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1.
以废柚子皮为原料,经ZnCl2浸泡-加热的化学改性手段制备改性柚子皮生物吸附剂,并通过模拟试验研究该吸附剂对废水中pb2+的去除.考察了模拟废水的pH、吸附时间、吸附剂用量和pb2+初始浓度、温度等因素对柚子皮吸附剂去除pb2+的影响,并研究柚子皮吸附剂对pb2+的吸附动力学及吸附特征.结果表明,模拟废水的pH、吸附时间、吸附剂用量和pb2+初始浓度、温度等因素对柚子皮吸附剂吸附废水中pb2+均有显著影响.适宜的吸附条件为pH5.3~6.5,吸附时间1.5h,吸附剂用量10g· L-1,pb2初始质量浓度100 mg·L-1,温度30℃.在该条件下,废水中pb2+去除率在90%以上.柚子皮吸附剂对废水中pb2+的吸附符合动力学二级反应方程,等温吸附规律可用Langmuir、Freundlich和Temkin模型进行较好的描述.  相似文献   

2.
膨润土负载壳聚糖修复土壤镉污染的效果   总被引:1,自引:0,他引:1  
李增新  王彤  张道来  刘哲 《生态环境》2008,17(1):241-244
随着重金属污染土壤日益加剧,污染土壤修复和控制技术的研究越来越迫切.为利用膨润土原位修复土壤镉污染提供理论依据,采用平衡吸附试验研究了Cd2 在膨润土负载壳聚糖上的吸附行为.以90%脱乙酰度壳聚糖为原料,制备了膨润土负载壳聚糖颗粒吸附剂,用于吸附溶液中Cd2 .试验探讨了壳聚糖质量浓度对负载率的影响,结果表明,质量浓度3%的壳聚糖负载量最大,壳聚糖最大负载率达32.6%.吸附Cd2 最佳工艺条件是:壳聚糖与膨润土质量比为1∶20,膨润土负载壳聚糖颗粒吸附剂用量为15 g·L-1,溶液中Cd2 含量不大于200 mg·L-1, pH 值为6~8,吸附平衡时间为8 min,Cd2 去除率为99%.动态吸附Cd2 试验结果表明:质量浓度为 200 mg·L-1的含Cd2 溶液,流速为4~6 m(h-1,经壳聚糖-膨润土吸附剂一次处理后,溶液中Cd2 的残留量为0.7 mg(L-1.  相似文献   

3.
NaCl改性人造沸石去除废水中氨氮的性能及其影响因素   总被引:1,自引:0,他引:1  
采用NaCl溶液对人造沸石进行改性处理,考察NaCl溶液浓度对改性效果的影响.通过表面特征分析、静态吸附试验及吸附等温分析,进一步比较了人造沸石和改性人造沸石对氨氮的吸附去除性能.由X射线衍射(XRD)分析可知,沸石经改性后表面变粗糙,同时出现NaCl晶体特征衍射峰.试验结果表明,1.0 mol·L-1NaCl溶液对人造沸石的改性效果最佳;在沸石用量为1.0 g(50 mL废水)、氨氮浓度为10 mol·L-1、反应时间为40 min、反应温度为25℃和pH值为6.52条件下,改性人造沸石对氨氮的吸附效果最佳,去除率为96.02%.Langmuir和Freundlich吸附等温方程均可较好地拟合2种沸石对氨氮的吸附过程.改性人造沸石对氨氮的吸附饱和容量(21.46 mg·g-1)远大于人造沸石(9.03 mg·g-1).  相似文献   

