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1.
硝酸改性活性炭的制备及其对Cr(Ⅵ)   总被引:4,自引:0,他引:4       下载免费PDF全文
丁春生  贡飞  陈姗  彭芳 《化工环保》2013,33(4):344-348
利用硝酸对颗粒活性炭进行改性,处理含铬废水,并考察了吸附时间、溶液pH、吸附剂加入量对改性活性炭吸附Cr(Ⅵ)效果的影响。实验结果表明:经过硝酸氧化改性的活性炭比表面积有所增加,官能团总量增加明显;吸附剂对Cr(Ⅵ)的去除率随振荡时间的增加而增加;对于质量浓度为10mg/L的100mLCr(Ⅵ)溶液,当溶液pH为中性,30%(体积分数)硝酸改性的颗粒活性炭的加入量为0.4g,其对Cr(Ⅵ)的最大去除率为98%。  相似文献   

2.
改性木屑吸附处理含Cr(Ⅵ)废水   总被引:1,自引:0,他引:1  
赵晖  廖祥  陈金文  周丽花  李婳 《化工环保》2011,31(5):402-405
对改性木屑处理含Cr(Ⅵ)废水进行了研究,考察了溶液Cr(Ⅵ)初始质量浓度、溶液pH、木屑加入量、吸附时间对吸附效果的影响.实验结果表明:在溶液初始Cr(Ⅵ)质量浓度15 mg / L 、溶液pH 2.0、木屑加入量7.5 g / L、吸附时间60 min 的优化实验条件下,硝酸改性木屑比磷酸改性木屑吸附效果好,硝酸改...  相似文献   

3.
张玮  张冬 《化工环保》2012,32(3):201-204
采用异丙醇溶液改性橙皮,考察了模拟废水中初始Pb2+质量浓度、废水pH、改性橙皮加入量和吸附时间等因素对改性橙皮对模拟废水中的Pb2+吸附效果的影响。实验结果表明,在初始Pb2+质量浓度为20 mg/L、废水pH为4、改性橙皮加入量为8 g/L、吸附时间为80 min的条件下,改性橙皮对废水中Pb2+的去除率可达88.41%。经浓度为0.1 mol/L的HCl溶液再生后,改性橙皮再生循环使用4次时效果仍较好。改性橙皮对Pb2+的吸附动力学可用准二级动力学方程很好地描述。改性橙皮对Pb2+的吸附符合Langmuir等温吸附方程,表明改性橙皮对Pb2+的吸附以单分子层吸附为主。  相似文献   

4.
粉煤灰的改性及其吸附性能   总被引:2,自引:2,他引:0  
以改性粉煤灰为吸附剂,对亚甲基蓝溶液进行吸附实验。经正交实验确定改性粉煤灰的最佳制备条件:煅烧温度为850℃,粉煤灰与ZnCl2的质量比为2∶2,盐酸加入量为2.4mol/L,粉煤灰粒径为16.8mm。在亚甲基蓝溶液初始质量浓度为10mg/L、改性粉煤灰加入量为200mg/L、振荡时间为3.0h、溶液pH为5、吸附温度为25℃的条件下,亚甲基蓝的降解率和溶液脱色率分别达86.24%和82.76%。  相似文献   

5.
以聚二甲基二烯丙基氯化铵(PDMDAAC)为改性剂,制备PDMDAAC改性粉煤灰。采用正交实验考察了制备条件对PDMDAAC在粉煤灰上的负载量的影响。实验结果表明:在反应温度为70℃、反应时间为3 h、PDMDAAC质量浓度为50 g/L、溶液pH为10的最佳条件下,PDMDAAC在粉煤灰上的负载量为0.98 mg/g;在吸附温度为30℃、初始分散蓝质量浓度为50 mg/L、PDMDAAC改性粉煤灰加入量为4 g/L的条件下,PDMDAAC改性粉煤灰对分散蓝的去除率可达98%。PDMDAAC改性粉煤灰对分散蓝的吸附符合Langmuir吸附模型。  相似文献   

