首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 109 毫秒
1.
全氟辛烷羧酸(perfluorooctanoic acid,PFOA)和全氟辛烷磺酸(perfluorooctyl sulfonate,PFOS)等长链全氟化合物(perfluorinated compounds,PFCs)具有持久性、生物累积性和毒性,近年来发现一些短链PFCs具有相对较短的半衰期,可以成为PFOA和PFOS的替代品,这些物质包括C4和C6结构的PFCs,如全氟丁烷羧酸(perfluorobutanoic acid,PFBA)、全氟己烷羧酸(perfluorohexanoic acid,PFHx A)、全氟丁烷磺酸(perfluorobutyl sulfonate,PFBS)和全氟己烷磺酸(perfluorohexyl sulfonate,PFHx S)。为解析我国城市污水厂短链PFCs污染水平和地域分布特征,本研究调查了我国不同地区17座城市污水处理厂的进水、二沉出水和污泥中4种短链PFCs的分布和浓度水平。结果表明4种短链PFCs、PFOA和PFOS在17座污水厂进水中检出率均为100%(6种目标物单体浓度范围:0.19~274.72 ng·L-1);污泥中PFOS和PFOA检出率为100%(PFOS:2.08~72.31 ng·g-1,PFOA:1.03~24.81 ng·g-1),PFBA、PFHx A检出率为100%(0.60~3.33 ng·g-1),PFBS和PFHx S的检出率分别为42.11%和63.16%。在污水厂进水中,将PFOA和PFOS与其同类的短链PFCs浓度进行比较,发现短链PFCs分别相对于PFOA和PFOS的比例最高可达93.47%和94.57%。4种短链PFCs、PFOA和PFOS的地域分布差异明显,总浓度呈现出华东、华南地区高于西北、东北、华北地区的趋势,其中华东地区调查的污水处理厂浓度最高。污水厂4种短链替代物主要通过污水排放,不同污水厂的日排放总量(污泥和出水)为0.25~273.07 g·d-1,万吨水排放量范围为0.04~1.37 g。研究将为我国全氟化合物替代物污染和控制提供数据基础和科学依据。  相似文献   

2.
孙建树  王世亮 《环境化学》2019,38(7):1528-1538
全氟辛烷羧酸(perfluorooctanoic acid,PFOA)和全氟辛烷磺酸(perfluorooctane sulfonate,PFOS)广泛存在于全球范围内的各种环境介质中,是全氟化合物中最典型的持久性有机污染物.为考察山东省典型湿地中PFOA和PFOS的浓度水平与空间分布特征,采用超高效液相色谱-串联质谱与WAX固相萃取相结合的方法,检测并系统分析了南四湖流域和东部沿海地区水和沉积物体系中PFOA和PFOS含量状况.研究结果表明,PFOA和PFOS在研究区域全部水样中均被检测出,浓度范围分别为10.49—84.6 ng·L~(-1)和0.49—25.4 ng·L~(-1);其中南四湖流域表层水中污染物的含量高于东部沿海地区,并且污染物浓度从下游到上游呈上升趋势.沉积物样品中PFOA和PFOS的浓度范围(干重)分别为0.09—2.76 ng·g~(-1)和0.17—5.25 ng·g~(-1),其空间分布趋势和水样中的大致相同.与国内外其他地区水和沉积物中PFOA和PFOS含量进行对比,山东省典型湿地中两种污染物的污染水平较高且PFOA污染更为严重.与PFOA相比,水和沉积物体系中PFOS的分配系数更高,并且不同区域间的分配系数存在差异.此外,本文采用熵值法对研究区域内两种污染物进行了初步风险评估,分析结果显示PFOA和PFOS对水生生物和野生鸟类可能存在一定的生态风险,且PFOS的风险较高,考虑到全氟化合物的生物累积性和食物链放大效应,应重视PFOA和PFOS的生态风险.  相似文献   

