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201.
Malenica N Simon S Besendorfer V Maletić E Kontić JK Pejić I 《Die Naturwissenschaften》2011,98(9):763-772
Reconstruction of the grapevine cultivation history has advanced tremendously during the last decade. Identification of grapevine
cultivars by using microsatellite DNA markers has mostly become a routine. The parentage of several renowned grapevine cultivars,
like Cabernet Sauvignon and Chardonnay, has been elucidated. However, the assembly of a complete grapevine genealogy is not
yet possible because missing links might no longer be in cultivation or are even extinct. This problem could be overcome by
analyzing ancient DNA from grapevine herbarium specimens and other historical remnants of once cultivated varieties. Here,
we present the first successful genotyping of a grapevine herbarium specimen and the identification of the corresponding grapevine
cultivar. Using a set of nine grapevine microsatellite markers, in combination with a whole genome amplification procedure,
we found the 90-year-old Tribidrag herbarium specimen to display the same microsatellite profile as the popular American cultivar Zinfandel. This work, together
with information from several historical documents, provides a new clue of Zinfandel cultivation in Croatia as early as the
beginning of fifteenth century, under the native name Tribidrag. Moreover, it emphasizes substantial information potential of existing grapevine and other herbarium collections worldwide. 相似文献
202.
Ivan B. T. Lima Fernando M. Ramos Luis A. W. Bambace Reinaldo R. Rosa 《Mitigation and Adaptation Strategies for Global Change》2008,13(2):193-206
By means of a theoretical model, bootstrap resampling and data provided by the International Commission On Large Dams (ICOLD
(2003) World register of dams. http://www.icold-cigb.org) we found that global large dams might annually release about 104 ± 7.2 Tg
CH4 to the atmosphere through reservoir surfaces, turbines and spillways. Engineering technologies can be implemented to avoid
these emissions, and to recover the non-emitted CH4 for power generation. The immediate benefit of recovering non-emitted CH4 from large dams for renewable energy production is the mitigation of anthropogenic impacts like the construction of new large
dams, the actual CH4 emissions from large dams, and the use of unsustainable fossil fuels and natural gas reserves. Under the Clean Development
Mechanism of the Kyoto Protocol, such technologies can be recognized as promising alternatives for human adaptations to climate
change concerning sustainable power generation, particularly in developing nations owning a considerable number of large dams.
In view of novel technologies to extract CH4 from large dams, we estimate that roughly 23 ± 2.6, 2.6 ± 0.2 and 32 ± 5.1 Tg CH4 could be used as an environmentally sound option for power generation in Brazil, China and India, respectively. For the whole
world this number may increase to around 100 ± 6.9 Tg CH4. 相似文献
203.
Brenden E McNeil Jane M Read Timothy J Sullivan Todd C McDonnell Ivan J Fernandez Charles T Driscoll 《Ecological applications》2008,18(2):438-452
Maps of canopy nitrogen obtained through analysis of high-resolution, hyperspectral, remotely sensed images now offer a powerful means to make landscape-scale to regional-scale estimates of forest N cycling and net primary production (NPP). Moreover, recent research has suggested that the spatial variability within maps of canopy N may be driven by environmental gradients in such features as historic forest disturbance, temperature, species composition, moisture, geology, and atmospheric N deposition. Using the wide variation in these six features found within the diverse forest ecosystems of the 2.5 million ha Adirondack Park, New York, USA, we examined linkages among environmental gradients and three measures of N cycling collected during the 2003 growing season: (1) field survey of canopy N, (2) field survey of soil C:N, and (3) canopy N measured through analysis of two 185 x 7.5 km Hyperion hyperspectral images. These three measures of N cycling strongly related to forest type but related poorly to all other environmental gradients. Further analysis revealed that the spatial pattern in N cycling appears to have distinct inter- and intraspecific components of variability. The interspecific component, or the proportional contribution of species functional traits to canopy biomass, explained 93% of spatial variability within the field canopy N survey and 37% of variability within the soil C:N survey. Residual analysis revealed that N deposition accounted for an additional 2% of variability in soil C:N, and N deposition and historical forest disturbance accounted for an additional 2.8% of variability in canopy N. Given our finding that 95.8% of the variability in the field canopy N survey could be attributed to variation in the physical environment, our research suggests that remotely sensed maps of canopy N may be useful not only to assess the spatial variability in N cycling and NPP, but also to unravel the relative importance of their multiple controlling factors. 相似文献
204.
