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611.
Pharmaceutical residues have become tightly controlled environmental contaminants in recent years, due to their increasing concentration in environmental components. This is mainly caused by their high level of production and everyday consumption. Therefore there is a need to apply new and sufficiently sensitive analytical methods, which can detect the presence of these contaminants even in very low concentrations. This study is focused on the application of a reliable analytical method for the analysis of 10 selected drug residues, mainly from the group of non-steroidal anti-inflammatory drugs (salicylic acid, acetylsalicylic acid, clofibric acid, ibuprofen, acetaminophen, caffeine, naproxen, mefenamic acid, ketoprofen, and dicofenac), in wastewaters and surface waters. This analytical method is based on solid phase extraction, derivatization by N-methyl-N-(trimethylsilyl)trifluoroacetamide (MSTFA) and finally analysis by comprehensive two-dimensional gas chromatography with Time-of-Flight mass spectrometric detection (GC×GC- TOF MS). Detection limits ranged from 0.18 to 5 ng/L depending on the compound and selected matrix. The method was successfully applied for detection of the presence of selected pharmaceuticals in the Svratka River and in wastewater from the wastewater treatment plant in Brno-Modrice, Czech Republic. The concentration of pharmaceuticals varied from one to several hundreds of ng/L in surface water and from one to several tens of μg/L in wastewater.  相似文献   
612.
Fluoride removal by traditional precipitation generates huge amounts of a water-rich sludge with low quality, which has no commercial or industrial value. The present study evaluated the feasibility of recovering fluoride as low water content cryolite from industrial fluoride-containing wastewater. A novel pilot-scale reaction-separation integrated reactor was designed. The results showed that the seed retention time in the reactor was prolonged to strengthen the induced crystallization process. The particle size of cryolite increased with increasing seed retention time, which decreased the water content. The recovery rate of cryolite was above 75% under an influent fluoride concentration of 3500 mg/L, a reaction temperature of 50℃, and an influent flow of 40 L/hr. The cryolite products that precipitated from the reactor were small in volume, large in particle size, low in water content, high in crystal purity, and recyclable.  相似文献   
613.
Polyvinyl alcohol is a refractory compound widely used in industry. Here we report supercritical water oxidation of polyvinyl alcohol solution and desizing wastewater with and without sodium hydroxide addition. However, it is difficult to implement complete degradation of organics even though polyvinyl alcohol can readily crack under supercritical water treatment. Sodium hydroxide had a significant catalytic effect during the supercritical water oxidation of polyvinyl alcohol. It appears that the OH ion participated in the C-C bond cleavage of polyvinyl alcohol molecules, the CO2-capture reaction and the neutralization of intermediate organic acids, promoting the overall reactions moving in the forward direction. Acetaldehyde was a typical intermediate product during reaction. For supercritical water oxidation of desizing wastewater, a high destruction rate (98.25%) based on total organic carbon was achieved. In addition, cases where initial wastewater was alkaline were favorable for supercritical water oxidation treatment, but salt precipitation and blockage issues arising during the process need to be taken into account seriously.  相似文献   
614.
Reclaimed water was successfully used to recover the dry Chaobai River in Northern China, but groundwater may be polluted. To ensure groundwater protection, it is therefore critical to identify the governing factors of groundwater chemistry. Samples of reclaimed water, river and groundwater were collected monthly at Chaobai River from January to September in 2010. Fifteen water parameters were analyzed. Two kinds of reclaimed water were different in type (Na-Ca-Mg-Cl-HCO3 or Na-Ca-Cl-HCO3 ) and concentration of nitrogen. The ionic concentration and type in river were similar to reclaimed water. Some shallow wells near the river bed had the same type (Na-Ca-Mg-Cl-HCO3 ) and high concentration as reclaimed water, but others were consistent with the deep wells (Ca-Mg-HCO3 ). Using cluster analysis, the 9 months were divided into two periods (dry and wet seasons), and all samples were grouped into several spatial clusters, indicating different controlling mechanisms. Principal component analysis and conventional ionic plots showed that calcium, magnesium and bicarbonate were controlled by water-rock interaction in all deep and some shallow wells. This included the dissolution of calcite and carbonate weathering. Sodium, potassium, chloride and sulfate in river and some shallow wells recharged by river were governed by evaporation crystallization and mixing of reclaimed water. But groundwater chemistry was not controlled by precipitation. During the infiltration of reclaimed water, cation exchange took place between (sodium, potassium) and (calcium, magnesium). Nitrification and denitrification both happened in most shallow groundwater, but only denitrification in deep groundwater.  相似文献   
615.
