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91.
根据自动跟踪扫描光度计观测资料,利用Bouguer-Lamber定律反演郑州地区2007年2~9月气溶胶光学厚度和波长指数,分析郑州地区该时段气溶胶光学特性的季节变化和日变化情况.结果表明,郑州地区2007年2~9月1020nm气溶胶光学厚度为0.49±0.09;870nm气溶胶光学厚度为0.60±0.13;670nm气溶胶光学厚度为0.76±0.20;440nm气溶胶光学厚度为1.08±0.34.季节变化以夏季最高,秋冬次之,春季最低.波长指数春季为0.37~0.69,夏季为1.18~1.26.春季有50%以上的天气,扬尘粒子为主控粒子,而夏季城市-工业气溶胶是主控粒子之一.日变化规律与近地面污染物浓度变化一致,8:30和17:00左右出现峰值,11:30出现谷值,由于气温上升,湍流剧烈,12:30左右气溶胶光学厚度有1个小高峰,但仍处于全天的低值区. 相似文献
92.
R. J. Davies‐Colley D. G. Smith 《Journal of the American Water Resources Association》2001,37(5):1085-1101
ABSTRACT: Suspended sediment causes a range of environmental damage, including benthic smothering, irritation of fish gills, and transport of sorbed contaminants. Much of the impact, while sediment remains suspended, is related to its light attenuation, which reduces visual range in water and light availability for photosynthesis. Thus measurement of the optical attributes of suspended matter in many instances is more relevant than measurement of its mass concentration. Nephelometric turbidity, an index of light scattering by suspended particles, has been widely used as a simple, cheap, instrumental surrogate for suspended sediment, that also relates more directly than mass concentration to optical effects of suspended matter. However, turbidity is only a relative measure of scattering (versus arbitrary standards) that has no intrinsic environmental relevance until calibrated to a ‘proper’ scientific quantity. Visual clarity (measured as Secchi or black disc visibility) is a preferred optical quantity with immediate environmental relevance to aesthetics, contact recreation, and fish habitat. Contrary to common perception, visual clarity measurement is not particularly subjective and is more precise than turbidity measurement. Black disc visibility is inter‐convertible with beam attenuation, a fundamental optical quantity that can be monitored continuously by beam transmissometry. Visual clarity or beam attenuation should supplant nephelometric turbidity in many water quality applications, including environmental standards. 相似文献
93.
Wetland use by waterbirds is highly dependent on water depth, and depth requirements generally vary among species. Furthermore, water depth within wetlands often varies greatly over time due to unpredictable hydrological events, making comparisons of waterbird abundance among wetlands difficult as effects of habitat variables and water depth are confounded. Species-specific relationships between bird abundance and water depth necessarily are non-linear; thus, we developed a methodology to correct waterbird abundance for variation in water depth, based on the non-parametric regression of these two variables. Accordingly, we used the difference between observed and predicted abundances from non-parametric regression (analogous to parametric residuals) as an estimate of bird abundance at equivalent water depths. We scaled this difference to levels of observed and predicted abundances using the formula: ((observed − predicted abundance)/(observed + predicted abundance)) × 100. This estimate also corresponds to the observed:predicted abundance ratio, which allows easy interpretation of results. We illustrated this methodology using two hypothetical species that differed in water depth and wetland preferences. Comparisons of wetlands, using both observed and relative corrected abundances, indicated that relative corrected abundance adequately separates the effect of water depth from the effect of wetlands. 相似文献
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Cape JN 《Environmental pollution (Barking, Essex : 1987)》2008,155(3):391-397
The effects of ozone and other photochemical oxidants on individual trees have been studied for several decades, but there has been much less research on the potential effects on entire forest ecosystems. Given that ozone and other oxidants affect the production and subsequent fate of biogenic volatile organic compounds that act as signalling molecules, there is a need for more detailed study of the role of oxidants in modifying trophic interactions in forests. Deposition of fine particulates to forests may act as a source of nutrients, but also changes leaf surface properties, increasing the duration of surface wetness and modifying the habitat for epiphytic organisms, leading to increased risks from pathogens. Even where this pathway contributes a relatively small input of nutrients to forests, the indirect effects on canopy processes and subsequent deposition to the forest floor in throughfall and litter may play a more important role that has yet to be fully investigated. 相似文献
97.