3.
郭睿  蔡亚岐  江桂斌 《环境化学》2006,25(6):674-677
采用固相萃取/高效液相/四极杆飞行时间串联质谱检测活性污泥中的全氟辛烷磺酸(PFOS)及全氟辛酸(PFOA).以甲醇-水(含5mmol·l-1醋酸铵,体积比60∶ 40-80∶ 20)为流动相,经高效液相分离,四极杆-飞行时间质谱检测PFOS m/z 499→80,PFOA m/z 369→169.方法的检出限:PFOS 1.0ngm·l-1;PFOA 2.0 ngm·l-1,方法的线性范围:PFOS 6-150 ngm·l-1;PFOA 10-180 ngm·l-1,方法回收率:PFOS 87%-105%,PFOA 81%-90%.用此方法分析了我国4个城市和地区活性污泥中的PFOS和PFOA.  相似文献   

4.
胡雨晴  宋文哲  马春萌  于建伟  尚巍  杨敏  张昱 《环境化学》2019,38(10):2171-2179
水中的全氟化合物具有很强的稳定性,常规方法难以去除.本文以全氟辛酸(PFOA)为目标,考察了一种基于液滴喷雾的气液两相脉冲放电等离子体反应器对PFOA去除的影响因素与去除效率,并探讨了去除机理.发现PFOA起始浓度为1.5μg·L~(-1),等离子体反应器脉冲频率为1000 pps,电压为25 kV时PFOA的2 h去除率达40.5%.通过比较不同仪器参数下的去除效率发现,在相对低脉冲频率、低电压条件下PFOA去除效率更高,其表征去除效率的k/PD值达0.259 L·min~(-1)·W~(-1)(k为去除速率常数,PD=输入功率/处理体积),高于同样浓度水平下已报道的层流发泡等离子体反应器最大k/PD值(0.025 L·min~(-1)·W~(-1)),表明液滴喷雾反应器具有低能耗的特点.在等离子体处理过程中检测到多种短链全氟羧酸(碳原子数为4—7)和氟离子的生成,2 h后产生的短链物质总和占初始PFOA的10%左右,表明PFOA的碳链在等离子体处理时发生断裂.加入电子抑制剂NaNO_3后PFOA的去除明显被抑制,表明自由电子在初级反应过程中起较大作用.本研究对于水中PFOA的有效去除提供了一种有应用前景的技术选择.  相似文献   

5.
谢蕾  章涛  孙红文 《环境化学》2020,39(6):1479-1487
全氟烷基化合物(polyfluoroalkyl substances,PFASs,F(CF_2)_n-R)是广泛用于生产生活中的有机污染物,研究发现PFASs的暴露会对人体造成危害.为分析人体肝脏中PFASs的富集特征,本研究采用高效液相色谱串联质谱(HPLC-MS/MS)的方法,对天津市31例肝癌患者肝脏中10种PFASs(全氟己烷磺酸PFHxS、全氟辛烷磺酸PFOS、全氟十二酸PFDoDA、全氟己酸PFHxA、全氟庚酸PFHpA、全氟十一酸PFUnDA、全氟壬酸PFNA、全氟癸酸PFDA、全氟辛酸PFOA、全氟戊酸PFPeA)进行检测分析.结果表明,PFOS、PFOA、PFNA、PFUnDA和PFHxS具有较高的检出率(80%);∑PFASs浓度范围为8.97—181.87 ng·g~(-1),其中PFOS的平均浓度最高(40.87 ng·g~(-1)),占∑PFASs的77%;∑PFASs的平均浓度在男性肝脏样品中(64.04 ng·g~(-1))与女性样品中(36.82 ng·g~(-1))存在显著性差异,PFHxS、PFOS和PFDA的浓度在性别上也均呈显著差异,PFOA的浓度与年龄呈显著负相关性.此外,PFOA和PFHpA的浓度分别与肝细胞损伤标志物ALT和GGT之间存在显著正相关性.本研究是国内首次对人体肝脏中PFASs的暴露分析,PFOS是肝脏的主要暴露物;PFASs对男性的暴露风险高于女性,且青年人群PFASs的暴露风险相对较高;另外,浓度水平进行分析,PFASs的暴露与人体肝脏损伤存在统计学关联.  相似文献   

