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11.
以成都粘土为原料,十六烷基三甲基溴化铵(HDTMA)为改性剂制备有机改性土,并将其应用于垃圾渗滤液的预处理。采用单因素静态吸附实验,以粘土对垃圾渗滤液COD和氨氮的去除率作为考查指标,初步探究有机改性土预处理垃圾渗滤液的适宜条件;并对有机改性粘土及原土进行性能表征,初步分析其吸附机理。研究结果表明,有机土的处理效果明显优于原土,处理效果上比原土提高了1.6~2.3倍;有机土预处理垃圾渗滤液适宜条件为:投加量120 g/L、搅拌速度200 r/min、搅拌时间50 min、pH=7、静置时间为6 h。  相似文献   
12.
对十六烷基三甲基溴化铵改性凹凸棒土、凹凸棒土负载TiO2采用XRD、FTIR以及TG等手段进行了分析和表征,对比了改性凹凸棒土、活性炭、大孔树脂等不同吸附剂和凹凸棒土负载TiO2对二硝基联苄生产废水的处理效果。结果表明:十六烷基三甲基溴化铵改性凹凸棒土的废水中污染物的去除率比凹凸棒土提高了2.5倍;凹凸棒土负载TiO2在波长λ=254 nm下光照0.5 h,对废水中污染物的去除率是凹凸棒土的2.0倍;投加量为3%活性炭在pH为2.05.0时,对该类废水中污染物的去除率可达80%以上。  相似文献   
13.
有机改性粘土对赤潮藻絮凝沉降的动力学研究   总被引:1,自引:0,他引:1  
吴萍  俞志明 《环境科学》2007,28(7):1518-1523
采用分光光度计法和活体荧光计法,研究了吉米奇类表面活性剂双烷基聚氧乙烯基三季铵盐(DPQAC)改性粘土对2种赤潮生物赤潮异弯藻和锥状斯氏藻的絮凝沉降动力学,比较了2种实验方法的不同,并对几种影响絮凝沉降的因素进行了研究.结果表明,传统的分光光度计法进行动力学研究时,有机粘土对赤潮藻的絮凝沉降较好地符合双分子反应动力学模型,而采用活体荧光计法进行实验时,有机粘土对赤潮藻的絮凝沉降很好地符合双曲线动力学模型,利用活体荧光计法进行实验时避免了前者由于粘土沉降导致的体系透光率的快速变化,更好地反映了赤潮藻细胞絮凝沉降实质.2种动力学实验方法都表明,高岭土体系的沉降速率要略高于膨润土体系,提高粘土、改性剂的用量以及体系的pH值都能加快沉降速率,其中提高改性剂的用量是增加去除率和加快沉降速率的最有效方法.  相似文献   
14.
氯化镧改性黏土固化湖泊底泥中磷的研究   总被引:6,自引:1,他引:5  
袁宪正  潘纲  田秉晖  陈灏 《环境科学》2007,28(2):403-406
用氯化镧对14种黏土进行改性并研究了这些改性黏土固化磷的效果.研究了pH对改性高岭土磷吸附率和镧离子溶出的影响.结果表明,通过氯化镧改性,不同黏土的磷固定率由改性前的3%~14%提高到改性后的52%~95%.氯化镧改性高岭土在pH为5时,达到磷吸附率的最大值94.85%,并在pH值4~8范围内,保持较高的磷吸附率(>80%).在pH>6.5的范围,La3+溶出浓度低于0.0178 mg/L.  相似文献   
15.
开展卫生填埋场中的黏土衬层密实性试验研究对填埋场的工程设计和后期运营具有现实意义.黏土压实的直接影响之一就是孔隙率的减小,并改变黏土的电阻率,为高密度电阻率法在衬层密实性中的调查研究提供了前提条件和物理基础.文章采用高密度电阻率法三种装置(测深、温纳、偶极-偶极)进行对比测量,通过电阻率成像技术对压实黏土的电性特征进行...  相似文献   
16.
壳聚糖改性粘土对高藻水中藻类的絮凝去除   总被引:5,自引:1,他引:4  
刘恋  陈兵  王志红 《环境工程学报》2010,4(6):1296-1300
对壳聚糖改性粘土用于天然高藻水中藻类的絮凝去除进行了研究。实验表明,经壳聚糖改性后的粘土对高藻水中藻细胞有较好的去除效果。粘土的种类对除藻效果有一定影响,其中以高粘凹凸棒石为最佳,其最佳投加量为66mg/L(壳聚糖6 mg/L),此时的叶绿素去除率达到95.45%。相比单独投加壳聚糖,粘土的加入增加了絮体密实度,减少了絮体体积,并使絮体分布更均匀。粘土的粒径对絮凝效果基本没有影响,粒径范围在25~74μm时,改性粘土对藻细胞的凝聚效果是一致的。经壳聚糖改性的粘土在酸性条件下絮凝效果较好,当pH值大于7时,其絮凝能力迅速下降。  相似文献   
17.
Abstract

