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141.
Tomasz Olewski Subramanya Nayak Omar Basha Simon Waldram Luc Véchot 《Journal of Loss Prevention in the Process Industries》2011,24(6):798-804
This work is a continuation of the experimental research on LNG releases and their consequence mitigation methods, which has been carried on by the Mary Kay O’Connor Process Safety Center (MKOPSC) at the Texas A&M University since 2004.A series of medium scale experiments to test the ability of the water curtains to hold up and disperse a vapor has been performed. Colored smoke has been used as an analog of the LNG vapor for easier tracking of the vapor path through the water curtain. The results and some analysis of the experimental data are presented. The CFD software FLACS (GexCon AS) was used to simulate the effects of the water curtains on vapor dispersion. The results of the simulations were compared with experimental data. 相似文献
142.
The Economics of Pollution Permit Banking in the Context of Title IV of the 1990 Clean Air Act Amendments 总被引:1,自引:0,他引:1
This paper presents a model of the collective emission permit banking behavior of electricity-generating units affected by Title IV of the Clean Air Act Amendments of 1990. A rigorous treatment of the constraint that pollution permits cannot be borrowed from future allocations is introduced. This approach enables an analysis of the impact of future changes in electricity demand, regulations, and technologies on the present permit price and emissions level. The effect of uncertainty on the banking behavior is also explored. 相似文献
143.
Noise produces multiple effects on ecosystems and it influences habitat use by vertebrates near roads. Thus, it may reduce
the effectiveness of mitigation measures installed on roads to alleviate population fragmentation. This study analyses the
effects of noise on the use by vertebrates of 19 underpasses at a motorway. It employs generalised linear models to test the
effect of three noise indicators at the underpasses and in their vicinity on the crossing frequency of eight animal species.
The results show that the road crossings are subjected to high and variable noise levels. Nevertheless, there is no consistent
response to noise by vertebrates. This suggests that wildlife use of underpasses is determined more by habitat characteristics
than by the levels of noise tolerated. The conclusion is that noise abatement measures on roads in areas of faunal sensitivity
should focus on general noise reduction rather than on making individual crossing places quieter. 相似文献
144.
Occurrence and behavior of emerging contaminants in surface water and a restored wetland 总被引:1,自引:0,他引:1
Pollution mitigation is an important target for restored wetlands, and although there is much information in relation to nutrient removal, little attention has been paid to emerging contaminants. This paper reports on the occurrence and attenuation capacity of 17 emerging contaminants in a restored wetland and two rivers in North-East Denmark. The compounds belong to the groups of pharmaceuticals, fragrances, antiseptics, fire retardants, pesticides, and plasticizers. Concentrations in surface waters ranged from 2 to 1476 ng L−1. The compounds with the highest concentrations were diclofenac, 2-methyl-4-chlorophenoxyacetic acid (MCPA), caffeine, and tris(2-chloroethyl) phosphate (TCEP). The herbicide concentrations increased after a rain-fall event, demonstrating the agricultural run-off origin of these compounds, whereas the concentration of the other emerging contaminants was rather conservative. The mitigation capacity of the restored wetland for the compounds ranged from no attenuation to 84% attenuation (19% on average). Hence, restored wetlands may be considered as a feasible alternative for mitigating emerging contaminants from river waters. 相似文献
145.
Ecosystem responses to reduced and oxidised nitrogen inputs in European terrestrial habitats 总被引:1,自引:0,他引:1
Stevens CJ Manning P van den Berg LJ de Graaf MC Wamelink GW Boxman AW Bleeker A Vergeer P Arroniz-Crespo M Limpens J Lamers LP Bobbink R Dorland E 《Environmental pollution (Barking, Essex : 1987)》2011,159(3):665-676
While it is well established that ecosystems display strong responses to elevated nitrogen deposition, the importance of the ratio between the dominant forms of deposited nitrogen (NHx and NOy) in determining ecosystem response is poorly understood. As large changes in the ratio of oxidised and reduced nitrogen inputs are occurring, this oversight requires attention. One reason for this knowledge gap is that plants experience a different NHx:NOy ratio in soil to that seen in atmospheric deposits because atmospheric inputs are modified by soil transformations, mediated by soil pH. Consequently species of neutral and alkaline habitats are less likely to encounter high NH4+ concentrations than species from acid soils. We suggest that the response of vascular plant species to changing ratios of NHx:NOy deposits will be driven primarily by a combination of soil pH and nitrification rates. Testing this hypothesis requires a combination of experimental and survey work in a range of systems. 相似文献
146.
