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241.
研究了吸附剂浓度(Cs)对Zn(Ⅱ)和Cd(Ⅱ)在高岭土上吸附的影响。结果表明,随Cs增大,吸附等温线下降,呈现出明显的吸附剂浓度效应(Cs-effect)。采用经典Langmuir和Freundlich吸附等温式对吸附数据进行拟合表明,在给定Cs下,Zn(Ⅱ)和Cd(Ⅱ)的吸附等温线分别符合Langmuir和Freundlich等温式;但这2个等温式不能描述或预测Cseffect,模型参数与Cs有关,与模型理论预测相悖。为解释和描述固/液界面吸附中的Cs-effect,我们近期提出了表面组分活度(SCA)模型,并推导出了Langmuir-SCA和Freundlich-SCA等温式。采用SCA模型等温式对吸附数据进行拟合表明,Langmuir-SCA和Freundlich-SCA等温式可分别准确地描述Zn(Ⅱ)和Cd(Ⅱ)在高岭土上吸附的Cs-effect结果,证明SCA模型是合理的。  相似文献   
242.
柚子皮制备生物炭吸附苯酚的特性和动力学   总被引:2,自引:0,他引:2  
廉价的柚子皮作为原材料制备生物炭吸附剂对含苯酚废水进行吸附研究。扫描电镜结果表明,柚子皮制备的生物炭具有较好表面吸附空间结构,比表面积测定为261.69 m2/g。此外,能谱对柚子皮生物炭元素分析发现,生物炭主要含有C、O、P、K,这些是生物质特点。红外对柚子皮生物炭分析发现生物炭含有羟基、氨基、羰基、羧基、磷酸酯或者硫酸酯等活性基团,这些是吸附苯酚的特性官能团。在初始浓度为100 mg/L,投加量为3 g/L,中性pH,30℃条件下吸附30 min后柚子皮生物炭对苯酚的去除率达到76.4%。伪二级动力学方程能很好地拟合柚子皮生物炭对苯酚的吸附过程。同时,Langmiur和Freundlich等温方程在整个温度都能较好地拟合数据,在30℃时,Langmuir理论最大吸附容量可达到49.75 mg/g。通过实际废水应用实验,表明柚子皮生物炭是一种有潜力可用于高浓度含酚废水的处理的有效材料。  相似文献   
243.
不同粒径炉渣对磷的静态吸附   总被引:2,自引:0,他引:2  
研究了不同粒级炉渣对含磷废水的静态等温吸附性能,为其在污水处理领域的有效利用和合理级配提供理论依据。经筛分得到<0.2 mm、0.2~0.45 mm、0.45~0.9 mm、0.9~2 mm、2~4 mm、4~6 mm、≥6 mm的7个粒级的供试炉渣,其中0.9~4 mm粒级占总量的64.54%。XRD、XRF分析显示,各粒级炉渣物相组成相似,<0.2 mm粒级炉渣中活性铝含量最高。静态吸附实验表明,炉渣对磷素的最大吸附量为4 021 mg/kg,最佳吸附时间为24 h;Langmuir和Freundlich吸附等温线可较好地拟合各粒级炉渣对溶液中磷素的吸附,而小于0.9 mm粒级炉渣具有更高的拟合度;炉渣粒径越小,吸附能力越强,<0.2 mm粒级炉渣的理论饱和吸附容量达14 084 mg/kg,≥6 mm粒级炉渣吸附磷素能力差;受粒径、溶液含磷浓度等因素影响,炉渣的平均理论吸附容量为1 142.4 mg/kg。  相似文献   
244.
以赋石水库和其上游河道沉积物以及流域内代表性水稻土为对象,通过分析其理化性质,改变上覆水磷浓度和pH的方法探讨沉积物和土壤对磷吸附/解吸的影响。结果表明:(1)沉积物内较高的磷含量,导致吸附/解吸平衡浓度较高,因此在水库和水体中起着磷"源"的作用;(2)土壤最大磷吸附量为566.45mg/kg,远大于沉积物的吸附量,同时吸附/解吸平衡浓度较低,因此在治理湖泊富营养化时,要加大水土保持的力度,尽量减少作为最主要污染源的农田土壤磷素流入水体;(3)无论上覆水中磷浓度升高还是降低,在未达到吸附/解吸平衡浓度前,土壤和沉积物会持续释放磷,故应把水体治理的重点放在降低土壤和沉积物的磷含量上;(4)上覆水的pH对样品的磷吸附和释放都有显著的影响。在酸性(pH3)或碱性(pH9)环境下,样品的磷吸附量均急剧下降,而水体酸化更易导致平衡后上覆水磷浓度的降低。  相似文献   
245.