4.
改性柚子皮吸附剂对模拟废水中Pb^2+的吸附性能   总被引:1,自引:0,他引:1  
以废柚子皮为原料,经ZnCl2浸泡一加热的化学改性手段制备改性柚子皮生物吸附剂,并通过模拟试验研究该吸附剂对废水中Pb^2+的去除。考察了模拟废水的pH、吸附时间、吸附剂用量和Pb^2+初始浓度、温度等因素对柚子皮吸附剂去除Pb^2+的影响,并研究柚子皮吸附剂对Pb^2+的吸附动力学及吸附特征。结果表明,模拟废水的pH、吸附时间、吸附剂用量和Pb^2+初始浓度、温度等因素对柚子皮吸附剂吸附废水中Pb^2+均有显著影响。适宜的吸附条件为pH5.3-6.5,吸附时间1.5h,吸附剂用量10g·L^-1,Pb^2+初始质量浓度100mg·L^-1,温度30℃。在该条件下,废水中Pb^2+去除率在90%以上。柚子皮吸附剂对废水中Pb^2+的吸附符合动力学二级反应方程,等温吸附规律可用Langmuir、Freundlich和Temkin模型进行较好的描述。  相似文献   

5.
通过静态试验考察杭锦2#土/聚合硫酸铝复合吸附剂对生活污水中磷酸根的吸附特性,研究吸附过程的动力学模型,并从动力学角度探讨其吸附机理.结果表明,在杭锦2#土/聚合硫酸铝复合吸附剂用量5g·L-1、吸附时间60 min、废水pH值6.0、温度25℃、磷初始质量浓度小于16.72 mg·L-1条件下,磷酸根的去除率在96%以上;复合吸附剂对磷酸根的吸附动力学特征符合假二级方程,吸附速率在前10 min为内扩散控制,后期由膜扩散和内扩散共同控制,且膜扩散占主导地位;磷酸根的初始浓度越高,吸附质粒子的表观内扩散系数和表观传质系数越小;使用不同再生次数的再生吸附剂(添加量为5g·L-1)处理16.72 mg·L-1含磷生活污水,随着再生次数的增加,吸附能力有所下降,但磷酸根的去除率均大于89%.  相似文献   

6.
以壳聚糖为原料,利用反相悬浮法制备甲醛-戊二醛交联壳聚糖树脂,后与Zr4+反应制备锆负载交联壳聚糖吸附剂,用于吸附废水中SO2-4.运用红外光谱对吸附剂结构进行表征,采用静态吸附法考察负载条件对吸附量的影响及吸附剂重复使用性能.结果表明,交联反应主要发生在壳聚糖的氨基(—NH2)和一级羟基(C6—OH)上;锆负载过程中锆离子可负载于交联壳聚糖的氨基(—NH2)和羟基(—OH)上;最优条件即当Zr4+初始浓度为500 mg·L-1,体系pH值为3,负载时间为4 h时,锆负载交联壳聚糖吸附剂对SO2-4的吸附量达到最大为55.65 mg·g-1;用NaOH可有效恢复吸附剂,再生后的吸附剂吸附性能良好.  相似文献   

7.
杭锦2~#土复合吸附剂对磷的吸附动力学   总被引:1,自引:0,他引:1  
通过静态试验考察杭锦2#土/聚合硫酸铝复合吸附剂对生活污水中磷酸根的吸附特性,研究吸附过程的动力学模型,并从动力学角度探讨其吸附机理。结果表明,在杭锦2#土/聚合硫酸铝复合吸附剂用量5 g.L-1、吸附时间60 min、废水pH值6.0、温度25℃、磷初始质量浓度小于16.72 mg.L-1条件下,磷酸根的去除率在96%以上;复合吸附剂对磷酸根的吸附动力学特征符合假二级方程,吸附速率在前10 min为内扩散控制,后期由膜扩散和内扩散共同控制,且膜扩散占主导地位;磷酸根的初始浓度越高,吸附质粒子的表观内扩散系数和表观传质系数越小;使用不同再生次数的再生吸附剂(添加量为5 g.L-1)处理16.72 mg.L-1含磷生活污水,随着再生次数的增加,吸附能力有所下降,但磷酸根的去除率均大于89%。  相似文献   