6.
玉米秸秆生物炭对苯胺的吸附   总被引:1,自引:0,他引:1       下载免费PDF全文
以玉米秸秆为原料制备生物炭吸附剂,研究了生物炭对水中苯胺的吸附性能。表征结果显示:制备的生物炭的比表面积为449.7 m2/g,体积平均粒径为103μm,主要以小粒径存在;制备的生物炭表面以碱性含氧官能团为主,含量为1.31 mmol/g。实验结果表明:在溶液p H 3、生物炭加入量10 g/L、吸附温度313 K、吸附时间3.0h的最佳反应条件下处理初始苯胺质量浓度为400 mg/L的苯胺溶液,苯胺去除率为94.0%,吸附量为37 mg/g;生物炭对苯胺的吸附过程符合拟二级动力学方程,吸附等温线满足Freundlich等温吸附方程;生物炭对苯胺的吸附是自发、吸热的过程;吸附过程中存在着水分子从生物炭表面的解吸。  相似文献   

7.
壳聚糖吸附废水中铅离子的研究   总被引:11,自引:1,他引:10  
李琼  奚旦立 《化工环保》2005,25(5):350-352
研究了壳聚糖对废水中Pb2+的吸附特性,考察了壳聚糖溶液加入量、吸附时间及体系pH等条件对壳聚糖吸附溶液中Pb2+效果的影响。当质量分数为0.8%的壳聚糖溶液加入量为0.4 mL、吸附时间为30 m in、体系pH为5~6时,处理浓度为1×10-4mol/L的含Pb2+溶液,Pb2+去除率可达98%;同样条件处理印染废水,Pb2+去除率可达92.6%。  相似文献   

8.
曹飞丽  肖蕾  刘怡  黄建良 《化工环保》2014,34(2):186-190
以白腐菌的典型菌种黄孢原毛平革菌为改性菌种,对中药渣进行改性处理,研究了改性中药渣对Cr(Ⅵ)的吸附性能。采用SEM技术对改性中药渣进行表征。研究了废水pH、改性中药渣加入量、吸附温度和吸附时间对Cr(Ⅵ)吸附效果的影响。表征结果显示,中药渣经过改性后表面出现许多孔隙,比表面积增大,为吸附Cr(Ⅵ)提供了更多的吸附位。实验结果表明:在初始Cr(Ⅵ)质量浓度50 mg/L、改性中药渣加入量5 g/L、废水pH 2、吸附温度45 ℃、吸附时间20 h的条件下,改性中药渣对Cr(Ⅵ)的去除率达99.5%,吸附量可达9.82 mg/g;改性中药渣对Cr(Ⅵ)的吸附等温线符合Langmuir等温吸附方程和Freundlich等温吸附方程;准二级动力学方程能很好地对改性中药渣吸附Cr(Ⅵ)的数据进行拟合。  相似文献   

9.
以有机硅高沸物和Na2SiO3·9H2O为原料,采用溶胶-凝胶法制备出疏水性的类氧化硅气凝胶吸附材料。采用透射电子显微镜、傅里叶变换红外分析仪和比表面与空隙度分析仪对该吸附材料的结构进行表征。表征结果显示,该吸附材料呈海绵状多孔结构,比表面积为294.48 m2/g,孔径分布较宽(为2 ~140 nm),平均孔径为8.95 nm。实验结果表明:采用该吸附材料常温下静态吸附处理质量浓度为10 mg/L的罗丹明B(RhB)溶液,在类氧化硅气凝胶吸附材料加入量50 g/L、静态吸附时间5 h的最佳静态吸附工艺条件下,RhB去除率为98.8%,吸附后RhB质量浓度为0.124 mg/L;采用该吸附材料常温下动态吸附处理质量浓度为15 mg/L的RhB溶液,吸附4 h后开始穿透,吸附7 h后完全穿透。穿透时间较长,表明该吸附材料具有较大的吸附容量。  相似文献   