6.
全氟化合物(PFASs)作为一类新型的有机污染物,因具有持久性、可长距离传输、生物蓄积性和生物毒性等POPs特性,近年来得到全世界的广泛关注。本文以北京市水源地(密云水库和官厅水库)为研究区域,采用固相萃取(SPE)前处理与高效液相色谱串联质谱联用(HPLC-MS/MS)相结合的方法,分析测定了鱼样品中包括全氟辛烷磺酸(PFOS)、全氟辛酸(PFOA)、全氟丁酸(PFBA)、全氟丁烷磺酸(PFBS)等在内的12种PFASs的含量。利用同位素法确定了不同种类鱼的营养级关系,研究不同营养级中的PFASs浓度及生物放大效应,重点对全氟辛烷磺酸(PFOS)与全氟辛酸(PFOA)的生态风险以及对人体的健康风险进行评价。结果表明:北京市水源地的鱼体中的PFASs存在不同程度的检出,其中,全氟辛烷磺酸(PFOS)、全氟辛酸(PFOA)、全氟壬酸(PFNA)、全氟癸酸(PFDA)、全氟十一酸(PFUdA)和全氟十二酸(PFDoA)的检出率均达到100%,PFASs总量浓度达1.70~14.32 ng·g~(-1) wet weight(w.w.),PFOS和长链全氟羧酸PFCAs是鱼体中的主要污染物。同位素鉴定水库鱼的营养级层次范围在2.11~4.10,且肉食性鱼类营养级大多高于杂食性鱼类,PFOS沿着食物链生物放大的过程与稳定碳氮同位素富集过程基本同步。此外,采用人均日摄入量法(average daily intake,ADI)评估得到PFOS与PFOA的风险值分别为1.16 ng·kg~(-1)·d~(-1)和0.31ng·kg~(-1)·d~(-1),整体低于人均每天可承受摄入量(tolerable daily intake,TDI),结果表明,北京水源地鱼体中PFOS和PFOA含量未达到对生态系统和人体健康具有风险的水平。  相似文献   

7.
目的:全氟辛烷磺酸(PFOS)和全氟辛酸(PFOA)是广泛应用于工业和生活领域的全氟化合物,在人体及环境介质中均可检出。近几年的流行病学研究表明儿童PFOS和PFOA的暴露水平与血脂水平具有相关性。本研究拟进一步研究血清全氟化合物水平与儿童血脂间关联的性别差异。方法:以台湾儿童为研究对象,分析血清中总胆固醇(TC)、高密度脂蛋白(HDL)、低密度脂蛋白(LDL)、甘油三脂(TG)等生化指标与PFOS和PFOA血清水平的相关性。结果:线性回归模型分析表明男生血清PFOS、PFOA水平与血脂水平具有显著相关性。当男生血清中ln-PFOS和ln-PFOA水平每增加1 ng·m L~(-1)时,TC含量分别增高0.51 mg·d L~(-1)(95%CI:0.30~0.72)和6.53 mg·d L~(-1)(95%CI:1.96~11.11),但在女生中则没有观察到血清PFOS和PFOA水平与TC的相关性。趋势分析结果显示,随着儿童血清中PFOS和PFOA水平的增加,男生和女生血脂的TC、LDL和TG含量呈增高趋势。结论:台湾儿童血清PFOS和PFOA水平与血脂水平存在正相关,且在男生中观察到的效应强于女生。  相似文献   

8.
高燕  傅建捷  王亚韡  江桂斌 《环境化学》2014,(10):1686-1691
本文对全氟化合物(PFASs)生产工厂厂内及周边土芯样品中的PFASs进行了研究.PFASs浓度范围为1.19—1495 ng·g-1dw(干重),其中全氟辛基磺酸盐(PFOS)浓度在3个主要单体(全氟己基磺酸盐(PFHxS)、PFOS及全氟辛酸(PFOA))中处于最高水平.整体上,土芯中PFASs浓度由上到下呈下降趋势,其浓度与TOC呈正相关.在一个已经停产10年左右的生产企业周围土芯中仍然发现了较高浓度的PFASs,说明其在环境中存在着较强的持久性.  相似文献   

