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11.
The Sambhar Salt Lake hydrological system, including river waters, groundwaters, evaporating pans and sub-surface brines, has been analyzed for the salt content (TDS) and naturally occurring radionuclides (210Po, 210Pb and 226,228Ra). The abundance of these radionuclides and their activity ratios show a wide variation in different hydrological regimes, which helps to geochemically characterize the lake system. A significantly lower Ra to total dissolved solids (TDS) ratio in the brines (by two to three orders of magnitude), when compared to the groundwaters and river waters, suggests removal of dissolved Ra by co-precipitation with Ca–Mg minerals at an early stage of the brine evolution. The concentration of Ra in evaporating lake/pan waters saturates at a value of about 35 Bq L−1 over the salinity range of 100–370 g L−1; attributable to its equilibration with the clay minerals. The two distinct regimes, saline lake system (lake water, evaporating pans and sub-surface brines) and groundwaters have been identified based on their differences in the distribution of 226,228Ra isotopes. This observation points to the conclusion that the groundwaters and the lake brines are not intimately coupled in terms of their origin and evolution. The abundances of 210Po and 210Pb along with their activity ratios (210Po/210Pb) are markedly different among the surface lake waters/evaporating pans, sub-surface lake brines and groundwaters. These differences are explained in terms of different geochemical behaviour of these nuclides in presence of algae and organic matter present in these water regimes.  相似文献   
12.
Mechora S  Cuderman P  Stibilj V  Germ M 《Chemosphere》2011,84(11):1636-1641
The uptake of Se (VI) by two aquatic plants, Myriophyllum spicatum L. and Ceratophyllum demersum L., and its effects on their physiological characteristics have been studied. Plants were cultivated outdoors under semi-controlled conditions and in two concentrations of Na selenate solution (20 μg Se L−1 and 10 mg Se L−1). The higher dose of Se reduced the photochemical efficiency of PSII in both species, while the lower dose had no effect on PSII. Addition of Se had no effect on the amounts of chlorophyll a and b. The concentration of Se in plants grown in 10 mg Se L−1, averaged 212 ± 12 μg Se g−1 DM in M. spicatum (grown from 8-13 d), and 492 ± 85 μg Se g−1 DM in C. demersum (grown for 31 d). Both species could take up a large amount of Se. The amount of soluble Se compounds in enzyme extracts ranged from 16% to 26% in control, and in high Se solution from 48% to 36% in M. spicatum and C. demersum, respectively. Se-species were determined using HPLC-ICP-MS. The main soluble species in both plants was selenate (∼37%), while SeMet and SeMeSeCys were detected at trace levels.  相似文献   
13.
Hu J  Aitken MD 《Chemosphere》2012,88(5):542-547
This study investigated environmental distributions and production mechanisms of chlorinated polycyclic aromatic hydrocarbons (Cl-PAHs) in the sediments from some tidal flats located in Asia. Cl-PAHs were found in sediments taken from Arao tidal flat, Kikuchigawa River and Shirakawa River. The range of ∑Cl-PAHs was from 25.5 to 483 pg g−1 for Kikuchigawa River and Arao tidal flat, respectively.Concentrations of PAHs and Cl-PAHs showed no significant correlations (r = 0.134). This result suggests that the origins of these compounds differ. In the identified Cl-PAH isomers, the most abundant Cl-PAH isomer was 9,10-dichloroanthracene (9,10-di-Cl-ANT) in the three sites. In general, concentrations of Cl-ANTs in the coastal environment are about 3-5 orders of magnitude lower than those of anthracene (ANT). However, concentration ratios between Cl-ANTs and ANT (Cl-ANTs/ANT) in the sediments ranged from 4.1% to 24.6%. This result indicated that Cl-PAHs were not generated under industrial processes but the high concentration ratios have resulted from the contribution of photochemical production of Cl-ANTs in the sediments because ANT is known to have high photochemical reactivity.For examining this phenomenon, ANT adsorbed onto glass beads was irradiated with UV under the mimicked field conditions of tidal flats. As a result, it was noticed that, while chlorinated derivatives were negligible in a light-controlled group, production of 2-Cl-ANT, 9-Cl-ANT and 9,10-diCl-ANT on the irradiated surface were found in this study. These results suggest that photochemical reaction of PAHs can be a potential source of the occurrence of Cl-PAHs in the coastal environment.  相似文献   
14.
