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Atmospheric aerosols are an important contributing factor to turbidity in urban areas besides having impact on health. Aerosol characteristics show a high degree of variability in space and time as anthropogenic share of total aerosol loading is quite substantial and is essential to monitor the aerosol features over long time scales. In the present study extensive observations of columnar aerosol optical depth (AOD), total columnar ozone (TCO) and precipitable water content (PWC) have been carried over a tropical urban city of Hyderabad, India. Significant variations of AOD have been observed during course of the day with low values of AOD during morning and evening hours and high values during afternoon hours. Spectral variation of AOD exhibits high AOD at smaller wavelengths and vice versa except a slight enhancement in AOD at 500 nm. Anomalies in AOD, particulate matter and black carbon concentrations have been observed during May, 2003. Back trajectory analysis of air mass during these episodes suggested variation in air mass trajectories. Analysis of the results suggests that air trajectories from land region north of study area cause high loading of atmospheric aerosols. The results are discussed in the paper.  相似文献   
3.
In this paper,the relationship among land productivity,population pressure and the fluctuation mechanism of ecotone is analyzed,taking coumties and banners of southeast Inner Mongolia plateau as an example,which is the most fragile part in the farming and husbandry interleaving belt of north China due to its severe desertification degree and low level of economic development.The Cv for the total output value of agriculture decreases from southeast to northwest,with the same rule as which the overloading population cumulated distributes,and both indicators have close relation with the high linear coefficient of 0.83.These reveal the fluctuation mechanism for ecotone:fluctuation of the level of economic development is a scientific and practical measure both to weakness degree and to instability of ecotone,because it is a synthesized response to the variation of climate as well as irrational land uses,which reinforce and magnify the fluctuation.In detail,the heavier the population overloading,the severer the grassland reclamation,the stronger the dependence of regional productivity on rainfall,the lower the level of economic development,the rougher the fluctuation of ecotone,but the weaker the PRED system.  相似文献   
4.
生物砂滤池对有机物和氨氮的去除   总被引:3,自引:0,他引:3  
当在常规工艺前加生物预处理并取消预加氯时,砂滤池就成为生物砂滤池。与普通砂滤池相比其对有机物、氨氮和浊度的去除率都有很大的提高。实验以珠江源水为水源研究了生物砂滤池对高锰酸盐指数、NH3-N、NO2--N和浊度的去除,在实验期间生物砂滤池出水高锰酸盐指数、NH3-N、浊度平均值分别为1.32mg/L、0.098mg/L、0.171NTU,其相对于沉淀池出水的高锰酸盐指数、NH3-N、浊度的平均去除率分别为18.52%、72.93%、64.45%,而砂滤池出水NO2--N几乎检测不出来。滤池进水与出水溶解氧的变化也证明了砂滤池中生物的存在,并且生长状况良好。  相似文献   
5.
草坪作为城市绿地的重要组成部分,其温室气体的吸收或排放不容忽视.然而当前对亚热带城市草坪温室气体通量的研究相对匮乏.采用静态箱-气相色谱法,对杭州市城区典型城市草坪的多种温室气体(CO2、CH4、N2O和CO)地气交换通量进行了连续观测研究.结果表明,城市草坪的温室气体月平均通量变化明显,而其日变化特征并不明显.城市草地和土壤(无植被生长的裸土)是大气N2O的源,平均通量分别为(0.66±0.17)μg·(m2·min)-1和(0.58±0.20)μg·(m2·min)-1;是CH4和CO的汇,其中CH4平均通量分别为(-0.21±0.078)μg·(m2·min)-1和(-0.26±0.10)μg·(m2·min)-1,CO分别为(-6.36±1.28)μg·(m2·min)-1和(-6.55±1.69)μg·(m2·min)-1.城市草地和土壤CO2平均通量分别为(5.28±0.75) mg·(m2·min)-1和(4.83±0.91) mg·(m2·min)-1.基于相关性分析研究发现,草地和土壤的CO2和N2O通量均与降水量呈显著的负相关,而CH4和CO通量与降水量呈显著的正相关;除草地CH4通量与土壤温度无显著相关、草地N2O通量与土壤温度呈显著负相关外,其余各温室气体通量与土壤温度均呈显著正相关.另外,城市草坪的草地和土壤CO2R2为0.371和0.314)和N2O (R2为0.371和0.284)通量季节变化受降水量的影响要大于其它温室气体,而土壤温度对CO通量的影响(R2为0.290和0.234)要显著于其它温室气体.  相似文献   
6.
