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91.
A.J. Khan Jianjun Li Vincent A. Dutkiewicz Liaquat Husain 《Atmospheric environment (Oxford, England : 1994)》2010,44(19):2364-2371
The effect of elemental carbon (EC) on global as well as regional climate forcing is potentially very important. However, the EC data for northeastern U.S. is sparse. Daily EC concentrations, [EC], and [SO4] were measured in the northeastern U.S. at a regionally representative rural site, Whiteface Mountain (WFM; 44.366°N, 73.903°W, 1.5 km amsl, above mean sea level), New York (NY), for 1997. The air mass origin was determined using 6-h backward in time air trajectories obtained from the Hybrid Single-Particle Lagrangian Integrated Trajectory Model (HYSPLIT 4). [EC] and [SO4] were highly variable and influenced by synoptic–scale meteorology (rainy vs dry periods). The maximum daily [EC] and [SO4] were 364 ± 55 and 28,800 ± 3000 ng m?3, respectively. [EC] and [SO4] also showed seasonal variations at WFM. Occurrences of high daily [EC] were mainly in spring months, while peak daily [SO4] concentrations occurred in summer months. This behavior of aerosols is due to the fact that the sources of EC and SO4 are not the same and also due to the enhanced photochemical activity during summer months that increased the production of SO4 from SO2. High [EC] and [SO4] values were associated with westerly air flow from the industrialized Midwestern U.S. Sector analysis using HYSPLIT 4 air trajectories showed that regions lying between the southwest and northwest of the WFM contributed 81% and 83% of the [EC] and [SO4], respectively. The monthly net direct radiative forcing for shortwave (SW) due to EC and SO4 aerosols at the top of the atmosphere (TOA) varied from ?0.05 to ?0.50 W m?2, with an annual average of ?0.20 ± 0.15 W m?2 that gives a net cooling effect. Average net radiative forcing at WFM for clear sky is lower than the global average radiative forcing reported by IPCC (Foster and Ramaswamy, 2007). 相似文献
92.
Anne-Catherine Bénard Vincent Darcos Christian Drakides Claude Casellas Jean Coudane Michel Vert 《Journal of Polymers and the Environment》2011,19(1):40-48
Water-soluble synthetic polymers are extensively used in cosmetics, detergents and paints. Many end up in wastewater and,
later on, in wastewater-treatment plants. In order to gain an insight into their fate in such plants, fluorescence and radioactivity
labelings were compared using a lab-scale reactor designed to mimic industrial conditions. Two fermentation media were considered,
namely a mixture of E402 and E204 micro-organisms and an activated sludge collected from a water-treatment plant located in
the south of France. A sample of low molar mass commercial poly(acrylic acid) (PAA) was labeled by radioactivity with tritium
and by coupling the 6-aminofluorescein fluorescent dye. Labeled PAA-containing sludges were allowed to ferment. To monitor
the fate of the polymers, aliquots of the fermented mixtures were withdrawn at selected times and centrifuged. Liquid and
solid phases were analyzed by scintigraphy or UV spectrometry, depending of the labeling techniques. Both techniques led to
similar distributions, c.a. 75% in the supernatant and 25% in the solid phase. Distributions remained constant during the
biological tests. There was no degradation of the commercial PAA after aqueous size exclusion chromatography (SEC), in agreement
with literature. These features showed that fluorescence-labeling can be used instead of the complex and expensive radiolabeling.
The validated fluorescence-based method was then applied to a linear poly(acrylic acid) synthesized by ATRP and labeled with
6-aminofluorescein. There was no significant difference between the commercial and the linear poly(acrylic acid)s. In contrast,
a linear PAA with 5% of tert-butyl ester repeating units was predominantly found in the solid phase although adsorption or absorption by micro-organisms
could not be demonstrated. The method based on fluorescence labeling should be applicable to other water soluble polymers
provided that the dye remains attached to the polymer as it was the case for the studied poly(acrylic acid)s. 相似文献
93.
Vincent A. Formica Malcolm E. Augat Mollie E. Barnard R. Eileen Butterfield Corlett W. Wood Edmund D. Brodie III 《Behavioral ecology and sociobiology》2010,64(7):1199-1208
Social network analysis has become a vital tool for studying patterns of individual interactions that influence a variety
of processes in behavior, ecology, and evolution. Taxa in which interactions are indirect or whose social behaviors are difficult
to observe directly are being excluded from this rapidly expanding field. Here, we introduce a method that uses a probabilistic
and spatially implicit technique for delineating social interactions. Kernel density estimators (KDE) are nonparametric techniques
that are often used in home range analyses and allow researchers studying social networks to generate interaction matrices
based on shared space use. We explored the use of KDE analysis and the effects of altering KDE input parameters on social
network metrics using data from a natural population of the spatially persistent forked fungus beetle, Bolitotherus cornutus. 相似文献
94.
