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111.
控制轨道交通噪声道间声屏障研究 总被引:1,自引:0,他引:1
应用环境噪声预测与分析软件SOUNDPLAN对将设置在上海轨道交通6#线上下行线之间的道间声屏障插入损失进行了模拟计算。计算结果表明,安装道间声屏障可使得距离线路20~30m远的较高层建筑获得2~4.7dB的降噪效果;随着两侧声屏障高度的增加,安装道间声屏障对待测表面的影响范围在缩小;离轨道线路越近,道间声屏障的插入损失越大。 相似文献
112.
Heiko Schmaljohann Felix Liechti Bruno Bruderer 《Behavioral ecology and sociobiology》2009,63(11):1609-1619
Meteorological conditions influence strongly the energy and water budget of birds. By adjusting their flights spatially and
temporally with respect to these conditions, birds can reduce their energy expenditure and water loss considerably. By radar,
we quantified songbird migration across the western Sahara in spring and autumn. There autumn migrants face the trade-off
between (a) favorable winds combined with hot and dry air at low altitudes and (b) unfavorable winds combined with humid and
cold air higher up. Thus, it can be tested whether birds may chose altitudes to minimize water loss instead of energy expenditure.
We predicted optimal flight altitudes with respect to water loss and energy expenditure based on a physiological flight model
when crossing the western Sahara and compared these model predictions spatially and temporally with measured songbird densities.
The model aiming for minimal water consumption predicted a mean flight altitude of 3,400 m under autumn conditions. However,
64% of the nocturnal songbird migration flew at altitudes below 1,000 m above ground level profiting from tailwind. This preference
for tailwind in autumn, despite the hot and dry air, emphasizes the importance of energy savings and diminishes the significance
of possible water stress for the selection of flight altitude. Nevertheless, during daytime, high energy expenditure due to
air turbulences and water loss due to warmer air and direct solar radiation prevent songbirds from prolonging their nocturnal
flights regularly into the day. Birds crossing the Sahara save water by nocturnal flights and diurnal rests. 相似文献
113.
114.
华南地区是我国经济相对比较发达的地区,随着人口的增长和区域开发进程的加快,水土流失问题日益严重。本文提出了华南地区常见的四种产生水土流失的岩性(花岗岩、石灰岩、紫色砂页岩和红色砂砾岩),并在分析了其产生水土流失的原因的基础上,提出了治理每种岩性水土流失的具体措施。 相似文献
115.
This paper reports results of an exploratory study of prenatal diagnosis patients who experienced voluntary terminations of pregnancy following the detection of an abnormality or spontaneous miscarriages. The 121 participants were part of the national collaborative Chorionic Villus Sampling and Amniocentesis Study. They completed semi-structured telephone interviews and mailed questionnaires at 1 month and 6 months after the pregnancy losses. Scores on the Profile of Mood States showed that mood levels improved significantly over time. However, there were some declines in loss-related support from partners and others. The persisting distress and difficulties of a minority highlight the variability in women's responses to pregnancy losses. Women who lost pregnancies later in gestation, showed the greatest mood disturbances at initial assessments, used professional mental health assistance after the loss, or reported less satisfactory loss-related support from significant others showed the greatest levels of mood disturbance at the six-month assessment. Follow-up contacts with patients who lose pregnancies should be used to inform women about the variation in possible grief reactions, to assess the extent of support the women are receiving from their partners and significant others, and to provide additional follow-up or referral of those experiencing the greatest distress. 相似文献
116.
在处理污水的潜流人工湿地中,湿地植物容易受到缺氧胁迫.尽管菖蒲(Acorus calamus L.)是一类对缺氧条件具有显著抵抗能力的湿地植物,但菖蒲的生理响应并不能完全消除湿地长期缺氧带来的胁迫.生物炭添加能够缓解菖蒲体内超氧化物和过氧化物的积累,显著降低膜脂过氧化程度,但生物炭对缓解缺氧胁迫的具体机制尚不清晰.因此,本研究通过在温室内构建5种不同的生物炭湿地,采用植物生态学分析方法,将植物根系通气组织、根孔隙度和根系泌氧相结合,研究菖蒲根部组织对生物炭添加的响应机制.结果表明,通过在传统潜流人工湿地中添加生物炭,有利于菖蒲形成根系通气组织,增大根孔隙度,生物炭投加量与根孔隙度具有显著正相关关系.在湿地中添加生物炭将利于O_2通过通气组织传输至地下部分,并以根系泌氧(radial oxygen loss,ROL)的形式扩散至根际,显著提高根系泌氧量.与其它光强相比,在3 000μmol·(m~2·s)~(-1)条件下,菖蒲泌氧能力较强,生物炭投加比例对植物ROL的影响不显著. 相似文献
117.
