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41.
李会茹  曾锋  崔昆燕 《环境化学》2005,24(2):189-192
通过驯化富集培养,从处理焦化厂废水的活性污泥中分离获得一株可以在好氧条件下利用邻苯二甲酸酯(PAEs)作为唯一碳源和能源的荧光假单胞菌(Pseudomonasfluorescens编号Z1999),研究了P.fluorescensZ1999对PAEs的降解条件,揭示了P.fluorescensZ1999降解PAEs的动力学特征.试验结果表明,P.fluorescensZ1999对PAEs降解的最佳条件为pH65—80,温度20—35℃,菌种量002—45%,富集驯化时间18—24h.P.fluorescensZ1999可有效降解邻苯二甲酸二甲酯(DMP)、邻苯二甲酸二乙酯(DEP)和邻苯二甲酸二丁酯(DnBP).在初始浓度为100—750mg·ml-1范围内,DMP,DEP,DnBP的降解反应遵循二级反应动力学方程∶-dS/dt=K2S2 K1S K0,r2=09686—09997.随PAEs浓度和支链烷基碳数的增加,P.fluorescensZ1999对PAEs的最大降解速率p下降,半衰期T1/2增大,抑制作用增强.  相似文献   
42.
住宅室内降尘中邻苯二甲酸酯污染特征及暴露评价   总被引:3,自引:0,他引:3       下载免费PDF全文
利用CH2Cl2和超声对天津市13户家庭住宅冬季和夏季26个室内降尘样品中6种邻苯二甲酸酯(DMP、DEP、DBP、BBP、DEHP、DOP)进行提取分离,并采用气相色谱-质谱定量分析,研究了邻苯二甲酸酯污染变化特征和暴露风险.结果表明,冬夏两季,室内降尘样品均以DEHP 浓度最大,DBP第二,且DBP 和DEHP之和占ΣPAEs 的比例达到80.0%以上;冬季,各采样点6种邻苯二甲酸酯总含量(∑PAEs)浓度在1.498~32.587μg/g之间,平均浓度为(6.772±8.154)μg/g;夏季,∑PAEs浓度在1.981~40.041μg/g之间,平均浓度为(13.406±12.911) μg/g;PAEs浓度季节变化差异显著,夏季降尘样品中PAEs浓度高于冬季.暴露评价显示儿童和成人的夏季邻苯二甲酸酯总暴露量均大于冬季;经口暴露水平大于皮肤;平均儿童的暴露水平是成人的10倍左右;成人和儿童对4种物质(DBP、DEHP、DEP、BBP)的总暴露量最大值均出现在夏季;天津室内降尘暴露量与我国6城市室内降尘总暴露水平相当(除DEHP外),与德国和美国的暴露水平相比,天津儿童和成人的暴露量偏小.但是,室内环境中PAEs污染对人体健康的影响仍要引起重视,尤其是对低龄儿童的健康危害.  相似文献   
43.
In recent years, the exposure of humans to phthalate esters through environmental contamination has increased. One among them is di-ethyl phthalate (DEP), which is used as a plastisizer for cellulose ester plastic films and sheets, solid rocket propellants, molded and extruded articles, as a component in insecticide sprays and various other substances, as well as in industrial applications. Release into the environment occurs primarily as a result of production and manufacturing of DEP and during the use and disposal of products containing DEP. Therefore, a study was undertaken to evaluate gender-specific toxicity of DEP in Wistar rats. Rats of both sexes, weighing 125–130?g, were administered 50?ppm (w/v) DEP in water ad libitum for a period of 180 days and were given normal diet. Control animals received normal diet and water ad libitum. During the treatment, rats were weighed every week and water consumption per day was measured. After the completion of treatment, liver weight?:?body weight?1 ratio, liver weight, body weight?1, liver and serum enzymes, and other biochemical parameters of liver and serum were assessed. It was observed that there was no significant change in body weight?1, liver weight, liver weight?: body weight?1 ratio, and water consumption in both sexes. There were significant increases in liver acid phosphatase (ACP) activity and kidney glutathione levels, and nonsignificant changes in liver alkaline phosphatase (ALP), aspartate aminotransferase (AST), alanine aminotransferase (ALT), succinate dehydrogenase (SDH), and lactate dehydrogenase (LDH) activities in DEP-treated male rats, whereas in DEP-treated female rats the liver showed significant decrease in ALP and SDH and nonsignificant changes in AST, ALT, and LDH activities. Serum ACP and LDH levels in DEP-treated male rats were significantly decreased, and in the case of DEP-treated female rats, only serum LDH levels were significantly decreased. There was no significant change in serum ALP, AST, and SDH levels in DEP-treated male and female rats as compared to control rats. Histology of the livers of both male and female rats showed loss of hepatic architecture, degenerative changes in hepatocytes, and vacuolation in hepatocytes in both the centrilobular and periportal areas. It can be concluded from this study that prolonged exposure to DEP at 50?ppm levels can be harmful to animals and humans. This is evident from the present study as certain significant changes in enzyme activities in the liver, serum, and histological alterations in liver were observed.  相似文献   
44.
