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1.
通过磁性树脂预处理,来提高粉末活性炭(PAC)应对水源水中突发以卡马西平(CBZ)为代表的PPCPs类有机物污染风险的能力.结果显示,Freundlich吸附模型可以更好描述PAC对CBZ的吸附规律;假一级动力学对CBZ吸附动力学过程模拟结果良好,假二级动力学更适合模拟时间大于1h的吸附过程;200~300目PAC具有较大的吸附容量和较快的吸附速率;在模拟配水试验中,磁性树脂与PAC联用相比单独使用PAC时,DOC去除率提高了40.64%,UV254去除率提高了41.27%,CBZ去除率提高了14.72%.在去除水中有机污染物过程中,磁性树脂与PAC间存在协同作用,磁性树脂预处理强化了PAC对CBZ的去除效果.  相似文献   

2.
研究了外加电压、初始浓度对电化学耦合膜工艺去除饮用水中卡马西平(CBZ)效果的影响.结果表明,CBZ初始浓度为100μg/L的条件下,随着电压的升高,电化学耦合膜工艺对CBZ的去除率逐渐增加,在外加电压为2V,电化学耦合膜工艺对CBZ的去除率达到88.0%;外加电压为2.0V的条件下,CBZ初始浓度为50~500μg/L时,电化学耦合膜对CBZ的去除率均达到85%以上.而与粉末活性炭/微滤膜(PAC/MF)工艺的比较可知,电化学耦合膜工艺的去除效果更为稳定,运行成本也更低.考察了水中的离子强度和腐殖酸对电化学耦合膜工艺去除CBZ效果的影响.结果表明,由于对系统中·OH的竞争作用,离子强度的增大及腐殖酸浓度的提高将抑制CBZ去除.  相似文献   

3.
六氯苯污染源水的饮用水应急处理工艺研究   总被引:5,自引:2,他引:3       下载免费PDF全文
针对长江水源地可能发生的六氯苯(HCB)突发污染事故,开展了应急处理工艺研究.考察了混凝剂聚合硫酸铁(PFS)投加量、KMnO4预氧化和木质粉末活性炭(PAC)吸附预处理对HCB 去除效果的影响.根据静态试验,设计了三因素三水平正交试验,进一步考察了KMnO4氧化与PAC 吸附联用预处理-混凝沉淀工艺去除HCB 的效果.结果表明,常规处理无法有效去除HCB;单独KMnO4 预氧化无法明显改善混凝沉淀对HCB的去除效果;PAC联用吸附预处理可明显提高去除效率.正交试验结果表明,在PAC,PFS,KMnO4投加量分别为40,5.0,0.5mg/L的最佳条件下,HCB 去除率为98.97%,但浊度在2NTU 以上.选取PAC 吸附预处理-混凝沉淀工艺进行中试试验,结果表明,在PFS 和PAC 投加量分别为15mg/L 和40mg/L 时,HCB 的去除率在98%以上,HCB 剩余浓度和浊度分别在1µg/L 和1NTU 以下.  相似文献   

4.
战晓  高宝玉  刘斌  许春华  岳钦艳 《环境科学》2010,31(5):1198-1205
选用2种无机高分子混凝剂聚合氯化铁(PFC)和聚合氯化铝(PAC)处理黄河水,考察了混凝剂的投加量对浊度、UV254、DOC和高锰酸盐指数的去除效果,并结合混凝出水的Zeta电位分析其混凝机制.选择粉末活性炭与混凝联用,研究了混凝剂和吸附剂投加量以及二者的投加顺序对有机物去除效果的影响,并对混凝吸附后出水进行加氯消毒,考察水中残余氯随时间的变化.结果表明,2种混凝剂均有较高的浊度去除率(﹥90%).PAC对UV254、高锰酸盐指数和DOC的去除率分别为29.2%、26.1%和27.9%;PFC对三者的去除率分别为32.3%、23.3%和32.9%.PAC在混凝过程中,电中和作用占主导地位;PFC在混凝过程中,吸附架桥和电中和同时发挥作用.混凝-吸附联用处理黄河水样时,有机物的去除率随混凝剂和吸附剂投加量的增加而升高.先混凝后吸附工艺对UV254和DOC的去除效果优于先吸附后混凝工艺.先使用PAC混凝后吸附对UV254和DOC的去除率分别为95.2%和99.9%;对于PFC,先混凝后吸附对UV254和DOC的去除率分别为90.1%和99.9%.但是先投加粉末活性炭能提高矾花的沉降性能,且处理出水在保持持续消毒效果方面优于前者.  相似文献   