活性硅酸聚合硫酸铁的研究   总被引:12,自引:0,他引:12  
以硅酸钠,硫酸和聚合硫酸铁为原料制备活性硅酸合硫酸铁,测定了ASPFS红外光谱,了Fe/Si摩尔比和水样PH值等因素对产品和除浊效果的影响当Fe/Si摩尔比为1.5时产品稳定性和除浊效果均较好。  相似文献   
7.
The turbidity variation in artificial water and samples from a water plant was investigated in the presence of organics with different relative molecular mass. The results show that recessive turbidity existed when water chemical conditions were changing. The formation of turbidity depended on organic relative molecular mass and their conformations on particles. At higher pH and lower ionic strength, the organic chains with a more extended conformation resulted in rising turbidity of the suspension. At lower pH, the reconformation of organics took place due to charge neutralization by the proton, resulting in a decline in turbidity. The addition of NaCl and MgCl2 at pH 7.00 also resulted in a decrease of turbidity in the suspension. It is believed that the occurrence of recessive turbidity has a significant influence on the stability of water supply quality.  相似文献   
8.
用电凝聚法处理轧制乳化废水,探讨了影响破乳的各种因素,确定了最佳处理条件。研究结果表明:该法处理轧制乳化废水的效果很好,浊度去除率可达99.6%,COD去除率达99.5%。此外,还发现电凝聚法的处理效果优于药剂絮凝法。  相似文献   
9.
台风湍流积分尺度与脉动风速谱——基于实测数据的分析   总被引:8,自引:0,他引:8  
基于4个台风过程中的长时间序列风速、风方向观测数据,分析研究了近地台风的湍流积分尺度和脉动风速谱等脉动特性。介绍了湍流积分尺度的几种常见的计算方法,基于实测台风数据,分析研究了台风过程中湍流积分尺度的变化以及不同计算方法的稳定性。根据实测数据计算了纵向脉动风速谱,并与Von-Karman谱、Davenport谱、Simiu谱和Harris谱等经验谱进行了比较,给出了最适合描述台风纵向脉动风速谱的经验谱。还计算了横向脉动风速功率谱,并与基于各向同性湍流理论推导出的水平横向脉动风速谱进行了对比。  相似文献   
10.
Anthropogenic environmental impacts can disrupt the sensory environment of animals and affect important processes from mate choice to predator avoidance. Currently, these effects are best understood for auditory and chemosensory modalities, and recent reviews highlight their importance for conservation. We examined how anthropogenic changes to the visual environment (ambient light, transmission, and backgrounds) affect visual communication and camouflage and considered the implications of these effects for conservation. Human changes to the visual environment can increase predation risk by affecting camouflage effectiveness, lead to maladaptive patterns of mate choice, and disrupt mutualistic interactions between pollinators and plants. Implications for conservation are particularly evident for disrupted camouflage due to its tight links with survival. The conservation importance of impaired visual communication is less documented. The effects of anthropogenic changes on visual communication and camouflage may be severe when they affect critical processes such as pollination or species recognition. However, when impaired mate choice does not lead to hybridization, the conservation consequences are less clear. We suggest that the demographic effects of human impacts on visual communication and camouflage will be particularly strong when human‐induced modifications to the visual environment are evolutionarily novel (i.e., very different from natural variation); affected species and populations have low levels of intraspecific (genotypic and phenotypic) variation and behavioral, sensory, or physiological plasticity; and the processes affected are directly related to survival (camouflage), species recognition, or number of offspring produced, rather than offspring quality or attractiveness. Our findings suggest that anthropogenic effects on the visual environment may be of similar importance relative to conservation as anthropogenic effects on other sensory modalities.  相似文献   
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