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101.
核桃壳质活性炭的制备及吸附恶臭气体的研究   总被引:2,自引:0,他引:2  
研究了用ZnCl2活化法制备核桃壳质活性炭的工艺条件及其改性前后吸附典型恶臭气体硫化氢的硫容量及穿透行为:结果表明:ZnCl2质量分数60%,300℃炭化80min,500℃活化60min,制得的活性炭脱硫硫容量高,穿透时间长;性能表征测得其碘吸附值可达880mg/g以上,吸附效果明显优于市售活性炭。用质量分数为1%的KIO3改性后的活性炭脱硫性能明显提高。  相似文献   
102.
In this study, cucurbit[8]uril (CB[8]) was utilized as a kind of new adsorbent to remove Pb2 + ions from aqueous solution. With the solution pH increased from 2 to 6, the removal efficiency of adsorption increased from 55.6% to 74.5%correspondingly. The uptake of Pb2 + increased rapidly in the initial 30 min, and then the adsorption rate became slower. The Pseudo-second order model could be used to interpret the adsorption kinetics satisfactorily; and the rate determining step in Pb2 + adsorption onto CB[8] was the external mass transfer step. Equilibrium isotherm study reveals that the Langmuir model gave a better fitting result than Freundlich model. The maximum adsorption capacity calculated by the Langmuir model was 152.67 mg/g for 298 K, 149.70 mg/g for 313 K and 136.42 mg/g for 323 K, respectively. The adsorption is a spontaneous process of exothermic nature. The effect of the adsorbent dosage and the influences of solution pH and co-existing cations were also investigated. The CB[8] was synthesized and characterized by 1H NMR, IR, ESI-MS spectra, SEM-EDAX, Zeta-potential and BET-analysis. The adsorption mechanism was due to the coordination between CB[8] molecule and Pb2 + ions.  相似文献   
103.
在不同比例空心莲子草粗根(TR)和细根(FR)分泌物均质化条件下,研究膨润土和高岭土对四环素(TC)的等温吸附特征,并分析pH值、温度和离子浓度对TC吸附的影响.结果表明,分泌物均质化后黏土对TC的吸附符合Henry模型,FR均质化对TC吸附的促进作用比TR均质化更强,高岭土对TC吸附的增长幅度比膨润土更大;在pH值2...  相似文献   
104.
239Pu在西南某地板岩与土壤中的吸附行为   总被引:1,自引:1,他引:0  
以西南某极低放废物处置库预选场址地质环境中板岩与土壤为吸附介质,通过吸附实验和解吸实验,研究了不同介质粒径、环境温度(10℃—50℃)、水相pH(4—12)对239Pu核素在板岩与土壤介质中吸附行为的影响特征.吸附实验表明,水相环境中板岩和土壤介质对239Pu核素的吸附过程在10 d左右达到平衡,并且其吸附分配比随着介质粒径的减小而增大,随着水相pH值的增大而增大,但温度对其吸附的影响不明显.解吸实验表明板岩和土壤介质对239Pu核素的吸附是可逆的.  相似文献   
105.
将两性(十二烷基二甲基甜菜碱)修饰磁化炭分别以质量分数0、1%和2%加入嘉陵江流域(川渝段)内苍溪(CX)、南部(NB)、嘉陵(JL)和合川(HC)沿岸土中,考察各混合土样对Cu^2+的等温吸附和热力学特征。结果表明:混合土样对Cu^2+的最大吸附量为58.36 mmol/kg~366.85 mmol/kg,添加等量两性磁化炭时各混合土样对Cu^2+吸附量表现为JL>NB>CX>HC的趋势,且添加比越高吸附能力越强。各混合土样对Cu^2+的吸附为自发、吸热和熵增的反应过程,对Cu^2+的吸附量与温度和pH值均呈正相关关系。当离子强度为0.1 mol/L时,各混合土样(除HC外)对Cu^2+的吸附量最大。  相似文献   
106.
阐明了金属涂料生产中挥发性有机物(VOC)的危害性,介绍了一种工程造价低,处理效果较好的治理方法,供投资生产金属涂料的生产者参考。  相似文献   
107.
薛锐  李健  赵美玲 《环境科技》2008,21(2):12-15
通过活性炭吸附2种不同处理方法处理后的洗毛废水,研究了活性炭的吸附容量和吸附机理。结果表明:活性炭吸附无机酸酸化处理后废水和高分子絮凝剂处理后废水中COD的吸附容量分别为:70mg/g和43mg/g。进一步研究发现,2种废水中废水中小分子组分和疏水性组分的含量差异是造成活性炭吸附效果差异的主要原因。  相似文献   
108.
综述了吸附法和吸附法耦合其他技术处理垃圾渗滤液的研究进展,针对渗滤液中有机物的去除,重点比较了各种吸附剂的吸附性能,并做了展望。  相似文献   
109.
The layered laurylsulfonate intercalated green rust (lauryl-S GR) was synthesized to evaluate the influence of synthesis parameters and aqueous conditions on the adsorption of CeIV. The maximum adsorption capacity of 305.58 mg/g by lauryl-S GR was predictably obtained. The pseudo-first-order kinetic model was appropriate in fitting the whole uptake process in a weak acid environment. Three isotherm models including Langmuir, Freundlich, and Tempkin were all reliable in depicting the isotherm adsorption process. The maximum monolayer adsorption capacity of lauryl-S GR towards CeIV was 315.46 mg/g. Ce species including CeO and Ce2O3 besides CeO2 were matched in the XPS distribution, directly indicating the reduction reaction brought by FeII in the GR occurred to hydrated CeIV ions during the adsorption. Nano-sized Ce particles attached to the lauryl-S GRs after the adsorption experiments were observed in the morphological characterization. Flocculated materials were formed on the surface of the lauryl-S GR at a pH of 7, which further reduced the active sites and disrupted the continuous uptake of CeIV to the lauryl-S GR. This study expands the application of GRs and supplies an ideal iron-based material for the construction of the affiliated recovery pathway to the traditional separation of Ce.  相似文献   
110.
This study aimed to explore the adsorption performance of sludge-based activated carbon (SBC) towards dissolved organic matters (DOMs) removal from sewage, and investigated the modification effect of different types of chemicals on the structure of synthesized SBC. Waste activated sludge (WAS) was used as a carbon source, and HCl, HNO3, and NaOH were used as different types of chemicals to modify the SBC. With the aid of chemical activation, the modified SBC showed higher adsorption performances on DOMs removal with maximum adsorption of 29.05 mg/g and second-order constant (k) of 0.1367 (L/mol/sec) due to the surface elution of ash and minerals by chemicals. The surface elemental composition of MSBC suggested that the content of C-C and C-O functional groups on the surface of modified sludge-based activated carbon (MSBC) played an important role on the adsorption capacities of MSBC towards DOMs removal in sewage. Additionally, the residual molecular weight of DOMs in sewage was investigated using a 3-dimension fluorescence excitation-emission matrix (3D-EEM) and high-performance size exclusion chromatography (HP-SEC). Results showed that the chemical modification significantly improved the adsorption capacity of MSBC on humic acids (HA) and aromatic proteins (APN), and both of NaOH-MSBC and HCl-MSBC were effective for a wide range of different AMW DOMs removal from sewage, while the HNO3-MSBC exhibited poorly on AMW organics of 2,617 Da and 409 Da due to the reducing content of macropore. In brief, this study provides reference values for the impact of the chemicals of the activation stage before the SBCs application.  相似文献   
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