为深入研究极近距离煤层综放开采工作面覆岩“两带”的动态发育规律,采用理论推导、数值模拟和现场实测相结合的方法,分析袁店一矿824工作面覆岩“两带”的裂隙演化特征。结果表明:从岩层层向拉伸率角度,研究上覆岩层垮落带和导水裂隙带的垮落程度,考虑角度影响推导出岩层弯曲下沉边缘段变形前后的长度计算公式,根据覆岩的碎胀特征计算各岩层的最大下沉量,预测垮落带和裂隙带的范围分别为30.2~41.2 m和70.7~78.2 m;采用3DEC数值模拟分析该矿824工作面开挖后上覆岩层垮落的基本形态和裂隙分布规律,结合其应力、位移云图和监测线位移曲线的分布特征,得出垮落带和裂隙带的高度分别为32.50 m和77.25 m;采用分布式光纤应变监测系统,监测工作面前方80 m处上部顶板的受力情况,得出受采动影响的光纤应变呈起伏变化,且应变分布与地层岩性存在对应关系,得出垮落带高度约30.4 m,裂隙带高度约74.8 m,验证采用层向拉伸率和覆岩碎胀性2个方面来预测工作面覆岩“两带”高度的合理性,可为类似方面的研究与施工提供相应的技术依据。 相似文献
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99.
为研究火灾中植筋连接构件的抗火性能,进行了35个化学植筋试件在不同温度下(25~200°C)的拉拔试验以及12个植筋连接混凝土构件的受火试验。拉拔试验重点研究了植筋胶的粘结力随温度变化的规律,以及不同温度下植筋胶的粘结—滑移关系,结果表明:随着温度升高,植筋胶的粘结力显著下降。植筋构件的受火试验中,考虑了植筋深度(15d,20d,d为钢筋直径)和保护层厚度(25、40、60mm)两种影响因素。首先对6个试件按ISO834标准升温曲线升温(荷载为常温下植筋构件设计承载力的10%),到指定时间后,加载至构件破坏失效,结果表明:植筋深度和保护层厚度对火灾中植筋连接构件的极限承载力均有重要影响。其后进行了6个构件的恒载升温试验(荷载为常温下常规植筋构件设计承载力的80%),直至构件破坏,结果表明:当保护层厚度小于40mm时,植筋深度和保护层厚度对耐火极限均有重要影响;当保护层厚度大于40mm时,对耐火极限的影响植筋深度要大于保护层厚度。 相似文献
100.
通过对南海水域多个区域不同深度的海水分别以H2、Na2S2O3、Na NO2为电子供体经过一定时间的驯化培养后,测定其中非光合微生物的固碳潜力,并统计南海水域不同深度非光合微生物在不同电子供体条件下固碳潜力的差异性,最后结合不同深度海水的主要固碳基因丰度差异,分析南海水域不同深度海洋非光合微生物在不同电子供体条件下固碳潜能差异的原因.结果发现以Na NO2为电子供体时,海洋非光合微生物固碳能力普遍较低,各深度之间没有显著差异;以H2为电子供体时,表层海水中的非光合微生物的固碳潜力显著高于深层海水中的;而以Na2S2O3为电子供体时,深层海水中的非光合微生物的固碳潜力显著高于表层海水中的.基因分析结果表明,固碳基因cbb L在表层海水中的丰度高于深层海水,而cbb M基因在深层海水中的丰度高于表层海水.硫细菌大多以拥有cbb M基因为主,而氢细菌大多以拥有cbb L基因为主.因此不同海洋深度非光合微生物对不同电子供体响应的差异性可能和优势菌群结构的差异有关.海洋表层和深层溶解氧、无机碳含量的差异是导致菌群结构差异,乃至固碳潜力差异的重要原因. 相似文献