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195.
Boreal forests represent a biome of the planet whose unique characteristics are changing rapidly under the influence of both
human and natural pressures. These forests hold the key to current and future supply of coniferous industrial wood and at
the same time play a significant role in regulating Earth's climatic system. Expected to be one of the most rapidly impacted
regions of the world by future climate change, the boreal biome has already been substantially affected by global change.
It is likely that if unabated, continued change will lead to impoverishment and degradation of boreal ecosystems, with consequent
loss of vital services upon which human society depends. An improved systems understanding of the functioning of circumpolar
boreal forests is a pressing challenge for boreal forest science and is needed in order to estimate their resilience to perturbations,
to predict likely responses to the changing environment, and to design mitigation strategies. With such understanding, coordinated
international efforts can be focused on developing anticipatory strategies for adaptation to, and mitigation of dangerous
consequences of global change for boreal resources. The International Boreal Forest Research Association (IBFRA) provides
a focus for international research on these issues and serves as a global window for boreal forest science and sustainable
forest management in the boreal region. 相似文献
196.
Two leaf-feeding chrysomelid beetles, Leptinotarsa texana and L. defecta, have been successfully established on Solanum elaeagnifolium, a solanaceous weed inadvertently introduced into South Africa from North America during the early 1900s. Unlike L. defecta, which remains localised and scarce, L. texana has proliferated at a number of release sites. Surveys of the damage caused by L. texana on S. elaeagnifolium showed that in some situations the beetles reached densities where the host plants were completely stripped of leaves, flowers and bark, whereas fruits were not eaten by the beetles. Longer term studies in plots with and without L. texana showed that even at relatively low levels of abundance of the beetles, the growth of S. elaeagnifolium was suppressed and the capacity of the plants to produce fruits was severely curtailed. As a result L. texana has the potential to be an effective biological control agent of S. elaeagnifolium in South Africa and elsewhere. 相似文献
197.
Bioremediation of chlorobenzene-contaminated ground water in an in situ reactor mediated by hydrogen peroxide 总被引:5,自引:0,他引:5
Vogt C Alfreider A Lorbeer H Hoffmann D Wuensche L Babel W 《Journal of contaminant hydrology》2004,68(1-2):121-141
New in situ reactive barrier technologies were tested nearby a local aquifer in Bitterfeld, Saxonia-Anhalt, Germany, which is polluted mainly by chlorobenzene (CB), in concentrations up to 450 microM. A reactor filled with original aquifer sediment was designed for the microbiological remediation of the ground water by indigenous bacterial communities. Two remediation variants were examined: (a) the degradation of CB under anoxic conditions in the presence of nitrate; (b) the degradation of CB under mixed electron acceptor conditions (oxygen+nitrate) using hydrogen peroxide as the oxygen-releasing compound. Under anoxic conditions, no definite degradation of CB was observed. Adding hydrogen peroxide (2.94 mM) and nitrate (2 mM) led to the disappearance of CB (ca. 150 microM) in the lower part of the reactor, accompanied by a strong increase of the number of cultivable aerobic CB degrading bacteria in reactor water and sediment samples, indicating that CB was degraded mainly by productive bacterial metabolism. Several aerobic CB degrading bacteria, mostly belonging to the genera Pseudomonas and Rhodococcus, were isolated from reactor water and sediments. In laboratory experiments with reactor water, oxygen was rapidly released by hydrogen peroxide, whereas biotic-induced decomposition reactions of hydrogen peroxide were almost four times faster than abiotic-induced decomposition reactions. A clear chemical degradation of CB mediated by hydrogen peroxide was not observed. CB was also completely degraded in the reactor after reducing the hydrogen peroxide concentration to 880 microM. The CB degradation completely collapsed after reducing the hydrogen peroxide concentration to 440 microM. In the following, the hydrogen peroxide concentrations were increased again (to 880 microM, 2.94 mM, and 880 microM, respectively), but the oxygen demand for CB degradation was higher than observed before, indicating a shift in the bacterial population. During the whole experiment, nitrate was uniformly reduced during the flow path in the reactor. 相似文献
198.
