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1.
交联壳聚糖/沸石复合吸附剂的制备及性能   总被引:1,自引:0,他引:1       下载免费PDF全文
用沸石负载由缩水甘油基三乙基氯化铵交联的壳聚糖,制得了性能良好的交联壳聚糖/沸石复合吸附剂。研究了该吸附剂应用性能的影响因素,探讨了该吸附剂的吸附性、沉降性和重复使用性,利用FTIR仪和高倍透射电子显微镜对该吸附剂的结构进行了表征。实验结果表明:壳聚糖的交联度为0.93、交联壳聚糖与沸石的质量比为0.045时,制得的交联壳聚糖/沸石复合吸附剂对腐殖酸的去除率可达81.4%,吸附量为4.07mg/g;交联壳聚糖/沸石复合吸附剂对腐殖酸的吸附性能较沸石有显著提高,沉降时间较交联壳聚糖明显缩短;经二次洗脱后腐殖酸去除率仍可达80.2%,腐殖酸吸附量为4.01mg/g。  相似文献   

2.
采用悬浮聚合法,以甲基丙烯酸甲酯(MMA)和丙烯酸丁酯(BA)为单体、二乙烯苯(DVB)为交联剂、过氧化苯甲酰(BPO)为引发剂,合成了一种丙烯酸酯类高吸油树脂。实验结果表明,在m(MMA)∶m(BA)=0.5、DVB加入量为0.8%、BPO加入量为1.2%的最佳条件下,树脂对氯仿的吸油率可达30.6 g/g,对氯仿、柴油、甲苯、废机油、花生油、丙酮等有机溶剂和油品的保油率可达90.0%以上。  相似文献   

3.
以水性油墨废水絮凝污泥为原料、采用一步炭化活化法制备了吸附剂,并将其用于阳离子蓝X-GRRL溶液(300 mg/L)的吸附处理。考察了吸附剂投加量、吸附时间、吸附温度和吸附pH对吸附效果的影响,并对吸附动力学进行了探讨。结果表明:所制得吸附剂的总孔体积为0.5 cm~3/g,平均孔径为7.12 nm;在吸附剂投加量0.6g/L、吸附时间420 min、吸附温度25℃、吸附pH 5.4的条件下,吸附量高达486.21 mg/g,脱色率达97.24%;该吸附剂对于阳离子蓝X-GRRL的吸附过程可用准二级动力学模型和颗粒内扩散效应模型很好地描述。  相似文献   

4.
壳聚糖对酸性染料的吸附性能研究   总被引:7,自引:3,他引:4  
采用壳聚糖为吸附剂,研究了壳聚糖对兰纳洒脱酱红B(ABB)和尼龙山黄N-3RL(NYN)两种酸性染料模拟废水的吸附性能.在染料废水初始质量浓度为100 mg/L、体积为50 mL的条件下,壳聚糖对两种染料废水的最佳吸附条件:壳聚糖脱乙酰度为75%,壳聚糖粒径为0.054~0.076 MM,壳聚糖加入量为20 mg,搅拌时间为2.0 h,搅拌速率为400 r/min,废水pH为6,ABB废水温度为10~30 ℃,NYN废水温度为20-50℃.在最佳的吸附条件下,壳聚糖对ABB和NYN的吸附容量分别为244.45 mg/g和239.14 mg/g.壳聚糖对ABB的吸附较符合Freundlich方程,对NYN的吸附较符合Langmuir方程.  相似文献   

5.
采用浸渍法制备了Fe-Ce/ZSM-5复合催化剂,并将其用于甲基橙的催化降解。利用单因素实验考察了溶液pH、初始甲基橙质量浓度、催化剂加入量、初始H_2O_2浓度及反应温度对准一级动力学方程反应动力学常数的影响,对催化剂的稳定性进行了测试,并探讨了甲基橙的催化降解机理。实验结果表明:在溶液pH 5.0、初始甲基橙质量浓度100 mg/L、催化剂加入量1.0 g/L、初始H_2O_2浓度20 mmol/L、反应温度20℃的优化条件下反应60min,反应动力学常数高达0.034 min~(-1),甲基橙降解率高达87%,铁离子流失量仅为0.019 mg/L;催化剂重复使用3次后,甲基橙降解率仍高于80%,保持了较高活性。  相似文献   