5.
通过化学共沉淀法制备铁氧化物修饰的多壁碳纳米管(MWCNTs)用于去除水中红霉素,对铁氧化物修饰的多壁碳纳米管(MWCNTs)进行X-射线衍射分析与磁强测定,研究去除红霉素的效果及影响效果的因素,探讨吸附动力学、热力学与吸附机理。结果表明:铁氧化物为磁性的Fe_3O_4和γ-Fe_2O_3,磁性良好,可从水中通过磁分离回收。磁性铁氧化物修饰后显著提高MWCNTs对红霉素的去除效果,对于红霉素初始浓度为20 mg/L,0.5 g/L磁性的MWCNTs 30 min红霉素去除率达到87.23%。红霉素去除率随吸附剂投加量的增大而增大,随红霉素初始浓度的增大而下降,随p H值的提高而略有增大。吸附过程遵循拟二级动力学模型和Langmuir吸附等温方程,是以物理吸附为主,化学吸附为辅的吸热反应。吸附红霉素的磁性MWCNTs通过微波辐射可实现再生循环使用,具有应用前景。  相似文献   

6.
纳滤膜去除卡马西平的影响因素研究   总被引:2,自引:2,他引:0  
黄裕  张晗  董秉直 《环境科学》2011,32(3):705-710
主要研究了纳滤膜去除饮用水中卡马西平(CBZ)的影响因素.首先比较了膜NF270和NF90去除CBZ的效果,发现孔径较小的NF90对CBZ的去除效果远优于孔径较大的NF270.其次考察了CBZ初始浓度、pH值、离子强度和水温对去除率的影响.结果表明,pH值的降低,钙离子浓度的提高以及水温的提高会导致CBZ去除率的降低....  相似文献   

7.
刘成  王杰  陈彬  陈卫 《中国环境科学》2015,35(4):1123-1128
利用小试试验研究了磁性离子交换树脂预处理(MIEX~)对高藻水源水中的溶解性有机氮(DON)的去除效能,并通过分子量分布测定、双向电泳等手段初步分析了其作用机理.结果表明,MIEX~预处理对DON具有较好地去除效果,并可有效强化混凝工艺的处理效能.投加量为15m L/L时,MIEX~预处理可提升DON去除率20%;以铜绿微囊藻为主要种属的高藻水源水中藻类蛋白种类不低于230种,且大多数处于酸性端,分子量区间主要分布于15~40Ku、65~75Ku,处于MIEX~预处理可去除的分子量区间,从而具有较好的去除效果.综上所述,MIEX~预处理可以作为强化去除高藻水源水中DON的一种方法.  相似文献   

8.
电絮凝法同步去除氨氮和磷的模拟试验   总被引:2,自引:0,他引:2  
采用电絮凝法去除废水中的氨氮和磷,电极板采用铝板或不锈钢板,研究了电絮凝除磷热力学与动力学过程,考察了不同工艺参数对氨氮和磷去除效果的影响. 结果表明:相对于铝电极而言,不锈钢电极更适宜于电絮凝去除氨氮和磷;Redlich-Peterson方程能较好地描述电絮凝产生的絮凝体对磷的吸附行为,得到的Gibbs自由能变都在-20~0kJ/mol范围内,并且吸附是自发进行的吸热过程,升高温度有利于吸附;由于假二级动力学方程拟合时其相关系数(R2)均大于0.98,故假二级动力学方程更适宜描述电絮凝产生的絮凝体对磷的吸附动力学过程;随着电流密度的增加,氨氮和磷的去除率呈逐渐上升趋势;在强碱性条件下,氨氮的去除率相对降低,酸性条件下水中磷的去除率较高,随着溶液pH的增高,磷的去除率呈逐渐降低趋势. 去除氨氮和磷的能耗分别为0.15~0.50和0.02~0.04kW·h/g.   相似文献   

9.
超滤及其组合工艺对污水的深度处理试验   总被引:8,自引:0,他引:8  
超滤及其组合工艺 ,混凝 UF和粉末活性炭 (PAC) UF对污水深度处理的试验结果表明 ,超滤对水中浊度几乎可以完全去除 ,对细菌和大肠杆菌的去除效率大于 99% ,对水中有机物、氨氮、总铁和总锰也均有一定的去除。超滤前加混凝预处理或粉末活性炭吸附后 ,提高了水中有机物的去除率 ,同时减轻了膜污染 ,提高了膜通量和产水量。此外 ,三种工艺在等量冲洗用水的条件下 ,适当缩短过滤周期 ,增加反冲洗频率均提高了单位能耗产水量。  相似文献   

