内对Cu2+去除率均大于85%,最佳pH为5;对Cu2+的去除符合准二级动力学模型,粘土质白云 岩对铜的去除速率和去除率均最高;等温数据符合Freundlich模型,对Cu2+的最大去除量(pH=5,30℃)为186.2×10-3。粘 土质白云岩去除水中Cu2+的主要机制为矿物水化与溶解引起的表面沉淀及凹凸棒石与新生碱式碳酸铜[Cu2CO3(OH)2]胶体的静 电吸附。粘土质白云岩中纳米凹凸棒石与亚微米多孔白云石共生,具有较高的化学反应活性,除Cu2+效果明显优于普通白 云岩和凹凸棒石粘土,在处理含Cu2+废水方面具有潜在应用价值。  相似文献   

6.
以氧化还原共沉淀的方法将铁锰复合氧化物负载于坡缕石黏土表面,制备负载型吸附剂,由静态吸附实验研究了吸附剂对磷的吸附性能,探讨了吸附的动力学特征、热力学参数和吸附机理。结果显示,吸附剂对磷的吸附受溶液初始pH值、吸附时间及温度的影响,在中性条件下吸附平衡时间为90 min,pseudo-second-order吸附动力学方程能较好描述吸附过程,吸附表观活化能为11.76 k J/mol;吸附等温线与Freundlich方程的拟合结果略优于Langmuir方程,由Langmuir方程得到最大吸附量为26~31 mg/g。吸附焓变为9.29 k J/mol,吸附熵变为正值,自由能变为-4.3~-5.8 k J/mol,吸附作用有多层不均匀吸附的性质,同时包含物理作用和化学作用,但不属强的化学键作用。  相似文献   

7.
坡缕石粘土对有机染料的吸附热力学研究   总被引:1,自引:0,他引:1  
将甘肃靖远坡缕石粘土分离提纯,通过静态吸附实验,研究了坡缕石对水中有机染料亚甲基蓝、结晶紫和苯胺蓝的吸附等温线,探讨了吸附热力学特征.实验结果显示,在实验温度范围内3种染料在坡缕石上的吸附在30 min可达平衡,吸附等温线均能较好符合Langmuir模型,饱和吸附量大小顺序为:结晶紫>亚甲基蓝>苯胺蓝;吸附均为吸热过程,亚甲基蓝、结晶紫和苯胺蓝的吸附焓分别为15.52、9.26和2.59 kJ/mol;吸附Gibbs函数约为-35~-30 kJ/mol,吸附熵均大于零,吸附是自发过程.  相似文献   

8.
采用氧化还原共沉淀法制备铁锰氧化物/硅藻土复合物,考察原料配比、反应温度、焙烧温度及溶液pH值、离子强度对该复合物吸附磷性能的影响,同时开展吸附等温线、XRD和IR等分析。结果表明,2. 5 g硅藻土与1. 0 mmol锰、3. 0 mmol二价铁、3. 0 mmol三价铁制备的复合物在20℃、pH值为6时对磷的吸附量为10. 84 mg/g,较硅藻土提高约3. 6倍;沉淀反应温度对复合物吸附性能影响很小,焙烧温度400~500℃有利于复合物对磷的吸附;吸附量随溶液pH值的增大而减小,pH值较低时吸附作用主要是静电吸引和内层络合,pH值较高时减弱的静电吸引和内层络合与有利于吸附的内层络合共吸附综合作用,表现为吸附量减小;吸附等温线符合Langmuir方程,饱和吸附量34~37 mg/g,与D-R方程、R-P方程有较好相关性,平均吸附能9. 9~11. 3 kJ/mol,复合物具有微孔结构,有单层也有多层吸附。  相似文献   