9.
全氟辛烷羧酸(PFOA)与全氟辛烷磺酸(PFOS)的细胞毒性效应   总被引:4,自引:3,他引:1  
新型污染物全氟辛烷羧酸(PFOA)与全氟辛烷磺酸(PFOS)在全球范围内的各种环境介质中被广泛检出,对生态安全和人体健康造成威胁。利用MTT(噻唑蓝)法研究了PFOA/PFOS对人体细胞的毒性效应。结果表明,低剂量PFOA和PFOS对人体正常肝细胞增殖具有显著毒性,其3 d半数抑制浓度(IC50值)分别约为5和0.5μg·L-1。此外,PFOA和PFOS均对MCF-7细胞增殖表现出显著的非单调剂量-毒性效应,并且在环境浓度范围(0.6μg·L-1)内均可促进MCF-7细胞增殖,表现出潜在的类雌激素作用风险。  相似文献   

10.
云南省会泽县农田土壤中全氟化合物污染特征研究   总被引:4,自引:0,他引:4  
为探究云南省会泽县农田土壤中全氟化合物(perfluorinated compounds,PFCs)的污染特征及其潜在来源,2015年6月采集云南省会泽县农田土壤42份,利用高效液相色谱-串联质谱仪(HPLC-MS/MS)分析了11种PFCs的含量水平。结果表明,云南省会泽县农田土壤中全氟己酸(perfluorohexanoic acid,PFHx A)、全氟庚酸(perfluoroheptanoic acid,PFHp A)和全氟己烷磺酸(perfluorohexane sulfonate,PFHx S)均未检出,其余8种PFCs(ΣPFCs)的平均含量水平为0.392 ng·g-1,含量范围为0.298~0.998ng·g-1。全氟辛酸(perfluorooctanoic acid,PFOA)和全氟辛烷磺酸(perfluorooctane sulfonate,PFOS)是最主要的PFCs,相对百分含量范围为45.93%~81.86%,其平均含量水平分别为0.116 ng·g-1和0.120 ng·g-1。与国内其他地区土壤中PFCs的含量水平相比,云南省会泽县农田土壤中PFCs含量水平低于上海,与广州、深圳、东莞、安徽、中国东部农村等地区土壤中PFCs的含量相当。主成分分析结果表明,以全氟癸酸(perfluorodecanoic acid,PFDA)、全氟辛烷磺酸(PFOS)和全氟十三酸(perfluorotridecanoic acid,PFTr DA)为主要标志物的2个主成分可以解释云南省会泽县农田土壤中73%的ΣPFCs。工业活动、大气沉降及长距离传输为云南省会泽县农田土壤中PFCs的主要来源。  相似文献   

11.
● Perfluorooctanesulfonic acid and perfluorooctanoic acid highest in human milk. ● All other perfluoroalkane substances had median values of zero (101 samples). ● Branched PFOS recommended to be analyzed separately from linear isomer. ● PFOS and PFOA showed differentiated regional and income distribution. ● Human health risk assessment values not yet available at global level. Within the global monitoring plan (GMP) established by article 16 of the Stockholm Convention on Persistent Organic Pollutants, perfluorooctane sulfonic acid (PFOS), perfluorooctanoic acid (PFOA), and perfluorohexane sulfonic acid (PFHxS) are recommended for analysis in core matrices to assess occurrence and changes geographically and with time. In 101 samples consisting of 86 national pools and 15 pools from States in Brazil obtained between 2008 and 2019, PFHxS was detected in 17% of the national pools and none in Brazil. PFOA and PFOS had a detection frequency of 100% and 92%, respectively. Other perfluoroalkane substances (PFAS) had either low detection frequencies and median values of zero (carboxylic acids C4–C11; except PFOA) or could not be quantified in any sample (sulfonic acids, C4–C10, and long-chain carboxylic acids, C12–C14). Correlation between PFOA and PFOS was moderately (r = 0.58). Whereas median values were almost identical (18.9 pg/g f.w. for PFOS; 18.6 pg/g f.w. for PFOA), PFOS showed larger ranges (< 6.2 pg/g f.w.–212 pg/g f.w.) than PFOA (< 6.2 pg/g f.w.–63.4 pg/g f.w.). It was shown that wealthier countries had higher PFOA concentrations than poorer countries. No difference in concentrations was found for samples collected in countries having or not having ratified the Stockholm Convention amendments to list PFOS or PFOA. The goal to achieve 50% decrease in concentrations within ten years was met by Antigua and Barbuda, Kenya, and Nigeria for PFOS and by Antigua and Barbuda for PFOA. In a few cases, increases were observed; one country for PFOS, four countries for PFOA.  相似文献   