C D Vincent A J Lawlor E Tipping 《Environmental pollution (Barking, Essex : 1987)》2001,114(1):93-100
Measurements were made of the contents of Al, Mn, Fe, Cu, Zn, Cd and Pb in Scapania undulata in three streams (D2, D5, D11) in the English Lake District. The stream waters had average pH values of 5.35 (D2), 5.81 (D5) and 7.26 (D11), the main differences in other major chemical components being in Mg, Al, Ca and alkalinity. There was generally more metal accumulation in the older parts of the plants, but this was not significant in all cases. Extents of accumulation varied with stream pH and dissolved metal concentration. For Al, accumulation was greatest in streams D2 and D5. Mn accumulated most in D5 and Fe was without preference. Cu, Zn and Cd accumulated mostly in the plants in stream D11 and Pb accumulated more in D5 and D11. In terms of enrichment factors (amount of metal in the plants divided by stream water concentration) the sequence was Zn < Cd < Cu < Mn < Pb < Al < Fe. Laboratory experiments supported the findings of the field data, providing evidence that uptake increases with pH at constant total metal concentration. The results are interpreted qualitatively in terms of the chemical speciation of the metals in the stream water and competition between metal ions and protons at the plant-water interface. It is suggested that Al, Cu, Zn, Cd and Pb behave according to chemical complexation, whereas redox processes and/or colloidal interactions may be significant for Mn and Fe. 相似文献
95.
Controls on coarse wood decay in temperate tree species: birth of the LOGLIFE experiment 总被引:1,自引:0,他引:1
Cornelissen JH Sass-Klaassen U Poorter L van Geffen K van Logtestijn RS van Hal J Goudzwaard L Sterck FJ Klaassen RK Freschet GT van der Wal A Eshuis H Zuo J de Boer W Lamers T Weemstra M Cretin V Martin R Ouden Jd Berg MP Aerts R Mohren GM Hefting MM 《Ambio》2012,41(Z3):231-245
Dead wood provides a huge terrestrial carbon stock and a habitat to wide-ranging organisms during its decay. Our brief review highlights that, in order to understand environmental change impacts on these functions, we need to quantify the contributions of different interacting biotic and abiotic drivers to wood decomposition. LOGLIFE is a new long-term 'common-garden' experiment to disentangle the effects of species' wood traits and site-related environmental drivers on wood decomposition dynamics and its associated diversity of microbial and invertebrate communities. This experiment is firmly rooted in pioneering experiments under the directorship of Terry Callaghan at Abisko Research Station, Sweden. LOGLIFE features two contrasting forest sites in the Netherlands, each hosting a similar set of coarse logs and branches of 10 tree species. LOGLIFE welcomes other researchers to test further questions concerning coarse wood decay that will also help to optimise forest management in view of carbon sequestration and biodiversity conservation. 相似文献
96.
Johannes H. C. Cornelissen Ute Sass-Klaassen Lourens Poorter Koert van Geffen Richard S. P. van Logtestijn Jurgen van Hal Leo Goudzwaard Frank J. Sterck René K. W. M. Klaassen Grégoire T. Freschet Annemieke van der Wal Henk Eshuis Juan Zuo Wietse de Boer Teun Lamers Monique Weemstra Vincent Cretin Rozan Martin Jan den Ouden Matty P. Berg Rien Aerts Godefridus M. J. Mohren Mariet M. Hefting 《Ambio》2012,41(3):231-245
Dead wood provides a huge terrestrial carbon stock and a habitat to wide-ranging organisms during its decay. Our brief review highlights that, in order to understand environmental change impacts on these functions, we need to quantify the contributions of different interacting biotic and abiotic drivers to wood decomposition. LOGLIFE is a new long-term ‘common-garden’ experiment to disentangle the effects of species’ wood traits and site-related environmental drivers on wood decomposition dynamics and its associated diversity of microbial and invertebrate communities. This experiment is firmly rooted in pioneering experiments under the directorship of Terry Callaghan at Abisko Research Station, Sweden. LOGLIFE features two contrasting forest sites in the Netherlands, each hosting a similar set of coarse logs and branches of 10 tree species. LOGLIFE welcomes other researchers to test further questions concerning coarse wood decay that will also help to optimise forest management in view of carbon sequestration and biodiversity conservation. 相似文献
97.