10.
制备了改性SiO2气凝胶,考察了经不同类型、不同配比的改性剂改性的SiO2气凝胶对模拟含Fe3+废水的吸附处理效果。实验结果表明:改性SiO2气凝胶的最佳制备条件为三甲基氯硅烷(TMCS)作改性剂,V(TMCS)#x02236;V(正己烷)=1#x02236;5;当改性SiO2气凝胶加入量为75g/L、吸附时间为4h、Fe3+质量浓度为10mg/L时,模拟含Fe3+废水的Fe3+去除率为98.32%,剩余Fe3+质量浓度为0.168mg/L;采用改性SiO2气凝胶动态吸附处理流量为420mL/h、Fe3+质量浓度为100mg/L的模拟含Fe3+废水,吸附后废水中剩余Fe3+质量浓度仅为0.196mg/L。  相似文献   

11.
通过甲醛与茶渣中多酚类组分的反应制备了多酚原位固化茶渣吸附材料,并将其用于对水中Cr(Ⅵ)的吸附。表征结果显示:茶渣多酚的原位固化提高了其热稳定性,同时对茶渣粒料起到了修补增强作用。固化茶渣对Cr(Ⅵ)的吸附量随溶液pH的减小而增大。在吸附温度303 K、初始Cr(Ⅵ)质量浓度60 mg/L、吸附剂投加量1.0 g/L、吸附时间300 min、溶液pH为2的条件下,固化茶渣对Cr(Ⅵ)的吸附量为56.56 mg/g,去除率达94.3%。固化茶渣对Cr(Ⅵ)的吸附符合Langmuir等温吸附模型和准二级动力学方程,吸附是一个自发的、吸热过程,303,318,333 K下的Langmuir饱和吸附量分别为83.26,107.64,129.20 mg/g。  相似文献   

12.
陈炎  程洁红 《化工环保》2017,37(6):688-692
废锂电池中含有的Co、Ni和Cu等金属具有回收价值,Fe的存在降低了有价金属的回收效率。为去除废锂电池硫酸浸出液中的Fe,采用黄钠铁矾法分别以氯酸钠和过氧化氢作为氧化剂氧化除Fe,并优化了过氧化氢作为氧化剂的除Fe工艺参数。实验结果表明:过氧化氢作为氧化剂的除Fe效果好于氯酸钠;在n(H2O2)∶n(Fe)=0.5、初始溶液pH为1.8、终点pH为2.5、反应时间为2.0 h、搅拌速率为500 r/min的最佳工艺条件下,初始ρ(Fe)为0.212g/L的硫酸浸出液经除Fe处理后ρ(Fe)小于0.004 g/L,Fe去除率达98.0%,Co、Ni和Cu的损失率分别为1.04%、2.17%和1.41%。  相似文献   

13.
杨秀菊  蒲云平  倪良 《化工环保》2012,32(2):185-188
通过简单的水溶液聚合法成功合成了聚丙烯酸钠-硅溶胶复合吸附剂,并对其进行了SEM和热重分析,研究了吸附条件对该吸附剂对阳离子金黄染料吸附效果的影响。实验结果表明,当硅溶胶质量分数为20%、初始染料质量浓度为60 mg/L、初始溶液pH为7、反应温度为298 K时,聚丙烯酸钠-硅溶胶复合吸附剂对阳离子金黄染料的吸附量为64.64 mg/g。由二级吸附动力学模型获得的活化能(Ea=2.617 kJ/mol)表明,聚丙烯酸钠-硅溶胶复合材料对阳离子金黄的吸附属于物理吸附,低温有利于吸附。  相似文献   