《防灾减灾工程学报》的被引分析 总被引:1,自引:1,他引:0
利用我国优秀博硕论文全文数据库,探讨了《防灾减灾工程学报》(以下简称《学报》)的被引与共被引。结果表明,《学报》的载文具有较高的学科前沿性、理论性、实用性与综合性;《学报》的博硕论文被引与共被引次数多、层次高,学术影响的学科范围广;防灾减灾工程与土木工程、岩土工程、地震工程、地质工程等多种工程相关性强;《学报》对我国博硕研究生教育情报贡献力大。 相似文献
147.
In case of accidents involving releases of hazardous materials, calculating the gas dispersion is essential for assessing risks. In general, the leaked chemical is assumed to be instantly dispersed to the atmosphere if the leak occurs in the outdoor location. However, a different approach should be made for the incidents when sources are located inside a building. For the indoor release, the gas will be diluted prior to the release to the atmosphere and the gas release from a building to the atmosphere demands the application of another model before the dispersion calculation. The indoor release model calculates average indoor concentration and volumetric flowrate to the exterior. The model is fast and reasonably accurate compared to rigorous but time-consuming computational fluid dynamics (CFD) models. The model results were compared with experimental data, and CFD simulation results both with simple geometry to demonstrate validation and assess the performance of the indoor release model. Lastly, the behavior and effect of mitigation of indoor release were demonstrated by using the model results. 相似文献
148.
This study performed the first systematic evaluation of the success of habitat mitigation at establishing the threatened Valley elderberry longhorn beetle (Desmocerus californicus dimorphus) and its host plant, blue elderberry (Sambucus mexicana). Habitat mitigation performed through enforcement of the U.S. Endangered Species Act represents a tightly controlled form of habitat restoration, facilitating the evaluation of restoration practice. Restoration plantings of blue elderberry have been substantial in our study area, the Central Valley of California. Surveys of 30 mitigation sites and 16 nearby natural sites showed that mitigation sites were a fraction of the size of natural habitat areas (mean = 24%) and contained smaller shrubs. The beetle colonized 53% of mitigation sites and its populations were denser in sites with moderate levels of dead stems on elderberry shrubs, and moderate damage to elderberry stems and bark. This likely indicates that the beetle responds to stressed shrubs, which are likely to contain elevated levels of nitrogen. Beetle density also increased with the size and age of mitigation sites. This indicates a need to make restoration sites as large as possible and to monitor these sites for longer than current guidelines suggest, thereby allowing more time for convergence of natural and mitigation sites. Few factors examined here directly influenced the growth of elderberry shrubs, but elderberry grew more rapidly in sites closer to riparian areas, indicating that such sites should be favored for mitigation sites. 相似文献
149.
150.
A system dynamics model based on the dynamic interactions among a number of system components is developed to estimate CO(2) emissions from the cement industry in India. The CO(2) emissions are projected to reach 396.89 million tonnes by the year 2020 if the existing cement making technological options are followed. Policy options of population growth stabilisation, energy conservation and structural management in cement manufacturing processes are incorporated for developing the CO(2) mitigation scenarios. A 42% reduction in the CO(2) emissions can be achieved in the year 2020 based on an integrated mitigation scenario. Indirect CO(2) emissions from the transport of raw materials to the cement plants and finished product to market are also estimated. 相似文献