9.
运用十二烷基磺酸钠和聚羟基硅铝对蒙脱石进行改性后的柱撑蒙脱石,分别研究了溶液的pH值,初始浓度和反应时间对Cu2 ,Cr3 和Cd2 三种重金属离子的吸附性能、平衡模型和动力学过程。结果表明:十二烷基磺酸钠柱撑蒙脱石对三种重金属离子都具有很强的吸附能力,聚羟基硅铝柱撑粘土次之;柱撑后的蒙脱石对单组分的重金属离子的吸附平衡方程符合Langmuir模型;吸附行为的动力学符合假一级动力学方程。柱撑粘土吸附去除水中重金属离子的实验研究@刘云$华南理工大学环境科学与工程学院!广州,510640 @吴平霄$华南理工大学环境科学与工程学院!广州,5…  相似文献   

10.
利用标准地质样品磁赤铁矿,运用XRD,BET对其进行晶型及比表面积的表征。采用动态吸附实验,研究了磁赤铁矿对浓度为1.0×10-5 mol/L的酸性桃红(Sulforhodamine,SRB),结晶紫(Crystal violet,CV)的吸附特性。考察了溶液离子浓度、pH、吸附时间以及吸附剂投加量对其吸附特性的影响。结果表明,在相同实验条件下,SRB在100min达到吸附平衡,CV在20min达到吸附平衡。溶液pH和离子强度对其吸附都有很大的影响,磁赤铁矿对CV及SRB的最大吸附量分别为3.27×10-3及0.587×10-3。利用Langmuir和Freundlich等温吸附模型对吸附过程进行描述,结果表明,磁赤铁矿对SRB的吸附符合Freundlich模型,对CV的吸附属于Langmuir模型。用准一级和准二级吸附动力学方程对实验数据进行了线性回归分析,结果表明SRB属于准一级动力学方程,CV属于准二级动力学方程。热力学研究表明,磁赤铁矿吸附CV及SRB的过程都是自发进行的吸热反应。  相似文献   

11.
Adsorption of copper, cadmium and nickel at low concentrations on goethite was studied in the presence of the simple organic ligands oxalate, salicylate, and pyromellitate. The experimental metal adsorption behavior was compared to calculations with a surface complexation model to evaluate the most important interactions. Oxalate mostly decreased Cu and Ni adsorption at high pH-values by competition between solution and surface complexation but had no effect on Cd adsorption. Cu adsorption in the presence of oxalate below pH 6 could best be described by defining a ternary complex of type A (surface-metal-ligand). Salicylate had only minor effects on metal adsorption. The adsorption of Cu in the presence of salicylate above pH 5 could be explained by a ternary complex of type A. Pyromellitate increased the adsorption of Cu and Cd in the acidic pH-range, likely by formation of ternary surface complexes of type B (surface-ligand-metal).  相似文献   

12.
Surfactant-modified natural zeolites (SMNZs) with different coverage types were prepared by loading cetylpyridinium bromide onto the surface of natural zeolites. The resulting SMNZs were characterized and used as adsorbents to remove bisphenol A (BPA) from aqueous solution. The monolayer and bilayer SMNZs were effective for removing BPA from aqueous solution. The BPA adsorption capacity for the monolayer SMNZ increased slightly with increasing pH from 4 to 9, but decreased significantly with increasing pH from 9 to 11. The BPA adsorption capacity for the bilayer SMNZ was relatively high at pH 9–10, but decreased with decreasing pH from 9 to 4 or increasing pH from 10 to 11. The equilibrium adsorption data of BPA on the monolayer and bilayer SMNZs under the experimental condition could be well described by the Langmuir and Freundlich isotherm models. The adsorption kinetics of BPA on the monolayer and bilayer SMNZs followed a pseudo-second-order model. The adsorption of BPA on the monolayer and bilayer SMNZs took place in three different stages: a fast external surface adsorption, a gradual adsorption controlled by both the external mass transfer and the intra-particle diffusion, and a final equilibrium stage. The adsorption of BPA on the monolayer and bilayer SMNZs is spontaneous and exothermic. The mechanisms for BPA adsorption onto the monolayer SMNZ at pH 4–11 include the hydrophobic interaction and hydrogen bonding. The mechanisms for BPA adsorption onto the bilayer SMNZ at pH 4–8 include the organic partitioning and hydrogen bonding. The mechanisms for BPA adsorption onto the bilayer SMNZ at pH 8–11 include the organic partitioning, hydrogen bonding and electrostatic attraction.  相似文献   