Joseph Richmond Fianko Vincent K. Nartey Augustine Donkor 《Environmental monitoring and assessment》2010,168(1-4):441-449
A detailed study has been carried out on groundwater in rural communities in the Tema District of the Greater Accra region of Ghana to establish the hydrochemistry and identify the various sources of contaminants as well assess the physical and chemical quality of the groundwater to ascertain their wholesomeness and the health impacts of the groundwater on the communities. The groundwater was found to vary considerably in terms of chemical and physical properties. Generally, the water was mildly acidic (pH 4.3–7.4), brackish to fresh, and undersaturated with respect to gypsum and halite. The majority of groundwater clustered toward Ca–Mg–SO4 and Na–Cl facies. About 70% of boreholes sampled have elevated levels of NO3 ??–N, Cl???, and SO4 2? emanating from anthropogenic activities. 相似文献
98.
Chris Fabien Moussavou Moudouma Catherine Riou Vincent Gloaguen Gaëlle Saladin 《Environmental science and pollution research international》2013,20(3):1889-1894
Studies related to phytoremediation by conifers are still at their beginning. Thus, we investigated the ability of a hybrid larch (Larix x eurolepis) to accumulate cadmium (Cd). One-month-old clonal plantlets grown in vitro were exposed for 1 week to a high Cd concentration (1.5 mM). No significant effect was observed on root and shoot biomass, root length, and needle number as a result of Cd treatment. Leaf photosynthetic pigment content and total soluble protein concentration in roots and shoots remained unchanged compared to control plantlets. Taken together, these results suggested that hybrid larch tolerated Cd in our conditions. The high Cd concentration in shoots (200 μg Cd gram?1 dry weight) showed the good capacity of larch to translocate Cd and thus a potential use of this species for phytoremediation. Furthermore, under our conditions, phytochelatin biosynthesis pathway was slightly stimulated, suggesting that this pathway did not reach the threshold and/or another mechanism of Cd storage may be involved to explain larch tolerance to Cd. 相似文献
99.
100.
Sebastien Humbert Yves Loerincik Vincent Rossi Manuele Margni Olivier Jolliet 《Journal of Cleaner Production》2009,17(15):1351-1358
This paper aims to evaluate the environmental burdens associated with spray dried soluble coffee over its entire life cycle and compare it with drip filter coffee and capsule espresso coffee. It particularly aims to identify critical environmental issues and responsibilities along the whole life cycle chain of spray dried coffee. This life cycle assessment (LCA) specifically uses foreground data obtained directly from coffee manufacturers and suppliers. Aside from energy consumption and greenhouse gases emissions, water footprint is also studied in detail, including regionalization of water impacts based on the ecological scarcity method 2006. Other impact categories are screened using the IMPACT 2002+ impact assessment method.The overall LCA results for a 1 dl cup of spray dried soluble coffee amounts approximately to 1 MJ of primary non-renewable energy consumption, to emissions of 0.07 kg of CO2-eq, and between 3 and 10 l of non-turbined water use, depending on whether or not the coffee cultivation is irrigated and wet treated. When considering turbined water, use can be up to 400 l of water per cup. Pouch – and to a lesser extent metal can packaging alternatives – show lower environmental burdens than glass or sticks.On average, about one half of the environmental footprint occurs at a life cycle stage under the control of the coffee producer or its suppliers (i.e., during cultivation, treatment, processing, packaging up to distribution, along with advertising) and the other half at a stage controlled by the user (shopping, appliances manufacturing, use and waste disposal). Key environmental parameters of spray dried soluble coffee are the amount of extra water boiled and the efficiency of cup cleaning during use phase, whether the coffee is irrigated or not, as well as the type and amount of fertilizer used in the coffee field. The packaging contributes to 10% of the overall life cycle impacts.Compared to other coffee alternatives, spray dried soluble coffee uses less energy and has a lower environmental footprint than capsule espresso coffee or drip filter coffee, the latter having the highest environmental impacts on a per cup basis. This study shows that a broad LCA approach is needed to help industry to minimize the environmental burdens directly related to their products. Including all processes of the entire system is necessary i) to get a comprehensive environmental footprint of the product system with respect to sustainable production and consumption, ii) to share stakeholders responsibility along the entire product life cycle, and iii) to avoid problem shifting between different life cycle stages. 相似文献