利用主动观测技术对宁东能源化工基地大气PM2.5、PM1.0和气相中的PAHs浓度水平、族谱特征、时空分布及来源进行研究,并基于该观测数据对居民呼吸暴露健康风险进行评估.结果表明,宁东基地大气PM2.5、PM1.0及气相中∑16PAHs浓度范围分别为:17.95~325.12ng/m3、12.66~311.96ng/m3和26.33~97.88ng/m3,年均浓度分别为(99.42±117.48)ng/m3、(78.88±100.58)ng/m3和(57.89±47.39)ng/m3.宝丰基地冬夏季大气PM2.5、PM1.0和气相中∑16PAHs浓度水平均明显高于英力特;宝丰和英力特基地冬季大气PM2.5、PM1.0中∑16PAHs浓度水平均明显高于夏季浓度.宁东基地大气中∑16PAHs的浓度水平要高于国内外其他城市,大气PAHs污染较为严重.源解析表明夏季宁东基地PAHs的主要排放源是工业煤燃烧和机动车尾气,冬季则主要来自工业煤燃烧和木材、薪柴等生物质燃烧排放.宁东基地人群暴露于大气PAHs可能会造成平均冬季每百万人中约有33~2628人罹患癌症,夏季每百万人中约有11~834人罹患癌症的风险. 相似文献
118.
Alicja Kolasa-Wiecek 《环境科学学报(英文版)》2015,27(4):47-54
The energy sector in Poland is the source of 81% of greenhouse gas (GHG) emissions. Poland, among other European Union countries, occupies a leading position with regard to coal consumption. Polish energy sector actively participates in efforts to reduce GHG emissions to the atmosphere, through a gradual decrease of the share of coal in the fuel mix and development of renewable energy sources. All evidence which completes the knowledge about issues related to GHG emissions is a valuable source of information. The article presents the results of modeling of GHG emissions which are generated by the energy sector in Poland. For a better understanding of the quantitative relationship between total consumption of primary energy and greenhouse gas emission, multiple stepwise regression model was applied. The modeling results of CO2 emissions demonstrate a high relationship (0.97) with the hard coal consumption variable. Adjustment coefficient of the model to actual data is high and equal to 95%. The backward step regression model, in the case of CH4 emission, indicated the presence of hard coal (0.66), peat and fuel wood (0.34), solid waste fuels, as well as other sources (-0.64) as the most important variables. The adjusted coefficient is suitable and equals R2 = 0.90. For N2O emission modeling the obtained coefficient of determination is low and equal to 43%. A significant variable influencing the amount of N2O emission is the peat and wood fuel consumption. 相似文献
119.
通过对安全投资与事故经济损失的规律性的分析研究,确立安全投资与经济效益的内在关系,进一步探索在我国现有财力和安全水平的基础上,找准安全投资的投向,优化安全投资的合理分配,从而实现最大限度地提高企业安全生产水平和安全投资效益。为政府部门或企业提供一套经过优化、科学合理、操作性又比较强的安全投资方案,供各级领导进行安全决策,实现本部门、本单位的安全投资计划时参考 相似文献
120.
CARINE EMER EDUARDO MARTINS VENTICINQUE CARLOS ROBERTO FONSECA 《Conservation biology》2013,27(4):763-773
Mutualistic networks are critical to biological diversity maintenance; however, their structures and functionality may be threatened by a swiftly changing world. In the Amazon, the increasing number of dams poses a large threat to biological diversity because they greatly alter and fragment the surrounding landscape. Tight coevolutionary interactions typical of tropical forests, such as the ant–myrmecophyte mutualism, where the myrmecophyte plants provide domatia nesting space to their symbiotic ants, may be jeopardized by the landscape changes caused by dams. We analyzed 31 ant–myrmecophyte mutualistic networks in undisturbed and disturbed sites surrounding Balbina, the largest Central Amazonian dam. We tested how ant–myrmecophyte networks differ among dam‐induced islands, lake edges, and undisturbed forests in terms of species richness, composition, structure, and robustness (number of species remaining in the network after partner extinctions). We also tested how landscape configuration in terms of area, isolation, shape, and neighborhood alters the structure of the ant–myrmecophyte networks on islands. Ant–myrmecophytic networks were highly compartmentalized in undisturbed forests, and the compartments had few strongly connected mutualistic partners. In contrast, networks at lake edges and on islands were not compartmentalized and were negatively affected by island area and isolation in terms of species richness, density, and composition. Habitat loss and fragmentation led to coextinction cascades that contributed to the elimination of entire ant–plant compartments. Furthermore, many myrmecophytic plants in disturbed sites lost their mutualistic ant partners or were colonized by opportunistic, nonspecialized ants. Robustness of ant–myrmecophyte networks on islands was lower than robustness near lake edges and in undisturbed forest and was particularly susceptible to the extinction of plants. Beyond the immediate habitat loss caused by the building of large dams in Amazonia, persistent edge effects and habitat fragmentation associated with dams had large negative effects on animal–plant mutualistic networks. Efectos de la Fragmentación del Paisaje Inducida por Presas sobre Redes Mutualistas Hormiga‐Planta Amazónicas 相似文献