8.
以活性焦为吸附剂,采用静态吸附实验考察活性焦对PCP-Na模拟废水的吸附性能,研究了反应时间、温度、p H值、活性焦用量对吸附效果的影响,采用急性毒性法评价吸附前后废水急性毒性的变化.结果表明,在原始p H下,温度40℃,活性焦用量4 g·L-1,反应时间180 min时,废水中PCP-Na的浓度由100 mg·L-1降为2.92 mg·L-1,去除率97.07%.吸附后废水的急性毒性下降99.09%.PCP-Na在活性焦表面的吸附是拟二级反应,吸附速率常数为2.52×10-2g·mg-1·min-1,其吸附行为可用Langmuir等温线模型进行描述;热力学计算结果表明吸附反应是自发和吸热过程.  相似文献   

9.
研究天然沸石和改性沸石对Pb2+吸附的性能,探讨不同因素对沸石吸附Pb2+的影响.结果表明,天然沸石经过3种不同方法改性后均可促进其对Pb2+的吸附.氢氧化钠改性沸石吸附Pb2+效果最好,其次是硝酸钾改性沸石,氯化铵改性沸石吸附Pb2+效果稍差一些.不同Pb2+初始浓度、沸石使用量、pH和温度均对天然沸石和改性沸石吸附Pb2+有影响.天然沸石和改性沸石对Pb2+的等温吸附可用Langmuir方程和Freundlich方程来拟合,其中Langmuir方程的拟合效果较好,相关系数在0.9203—0.9840之间.CaCl2和MgCl2可影响天然沸石和改性沸石对Pb2+的吸附.当CaCl2和MgCl2的浓度均为10 mmol.L-1时,天然沸石吸附Pb2+量分别比对照处理提高66.6%和54.5%.添加2—10 mmol.L-1CaCl2和MgCl2导致氯化铵改性沸石吸附Pb2+分别比对照处理提高16.4%—18.8%和16.8%—19.9%.研究结果表明,采用沸石去除废水中的Pb元素时必须考虑不同因素的影响,以达到重金属去除效率的最大化.  相似文献   

10.
研究了壳聚糖活性污泥复合吸附剂(SCTS)对废水中Pb~(2+)和Cd~(2+)的吸附性能,通过单因素试验分析了温度、SCTS投加量、pH值、搅拌转速和重金属离子浓度对SCTS吸附性能的影响,正交试验确定了影响因素的主次顺序及最优组合水平。结果表明:影响SCTS吸附废水中Pb~(2+)的因素从大到小依次为pH值、SCTS投加量、Pb~(2+)初始浓度和搅拌转速,吸附Pb~(2+)的最优组合为pH值=2、SCTS投加量为10 g· L~(-1)、ρ(Pb~(2+))初始值为50 mg· L~(-1)、搅拌转速130 r·min-1,Pb~(2+)去除率达95.76%。影响SCTS吸附废水中Cd~(2+)的因素作用力大小依次为pH值、Cd~(2+)初始浓度、转速和SCTS投加量,吸附Cd~(2+)的最优组合为pH值2、SCTS投加量2.5 g· L~(-1)、ρ(Cd~(2+))初始值60 mg· L~(-1)、转速130 r·min-1,此时Cd~(2+)的去除率为96.08%。  相似文献   

11.
This work reports on the adsorption efficiency of two classes of adsorbents: nano-adsorbents including carbon nanotubes (CNTs) and carbon nanofibers (CNFs); and micro-adsorbents including activated carbon (AC) and fly ash (FA). The materials were characterized by thermogravimetric analysis, transmission electron microscopy, Brunauer–Emmett–Teller (BET) specific surface area, zeta potential, field emission scanning electron microscopy, and UV spectroscopy. The adsorption experimental conditions such as pH of the solution, agitation speed, contact time, initial concentration of phenol, and adsorbent dosage were optimized for their influence on the phenol. The removal efficiency of the studied adsorbents has the following order: AC > CNTs > FA > CNFs. The capacity obtained from Langmuir isotherm was found to be 1.348, 1.098, 1.007, and 0.842 mg/g of AC, CNTs, FA, and CNFs, respectively, at 2 hours of contact time, pH 7, an adsorbent dosage of 50 mg, and a speed of 150 rpm. The higher adsorption of phenol on AC can be attributed to its high surface area and its dispersion in water. The optimum values of these variables for maximum removal of phenol were also determined. The experimental data were fitted well to Langmuir than Freundlich isotherm models.  相似文献   