246.

The objectives of this study were to assess sorption and desorption of tylosin, a macrolide antimicrobial chemical used in swine, cattle, and poultry production, in three silty clay loam soils of South Dakota and compare soil sorption to sand and manure sorption. The silty clay loam soils, from a toposequence in eastern South Dakota, standardized sand samples, and swine manure were used in 24-h batch sorption studies with tylosin concentrations ranging from 25 to 232 μ mole/L. Desorption from soil was conducted over a four-day period. Partition coefficients, based on the Freundlich isotherm (K f ) or K d values, were calculated. K f values for the silty clay loams were similar, not influenced by landscape position, and averaged 1350 with isotherm slopes ranging from 0.85 to 0.93. K f values for sand were dependent on solution/sand ratios and pH, ranging from 1.4 to 25.1. K d values of manure were dependent on the solution type and ranged from 840 L/kg with urine to about 175 L/kg when sorbed from water. Desorption of tylosin from each soil over the four-day period was < 0.2% of the amount added. The soils' high K f values and low desorption amounts suggest that once tylosin is in these soils, leaching to lower depths may not occur. However, this does not preclude runoff with soil eroded particles. If tylosin reaches a sand aquifer, through bypass flow or other mechanism(s), movement in the aquifer most likely would occur.  相似文献   
247.
吕婧  张立秋  封莉 《环境工程学报》2012,6(10):3529-3536
选择3种商品活性炭(煤质炭MAC、杏壳炭XAC、椰壳炭YAC),从其对水中微量药物酰胺咪嗪(carbamaz-epine,CBZ)的吸附平衡、吸附等温式、吸附动力学和热力学等方面详细考察了不同种类活性炭对CBZ的吸附去除规律。实验结果表明,3种活性炭与CBZ接触反应10 h后均达到吸附平衡,对CBZ的平衡吸附量在8.3 mg/g左右;比较了Lang-muir和Freundlich两种吸附等温式,发现Langmuir方程更适合描述3种活性炭对CBZ的吸附过程;计算表明3种活性炭的吸附过程均符合拟二级动力学方程,Weber-Morris方程的模拟结果则说明膜扩散和内扩散共同限制了3种活性炭对CBZ的吸附速率;3种活性炭的Ea值分别为29.87 kJ/mol(MAC)、36.02 kJ/mol(XAC)和38.86 kJ/mol(YAC),表明3种活性炭吸附CBZ时同时发生了物理吸附和化学吸附作用,且以化学吸附为主;20~40℃时3种活性炭的△G均为负值,说明3种活性炭对CBZ的吸附反应可以自发进行;MAC、XAC、YAC的△H值分别为-3.10、-3.05和-3.02 kJ/mol,负值表明吸附过程放热,上述△H值较小则说明温度对CBZ的吸附影响不大;3种活性炭吸附CBZ过程的△S值为0.94 J/(mol.K)(MAC)、2.24 J/(mol.K)(XAC)和2.97 J/(mol.K)(YAC),说明吸附过程熵值增加,在外界条件不改变的情况下该吸附过程不可逆,同时可以看出在3种活性炭中,CBZ分子更倾向于吸附在YAC上。  相似文献   
248.