6.
孙志勇  王智懿  张娇 《化工环保》2016,36(2):179-182
将阳离子聚丙烯酰胺与钠基膨润土进行复配,制备出复合吸附剂,并将其用于模拟苯酚废水的处理。采用XRD和FTIR技术对复配前后的钠基膨润土进行了表征。表征结果显示:阳离子聚丙烯酰胺附着在钠基膨润土的表面,对钠基膨润土的表面具有改性作用,使其由亲水性变为疏水性。实验结果表明:在阳离子聚丙烯酰胺与钠基膨润土的复配比例为200 mg/g、反应时间为40 min、复合吸附剂投加量为6 g/L、废水p H为11的最佳条件下,于25℃处理苯酚质量浓度为50 mg/L的模拟苯酚废水,苯酚去除率达89.5%。  相似文献   

7.
陈莉荣  陈毛毛  刘文 《化工环保》2015,35(3):318-323
以拜耳法赤泥为原料、Na Cl为助溶剂,采用酸浸法溶出赤泥中的铁、铝元素,再与硅酸钠、硫酸氧钛反应制备出高效混凝剂含钛聚硅酸铝铁(T-PSAF),并将其用于模拟亚甲基蓝印染废水的脱色。实验结果表明:在硫酸浓度为8 mol/L、液固比(硫酸体积与干赤泥质量之比)为14 m L/g、酸浸温度为80℃、酸浸时间为80 min、Na Cl加入量为0.10 g/g(以干赤泥计)的优化酸浸条件下,铁、铝的浸出率分别为88.25%和73.21%;在n(Fe+Al)∶n(Ti)∶n(Si)=0.3∶0.3∶1、熟化p H为4~5、熟化时间为2 h、混凝剂加入量为25 m L/L的优化混凝条件下,初始亚甲基蓝质量浓度为10 mg/L的废水的脱色率可达87.1%,而当初始亚甲基蓝质量浓度增至150~200 mg/L时废水脱色率可达99%以上。  相似文献   

8.
采用壳聚糖改性高炉渣制备复合吸附剂(C-BFS)。在吸附温度为30℃、溶液pH为3、初始染料质量浓度为60 mg/L、C-BFS加入量为6 g/L的最佳条件下,C-BFS对活性艳红K-2BP、活性红195、酸性蒽醌蓝、酸性红B 4种染料溶液的脱色率均可达95%以上。4种染料在C-BFS上的吸附很好地符合Langmuir等温方程,吸附动力学均可用表观二级动力学模型描述。热力学参数表明C-BFS对4种染料的吸附都是自发进行的,主要为物理吸附,吸附过程无配位基交换、化学键等强的作用力。  相似文献   

9.
PW_(12)/g-C_3N_4光催化降解甲基橙   总被引:1,自引:0,他引:1       下载免费PDF全文
采用浸渍法制备了磷钨酸(PW12)/g-C3N4复合光催化剂,并将其用于溶液中甲基橙的光催化降解,运用IR技术对使用前后的光催化剂进行了表征。表征结果显示,PW12和g-C3N4的结构未在浸渍负载中发生改变,且PW12和g-C3N4结合牢固。实验结果表明:最佳的PW12负载量(光催化剂中PW12的质量分数)为50%;光催化降解甲基橙的优化反应条件为初始甲基橙质量浓度5 mg/L、光催化剂加入量0.6 g/L、初始溶液p H=7;在优化条件下,分别采用紫外光、模拟太阳光、可见光照射120 min后,甲基橙的降解率分别为96.59%,82.23%,42.78%;该光催化剂固载良好,使用中不易发生溶脱,稳定性好,可重复使用。  相似文献   

10.
稀土吸附剂处理氨氮废水的研究   总被引:3,自引:0,他引:3  
陈玉保  宁平  邓春玲 《化工环保》2004,24(Z1):352-354
采用以分子筛为载体、负载镧制成的复合吸附剂深度去除生活污水中的氨氮.结果表明研制的稀土吸附剂适于处理弱酸性生活污水.在模拟生活污水含氨氮质量浓度20 mg/L,pH3~7,吸附剂投加量3 g/L, 吸附2 h条件下, 氨氮的去除率可达97%,出水pH在6.0~ 8.5之间,吸附剂的饱和吸附容量为6.46 mg/g.  相似文献   