12.
This study evaluated the feasibility of integrating amorphous magnesite and bentonite clay (composite) as an alternative technology for removing arsenic from industrial effluents. The removal of arsenic from industrial effluents by using magnesite–bentonite clay composite was carried out in batch mode. The effects of equilibration time, adsorbent dosage, adsorbate concentration, and pH on removal of arsenic were investigated. The experiments demonstrated that ≈100% arsenic removal is optimum at 30 minutes of agitation, 2 g of adsorbent dosage (2 g: 100 mL, S/L ratio), and 20 mg L?1 of arsenic concentration. The adsorption data fitted well to both Langmuir and Freundlich adsorption models, hence proving monolayer and multilayer adsorption. The kinetic studies revealed that the data fitted better to a pseudo-second-order reaction than to a pseudo-first-order reaction, hence proving chemisorption. At optimized conditions, the composite was able to remove arsenic to below World Health Organization water quality guidelines, hence depicting that the composite is effective and efficient in removing arsenic from contaminated water. Based on that, this comparative study proves that the composite is a promising adsorbent with high adsorption capacity for arsenic and can be a suitable substitute for the conventional treatment methods.  相似文献   

13.
钠化改性膨润土对Cd2+的吸附研究   总被引:18,自引:0,他引:18  
通过等温吸附试验,研究了钙基膨润土及钠化改性膨润土对Cd^2 的吸附,并与土壤对Cd^2 的吸附进行了对比.试验表明,钠化改性膨润土对Cd^2 有很好的吸附作用,可用于重金属污染土壤的治理,pH值是影响吸附效果的一个重要因素。  相似文献   

14.
不同作物原料热裂解生物质炭对溶液中Cd2+和Pb2+的吸附特性   总被引:17,自引:0,他引:17  
选择由小麦秸秆、玉米秸秆和花生壳经350~500℃热裂解制成的生物质炭,研究生物黑炭对水溶液中Cd2+和Pb2+的吸附特性,分析了pH值、吸附时间、溶液初始质量浓度、生物质炭粒径和投加量对吸附效果的影响。结果表明:生物质炭对Cd2+和Pb2+的吸附约10 min即达平衡;3种生物质炭对Cd2+和Pb2+的等温吸附均可用Langmuir方程和Freundlich方程拟合,玉米秸秆炭对Cd2+和Pb2+的最大吸附量远大于小麦秸秆炭和花生壳炭;在生物黑炭投加量为150 mg(6 g.L-1)时,3种生物黑炭对溶液Cd2+的去除率均在90%以上,玉米秸秆炭对溶液Pb2+的去除率达90.30%,而小麦秸秆炭和花生壳炭的去除率仅为52%和47%,玉米秸秆炭有望成为处理重金属污染废水的新型吸附材料。  相似文献   

15.
Several synthetic dyes employed in textile and food industries are discharged into aquatic environment. These visible pollutants in water damage environment, as they are carcinogenic and toxic to humans. The use of cost effective and ecofriendly plant cellulose based adsorbents have been studied in batch experiments as an alternative and effective substitution of activated carbon for the removal of toxic dyes from waste water. Adsorbents prepared from sugarcane baggase, were successfully used to remove certain textile dye such as crystal violet from an aqueous solution. The present investigation potentiate the use of sugarcane baggase, pretreated with formaldehyde (referred as Raw Baggase) and sulphuric acid (referred as Chemically Activated Baggase), for the removal of crystal violet dye from simulated waste water. Experiments were carried out at neutral pH with various parameters like dye concentration, temperature, contact time and adsorbent dosage. Efficiency of raw baggase was found better than chemically activated baggase for adsorption of crystal violet dye. The data obtained perfectly fits in the Freundlich adsorption isotherm.  相似文献   