13.
This study describes the adsorption features of cadmium on Fe2O3 and MnO2 in alkaline saline conditions. The adsorption reached equilibrium in 6 hours under alkaline conditions. The absorption of cadmium on Fe2O3 and MnO2 was consistent with Freundlich absorption isotherms, and the corresponding adsorption capacities were 16.3 and 16.7 mg·g-1, respectively. Moreover, the adsorption quantity of cadmium on Fe2O3 and MnO2 rose with increasing pH from acidic to neutral, and reached the maximum at pH= 9. The coexisting chlorides reduced the adsorption capacity of Fe2O3 and MnO2. The influence intensities of different cations follow the order of CaCl2>>KCl>NaCl. However, the influence of sodium salts on the capacities of Fe2O3 and MnO2 to adsorb cadmium appeared more complicated: the relatively low concentrations of sodium salts could reduce the adsorption capacity; with increasing concentrations of sodium salts, e.g. NaCl and NaNO3. The adsorption capacity decreased continually. Moreover, due to the competition adsorption and precipitation effects, the adsorption capabilities of Na2CO3, NaH2PO4 and Na2HSO4 could also be reduced and cadmium concentrations in the solution were reduced as well.  相似文献   

14.
The adsorption of cadmium from simulated mining wastewater by coal waste (CW) and calcination-modified coal waste (MCW) was investigated. Effects of pH, initial concentration, particle size of adsorbent, adsorbent dosage and temperature were studied in batch experiments. The adsorption efficiency for cadmium increased with increasing pH, and the optimum pH for cadmium adsorption onto MCW and CW was 6.0 and 6.5, respectively. Kinetic experiments showed that the adsorption equilibrium was reached within 120 min and followed pseudo-second-order model well. The adsorption isotherm data fit Langmuir and Freundlich models, and the adsorption capacity of cadmium on the two adsorbents increased with increasing temperature from 298 to 318 K. MCW had a higher adsorption capacity of cadmium than CW, because calcination treatment can make CW to have more loose structure and higher specific surface area. Thermodynamic parameters, the Gibbs free energy change (?G0), enthalpy change (?H0) and entropy change (?S0), were calculated and the results showed that the adsorption of cadmium on CW and MCW was spontaneous and endothermic. Fourier transform infrared studies indicated silanol and aluminol groups were responsible for cadmium binding. The desorption results indicated that the two adsorbents could be used repeatedly at least three times without significant decrease in the adsorption capacity for cadmium. The results suggested that modified CW could have high potential as low-cost adsorbent for cadmium removal.  相似文献   

15.
高岭石对重金属离子的吸附机理及其溶液的pH条件   总被引:14,自引:0,他引:14  
高岭石对Cu^2+,Pb^2+离子的吸附实验及高岭石的溶解实验表明,高岭石对重金属离子的吸附有别于石英单一表面配位模式,离子交换和表面配位模式并存,并随溶液pH由酸性往碱性的变化发生规律性的演替:pH<6.5时主要表现为外圈层配位的离子交换吸附,且在pH<4时由于受到高岭石表层中铝的高溶出及溶液中较高离子强度的影响,高岭石对Cu^2+,Pb^2+离子的吸附率较低,pH为5~6时由于高岭石端面的荷电性为近中性,吸附率则有明显的提升并且表现为一个吸附平台;pH>6.5时离子交换和表面配位均为重要吸附机制,pH再升高时沉淀机制则起着重要作用。研究表明,pH调控高岭石-水界面溶解与质子化-去质子化反应过程,并影响着Cu^2+,Pb^2+离子的吸附行为。最后采用Sverjensky(1993)表面配位的物理模型对吸附结果作了描述。  相似文献   

