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61.
海面溢油样品指纹解析   总被引:1,自引:0,他引:1  
在2010年7月16日大连输油管道爆炸事故发生后,在24 h内分别于事故油罐、不同海面厚油膜区域采集原始油样及溢油样品;采用气相色谱质谱联用(GC-MS)对样品中的生物标志物进行检测,通过生物标志物特征比值的变化趋势,对以往溢油鉴别过程中常规生物标志物特征比值进行评价和筛选,并对溢油样品的指纹特征和风化规律进行解析.溢油样品的分析结果表明,在多种因素共同作用的不超过24 h的短期风化过程影响下,筛选排除的生物标志物比值均为国标GB/T 21247—2007中建议的nC17/Pr、nC18/Ph特征比值.化学消油剂与生物消油剂的盲目使用,有可能导致溢油指纹特征的显著变化.  相似文献   
62.
多溴联苯醚(PBDEs)作为一种新型的持久性有机污染物,在海洋环境中广泛存在,研究PBDEs在不同介质中的赋存状态对于理解其环境行为及归趋具有重要的意义。通过采集不同区域沉积物及生物样品,考察了PBDEs在环渤海近岸海域表层沉积物及底栖生物中的含量及空间分布特征、污染模式及生物-沉积物富集因子。结果表明,环渤海沿岸表层沉积物中PBDEs总量(Σ10PBDEs)的浓度范围在0.446~26.8 ng·g-1(干重,dw)之间,中值为1.02 ng·g-1(dw),底栖生物中PBDEs(Σ9PBDEs)的浓度范围为0.053~9.90 ng·g-1(dw),中值为1.25 ng·g-1dw;沉积物中BDE-209为最主要的单体,平均丰度达到90.5%,生物体中主要以低溴代BDEs为主,其中单体BDE-47的含量最高,平均丰度范围为43.2%~49.7%;沉积物和生物中PBDEs的含量在空间上存在显著的差异,其中莱州湾和锦州附近区域的结果明显高于其他区域;5种不同的底栖生物对PBDEs均表现出一定的生物富集性,其中∑9PBDEs的BSAF值按从大到小的顺序为菲律宾蛤仔(0.43~4.06,mean=1.19)紫贻贝(0.34~2.86,1.03)四角蛤蜊(0.17~1.95,0.82)麻蛤(0.13~2.33,0.61)牡蛎(0.09~1.20,0.52)。辛醇水分配系数(log KOW)与不同物种BSAF值的相关性分析结果表明,除BDE-17单体外,其他单体的BSAF值表现出随log KOW的升高而下降的趋势。  相似文献   
63.
我国近岸局部海域的重金属污染严重威胁着生态环境和人类健康。吡啶硫酮铜(CuPT)和吡啶硫酮锌(ZnPT)在海洋防污和化工产品中的应用近来逐年增加,对其生态毒性及其机理进行研究迫在眉睫。本文以我国南海常见多毛类——华美盘管虫(Hydroides elegans Haswell)为受试生物,研究了CuPT和ZnPT对华美盘管虫的抗氧化系统的影响。试验结果表明在CuPT和ZnPT胁迫下,华美盘管虫体内的超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和谷胱甘肽还原酶(GR)的活性,以及还原型谷胱甘肽含量(GSH)和丙二醛(MDA)含量发生与暴露毒物种类、浓度和时间相关的变化。SOD、CAT和GR的活性在较低浓度(25μg·L~(-1))的CuPT胁迫6 h后呈显著上升趋势,但随暴露时间延长(12 h和24 h),GR的活性显著下降;而暴露于较低浓度(50μg·L~(-1))的Zn PT中,仅SOD活性显著升高,CAT和GR的活性都显著下降。在较高Cu PT(100μg·L~(-1))或Zn PT(200μg·L~(-1))浓度中,CAT和GR的活性都显著下降。GSH含量对Cu PT或Zn PT胁迫的响应呈现明显的时间效应,即随暴露时间的延长,通常由显著上升转为显著下降。MDA含量在Cu PT(100μg·L~(-1))或Zn PT(200μg·L~(-1))高浓度组中呈显著升高趋势。  相似文献   
64.