11.
Chitosan was dissolved in 2?% aqueous acetic acid solution and the films were prepared by solution casting. Values of tensile strength (TS), tensile modulus (TM), elongation at break (Eb?%) and water vapor permeability (WVP) of the chitosan films were found to be 30?MPa, 450?MPa, 8?% and 4.7?g?mm/m2?day?kPa, respectively. Poly(caprolactone) (PCL) films were prepared from its granules by compression molding and the values of TS, TM, Eb and WVP were 14?MPa, 220?MPa, 70?% and 1.54?g?mm/m2?day?kPa, respectively. PCL was reinforced with chitosan films, and composite films were prepared by compression molding. Amount of chitosan in the composite films varied from 10 to 50?% (w/w). It was found that with the incorporation of chitosan films in PCL, both the values of TS and TM of composite films increased significantly. The highest mechanical properties were found at 50?% (w/w) of chitosan content. The Oxygen transmission rate (OTR) of composite film was found to decrease significantly than PCL films. Thermal properties of the composite were also improved as compared to PCL. The water uptake test of the composite also showed promising results with a good stability of composite films. The interface of the composite was investigated by scanning electron microscopy and showed good interfacial adhesion between PCL and chitosan films.  相似文献   

12.
采用液膜萃取—酸析沉降—络合萃取组合工艺对有机磷阻燃剂生产废水进行预处理.最佳工艺条件为:液膜萃取时,液膜油相(表面活性剂与煤油的混合液)与内水相(H2SO4溶液)的体积比2∶1、乳化液膜与废水的体积比1∶8、废水pH 13.0,硫酸体积分数10%、煤油中表面活性剂质量浓度30 g/L、液膜萃取时间 15 min;酸析沉降时,废水pH l.0,酸析沉降时间30 min;络合萃取时,络合萃取剂(烷基叔胺N235与煤油的混合液)中烷基叔胺N235体积分数30%,络合萃取剂与废水的体积比1∶4,废水pH l.0,络合萃取时间30 min.在此最佳处理条件下,废水COD总去除率可达93%,吡啶去除率达99.9%以上,总磷去除率可达97%,BOD5/COD提高至0.32,有利于后续生化处理.  相似文献   

13.
肖利萍  刘晓丹  刘喆 《化工环保》2012,40(4):411-417
研究了膨润土-钢渣复合吸附剂对模拟酸性矿山废水中Fe2+的吸附去除效果、Fe2+在吸附剂表面的赋存形态及其吸附机理和规律。结果表明:复合吸附剂在处理含Fe2+模拟酸性矿山废水时,不仅能释放碱性物质中和酸,且发生了吸附-聚沉协同作用;Fe2+可与膨润土发生晶格置换,还可通过静电吸附作用形成硅酸盐类矿物相,还有一部分通过配合作用生成多金属氧化物,最后一类是通过化学沉淀作用生成的 Fe(OH)2或Fe(OH)3受热分解而形成Fe2O3;被吸附的Fe2+中98.62%以残渣态形式存在于复合吸附剂中;复合吸附剂对Fe2+的吸附行为符合BET等温吸附模型和准二级动力学模型。  相似文献   

14.
周耀珍  姚春才  方年 《化工环保》2014,34(2):170-175
以壳聚糖为原料、二甲基二烯丙基氯化铵(DMDAAC)为接枝单体、甲醛为预交联剂、环氧氯丙烷为交联剂,通过反相乳液聚合制备出交联壳聚糖季铵盐吸附剂,并将其用于吸附Ni(Ⅱ)和Cr(Ⅵ)。考察了吸附时间、溶液初始浓度、溶液pH等因素对吸附效果的影响。实验结果表明:该吸附剂对Ni(Ⅱ)和Cr(Ⅵ)的吸附过程遵循拟二级动力学方程,吸附等温线符合Langmuir方程;在30 ℃条件下,Ni(Ⅱ)和Cr(Ⅵ)的溶液初始浓度均为1 mmol/L时,该吸附剂吸附Ni(Ⅱ)和Cr(Ⅵ)的最佳溶液pH分别为7和6,对应的平衡吸附量分别为1.18,1.99 mmol/g;该吸附剂可用盐酸再生,重复使用性能良好。  相似文献   