Three endocrine disrupting chemicals (EDCs), triclosan (TCS), 4-n-nonylphenol (4-n-NP), and di-n-butyl phthalate (DBP) were determined using stir bar sorptive extraction (SBSE) along with high-performance liquid chromatography/photodiode array detection (HPLC/DAD). Benzyl butyl phthalate was used as an internal standard. The targeted analytes could be rapidly determined with limits of quantification (LOQ) ranging from 4.1 (DBP), 10 (TCS), to 34 (4-n-NP)?µg?L?1 in real samples such as bottled waters, personal care products, soaps, lotions, and urine. The results show that the developed analytical scheme is solvent-saving, efficient, and capable of fast screening samples for these common EDCs.  相似文献   
45.
目的观察花青素联合酪蛋白拮抗邻苯二甲酸二丁酯的致损伤作用.方法在大鼠外周血淋巴细胞培养物中注入一定剂量的花青素和一定剂量的酪蛋白,观察淋巴细胞的姐妹染色单体交换率(SCE).结果花青素可显著降低邻苯二甲酸二丁酯处理过的淋巴细胞SCE率;终浓度为90.8 ug/ml的酪蛋白和0.8×10-8mol/L的花青素在降低邻苯二甲酸二丁酯处理过的淋巴细胞SCE率方面存在较显著的协同效应.结论一定剂量的花青素和酪蛋白在拮抗邻苯二甲酸二丁酯的致损伤作用中存在着显著的协同效应;花青素单因素亦存在一定的拮抗作用.图1,表2,参5.  相似文献   
46.
为了初步探讨邻苯二甲酸二乙基己酯(Di-(2-ethylhexyl)phthalate,DEHP)对植物的毒害作用,采用不同浓度的DEHP溶液对蚕豆根部进行处理(终含量0、0.2、2、20、200mg·kg-(1细沙)),检测根尖微核率和对幼苗茎、叶SOD活性的影响.结果表明:对蚕豆根尖进行短期(6h)处理后,各DEHP处理组微核率随DEHP含量的升高呈显著上升趋势(与对照比较,p<0.05或p<0.01).处理7d后,随DEHP含量的升高(0~20mg·kg-(1细沙)),蚕豆幼苗茎、叶SOD活性均呈逐渐升高趋势;DEHP含量在20~200mg·kg-(1细沙)时,SOD活性均略有下降.以上结果表明DEHP对蚕豆种子具有遗传毒性,且能够对蚕豆幼苗产生氧化损伤.  相似文献   
47.
颗粒活性炭对水中邻苯二甲酸二甲酯的吸附特性   总被引:3,自引:0,他引:3       下载免费PDF全文
研究了颗粒活性炭(GAC)对水中邻苯二甲酸二甲酯(DMP)的静态与动态吸附特性.结果表明,Freundlich和Langmuir等温线模型可以较好的拟合GAC对DMP的吸附.GAC对DMP的吸附容量较大,溶液初始浓度为200mg/L时,GAC对DMP的动态和最大静态吸附容量分别为484.60,450.89mg/g.考察了不同流速条件下(0.65~4.00mL/min)GAC吸附DMP的穿透特性,Yoon-Nelson模型能很好地拟合DMP在GAC柱中的穿透曲线,根据试验数据和Yoon-Nelson模型计算出穿透参数K′、T和穿透点t1以及平衡点t2.在建立了进水流量与Yoon-Nelson穿透模型的参数之间的关系基础上,得到了活性炭柱出水浓度与进水流量和穿透时间之间的动态关系模型.  相似文献   
48.