10.
刘成  陈卫  李磊  盛誉 《环境科学》2009,30(6):1639-1643
利用烧杯试验研究了磁性离子交换树脂(magnetic ion exchange resin,MIEX)预处理对长江原水中有机物的去除效能,以总溶解有机碳(DOC)、254 nm紫外吸收值(UV254)、有机物相对分子质量分布、有机物分级、紫外扫描以及消毒副产物生成量等指标进行表征.结果表明,长江水源水中的有机物主要为小分子亲水性有机物,其含量占有机物总量的50%以上;MIEX预处理可以有效降低水中有机物的含量,投加量为10 mL/L、接触时间为15 min时,DOC的去除率超过35%,相对分子质量和分级的测定结果表明,小分子亲水性部分有机物的去除导致了DOC去除效果的改善;从紫外扫描结果可看出,MIEX预处理对在190~250 nm波长时有强吸收的有机物去除效果非常明显,但对在高于250 nm波长处有吸收的有机物去除效果与混凝阶段的效果相近.  相似文献   

11.
The source water in one forest region of the Northeast China had very high natural organic matter(NOM) concentration and heavy color during snowmelt period. The efficiency of five combined treatment processes was compared to address the high concentration of NOM and the mechanisms were also analyzed. Conventional treatment can hardly remove dissolved organic carbon(DOC) in the source water. KMn O4pre-oxidization could improve the DOC removal to 22.0%. Post activated carbon adsorption improved the DOC removal of conventional treatment to 28.8%. The non-sufficient NOM removal could be attributed to the dominance of large molecular weight organic matters in raw water, which cannot be adsorbed by the micropore upon activated carbon. O3+ activated carbon treatment are another available technology for eliminating the color and UV254 in water. However, its performance of DOC removal was only 36.4%, which could not satisfy the requirement for organic matter. The limited ozone dosage is not sufficient to mineralize the high concentration of NOM. Magnetic ion-exchange resin combined with conventional treatment could remove 96.2%of color, 96.0% of UV254 and 87.1% of DOC, enabling effluents to meet the drinking water quality standard. The high removal efficiency could be explained by the negative charge on the surface of NOM which benefits the static adsorption of NOM on the anion exchange resin. The results indicated that magnetic ion-exchange resin combined with conventional treatment is the best available technology to remove high concentration of NOM.  相似文献   

12.
The source water in one forest region of the Northeast China had very high natural organic matter (NOM) concentration and heavy color during snowmelt period. The efficiency of five combined treatment processes was compared to address the high concentration of NOM and the mechanisms were also analyzed. Conventional treatment can hardly remove dissolved organic carbon (DOC) in the source water. KMnO4 pre-oxidization could improve the DOC removal to 22.0%. Post activated carbon adsorption improved the DOC removal of conventional treatment to 28.8%. The non-sufficient NOM removal could be attributed to the dominance of large molecular weight organic matters in raw water, which cannot be adsorbed by the micropore upon activated carbon. O3 + activated carbon treatment are another available technology for eliminating the color and UV254 in water. However, its performance of DOC removal was only 36.4%, which could not satisfy the requirement for organicmatter. The limited ozone dosage is not sufficient to mineralize the high concentration of NOM. Magnetic ion-exchange resin combined with conventional treatment could remove 96.2% of color, 96.0% of UV254 and 87.1% of DOC, enabling effluents to meet the drinking water quality standard. The high removal efficiency could be explained by the negative charge on the surface of NOM which benefits the static adsorption of NOM on the anion exchange resin. The results indicated that magnetic ion-exchange resin combined with conventional treatment is the best available technology to remove high concentration of NOM.  相似文献   

13.
磁性离子交换树脂对原水中有机物去除效能的研究   总被引:7,自引:1,他引:6       下载免费PDF全文
采用磁性离子交换树脂(MIEX)预处理原水中有机物的中试试验结果表明,MIEX技术可有效地去除原水中的有机物,对UV254,DOC和CODMn的去除率分别稳定在82%、66%和50%,MIEX预处理可以有效强化混凝沉淀对有机物、藻细胞和浊度的去除.与常规工艺相比,在混凝剂聚合氯化铝投加量降低56%时,该工艺对UV254和CODMn的去除率分别为90%和71%,对藻细胞数和浊度的去除率分别为99%和95%.对溶解性有机物分级和分子量分布的测定表明,MIEX预处理主要去除混凝沉淀无法有效去除的小分子区间的亲水性和疏水性有机物,可以有效控制消毒副产物的产生,MIEX预处理与混凝沉淀联用工艺出水的三卤甲烷生成势(THMFP)和卤乙酸生成势(HAAFP)比原水降低了88%和87%.  相似文献   