Ivana Ivančev-Tumbas 《Environmental science and pollution research international》2014,21(20):11794-11810
In the pioneer days, the main driving forces for research of organics in drinking water treatment (DWT) were human health risks and optimisation of technology. The focus was on natural organic matter (NOM) structure, disinfection by-products (DBPs) formation, NOM removal by means of coagulation, adsorption, and oxidation, and development of the most efficient water treatment trains. Surprisingly, after decades of research, rapid development of analytical techniques and progress in risk assessment, the same driving forces are still in the limelight — although the topics have changed slightly. The attention switched from trihalomethanes to a new generation of DBPs. The definition of hydrophilic/hydrophobic NOM depends on the technique used for characterisation. It has become evident that numerous organic compounds can threaten water supply sources. Some of them had been ignored or overlooked in the past, but have recently been detected by advanced analytical tools even in drinking water. Prioritisation becomes priority per se. As far as processes are concerned, mainstream research has been following three lines: fouling mechanisms, application of hybrid processes and interactions between synthetic organic chemicals, other water constituents and materials used in DWT. Significant development has been made in membrane technology. This paper presents a broad overview of the recent organics research. Although the state-of-the-art technologies seem to have an answer to each and every question raised, it is still necessary to deal with specific problems on a case-by-case basis mainly due to the unique nature of NOM and different xenobiotics that may appear in various types of waters. In the end, human health risk, which derives from the presence/absence of organics, is only the tip of the iceberg — underneath lies a whole new universe — the socio-economic aspect of water treatment and quality that deserves much more attention. 相似文献
205.
Bethune Carmichael Greg Wilson Ivan Namarnyilk Sean Nadji Jacqueline Cahill Deanne Bird 《Local Environment》2017,22(10):1197-1216
Since the early 1990s archaeologists have suggested archaeological and cultural heritage sites (cultural sites) will face major challenges from anthropogenic climate change. While techniques to manage such impacts are emerging, no planning tools exist for bottom-up, community-based management of the issue. This paper forms part of an overarching research project that aims to fill this gap by developing a bottom-up planning guide (the Guide). The paper tests the first of the proposed Guide’s five phases: the scoping phase. It presents the results of workshops conducted with two Australian Indigenous rangers groups. While existing studies document Indigenous peoples’ perceptions of climate change in general, none have focussed on their perceptions of impacts on cultural heritage sites. Here, Indigenous rangers related strong perceptions of particular climate change impacts on specific cultural sites in particular bio-regions. While the rangers were actively engaged with sites, they felt site management should be extended in the face of additional threats from climate change. Rangers were able to nominate a preferred methodological approach, based on a risk analysis of biophysical hazards, as well as local adaptive capacity building in the face of governance challenges. Various barriers to adaptation planning and resource limitations were identified but these were not regarded as insurmountable in terms of the current project. Testing of the scoping phase of the Guide suggested rangers had a strong organisational capacity to achieve practical adaptation results. 相似文献
206.
Winfried Schröder Marcel Holy Roland Pesch Harry Harmens Hilde Fagerli Renate Alber Mahmut Coşkun Ludwig De Temmerman Marina Frolova Laura González-Miqueo Zvonka Jeran Eero Kubin Sébastien Leblond Siiri Liiv Blanka Maňkovská Juha Piispanen Jesús M. Santamaría Primož Simonèiè Ivan Suchara Lilyana Yurukova Harald G. Zechmeister 《Atmospheric environment (Oxford, England : 1994)》2010,44(29):3485-3491
In this study, the indicative value of mosses as biomonitors of atmospheric nitrogen (N) depositions and air concentrations on the one hand and site-specific and regional factors which explain best the total N concentration in mosses on the other hand were investigated for the first time at a European scale using correlation analyses. The analyses included data from mosses collected from 2781 sites across Europe within the framework of the European moss survey 2005/6, which was coordinated by the International Cooperative Programme on Effects of Air Pollution on Natural Vegetation and Crops (ICP Vegetation). Modelled atmospheric N deposition and air concentration data were calculated using the Unified EMEP Model of the European Monitoring and Evaluation Programme (EMEP) of the Convention on Long-range Transboundary Air Pollution (CLRTAP). The modelled deposition and concentration data encompass various N compounds. In order to assess the correlations between moss tissue total N concentrations and the chosen predictors, Spearman rank correlation analysis and Classification and Regression Trees (CART) were applied. The Spearman rank correlation analysis showed that the total N concentration in mosses and modelled N depositions and air concentrations are significantly correlated (0.53 ≤ rs ≤ 0.68, p < 0.001). Correlations with other predictors were lower than 0.55. The CART analysis indicated that the variation in the total N concentration in mosses was best explained by the variation in NH4+ concentrations in air, followed by NO2 concentrations in air, sampled moss species and total dry N deposition. The total N concentrations in mosses mirror land use-related atmospheric concentrations and depositions of N across Europe. In addition to already proven associations to measured N deposition on a local scale the study at hand gives a scientific prove on the association of N concentration in mosses and modelled deposition at the European scale. 相似文献
207.
