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91.
Sediment was collected from three locations along a pollution gradient in Narragansett Bay and transplanted to controlled mesocosms. Total hydrocarbons and eleven individual polycyclic aromatic hydrocarbons (PAHs) were measured in these sediments over a period of 394 days. Total hydrocarbon concentrations increased in the “relatively uncontaminated”; (Rhode Island Sound) sediment that was held in the mesocosms, but did not change in the two other sediments. The concentrations of four PAHs: naphthalene, 2‐methyl naphthalene, 1‐methyl naphthalene and biphenyl, decreased in the “contaminated”; (Providence River) sediment during the experiment and the calculated half‐lives for these compounds were 287, 353, 321 and 333 days, respectively. 相似文献
92.
In this study, limestone powder was directly added to synthetic MSW, which was fed into a small‐scale fluidized bed incinerator. The concentration of CBzs and CPs in the flue gas were measured before and after a secondary combustion air injection. Finally, the PCDDs and PCDFs concentrations were also measured in the flue gas after the secondary combustion zone. The CaCO3 added to synthetic MSW not only controls HCl in the flue gas, but suppresses the formation of chlorinated aromatic compounds like CBzs, CPs, PCDDs, and PCDFs. The main mechanisms to control the formation of chlorinated aromatic compounds was more likely related to the suppression of catalytic capability of flyash than the HCl reduction in the flue gas. However, the NO concentration was increased by catalytic reaction of limestone in the fluidized bed. 相似文献
93.
Izaskun Zorita Joana Larreta Natalia Montero José Germán Rodríguez Javier Franco Ángel Borja 《Chemistry and Ecology》2013,29(5):432-445
Bioaccumulation and biological effects of pollution were assessed in mussels (Mytilus galloprovincialis) caged for one month at three sites in the Oiartzun estuary (south-eastern Bay of Biscay, Spain) with the aim of evaluating their usefulness within the investigative monitoring defined in the European Union Water Framework Directive (WFD). The highest concentrations of organic contaminants determined in mussels' tissue were detected towards the inner part of the estuary but no gradient pattern was found for metal bioaccumulation. Population fitness responses measured as condition index, stress on stress and gonad index were similar in all caged mussels and did not follow the organic pollution gradient. However, biomarkers determined at tissue, cell and protein level (histopathology, micronuclei frequency, malondialdehyde levels and vitellogenin-like protein levels) revealed a higher stress syndrome at the inner part of the estuary showing signs of genotoxicity, oxidative stress and endocrine disruption. Overall, the integrated chemical–biological approach in connection with mussel caging technique proved to be a useful tool to assess environmental pollution, allowing a better understanding of the cause–effect relationship within the investigative monitoring defined in the WFD. 相似文献
94.
LINDA LAIKRE MIJA JANSSON FRED W. ALLENDORF SVEN JAKOBSSON NILS RYMAN 《Conservation biology》2013,27(2):248-253
The wolf (Canis lupus) is classified as endangered in Sweden by the Swedish Species Information Centre, which is the official authority for threat classification. The present population, which was founded in the early 1980s, descends from 5 individuals. It is isolated and highly inbred, and on average individuals are more related than siblings. Hunts have been used by Swedish authorities during 2010 and 2011 to reduce the population size to its upper tolerable level of 210 wolves. European Union (EU) biodiversity legislation requires all member states to promote a concept called “favourable conservation status” (FCS) for a series of species including the wolf. Swedish national policy stipulates maintenance of viable populations with sufficient levels of genetic variation of all naturally occurring species. Hunting to reduce wolf numbers in Sweden is currently not in line with national and EU policy agreements and will make genetically based FCS criteria less achievable for this species. We suggest that to reach FCS for the wolf in Sweden the following criteria need to be met: (1) a well‐connected, large, subdivided wolf population over Scandinavia, Finland, and the Russian Karelia‐Kola region should be reestablished, (2) genetically effective size (Ne) of this population is in the minimum range of Ne = 500–1000, (3) Sweden harbors a part of this total population that substantially contributes to the total Ne and that is large enough to not be classified as threatened genetically or according to IUCN criteria, and (4) average inbreeding levels in the Swedish population are <0.1. Efectos de la Cacería sobre el Estatus de Conservación Favorable de Lobos Suecos con Endogamia Alta 相似文献
95.
Bin MA Shuying WANG Guibing ZHU Shijian GE Junmin WANG Nanqi Ren Yongzhen PENG 《Frontiers of Environmental Science & Engineering》2013,7(2):267-272
Denitrifying phosphorus accumulating organisms (DPAOs) using nitrite as an electron acceptor can reduce more energy. However, nitrite has been reported to have an inhibition on denitrifying phosphorus removal. In this study, the step-feed strategy was proposed to achieve low nitrite concentration, which can avoid or relieve nitrite inhibition. The results showed that denitrification rate, phosphorus uptake rate and the ratio of the phosphorus uptaken to nitrite denitrified (anoxic P/N ratio) increased when the nitrite concentration was 15 mg·L-1 after step-feeding nitrite. The maximum denitrification rate and phosphorus uptake rate was 12.73 mg N O 2 - – N · g M L S S -1 ? h - 1 and 18.75 mg P O 4 3 - –P · g M L S S - 1 ? h - 1 , respectively. These rates were higher than that using nitrate (15 mg·L-1) as an electron acceptor. The maximum anoxic P/N ratio was 1.55 mg P O 4 3 - - P ? m g N O 2 - - N - 1 . When the nitrite concentration increased from 15 to 20 mg N O 2 - - N ? L - 1 after addition of nitrite, the anoxic phosphorus uptake was inhibited by 64.85%, and the denitrification by DPAOs was inhibited by 61.25%. Denitrification rate by DPAOs decreased gradually when nitrite (about 20 mg·L-1) was added in the step-feed SBR. These results indicated that the step-feed strategy can be used to achieve denitrifying phosphorus removal using nitrite as an electron acceptor, and nitrite concentration should be maintained at low level (<15 mg·L-1 in this study). 相似文献
96.