Pyraclostrobin is a new broad-spectrum foliar applied and seed protectant fungicide of the strobilurin group. In this paper, adsorption-desorption of pyraclostrobin has been investigated in three different soils viz. Inceptisol (sandy loam, Delhi), Vertisol (sandy clay, Hyderabad) and Ultisol (sandy clay loam, Thrissur). Effect of organic matter and clay content on sorption was also studied in Inceptisol of Delhi. Leaching potential of pyraclostrobin as influenced by rainfall was studied in intact soil columns to confirm the results of adsorption-desorption studies. The adsorption studies were carried out at initial concentrations of 0.05, 0.1, 0.5, 1 and 1.5 μg mL?1. The distribution coefficient (Kd) values in three test soils ranged from 4.91 to 18.26 indicating moderate to high adsorption. Among the three test soils, adsorption was the highest in Ultisol (Kd 18.26), followed by Vertisol (Kd 9.87) and Inceptisol (Kd 4.91). KF value was also highest for Ultisol soil (66.21), followed by Vertisol (40.88) and Inceptisol (8.59). S-type adsorption isotherms were observed in all the three test soils. Kd values in organic carbon-removed soil and clay-removed soil were 3.57 and 2.83 respectively, indicating lower adsorption than normal Inceptisol. Desorption studies were carried out at initial concentrations of 0.5, 1 and 1.5 μg mL?1. Desorption was the greatest in Inceptisol, followed by Vertisol and Ultisol. Amounts of pyraclostrobin desorbed in three desorption cycles for different concentrations were 23.1–25.3%, 9.4–20.7% and 8.1–13.6% in Inceptisol, Vertisol and Ultisol respectively. Desorption was higher in clay fraction-removed and organic carbonremoved soils than normal Inceptisol. Desorption was slower than adsorption in all the test soils, indicating hysteresis effect (with hysteresis coefficient values varying from 0.05 to 0.20). Low values of hysteresis coefficient suggest high hysteresis effect indicating easy and strong adsorption, and slow desorption, of pyraclostrobin in soils. Higher hysteresis coefficient values in organic carbon removed soil (0.25–0.30) and clay fraction removed soil (0.28–0.36) as compared to normal Inceptisol soil suggest relatively weak adsorption and easy desorption of pyraclostrobin. Results of regression analysis suggest that the organic matter and pH of the soil play a major role in adsorption of pyraclostrobin. Leaching studies were carried out in intact soil columns in Inceptisol. The columns were leached with different amounts of water simulating different amounts of rainfall. The results suggest that most of the pyraclostrobin residues will remain present in the top soil layers even under high rainfall conditions and chances of pyraclostrobin moving to lower soil depth are almost negligible.  相似文献   
249.
This investigation was undertaken to determine the effect of two different fly ashes [Kota and Inderprastha (IP)] amendment on the sorption behavior of metribuzin in three Indian soil types. The IP fly ash was very effective in increasing the metribuzin sorption in the soils. The sorption with IP amendment was increased by 15–92%, whereas with the Kota fly ash an increase in sorption by 13–38% was noted. The adsorption isotherms fitted very well to the Freundlich adsorption equation and, in general, slope (1/n) values less then unity were observed. Although both the fly ashes significantly decreased metribuzin desorption, the IP fly ash was comparatively more effective in retaining metribuzin in the soils. Metribuzin sorption in the IP fly ash-amended soils showed strong correlation with the fly ash content and compared to Kf/Kd values, KFA values (sorption normalized to fly ash content) showed less variation. Metribuzin sorption-desorption did not correlate to the organic carbon content of the soil-fly ash mixture. The study demonstrates that all coal fly ashes may not be effective in enhancing the sorption of metribuzin in soils to the same extent. However, among the fly ashes used in this study, the IP fly ash was observed to be significantly effective in enhancing the sorption of metribuzin in soils. This may play an important role in reducing the run off and leaching losses of the herbicide by retaining it in the soil.  相似文献   
250.
采用磷酸二氢钾活化原材料柚子皮,分别在300℃和600℃对活化后柚子皮进行炭化,制得吸附剂(CC300和CC600),通过静态吸附实验研究了炭化柚子皮对双酚A的吸附性能。采用比表面积分析仪对炭化柚子皮进行表征,实验考察了pH值、吸附时间和温度对双酚A吸附的影响,并详细研究了炭化柚子皮对双酚A的吸附行为和机理。结果表明,高温炭化柚子皮(CC600)吸附双酚A能力比低温炭化(CC300)的强,其吸附较好地满足Langmuir和Freundlich等温方程;动力学研究表明,其吸附速率快,在150min内能达到吸附平衡,准二级动力学模型较好地描述该吸附行为,相关系数高达0.99:计算了热力学参数△G、△H和△S的值,△G为负值,说明该吸附过程为自发过程。  相似文献   
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