为评价典型有机污染物共存情况下对长江上游三峡库区特有珍稀鱼类的环境风险,以稀有鮈鲫(Gobiocypris rarus)为对象,研究了多环芳烃和酞酸酯的代表物苯并芘(BaP)和邻苯二甲酸二(2-乙基己基)酯(DEHP)单独及复合暴露而引起的内分泌干扰效应。将成年稀有鮈鲫暴露于不同浓度的BaP(0.1、1μg·L~(-1))、DEHP(10、100μg·L~(-1))和BaP+DEHP((0.1+10)、(1+100)μg·L~(-1))中28 d后,测定了体质系数、性激素含量、下丘脑-垂体-性腺(HPG)轴和肝脏中与生殖相关基因的表达。结果表明:在雌鱼中,单独BaP或DEHP暴露对鱼体性激素含量、基因表达量无显著影响; BaP和DEHP复合暴露时,高浓度组睾酮(T)含量升高但雌二醇(E2)含量下降,fsh、vtg、 cyp17和17β-hsd基因表达量上调,cyp19a则下调,表现出协同毒性。因而雌鱼中性激素水平的改变可能与类固醇合成相关基因表达量的改变有关。而无论在单独暴露或是复合暴露情况下,对雄鱼体内性激素无显著影响。以上检测到的激素或基因表达量的改变主要发生在高剂量的复合暴露组中,而长江上游三峡库区水体中多环芳烃和酞酸酯含量低于暴露的最低浓度,因此推测,库区存在的多环芳烃和酞酸酯同时作用时不会对三峡库区上游水体中的鱼类产生生殖内分泌干扰效应。  相似文献   
49.
• DBP adsorption was tested using three kinds of substrates in constructed wetlands. • The DBP adsorption capacity followed the order: steel slag>gravel>shell sand. • High temperatures increased the DBP adsorption capacity in the substrates. • DOM consistently inhibited the DBP adsorption onto steel slag and gravel. In recent years, the presence and adverse impacts of phthalic acid esters in aquatic environments have gained increasing attention. This work investigated the adsorption behavior of a typical phthalic acid ester, dibutyl phthalate (DBP), onto steel slag, gravel, and shell sand (substrates commonly used in constructed wetlands). The influence of dissolved organic matter (DOM) on DBP adsorption was investigated using humic acid as a proxy for DOM. The results demonstrated that the adsorption of DBP to three substrates reached equilibrium within 96 h, and the adsorption kinetics were well fitted by a pseudo-second-order model. The DBP adsorption isotherms were best fitted by the Langmuir adsorption model. The DBP adsorption capacity decreased in the order of steel slag>gravel>shell sand, with values of 656 mg/kg, 598 mg/kg, and 6.62 mg/kg at 25°C, respectively. DBP adsorbed to the surface of all substrates in a monolayer via an endothermic process. The DBP adsorption capacities of steel slag and gravel decreased as the DOM content increased. The DBP adsorption mechanisms to steel slag and gravel mainly involved the surface coordination of DBP with –OH or –COOH groups and electrostatic interactions. The results of this work suggest that steel slag and gravel may be ideal substrates for use in constructed wetlands to treat wastewater polluted with DBP.  相似文献   
50.
Abstract

This work reports the development of a very-simple-to-construct stir-bar extraction device so called “a dumbbell-shaped stainless steel stir-bar.” The extraction device was assembled from a rolled up stainless steel net filled with an XAD-2 sorbent and a metal rod to allow the use of a magnetic stirrer during extraction. The dumbbell-shaped stainless steel stir-bar was used to extract diethyl phthalate (DEP), dibutyl phthalate (DBP), and di(2-ethylhexyl) phthalate (DEHP) before analysis by a gas chromatograph equipped with an electron capture detector (GD-ECD). Under the optimal conditions, the developed method provided a good linearity from 10.0 to 1,000.0?ng mL?1 for all three compounds. Limits of detection and limits of quantification were 9.37?±?0.29?ng mL?1 and 31.22?±?0.95?ng mL?1 for DEP, 5.73?±?0.31?ng mL?1 and 19.1?±?1.0?ng mL?1 for DBP and 3.30?±?0.06?ng mL?1 and 11.0?±?0.19?ng mL?1 for DEHP, respectively. Good recoveries in the range of 81.89?±?0.17 to 109.5?±?2.0% were achieved when the method was used to extract phthalate esters in five instant noodle and two rice soup samples.  相似文献   
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