12.
An artificial soil method was applied to study the effects of perfluorooctane sulphonate (PFOS) and perfluorooctanoic acid (PFOA) on earthworms (Eisenia fetida). Survival, growth inhibition and damage to DNA of earthworms were detected after 14 d acute exposure. The 14 d-LC50 of PFOS and PFOA was 478.0?mg·kg?1 dw and 759.6?mg·kg?1 dw, respectively, indicating that they were of low toxicity. Both PFOS and PFOA could significantly inhibit the growth of earthworms after 14 d exposure, and growth inhibition rates increased with the greater concentrations of PFOS or PFOA, showing a dose–response relationship (PFOS: r?=?0.951, P r?=?0.962, P?P?50 of PFOS was lower than that of PFOA, the growth inhibition rate of earthworm exposed to PFOS was higher than that exposed to PFOA at the same concentration level, and the median values of TL, CL and OTM in PFOS treatments were also higher than those in PFOA treatments. In conclusion, both these fluorine compounds were moderately toxic to earthworms, but the PFOS effect was greater than that of PFOA.  相似文献   

13.
Co-existing organic compounds may affect the adsorption of perfluorinated compounds (PFCs) and carbon nanotubes in aquatic environments. Adsorption of perfluorooctane sulfonate (PFOS), perfluorooctane acid (PFOA), perfluorobutane sulfonate (PFBS), and perfluorohexane sulfonate (PFHxS) on the pristine multi-walled carbon nanotubes (MWCNTs-Pri), carboxyl functionalized MWCNTs (MWCTNs-COOH), and hydroxyl functionalized MWCNTs (MWCNTs-OH) in the presence of humic acid, 1-naphthol, phenol, and benzoic acid was studied. Adsorption kinetics of PFOS was described well by the pseudo-second-order model and the sorption equilibrium was almost reached within 24 h. The effect of co-existing organic compounds on PFOS adsorption followed the decreasing order of humic acid>1-naphthol>benzoic acid>phenol. Adsorbed amounts of PFOS decreased significantly in the presence of co-existing or preloaded humic acid, and both adsorption energy and effective adsorption sites on the three MWCNTs decreased, resulting in the decrease of PFOS adsorption. With increasing pH, PFOS removal by three MWCNTs decreased in the presence of humic acid and phenol. The adsorbed amounts of different PFCs on the MWCNTs increased in the order of PFBSxS相似文献   

14.
目前,普遍存在于各种环境介质中的全氟辛酸(PFOA)和全氟辛基磺酸(PFOS)造成的环境污染问题已引起全球的广泛关注.PFOA和PFOS具有稳定性、持久性和生物累积性等特点.常规的方法如:超声降解法、电化学氧化法和微生物降解法等,很难将其彻底降解,因此开发有效的PFOA和PFOS降解技术成为了环境领域的研究重点.近年来...  相似文献   

15.
It has been reported that the relative response factors of isotopically labeled standards and unlabeled standards of the same perfluorinated compounds could be different. Individual (100 ng mL?1) solutions of perfluorooctanoic acid (PFOA) and perfluorooctane sulfonate (PFOS) were analyzed using high-performance liquid chromatography tandem mass-spectrometry under negative-ion electrospray to detect any impurities present down to 0.5%–0.1% relative to the major component. Purity of the standards ranged from approximately 86% to ≥ 97%. Standard solutions of unlabeled and isotopically labeled materials were analyzed to compare the response factors of isotopically labeled analytes versus their nonlabeled counterparts in three different matrices at equivalent concentrations: organic solvent (methanol), serum extract, and water present individually and concurrently. Not all labeled analytes have the same response factor as their nonlabeled complement, and in at least one case the matrix in which the standard is present may cause significant suppression of response. Standard solutions of electrochemical fluorination produced PFOA and PFOS were quantified under multiple reaction monitoring mode, using calibration curves prepared from standards consisting primarily of linear standards only. The use of linear only standards may cause under-prediction of concentrations, and that the working range of these standards may be limited.  相似文献   