We develop a multi-effect evaluation method to assess integrated impact of VOCs. Enable policy-makers to identify important emission sources, regions, and key species. Solvent usage and industrial process are the most important anthropogenic sources. Styrene, toluene, ethylene, benzene, and m/p-xylene are key species to be cut. Volatile organic compounds (VOCs) play important roles in the atmosphere via three main pathways: photochemical ozone formation, secondary organic aerosol production, and direct toxicity to humans. Few studies have integrated these effects to prioritize control measures for VOCs sources. In this study, we developed a multi-effects evaluation methodology based on updated emission inventories and source profiles, by combining the ozone formation potential (OFP), secondary organic aerosol potential (SOAP), and VOC toxicity data. We derived species-specific emission inventories for 152 sources. The OFPs, SOAPs, and toxicity of each source were estimated, the contribution and sharing of source to each of these adverse effects were calculated. Weightings were given to the three adverse effects by expert scoring, and then the integrated effect was determined. Taking 2012 as the base year, solvent use and industrial process were found to be the most important anthropogenic sources, accounting for 24.2% and 23.1% of the integrated effect, respectively, followed by biomass burning, transportation, and fossil fuel combustion, each had a similar contribution ranging from 16.7% to 18.6%. The top five industrial sources, including plastic products, rubber products, chemical fiber products, the chemical industry, and oil refining, accounted for nearly 70.0% of industrial emissions. Beijing, Chongqing, Shanghai, Jiangsu, and Guangdong were the five provinces contributing the largest integrated effects. For the VOC species from emissions showed the largest contributions were styrene, toluene, ethylene, benzene, and m/p-xylene.  相似文献   
65.
66.
柴油的指纹提取及基于其指纹信息的层次聚类分析   总被引:1,自引:0,他引:1  
采用气相色谱/质谱方法对6种常见柴油中的主要生物标志物进行定量分析,并基于生物标志物指纹信息进行了层次聚类分析.结果表明:(1)柴油中含有丰富的饱和链烷烃生物标志物;双环倍半萜类生物标志物含量较高,分布特征显著,较好地补充了柴油中生物标志物的指纹信息.(2)柴油中美国环境保护署优先控制的多环芳烃含量较低,含有非常少量的...  相似文献   
67.
Chen  Bingyu  Chen  Ziwei  Liu  Yuan  Zhu  Shuguang  Cai  Xinli 《Environmental geochemistry and health》2022,44(10):3239-3248
Environmental Geochemistry and Health - Microplastic pollution has been considered as a global environmental issue that potentially threatens human health. However, research about microplastic...  相似文献   
68.
固定化生物技术在废水处理中的应用研究进展   总被引:2,自引:0,他引:2  
固定化生物技术是通过化学或物理的手段将游离细胞或酶定位于限定的空间区域内 ,使其保持活性并可反复利用。该技术具有生物密度高、反应迅速、生物流失量少、反应控制容易的优点。本文系统介绍了固定化生物技术在水处理中的最新应用情况。并且对固定化生物技术的发展、固定化方法以及固定化生物技术需解决的问题和该技术的应用前景作了阐述  相似文献   
69.
In recent years, Dechloranes have been widely detected in the environment around the world. However, understanding and knowledge of Dechloranes in remote regions, such as the Arctic, remain lacking. Therefore, the concentrations of 5 Dechloranes in surface seawater, sediment, soil, moss, and dung collected from Ny-Ålesund in the Arctic were measured with the concentrations 93 pg/L, 342, 325, 1.4, and 258 pg/g, respectively, which were much lower than those in Asian and European regions. The mean ratios of anti-Dechlorane Plus (DP) to total DP (?anti) in seawater, sediment, soil, moss, dung, and atmospheric samples were 0.36, 0.21, 0.18, 0.27, 0.66, and 0.43, respectively. Results suggested that the main source of DP in seawater, sediment, soil, and moss was long-range atmospheric transport. However, the ratio identified in dung was different, for which the migration behavior of the organism is probably the main source of DP.  相似文献   
70.
In recent years, Dechloranes have beenwidely detected in the environment around the world. However, understanding and knowledge of Dechloranes in remote regions, such as the Arctic, remain lacking. Therefore, the concentrations of 5 Dechloranes in surface seawater, sediment, soil, moss, and dung collected from Ny-Ålesund in the Arctic were measured with the concentrations 93 pg/L, 342, 325, 1.4, and 258 pg/g, respectively, which were much lower than those in Asian and European regions. The mean ratios of anti-Dechlorane Plus (DP) to total DP (fanti) in seawater, sediment, soil, moss, dung, and atmospheric samples were 0.36, 0.21, 0.18, 0.27, 0.66, and 0.43, respectively. Results suggested that the main source of DP in seawater, sediment, soil, andmosswas long-range atmospheric transport. However, the ratio identified in dung was different, for which the migration behavior of the organism is probably themain source of DP.  相似文献   
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