水体沉积物质量基准研究现状 总被引:3,自引:2,他引:3
沉积物质量基准是对水质基准的补充,对水质管理具有重要意义。目前国际上沉积物质量基准计算方法有十几种。对各种方法的理论基础、数据需求、适用范围等方面进行了概述之后,综合分析了各种方法的理论基础。研究结果认为,应将建立沉积物质量基准的方法分为以生物效应数据为基础的生物效应数据库法和以相平衡分配原理为依据的相平衡分配法。而根据统计方法不同,生物效应数据库法又分为单值基准、双值基准和三轴图法。同时还对美国、加拿大、荷兰、英国、澳大利亚和新西兰的沉积物质量基准研究发展和应用概况进行了分析。结合我国实际情况认为,依赖于大量生物效应数据的生物效应数据库法,目前在我国的适用范围有限,只能用于推导少数几种污染物的基准值。相平衡分配法具有可靠的理论基础而且不需要大量的生物效应数据,具有很大的发展潜力。因此,对于目前沉积物质量基准研究处于初级阶段的我国,更适合使用相平衡分配法计算污染物沉积物质量基准。 相似文献
97.
生态足迹方法是区域可持续发展研究的一种重要方法,在中部6省大区域框架下,运用生态足迹模型对中部6省1989—2011年的生态足迹进行了测算和对比研究。研究结果表明:中部6省1989—2011年的生态承载力较为平稳,其中江西、河南、湖北和湖南4省的生态承载力略有上升,而山西、安徽两省的生态承载力有下降趋势。中部6省的社会经济活动对生态系统的消耗远大于生态系统本身的承载能力,并且这种差距正在不断增大,导致生态赤字不断增大。考察期间,山西省生态赤字的绝对值最小,平均生态赤字为0.49 hm2 cap-1,湖北省生态赤字最大,平均值为1.15 hm2 cap-1,其次为河南和湖南,生态赤字增长最快的是山西省和河南省,增长倍数分别达到了7.38和4.27倍。中部6省6种生态生产性土地的生态足迹均呈现出上升趋势,平均来看,6类生态生产性土地在中部6省总的生态足迹中所占比重由高到低依次为耕地、化石能源地、草地、建筑用地、水域、林地。耕地生态足迹是生态足迹中最重要的组成部分,在总的生态足迹中所占比重最大,中部6省耕地的生态足迹时间序列数据比较平稳,在考察时间内从1989年的0.4241上涨到2011年的0.5851,上升趋势较平稳,但由于耕地生态足迹所占比重大,尽管增长速度缓慢,但对中部6省生态足迹总的影响较大。建筑用地和林地生态足迹虽然增长幅度较大,但由于基数小,因此建筑生态足迹和林地生态足迹对中部6省生态足迹总的影响较小。草地、水域和化石能源用地生态足迹基数大,增长幅度也大,加上耕地生态足迹,共同决定了中部6省人均生态足迹的逐年上升趋势。 相似文献
98.
不同生境薇甘菊土壤种子库与幼苗库的特征 总被引:1,自引:0,他引:1
通过野外定点取样与萌发试验相结合的方法,研究云南德宏州陇川县不同生境薇甘菊入侵地区的土壤种子库与幼苗库的特征.结果表明,根据土壤种子库萌发后的植物鉴定结果,橡胶林、林地、灌丛、草地和河岸边这5种生境共统计到40种植物,隶属18科.不同生境薇甘菊入侵群落的物种组成、种子萌发特性与空间分布及其幼苗库存在明显差异,橡胶林、林地、灌丛、草地和河岸边的薇甘菊种子密度分别为75、109、165、124和53粒·m-2,且各生境间差异显著(P<0.05).室内萌发试验表明,薇甘菊土壤种子库萌发时间持续8周,其中第3~5周的萌发速度最快;土壤垂直方向上,0~2、>2~5、>5~10 cm深度土层薇甘菊种子分别占0~10 cm土层种子总数的81%、17%和2%.野外薇甘菊土壤幼苗库萌发时间持续6个月(5-10月),其中6-8月萌发速度较快. 相似文献
99.
Lu Ao Wenjun Liu Yang Qiao Cuiping Li Xiaomao Wang 《Frontiers of Environmental Science & Engineering》2018,12(6):9
100.
优势菌的筛选及其强化活性污泥好氧反硝化的研究 总被引:1,自引:0,他引:1
利用含活性污泥提取物的贫培养基筛选SBR系统中的好氧异养优势菌。结合自然温度(15~20℃)、延长培养时间等条件来提高菌群的可培养性。从SBR活性污泥系统中分离出5种细菌。4株去除COD优势菌,1株异养硝化细菌,能在好氧条件下实现对总氮的去除。反应池底采用边缘对称曝气,反应池内细菌在时间顺序和空间位置上循环经历好氧过程及微氧过程。将PVA铝盐法固定的细菌对反应器进行生物强化。结果显示,在好氧工艺的条件下,投加优势菌群后,与未加优势菌群的反应器相比,可以显著改善污泥的沉降性能,COD、NH3-N和TN降解率显著提高,分别达到98%、97%和90%。生物强化作用明显,反应器内具有良好的好氧反硝化环境。 相似文献