Per Angelstam Michael Grodzynskyi Kjell Andersson Robert Axelsson Marine Elbakidze Alexander Khoroshev Ivan Kruhlov Vladimir Naumov 《Ambio》2013,42(2):129-145
Policies at multiple levels pronounce the need to encompass both social and ecological systems in governance and management of natural capital in terms of resources and ecosystems. One approach to knowledge production and learning about landscapes as social–ecological systems is to compare multiple case studies consisting of large spaces and places. We first review the landscape concepts’ biophysical, anthropogenic, and intangible dimensions. Second, we exemplify how the different landscape concepts can be used to derive measurable variables for different sustainability indicators. Third, we review gradients in the three dimensions of the term landscape on the European continent, and propose to use them for the stratification of multiple case studies of social–ecological systems. We stress the benefits of the landscape concepts to measure sustainability, and how this can improve collaborative learning about development toward sustainability in social–ecological systems. Finally, analyses of multiple landscapes improve the understanding of context for governance and management. 相似文献
208.
Sucharova J Suchara I Hola M Reimann C Boyd R Filzmoser P Englmaier P 《Environmental pollution (Barking, Essex : 1987)》2011,159(5):1205-1214
While terrestrial moss and other plants are frequently used for environmental mapping and monitoring projects, data on the regional geochemistry of humus are scarce. Humus, however, has a much larger life span than any plant material. It can be seen as the “environmental memory” of an area for at least the last 60-100 years. Here concentrations of 39 elements determined by ICP-MS and ICP AES, pH and ash content are presented for 259 samples of forest floor humus collected at an average sample density of 1 site/300 km2 in the Czech Republic. The scale of anomalies linked to known contamination sources (e.g., lignite mining and burning, metallurgical industry, coal fired power plants, metal smelters) is documented and discussed versus natural processes influencing humus quality. Most maps indicate a local impact from individual contamination sources: often more detailed sampling than used here would be needed to differentiate between likely sources. 相似文献
209.
Vertical profiles of C, N, delta(15)N and Pb were measured in the Mondego and Mira estuaries as markers that conveyed notions as to the relative influence of anthropogenic influence over the past decades. Recent carbon changes in both estuaries may reflect changes in estuarine productivity, probably as a consequence of sediment reworking and erosion, and also of losses in salt marsh area and dwarf eelgrass beds. delta(15)N values began to diverge considerably before the %C and %N and were higher in Mondego. delta(15)N signatures detected N enrichment at relatively low rates, and indicated that Mondego received more enriched N than Mira. Lead concentrations differed between estuaries, with higher concentrations in Mondego. The secular increase in %N, Pb, and delta(15)N signatures was significantly related to human density in the watersheds of the estuaries and were sensitive indicators of anthropogenic activity. 相似文献
210.
电化学氧化与厌氧技术联用处理垃圾渗沥水 总被引:13,自引:0,他引:13
采用电化学氧化与上流式厌氧污泥床(UASB)结合技术,提出了处理香港垃圾渗沥水的二步法工艺.对含COD和NH3-N分别为4750mg/L和1310mg/L的垃圾渗沥水,首先进行UASB预处理(消化温度37℃,COD负荷0.78g/(L·d),HRT为6.1d),获得了66%的COD去除率;UASB的出水被引入电化学氧化反应器进行深度处理.在外加Cl 2000mg/L,电流密度为32.3mA/cm2的条件下,经6h的电解间接氧化,COD和NH3-N的去除率分别达到87%和100%,出水的COD为209mg/L,并且不含NH3-N,此过程的COD电能消耗<55kW·h/kg.本文讨论了电化学氧化过程中电极反应原理,各实验参数对COD和NH3-N去除率的影响,以及电能消耗与运行成本评估等. 相似文献