Gluck S Glenn C Logan T Vu B Walsh M Williams P 《Journal of the Air & Waste Management Association (1995)》2003,53(6):749-758
The requirements of the Texas State Implementation Plan of the U.S. Clean Air Act for the Houston-Galveston Ozone Nonattainment Area stipulate large reductions in oxides of nitrogen (NO(x)) emissions. A large number of sources at Dow Chemical Co. sites within the nonattainment area may require the addition of continuous emission monitoring systems (CEMS) for online analysis of NO(x), CO, and O2. At the outset of this work, it was not known whether the analyzers could accurately measure NO(x) as low as 2 ppm. Therefore, NO(x) CEMS analyzers from five different companies were evaluated for their ability to reliably measure NO(x) in the 2-20 ppm range. Testing was performed with a laboratory apparatus that accurately simulated different mixtures of flue gas and, on a limited basis, simulated a dual-train sampling system on a gas turbine. The results indicate that this method is a reasonable approach for analyzer testing and reveal important technical performance aspects for accurate NO(x) measurements. Several commercial analyzers, if installed in a CEMS application with sampling conditioning components similar to those used in this study, can meet the U.S. Environmental Protection Agency's measurement data quality requirements for accuracy. 相似文献
199.
Zarcinas BA Pongsakul P McLaughlin MJ Cozens G 《Environmental geochemistry and health》2004,26(4):359-371
A reconnaissance soil geochemical and concomitant plant survey based on 318 soil (0-15 cm) and 122 plant samples was used for the assessment of heavy metal pollution of agricultural soils and crops of Thailand. Arsenic (As), cadmium (Cd), cobalt (Co), chromium (Cr), copper (Cu), mercury (Hg), nickel (Ni), lead (Pb) and zinc (Zn) were determined in soils using aqua regia digestion, and in plants using nitric acid digestion. Organic carbon (C), pH, electrical conductivity (EC) and available phosphorus (P) were determined on the soil samples using appropriate procedures. Results indicated that concentrations of heavy metals varied widely among the different regions of Thailand. Regression analysis between the concentrations of metals in soil (aqua regia extractable) and edible plant parts indicated a small but positive relationship for Cd in all the plants sampled in the survey (R2 = 0.081, p < 0.001). There was also a positive relationship between soil and plant Cd concentrations in rice (R2 = 0.242, p < 0.010), and negative relationships for Zn in rice (R2 = 0.385, p < 0.001), and Cu (R2 = 0.355, p < 0.001) and Zn (R2 = 0.122, p < 0.026) in glutinous rice. Principal component analysis of the soil data suggested that concentrations of As, Co, Cr, Cu, Hg, Ni and Pb were strongly correlated with concentrations of Al and Fe, which is suggestive of evidence of background variations due to changes in soil mineralogy. Thus, the evidence for widespread contamination of soils by these elements through agricultural activities is not strong. On the other hand, Cd and Zn were strongly correlated with organic matter and concentrations of available and aqua regia extractable P. This is attributed to input of contaminants in agricultural fertilisers and soil amendments (e.g. manures, composts). 相似文献
200.
Ecobalance represents the basic principle for an environmental analysis and the starting point for the possibility of achieving improvements. Using the criteria related to both technology and ecology, this method has been expanded upon by IKP/PE and, over the course of many years, has proven to be a satisfactory method for those fields associated with industry and research. Data banks and software systems have been designed and are today applied in industry. An expansion of the holistic balancing to include the ‘social’ dimension is currently being developed by the IKP. Today, ecological decisions in technically and economically-associated areas are continuously being developed which place more emphasis on the preliminary developments than on a purely retrospective analysis. Aside from the continuous, further developments of these types of analysis with regard to never technical questions as well as the integration of newer aspects of optimization based on life cycle information (e.g. production balancing), the goal of further work includes the preparation of process-chain information in the respective in preliminary developments related to the design. The automobile industry consequently plays a significant role here, as was also the case in the initial transformation of methodology which was carried out in the 1990s. Finally, these developments are additionally motivated through the new ordinances presented to be employed throughout the entire EU. The responsibility attributed to a product over the course of its entire lifetime therefore plays a more prominent role. This is also reflected in ordinances like those related to the redemption of old automobiles or in the WEEE of the electronics industry (Directive on Waste Electrical and Electronic Equipment). 相似文献