14.
Natural Bulgarian zeolite was tested for its ability to remove Cu2+ from model wastewater. Influence of process variables was investigated. It was found that the optimum wastewater to zeolite ratio is 100:1 and the optimum pH value of water to be treated is 5.5 to 7.5. Zeolite with finer particles shows a higher uptake capacity. The simultaneous presence of Ca2+ and Mg2+ in concentrations similar to their concentrations in Bulgarian natural water does not significantly influence the uptake of Cu2+. Zeolite modification by treating it with NaCl, CH3COONa and NaOH increases its uptake ability. Copper ions are strongly immobilized by modified zeolite and secondary pollution of water caused by its contact with preloaded zeolite is very low (1.5-2.5% of Cu2+ preliminary immobilized have been released back into acidified water). Contacting with 2 mol dm(-3) NaCl can easily regenerate loaded zeolite; best results were obtained for zeolite modified with NaCl. Requirements of Bulgarian standards for industrial wastewater can be met by a one-stage process for an initial Cu2+ concentration of 10 mg dm(-3), and by a two stage process for an initial Cu2+ concentration of 50 mg dm(-3). Uptake of Cu2+ by zeolite from neutral wastewater has proved to be as effective as Cu2+ removal by precipitation of copper hydroxide. The process of Cu2+ uptake by natural zeolite is best described by the kinetic equation for adsorption. This fact, together with the correlation found between the Cu2+ uptake and the amount of Na+, Ca2+ and K+ released into solution by zeolite shows that the ion exchange sorption plays the basic role in Cu2+ uptake by natural zeolite. The value obtained for the apparent activation energy (26.112 kJ mol(-1) implies that the process can be easily carried out with a satisfactory rate. The uptake equilibrium is best described by the Langmuir adsorption isotherm, with Langmuir constants KL= 6.4 x 10(-2) dm3 mg(-1) and M = 6.74 mg g(-1). The apparent equilibrium constant found shows moderate affinity of zeolite for Cu2+. Values of deltaG degrees and deltaH degrees found show the spontaneous and endothermic nature of the process of Cu2+ uptake by natural zeolite.  相似文献   

15.
In this study, cellulose fibers were removed from crop by-products using a combination of sodium hydroxide treatment followed by acidified sodium chlorite treatment. The objective was to obtain high recovery of cellulose by optimizing treatment conditions with sodium hydroxide (5–20%, 25–75 °C and 2–10 h) followed by acidified sodium chlorite (1.7%, 75 °C for 2–6 h) to remove maximum lignin and hemicellulose, as well as to investigate the effect of lignin content of the starting materials on the treatment efficiency. Samples were characterized for their chemical composition, crystallinity, thermal behavior and morphology to evaluate the effects of treatments on the fibers’ structure. The optimum sodium hydroxide treatment conditions for maximum cellulose recovery was at 15% NaOH concentration, 99 °C and 6 h. Subsequent acidified sodium chlorite treatment at 75 °C was found to be effective in removing both hemicellulose and lignin, resulting in higher recovery of cellulose in lupin hull (~?95%) and canola straw (~?93%). The resultant cellulose fibers of both crop by-products had increased crystallinity without changing cellulose I structure (~?68–73%). Improved thermal stabilities were observed with increased onset of degradation temperatures up to 307–318 °C. Morphological investigations validated the effectiveness of treatments, revealing disrupted cell wall matrix and increased surface area due to the removal of non-cellulosics. The results suggest that the optimized combination of sodium hydroxide and acidified sodium chlorite treatments could be effectively used for the isolation of cellulose fibers from sweet blue lupin hull and canola straw, which find a great number of uses in a wide range of industrial applications.  相似文献   

16.
Arsenic adsorption from aqueous solutions by activated red mud   总被引:17,自引:0,他引:17  
Heat treatment and acid treatment methods have been tested on red mud to increase its arsenic adsorption capability. The results indicate that the adsorptive capacity of red mud can be increased by acid treatment. This treatment causes sodalite compounds to leach out. As(III) and As(V) adsorption characteristics of activated red mud have similar tendencies with raw red mud. Batch adsorption studies have shown that activated red mud in dosages ranging from 20 to 100 g l(-1) can be used effectively to remove arsenic from aqueous solutions. The process is pH dependent, the optimum range being 5.8-7.5 for As(III) and 1.8-3.5 for As(V). The maximum removals are 96.52% for As(V) and 87.54% for As(III) for solutions with a final pH of 7.25 and 3.50, respectively, for the initial arsenic concentration of 133.5 micromol l(-1) (10 mg l(-1)), activated red mud dosage of 20 g l(-1), contact time of 60 min and temperature of 25 degrees C. The adsorption data obtained follow a first-order rate expression and fit the Langmuir isotherm well. Isotherms have been used to obtain the thermodynamic parameters. It was found that the adsorption of As(III) was exothermic, whereas As(V) adsorption was endothermic.  相似文献   