三峡水库汞活化效应对鱼汞含量影响的预测   总被引:6,自引:0,他引:6  
报道了三峡库区长江干流江段鱼体汞元素的含量范围为0.04 ̄0.42mg/kg(湿重),高于长江水系鱼体汞含量水平。分析了三峡库区鱼体汞含量高的原因,指出三峡库区毗邻武陵山高汞背景区,主要受汞矿开发、高汞燃煤及城市废弃物排放的影响。利用水库汞活化指数模型,预测三峡水库蓄水后库区干流及40条主要支流水域汞的活化效应将增强0.35 ̄1.5倍,鱼体汞含量将是现在鱼汞含量的1.4 ̄2.5倍;并根据不同鱼种汞  相似文献   
15.
抗生素是环境中广泛存在的一类新兴污染物,因其可诱导细菌抗药性及产生抗性基因而备受关注.本研究发现氟喹诺酮类抗生素具有的光化学活性,可能影响共存的磺胺类抗生素(SAs)的转化.系统考察了一种典型的氟喹诺酮类抗生素—氧氟沙星(OFLO)对磺胺甲恶唑(SMX)的光化学转化.结果表明,在365 nm紫外光照条件下,OFLO可以有效敏化光解SMX.激发三重态(3OFLO*)是促进SMX光解的主要活性物质.密度泛函理论(DFT)计算结合高分辨率质谱(HRMS)分析表明,3OFLO*将SMX分子中的氨基氮氧化成一个自由基阳离子(R-NH2?+).该自由基阳离子可水解生成羟胺衍生物,并进一步氧化生成亚硝化和硝化产物.此外,它们也可以二聚生成偶氮产物.光反应过程中,敏化剂OFLO也发生了降解.但OFLO的光解产物均保留了核心喹诺酮结构,因此也保留了OFLO分子的光敏活性.该研究有助于进一步了解抗生素复合污染情况下的环境行为,具有重要的环境意义.  相似文献   
16.
于2020年9~10月在深圳北部典型工业区开展在线观测以分析该地VOCs污染状况,并使用基于观测的模型(OBM)研究臭氧生成敏感性.观测期间VOCs的总浓度为48.5×10-9,浓度水平上烷烃>含氧有机物(OVOCs)>卤代烃>芳香烃>烯烃>乙炔>乙腈.臭氧生成潜势(OFP)为320μg/m3,其中芳香烃、OVOCs以及烷烃贡献最大,这3类物种OFP贡献总和超过90%.乙烯与苯呈现“两峰一谷”的日变化特征,主要受到机动车排放的贡献.相对增量反应性(RIR)分析表明,削减人为源VOCs对控制当地臭氧生成最为有效,当中又应优先控制芳香烃;经典动力学曲线(EKMA)分析表明该片区臭氧生成处于过渡区,在开展VOCs区域联防联控的同时,需要在当地进行有力的NOx控制以强化该地区臭氧污染长期管控.  相似文献   
17.
Data collected at one site in central Italy using the NC-S/NC-R clover (Trifolium repens) biotype system during 1997-2007 were analysed in order to assess: (a) its performance under Mediterranean conditions; (b) variations of ozone damage linked with meteorological conditions; (c) if critical level approach is a good predictor of ozone risk on vegetation. NC-S dry biomasses were systematically lower than those of NC-R, the mean ratio being 0.7. Relevant relationship between ozone visible injury and cumulated values of AOT40 were also reported. Temperature and number of rainy days were the most important factors associated with ozone presence and, as a consequence, with leaf injury index. Photosynthetic gas exchange properties indicate that NC-S has higher values of stomatal conductance.  相似文献   
18.