16.
Concentrations of perfluorooctanesulfonate (PFOS), perfluorooctanoic acid (PFOA) and other perfluorinated compounds (PFCs) were measured in water and sediment from coastal Bohai Bay and surrounding rivers flowing into the bay. Of the 15 PFCs measured, PFOS and PFOA were detected with the greatest frequency. Concentrations in water ranged from<0.2 to 31 ng·L?1 and<1.0 to 82 ng·L?1 for PFOS and PFOA, respectively. Concentrations of PFOS and PFOA in sediments ranged from<0.1 to 2.0 ng·g?1 dw and<0.1 to 0.5 ng·g?1 dw, respectively. Concentrations of PFCs in Bohai Bay were less than those observed in other areas in Asia, but greater concentrations of ∑PFCs were observed in the Dalin River with concentrations increasing from upstream to downstream, and the greatest concentrations in sediment were observed in tidal flats. The ratio of ∑PFCs in sediment and water indicated that sediment could serve as a significant sink for PFUnA.  相似文献   

17.
The current state of concentrations of perfluorooctane sulfonate (PFOS) and perfluorooctanoic acid (PFOA) in China is presented. While products that are known to degrade to either PFOS or PFOA have been used in China, concentrations in environmental media have been reported to be relatively low across China. Greater concentrations of PFOS and PFOA were observed in southern and eastern China than in other areas of China. Concentrations of PFOS and PFOA were relatively great in the Huangpu River, with concentrations of 20.5 ng l?1 and 1590 ng l?1, respectively. Surface waters of Dongguan and Shanghai were more contaminated by PFOS and PFOA than that of other cities. Dongguan was the only city in China in which PFOS value in surface water exceeded the water quality criterion, while PFOA concentration in Shanghai was 152 ng l?1. Similar to other contaminants, point-source pollution was also the common pattern of PFOS and PFOA contamination. Concentrations of PFOS in human blood in China were relatively greater in China than other countries, with drinking water contamination given as the most likely source. Concentrations of PFOS in human blood have increased from the 1980s to the 2000s, while such a trend was not observed for PFOA.  相似文献   

18.
• New method of mineralizing PFCs was proposed. • Activated carbon was regenerated while mineralizing PFCs. • Molten NaOH has good mineralization effect on PFOS and PFBS. Current study proposes a green regeneration method of activated carbon (AC) laden with Perfluorochemicals (PFCs) from the perspective of environmental safety and resource regeneration. The defluorination efficiencies of AC adsorbed perfluorooctanesulfonate (PFOS), perfluorooctanoic acid (PFOA) and perfluorobutanesulfonate (PFBS) using three molten sodium salts and one molten alkali were compared. Results showed that defluorination efficiencies of molten NaOH for the three PFCs were higher than the other three molten sodium salts at lower temperature. At 700°C, the defluorination efficiencies of PFOS and PFBS using molten NaOH reached to 84.2% and 79.2%, respectively, while the defluorination efficiency of PFOA was 35.3%. In addition, the temperature of molten salt, the holding time and the ratio of salt to carbon were directly proportional to the defluorination efficiency. The low defluorination efficiency of PFOA was due to the low thermal stability of PFOA, which made it difficult to be captured by molten salt.The weight loss range of PFOA was 75°C–125°C, which was much lower than PFOS and PFBS (400°C–500°C). From the perspective of gas production, fluorine-containing gases produced from molten NaOH-treated AC were significantly reduced, which means that environmental risks were significantly reduced. After molten NaOH treatment, the regenerated AC had higher adsorption capacity than that of pre-treated AC.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号