17.
A new treatment method is developed to degrade 4-chlorophenol (4-cp) and its oxidation intermediates. The experimental results of this research demonstrate that 4-cp and its oxidation intermediates can be decomposed completely by basic oxygen furnace slag (BOF slag) with hydrogen peroxide (H2O2) in an acid solution. The factors that effect the treatment efficiency were studied including initial concentration of 4-cp, pH of the solution, concentration of H2O2 and amount of BOF slag. The BOF slags are final waste materials in the steel making process. The major components of BOF slag are CaO, SiO2, Fe2O3, FeO, MgO and MnO. As the BOF slag in an acid solution, FeO and Fe2O3 can be dissociated to produce ferrous ion and ferric ion. Ferrous ion reacts with hydrogen peroxide to form “Fenton's reagent” which can produce hydroxyl radicals (OH.). Hydroxyl radical possession of high oxidation ability can oxidize organic chemicals effectively. Results show that 100 mg/l of 4-cp is decomposed completely within 30 min by 438.7 g/l BOF slag with 8.2 mM hydrogen peroxide in pH=2.8±0.2 solution. The COD value of the solution is reduced from 290 to 90 mg/l. The factors studied which affect the 4-cp decomposition efficiency were the hydrogen peroxide concentration, BOF slag concentration, pH of the solution and initial concentration of 4-cp. Because large amounts of Fe2O3 and FeO are present in the BOF slag, the BOF slag not only has a high treatment efficiency, but also can be used repeatedly.  相似文献   

18.
以正硅酸乙酯为硅源、3-氨丙基三乙氧基硅烷为改性剂,采用溶胶-凝胶法制备了氨基改性二氧化硅气凝胶,采用FTIR、SEM、TEM和BET技术对其进行了表征,并将其用于对水中镍离子的吸附。表征结果显示,改性前后的气凝胶均具有三维多孔网络结构,比表面积分别为877.35 m2/g和357.76 m2/g,平均孔径分别为10 nm和12 nm。实验结果表明:溶液pH为4~7时改性气凝胶对镍离子均保持较高的吸附量,溶液pH为6左右时吸附量最高;Langmuir等温吸附模型能更好地描述镍离子在改性气凝胶上的吸附行为,其饱和吸附量为70.03 mg/g,改性前仅为29.05 mg/g;改性气凝胶重复使用5次后,仍保持较高的镍离子去除率,重复使用性能良好。  相似文献   

19.
The feasibility of sweet cherry gum as a bio-based film-forming material and effect of hydrogen peroxide as a chemical modifier investigated. The influence of film compositions (gum, glycerol) and hydrogen peroxide on the physical properties of films, including solubility in water, permeability to water vapor (WVP), mechanical properties, and transparency, thermal and microstructural properties evaluated. The results showed that WVP and thickness increased by gum and glycerol concentration, but significantly decreased by hydrogen peroxide. As expected, elongation-at-break and solubility, increased at higher concentration of glycerol but the tensile strength decreased at the same condition. The film transparency was influenced by the dry weight content and was improved by higher concentrations of hydrogen peroxide. The partial degradation of polymer chain by hydrogen peroxide was observed by FTIR analysis.  相似文献   

20.
采用水溶液聚合法,以丙烯酸、丙烯酰胺及改性蒙脱土为原料,纳米腐植酸为基体,N,N’-亚甲基双丙烯酰胺为交联剂,过二硫酸钾为引发剂,制备了丙烯酸-蒙脱土-丙烯酰胺/纳米腐植酸复合树脂(简称复合树脂)。考察了溶液pH、吸附时间、吸附温度、初始离子浓度等因素对复合树脂分别吸附Ni~(2+)和Cd~(2+)的影响。实验结果表明:在吸附温度35℃、吸附时间90 min、溶液pH为7、初始Ni~(2+)和Cd~(2+)的浓度分别为0.02 mol/L、复合树脂加入量16.7 g/L的条件下,Ni~(2+)和Cd~(2+)的吸附量分别为383.02 mg/g和359.27 mg/g;复合树脂吸附Ni~(2+)和Cd~(2+)的吸附等温线均满足Langmuir等温吸附方程;吸附过程均符合准二级动力学方程;复合树脂重复使用6次,其对Ni~(2+)和Cd~(2+)的吸附量分别降低了17.1%和9.3%。  相似文献   

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