Background, aim, and scope  Dissolved humic substances (HS) usually comprise 50–80% of the dissolved organic carbon (DOC) in aquatic ecosystems. From a trophic and biogeochemical perspective, HS has been considered to be highly refractory and is supposed to accumulate in the water. The upsurge of the microbial loop paradigm and the studies on HS photo-degradation into labile DOC gave rise to the belief that microbial processing of DOC should sustain aquatic food webs in humic waters. However, this has not been extensively supported by the literature, since most HS and their photo-products are often oxidized by microbes through respiration in most nutrient-poor humic waters. Here, we review basic concepts, classical studies, and recent data on bacterial and photo-degradation of DOC, comparing the rates of these processes in highly humic ecosystems and other aquatic ecosystems. Materials and methods  We based our review on classical and recent findings from the fields of biogeochemistry and microbial ecology, highlighting some odd results from highly humic Brazilian tropical lagoons, which can reach up to 160 mg C L−1. Results and discussion  Highly humic tropical lagoons showed proportionally lower bacterial production rates and higher bacterial respiration rates (i.e., lower bacterial growth efficiency) than other lakes. Zooplankton showed similar δ13C to microalgae but not to humic DOC in these highly humic lagoons. Thus, the data reviewed here do not support the microbial loop as an efficient matter transfer pathway in highly humic ecosystems, where it is supposed to play its major role. In addition, we found that some tropical humic ecosystems presented the highest potential DOC photo-chemical mineralization (PM) rates reported in the literature, exceeding up to threefold the rates reported for temperate humic ecosystems. We propose that these atypically high PM rates are the result of a joint effect of the seasonal dynamics of allochthonous humic DOC input to these ecosystems and the high sunlight incidence throughout the year. The sunlight action on DOC is positive to microbial consumption in these highly humic lagoons, but little support is given to the enhancement of bacterial growth efficiency, since the labile photo-chemical products are mostly respired by microbes in the nutrient-poor humic waters. Conclusions  HS may be an important source of energy for aquatic bacteria in humic waters, but it is probably not as important as a substrate to bacterial growth and to aquatic food webs, since HS consumption is mostly channeled through microbial respiration. This especially seems to be the case of humic-rich, nutrient-poor ecosystems, where the microbial loop was supposed to play its major role. Highly humic ecosystems also present the highest PM rates reported in the literature. Finally, light and bacteria can cooperate in order to enhance total carbon degradation in highly humic aquatic ecosystems but with limited effects on aquatic food webs. Recommendations and perspectives  More detailed studies using C- and N-stable isotope techniques and modeling approaches are needed to better understand the actual importance of HS to carbon cycling in highly humic waters.  相似文献   
19.
In this paper the inert version of a Lagrangian particle model named photochemical Lagrangian particle model (PLPM) is described and validated. PLPM implements four density reconstruction algorithms based on the kernel density estimator. All these methods are fully grid-free but they differ each other in considering local or global features of the particles distribution, in treating the Cartesian directions separately or together and in being based on receptors or particles positions in space. Each kernel has been shown to have both advantages and disadvantages, but the overall good performances of the model when compared with the well known Copenhagen and Kincaid data sets are very encouraging in view of its extension to fully chemically active simulations, currently under development.  相似文献   
20.
以18辆轻型汽油车(LDGVs)为研究对象,利用底盘测功机搭建挥发性有机物(VOCs)采样系统.利用气相色谱-质谱仪(GC-MS)和高效液相色谱(HPLC)识别了匀速25 km·h~(-1)时尾气VOCs化学成分谱和排放因子,并在分析时考虑了排放标准、行驶工况和车辆属性等因素的影响.结果表明,轻型汽油车低速匀速工况下尾气组成以烷烃(40.8%,C_5~C_7烷烃较多)为主,其次是芳香烃(29.5%)和含氧VOCs(26.0%),烯炔烃(3.6%)和卤代烃(0.1%)较少.其中,甲醛、异戊烷、甲苯、苯、间/对二甲苯、丙酮、2-甲基戊烷、正戊烷、1,2,4-三甲基苯和壬醛是比例最高的物质(52.01%).低速匀速行驶中生成了比例更低的烯烃和比例更高的C_5~C_7烷烃和OVOCs.排放标准为国III、IV和V的轻型汽油车在低速匀速工况下,VOCs排放因子分别为(50.12±46.83)、(40.26±31.15)和(3.25±0.65) mg·km~(-1).国IV到国V车的烷烃、烯炔烃、芳香烃、卤代烃和总VOCs降幅均超过88%,而OVOCs降幅只有约55%,说明OVOCs在国V车的排放富集程度更高.总体来讲,国V车排放的VOCs反应活性约为国IV车排放的VOCs反应活性的11%.车辆属性对VOCs排放的影响表现为:年份、里程和排量的增加会促进VOCs排放的整体增加,而基准质量对VOCs排放的影响相对较小.  相似文献   
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