本文分析了老挝、缅甸、泰国、柬埔寨和越南等湄公河下游五国的水质状况及原因,通过汇总湄公河五国的水质管理法律法规及水质标准和介绍各国的水质管理措施,阐述了湄公河国家在水质管理方面做出的努力以及水质管理中存在的问题,并对湄公河国家在流域水质区域合作方面进行了展望。  相似文献   
616.
活化温度对SCAC制备过程中副产物生成规律的影响   总被引:1,自引:0,他引:1  
文章研究了污泥-玉米芯活性炭(SCAC)制备过程中,活化温度对副产物(热解气和热解油)生成规律的影响。热解气和热解油分别采用气相色谱仪和气质联用仪进行分析检测。试验结果表明,随着活化温度的升高,SCAC的产量逐渐降低,热解气与热解油的产量则随之增多。不同温度条件下,热解气的主要成分均为H2和CO2,热解气中H2所占的体积百分数随着活化温度的升高而增加,而CO2则相应降低。此外,热解气中CH4的含量也会随着活化温度的上升而略有提高,说明较高的活化温度更有利于热解气的资源利用。热解油组分较为复杂,每个温度条件下的液态产物都包括上百种化合物,可分为烷烃,烯烃,苯类,酚类,腈类,杂环化合物,多环芳烃,有机酸,酰胺,酯类,甾体,醇,酮以及其他类共14大类型,其中以有机酸、腈类和甾体类有机物含量居多。随着活化温度的升高,有机酸和多环芳烃的含量有所增加,而酚类化合物的含量则有所降低;当活化温度升高至650℃以上时,甾体类有机物含量明显降低。  相似文献   
617.
以铝柱撑膨润土负载纳米Fe_3O_4制备出性能良好的复合型催化剂。结合X射线粉末衍射(XRD)、扫描电镜(SEM)和比表面孔隙分析(BET)对催化剂的晶相、比表面积和粒度进行表征。负载的纳米Fe_3O_4粒径约为20~30nm,均匀分散到膨润土表面,未发生明显的团聚。在紫外光作用下用该催化剂对焦化厂二沉池出水进行深度处理。结果表明,在催化剂投加量为0.7 g/L,pH为2.5,温度40℃,H_2O_2初始浓度为17.6mmol/L的反应条件下,二沉池出水(化学需氧量COD=140mg/L,色度=400度)经催化氧化降解后,COD和色度可分别降低到54.44 mg/L和10度,达到国家工业再生用水水质标准GB/T 19923-2005(COD≤60 mg/L,色度≤30度)。催化剂重复使用4次时,废水COD和色度去除率保持稳定。  相似文献   
618.
不同类型湖泊沉积物中氮释放规律研究   总被引:2,自引:0,他引:2  
通过对武汉市东湖子湖郭郑湖、庙湖以及南湖这3个不同类型的湖泊进行释氮模拟实验,结果表明:(1)在厌氧条件下,不同污染程度的湖泊中沉积物释氮作用均比较明显。为了抑制沉积物向上覆水释氮,控制湖泊富营养化,保持湖泊较高的溶解氧水平是必要的。(2)在厌氧条件下,高温对不同类型湖泊总氮和氨氮的释放均能起到促进作用。(3)沉积物与上覆水间污染物的浓度梯度越大,总氮和氨氮的释放速率与释氮量也越大,此时温度的影响不明显。(4)通过比较3类湖泊沉积物上覆水中总氮和氨氮两者的释放浓度可知,氨氮的释放贡献十分显著,因此控制氨氮的释放量对于控制湖泊氮释放量具有显著效果。  相似文献   
619.
低温是造成寒冷地区冬季生活污水生化处理效果差的主要原因。当温度降低至4cC左右时,活性污泥中大多数微生物的生长活性受到抑制,只有少数的耐冷微生物可以存活下来并保持一定的活性。本课题组以往的研究结果证明:在我国北方地区,完全可以分离到在低温下高效降解污水中有机物的耐冷细菌。通过投加耐冷茵可使污水的去除效率大大提高。但由于投加的耐冷茵的流失等原因,必须隔一定时间再次投菌,既费时费力,又增加投资。  相似文献   
620.
对华侨大学厦门校区景观水体浮游植物群落结构和水质的理化指标进行了调查研究,结合生物监测和理化监测手段,基于浮游植物优势度、丰度和多样性指数的评价标准,对水体进行了生态评价。评价结果表明,水体受到一定程度的污染并出现富营养化现象。  相似文献   
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