16.
本文介绍了炼焦污水零排小试结果,试验中采用新型大孔吸附树脂脱酚,蒸汽汽提脱氨,处理后的污水用作熄焦补充水.试验证明该零排放方案是可行的.  相似文献   

17.
A comparison between activated charcoal and heat-treated coal for decolourization of pulp and paper mill waste water was studied. The heat-treated coal was prepared in an inert atmosphere at 800°C. The adsorption dynamics that include batch contact–time study, kinetics along with adsorption isotherms were carried out. The study shows that heat-treated coal is a suitable adsorbent and can be used for the decolourization of pulp and paper mill effluent streams. The maximum removal was achieved at the initial stages of contact, and the overall adsorption was a slow process. However, the equilibrium concentration in the case of both the adsorbents reaches at almost same time. The linear plot of the Lagergren model shows its applicability and first-order kinetics.  相似文献   

18.
Removal of congo red dye from water using carbon slurry waste   总被引:1,自引:0,他引:1  
A cheaper adsorbent has been prepared from carbon slurry waste obtained from National Fertilizer Limited (NFL), Panipat and investigated for the removal of congo red, an anionic dye. Its adsorption on prepared carbonaceous adsorbent was studied as a function of contact time, concentration and temperature. The results have shown that carbonaceous adsorbent adsorbs dye to a sufficient extent (272 mg g-1). A comparative study of adsorption results with those obtained on activated charcoal shows that the carbonaceous adsorbent is ~95% efficient as compared to activated charcoal. Thus, it can be fruitfully used for the removal of dyes from wastewaters.This work has been presented at the National Symposium on Biochemical Sciences: Health and Environmental Aspects (BSHEA—2003), Agra, India (2003).  相似文献   

19.
Removal of selenite [Se (IV)] from aqueous solution on to industrial solid ‘waste’ Fe(III)/Cr(III) hydroxide as adsorbent was investigated in the present article. Maximum adsorption was found to be at pH 4.0. Pretreated Fe(III)/Cr(III) hydroxide was found to be more efficient for the removal of selenite compared to untreated adsorbent. Langmuir and Freundlich isotherms have been studied. The Langmuir adsorption capacity (Q 0) of the pretreated and untreated adsorbents was found to be 15.63 and 6.04?mg?g?1, respectively. The adsorption process fit into the second-order kinetics. Thermodynamic parameters show that the adsorption process is spontaneous and endothermic in the temperature range 32 to 60°C. Coexisting anions vanadate and phosphate significantly affect the adsorption of selenite for both the pretreated and untreated adsorbents. Molybdate, thiocyanate, sulphate, nitrate and chloride do not significantly affect the removal of selenite for pretreated adsorbent.  相似文献   

20.
Arsenic (V) adsorption on manganese oxide coated rice wastes was investigated in this study. The modified adsorbents were characterized by Fourier-transform infrared spectroscopy, scanning electron microscopy, and pH measurements to determine the point of zero charge. Batch adsorption equilibrium experiments were conducted to study the effects of pH, contact time, and initial concentration on arsenic removal efficiency. The adsorption capacity of rice waste was significantly improved after modification with permanganate. The Langmuir isotherm model fitted the equilibrium data better than the Freundlich model which confirms surface homogeneity of the adsorbent. Maxima adsorption capacities are determined as 10 and 12 mg/g at pH 3 for manganese oxide coated rice husk and straw, respectively. The adsorption energy indicates that the adsorption process may be dominated by chemisorption. Pseudo-second-order rate equation described the kinetics sorption of arsenic with good correlation coefficients, better than a pseudo-first-order equation. Manganese oxide coated rice husk and straw appear to be promising low cost adsorbents for removing arsenic from water.  相似文献   

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