16.
用合成的13X沸石对废水中氨基酸(赖氨酸)进行静态吸附实验,研究了pH、温度、吸附时间、沸石用量等对吸附率的影响,结果表明,室温下沸石对赖氨酸的吸附平衡时间为30min,pH=pKa1=2.2时,赖氨酸在沸石上的吸附效果最好,吸附率大于82%,饱和吸附量达51.73mg.g-1。吸附等温线近似呈直线型,表明离子交换机制是沸石吸附氨基酸的主要方式。对已饱和吸附的沸石用饱和氯化钠溶液进行再生实验,赖氨酸的解吸率大于95%,沸石可重复使用。实验研究表明可用13X分子筛处理含氨基酸废水,为实际处理含氨基酸废水提供了可行性依据。  相似文献   

17.
天然黄铁矿对阳离子有机染料RhB吸附特性研究   总被引:1,自引:0,他引:1  
以黄铁矿作为吸附剂研究罗丹明B(Rhodamine B,RhB)的吸附特性,用X射线衍射仪(XRD)、扫描电子显微镜(SEM)对黄铁矿进行了表征。考察了接触时间、溶液pH值、离子强度、温度等对黄铁矿吸附RhB的影响。结果表明,在吸附平衡时间120 min、pH值4.0时,吸附量达到最大值21.3 mg/g。升高温度,黄铁矿对RhB的吸附量逐渐增大。而离子强度对吸附几乎没有影响。实验数据与Langmuir吸附模型拟合良好,整个吸附动力学模型符合准二级吸附动力学模型。热力学研究证实了该吸附过程是自发进行的。通过对吸附反应结束后的黄铁矿进行煅烧处理,去除表面吸附的RhB,结果表明煅烧一次的黄铁矿仍然可以吸附废水中约50%的RhB,具有重复利用的价值。  相似文献   

18.
This study was designed to combine surface complexation modelling of macroscopic adsorption data with X-ray Absorption Spectroscopic (XAS) measurements to identify lanthanide sorption sites on the bacterial surface. The adsorption of selected representatives for light (La and Nd), middle (Sm and Gd) and heavy (Er and Yb) lanthanides was measured as a function of pH, and biomass samples exposed to 4 mg/L lanthanide at pH 3.5 and 6 were analysed using XAS. Surface complexation modelling was consistent with the light lanthanides adsorbing to phosphate sites, whereas the adsorption of middle and heavy lanthanides could be modelled equally well by carboxyl and phosphate sites. The existence of such mixed mode coordination was confirmed by Extended X-ray Absorption Fine Structure (EXAFS) analysis, which was also consistent with adsorption to phosphate sites at low pH, with secondary involvement of carboxyl sites at high adsorption density (high pH). Thus, the two approaches yield broadly consistent information with regard to surface site identity and lanthanide coordination environment. Furthermore, spectroscopic analysis suggests that coordination to phosphate sites is monodentate at the metal/biomass ratios used. Based on the best-fitting pKa site, we infer that the phosphate sites are located on N-acetylglucosamine phosphate, the most likely polymer on gram-negative cells with potential phosphate sites that deprotonate around neutral pH.  相似文献   

19.
The adsorption of octyl hydroxamate on electrolytic manganese dioxide was investigated through adsorption studies, electrophoretic mobility measurements, infrared spectroscopy and Hallimond tube flotation. The adsorption measurements at room temperature and flotation studies show that a peak in adsorption density and flotation response occurs around pH 9. IR spectra indicate the presence of basic manganous hydroxamate complex at the surface. The electrophoretic mobility studies suggest that hydroxamate adsorbs specifically at the manganese dioxide/water interface. Adsorption measurements at an elevated temperature show that adsorption density increases with increasing temperature. It is postulated that the reactive species in adsorption could be the hydroxamic acid species.  相似文献   

20.
1 Introduction Because clay minerals have the characteristics ofadsorption, ion exchange capability and expandingcapacity, they are highly capable of adsorbing allkinds of pollutants in waters, thus making soilspossess self-purification functions. Clay m…  相似文献   

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