15.
以含油浮渣为原料制备含碳吸附剂,并用于含油污水的处理。用比表面分析仪和SEM技术对吸附剂进行表征。通过正交实验和单因素实验考察吸附剂加入量、吸附时间及温度、污水pH对污水处理效果的影响。表征结果显示,含碳吸附剂碳元素含量高达90%(w)以上,表面粗糙,孔径分布以中孔为主,比表面积477.5 m2/g,碘吸附值376.48 mg/g。实验结果表明:在吸附温度30℃及时间60 min、含碳吸附剂加入量20 g/L、污水pH为7的最佳实验条件下,处理初始COD为502.12 mg/L、石油类质量浓度45.31 mg/L.的含油污水,COD和石油类的去除率分别为91.51%和87.1%,处理后的COD和石油类质量浓度分别为42.62 mg/L和5.83 mg/1,达到GB 8978—1996《污水综合排放标准》中的二级排放标准;含碳吸附剂的污水处理效果优于术质活性炭。  相似文献   

16.
Biodiesel from waste cooking oil (WCO) and soybean oil (SO) mixture was produced by changing the alkali catalyst (NaOH) content and the WCO to SO ratio in the feedstock. All the prepared biodiesel samples satisfied the standard requirement in terms of free glycerol, density, and acid value. The minimum catalyst content and the highest WCO composition to get biodiesel from the WCO/SO mixture feedstock without ruining the biodiesel properties were 1.0 and 60 wt %, respectively. This conclusion implies that the waste cooking oil mixture, which contains 40 wt % fresh soybean oil, could be treated like the fresh soybean oil to produce biodiesel, and that this behavior would be helpful to reduce the biodiesel production cost when waste cooking oil used as feedstock. The unsaturated methyl esters such as linoleic, and oleic acid were dominant (almost 80 % w/w) in the fresh soybean oil. However the saturated methyl ester was increased due to the double bond breaking during the frying process. These results may deteriorate the biodiesel quality by changing the methyl ester composition.  相似文献   

17.
This study is focused on the preparation, characterization, and determination of thermal properties and thermal reliability of paraffin/polypropylene (PP) composite as a novel form-stable phase change material (PCM) for thermal energy storage applications. In the composite, paraffin acts as a PCM when PP is operated as supporting material. The composites prepared at different mass fractions of paraffin (50, 60, 70, 80, and 90 w/w%) by solution casting method were subjected to leakage test by heating the composites over the melting temperature of the PCM. The paraffin/PP composite (70/30 w/w%) is found as the maximum paraffin containing composite and was characterized using Fourier transform infrared spectroscopy, optic microscopy, differential scanning calorimetry (DSC), and thermal gravimetric analysis (TGA) techniques. DSC analysis indicated that the form-stable paraffin/PP composite melts at 44.77–45.52 °C and crystallizes at 53.55–54.80 °C. It has latent heats of 136.16 and −136.59 J/g for melting and crystallization, respectively. These thermal properties make it potential PCM for latent heat thermal energy storage (LHTES) purposes such as solar space heating applications. Accelerated thermal cycling tests indicated that the form-stable PCM had good thermal reliability. TGA also showed that the form-stable PCM degrades in two distinguishable steps and had good chemical stability.  相似文献   

18.
The crosslinking of chitosan with cyanoguanidine shows some advantages, such as the improved the stability in acid solutions and the decrease of adsorbent cost. In this work, cyanoguanidine-crosslinked chitosan and pure chitosan were prepared to apply in the adsorption of Food Yellow 4 (FY4) and Food Blue 2 (FB2), in single and binary systems. Effects of pH and deacetylation degree (DD) of chitosan in adsorption were evaluated. The adsorbents were characterized by Fourier transform infrared spectroscopy and scanning electron microscopy. The kinetic data were analyzed by pseudo-first order, pseudo-second order and Avrami models. The conditions of pH 3 and DD 95% were the more suitable to reach the highest adsorption capacities in all experimental assays. Under these conditions, the adsorption capacities for FY4 were approximately of 392 and 200 mg g?1 and, for FB2 were approximately of 370 and 184 mg g?1, respectively, in the single and binary systems. The Avrami model was suitable to represent the kinetic curves in all conditions, and the highest adsorption capacities were found for FY4 in binary aqueous system, being for the pure chitosan of 229 mg g?1 and crosslinked chitosan of 218 mg g?1. The Langmuir and extended Langmuir models presented a good fit to the equilibrium data in both systems. It was found that, the chitosan crosslinked with cyanoguanidine improved the chemical stability of chitosan as adsorbent.  相似文献   

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