14.
Powered activated carbon (PAC) is widely used in water treatment plants to minimize odors in drinking water. This study investigated the removal of 2-methylisoborneol (MIB) by PAC adsorption, combined with coagulation using iron as a coagulant. The adsorption and coagulation process were studied through different case scenarios of jar tests. The analysis evaluated the effect of PAC dosing in the liquid phase immediately before or after the coagulant addition. Ferric sulphate was used as the coagulant with dosages from 10 to 30 mg/L, and PAC dosages varied from 10 to 40 mg/L. The highest MIB removal efficiency (about 70%) was achieved without the coagulant addition and with the highest PAC dosage (40 mg/L). Lower MIB removal efficiencies were observed in the presence of coagulant, showing a clear interference of the iron precipitate or coagulant in the adsorption process. The degree of interference of the coagulation process in the MIB removal was proportional to the ratio of ferric hydroxide mass to the PAC mass. For both cases of PAC dosing, upstream and downstream of the coagulant injection point, the MIB removal efficiency was similar. However, MIB removal efficiency was 15% lower when compared with experiments without the coagulant application. This interference in the MIB adsorption occurs potentially because the coagulant coats the surface of the carbon and interferes with the MIB coming in contact with the carbon’s surface and pores. This constraint requires an increase of the PAC dosage to provide the same efficiency observed without coagulation.  相似文献   

15.
针对环境水体中药物及个人护理用品(PPCPs)的污染问题,选择在环境水体中存在的有机紫外防晒剂二苯甲酮-3(BP-3)作为典型污染物,以颗粒活性炭(GAC)、粉末活性炭(PAC)和碳纳米管(CNT)作为吸附剂,考察吸附剂对BP-3的吸附性能、吸附特性和吸附热力学.结果表明:吸附性碳材料对BP-3具有良好的吸附性能,3种碳材料的最大吸附容量排列为:PACGACCNT,其中,PAC的单层最大吸附容量为450.36mg·g-1.Freundlich、Redlich-Peterson和Temkin吸附等温线方程能够较好地拟合吸附数据,Langmuir吸附等温线方程对PAC的吸附拟合效果较好,而对粒径较大的吸附剂(GAC、CNT)的拟合效果不理想.PAC、GAC的吸附过程可以采用一级动力学或者二级动力学模型拟合,而CNT适合采用一级动力学模型来描述.吸附热力学分析表明,PAC、GAC和CNT对BP-3的吸附过程都是自发进行的,其中,PAC和GAC的吸附过程是吸热的,升高温度有利于吸附反应的进行;而CNT的吸附过程是放热的.  相似文献   

16.
聚合氯化铝去除污泥水中磷的工艺优化   总被引:2,自引:1,他引:1  
在对比聚合氯化铝(PAC)对浓缩脱水污泥水及其上清液除磷效果的基础上,通过响应曲面法(RSM)分析了污泥水上清液PAC除磷过程中Al/P摩尔比、pH和搅拌转速(MS)对除磷效果的单独效应和联合效应,并探讨了PAC除磷动力学.结果表明,PAC直接对污泥水混凝除磷会恶化其沉降性能,且除磷效率不高.RSM优化得到的上清液除磷最优工艺条件为:Al/P摩尔比为2.49,pH为8.3,MS为398 r·min-1,除磷效率为97.8%,实验验证结果表明该优化操作模式行之有效.动力学分析结果表明,PAC对污泥水的除磷过程分为化学沉淀与絮凝体快速吸附除磷和二级动力学沉淀除磷两阶段.  相似文献   

17.
Due to their widespread use, clofibric acid (CA) and carbamazepine (CBZ) have been frequently detected simultaneously at relatively high concentrations in aquatic environments. In this study, agricultural waste rice straw was employed as a potentially low-cost, effective and easy-to-operate biosorbent (RSB) to remove CA and CBZ. The adsorption of both pharmaceuticals followed pseudo second-order kinetics, and intraparticle diffusion was an important rate-limiting step. The adsorption isotherms of both drugs were fit well with Freundlich model. The adsorption of CA onto RSB was exothermic and was more likely to be dominated by physical processes, while the adsorption of CBZ was endothermic. Solution pH was determined to be the most important factor for CA adsorption, such that the adsorption capacity of CA onto RSB increased with the decline of solution pH. In the lower range of solution pH below 3. l, the CA removal efficiency was enhanced with the increase of biosorbent dosage. The CBZ removal efficiency was enhanced with the increase of RSB dosage without pH control. The maximum adsorption capacities were 126.3 mg/g for CA and 40.0 mg/g for CBZ.  相似文献   

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