Leaching, downward mobility and persistence of tebufenozide was investigated under laboratory conditions in columns packed with forest litter and soil, after fortification with the analytical grade material (purity > 99.6%) and with two commercial formulations, RH‐5992 2F (aqueous flowable) and RH‐5992 ES (emulsion suspension). Two types of litter and soil were used: one type with relatively high amounts of sand and the other with high amounts of clay.

The concentrations eluted in the leachates were lower when the analytical material (dissolved in acetone) was used for fortification, than when the two formulations (diluted with water) were used. The amount leached was higher for RH‐5992 2F than for RH‐5992 ES. The type of substrate, i.e., sandy or clay type, had only marginal influence on the amounts eluted in the leachates. Downward movement of tebufenozide from the top 2‐cm layer to the untreated middle and bottom layers (3‐cm segments) was consistently lower when the analytical material was used for fortification, than when the two formulations were used. Downward movement was higher for RH‐5992 2F than for RH‐5992 ES. Persistence of tebufenozide in substrates, maintained under submerged conditions for 70 days after leaching, indicated an initial 2‐week lag period prior to the onset of degradation. Formulation‐related differences were observed in the half‐life (DT50) values. When the analytical material was used for fortification, the DT50 ranged from ca 54 to 59 d. However, when the formulations were used for fortification, the DT50 showed a higher range, i.e., from ca 62 to 67 d for RH‐5992 2F and ca 70 to 80 d for RH‐5992 ES. Formulation ingredients appear to have caused enhanced adsorption of tebufenozide onto the substrates, thus delaying degradation.  相似文献   
18.

The bioavailability of pollutants, pesticides and/or their degradation products in soil depends on the strength of their sorption by the different soil components, particularly by the clay minerals. This study reports the sorption-desorption behavior of the environmentally hazardous industrial pollutants and certain pesticides degradation products, 3-chloroaniline, 3,4-dichloroaniline, 2,4,6-trichloroaniline, 4-chlorophenol, 2,4-dichlorophenol and 2,4,6-trichlorophenol on the reference clays kaolinite KGa-1 and Na-montmorillonite SWy-l. In batch studies, 2.0 g of clay were equilibrated with 100.0 mL solutions of each chemical at concentrations ranging from 10.0 to 200.0 mg/L. The uptake of the compounds was deduced from the results of HPLC-UV-Vis analysis. The lipophilic species were best retained by both clay materials. The most lipophilic chemical used in the study, 2,4,6-trichloroaniline, was also the most strongly retained, with sorption of up to 8 mg/g. In desorption experiments, which also relied on HPLC-UV-Vis technique, 2,4,6-trichloroaniline was the least desorbed from montmorillonite. However, on kaolinite all of the compounds under study were irreversibly retained. The experimental data have been modelled according to the Langmuir and Freundlich isotherms. A hypothesis is proposed concerning the sorption mechanism and potential applications of the findings in remediation strategies have been suggested.  相似文献   
19.
Abstract

Interaction of lindane with silty loam and silty clay loam soils was studied in batch tests at 23, 30 and 37° C. Sorption experiments were carried out at four concentrations and for varying time of contact upto 72 hours. This was followed by desorption studies. No desorption was observed. The sorption data was analysed using sorption equations and evaluating the thermodynamic parameters. The sorption was found to be predominantly entropic in nature and a combined effect of adsorption and chemisorption. The effect of organic matter and other chemical and mineralogical constituents of soils has also been discussed. The sorption with single application of lindane with the two soil types indicates that the insecticide is less likely to reach groundwater.  相似文献   
20.
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