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151.
应用遥感技术监测和评价太湖水质状况 总被引:46,自引:4,他引:46
利用遥感信息和有限的实地监测数据建立了太湖水质参数预测模型 ,该方法可以用于太湖水质污染的预测、分析和评价 ,能够较好地反映水质的空间分布特征 ,尤其适合于大范围水域的快速监测 .研究结果表明 ,利用单波段、多波段因子组合以及主成分分析等手段可以使遥感信息得到更充分的利用 ,从而使预测结果更加精确 .预测结果显示 ,太湖流域已经呈现了严重的富营养化趋势 ,且空间分布不均衡 .东太湖以及靠近无锡和苏州的湖体附近相对污染更为严重 . 相似文献
152.
153.
Mobilization and plant accumulation of prometryne in soil by two different sources of organic matter
Prometryne is a selective herbicide of the s-triazine chemical family. Due to its weak absorption onto soil, it readily leaches down through the soil and contaminates underground water. Application of organic manure to soil has become a widespread practice as a disposal strategy to improve soil properties. In this study, we demonstrated the effect of pig manure compost (PMC) and lake-bed sludge (SL) on the sorption/desorption, mobility and bioavailability of prometryne in soil using comprehensive analysis approaches. Downward movement of prometryne was monitored in the packed soil column. Addition of PMC or SL decreased considerably the mobility and total concentration of prometryne in the soil leachate. Bioavailability analyses with wheat plants revealed that addition of the organic matter reduced accumulation of prometryne in tissues and increased plant elongation and biomass. These results indicate that the organic amendments are effective in modifying adsorption and mobility of the pesticide in soil. 相似文献
154.
155.
宁南黄土高原不同土地利用模式对土壤的影响研究 总被引:5,自引:3,他引:5
宁南黄土高原采取退耕、还林、还草措施5年后,区域局部生态环境发生了较大变化。文章针对退耕后的典型土地利用方式,阐述了自然撂荒坡地、柠条(CaraganakorshinskiiKom.)灌木林地、坡耕地产生的土壤水热、养分效应,其结果对减少宁南黄土高原土壤养分流失、提高土地生产力和合理农业布局具有重要的意义。利用径流小区试验方法,研究结果表明:不同土地利用方式下土壤储水量的变化为单峰型,与雨量峰值相比,对应储水量略有滞后现象。土壤储水量整体表现为农耕地>自然荒坡>柠条林地。受植被类型影响,坡面土层温度为荒坡草地>柠条林地>农地。随坡度增加,自然荒坡土壤有机质有降低的趋势,相同坡度下(25°)自然荒坡土壤有机质平均为12.76g/kg,是农耕地、柠条林地的1.2倍和1.94倍。在3种土地利用方式下,全磷含量没有明显差异,坡耕地土壤速效磷、速效钾含量较高,柠条林地和自然荒坡速效磷、速效钾含量没有明显差异。不同土地利用方式下,Ca-P(钙结合态的磷酸盐)占无机磷总量的比例,达29.6%~59.07%,O-P(闭蓄态磷酸盐)最少,仅占4.73%~22.45%。土壤过氧化氢酶、与土壤全氮、有机质、碱解氮呈显著正相关。 相似文献
156.
乌鲁木齐市水上乐园沉积物中重金属污染调查 总被引:1,自引:0,他引:1
分析测定了水上乐园库底沉积物表层(煤灰层)、中层(粉土层)、底层(风化层)中Pb、Cu、Cd、Zn、Hg、As6种元素含量,并对水上乐园沉积物中重金属污染状况进行评价。 相似文献
157.
分析了毛细饱水带的水动力学特性,指出在地下水污染研究中,污染物在毛细饱和水带和潜水怪具有相同的水平运动规律,并以实例分析说明该带对污染物运移的重要性。建议在研究和一非饱和条件地下水及污染物运动问题时把毛细饱水带与潜水含水层统一为饱马毛细饱水带顶面作为饱水面。 相似文献
158.
马贺 《中国环境管理干部学院学报》2008,18(1):26-28,35
建设绿色企业文化是秦皇岛港实现绿色发展的前提,对港口的发展有深远的意义和重要作用.秦皇岛港应从强化领导意识、提高职工素质、完善绿色制度体系、构建绿色企业形象等方面入手建设港口绿色企业文化. 相似文献
159.
Zhao Xuxin Ji Jie Sun Hongyuan Ma Rui Wu Qixing 《International Journal of Green Energy》2016,13(3):229-240
The heat-pipe solar water heating (HP-SWH) system and the heat-pipe photovoltaic/thermal (HP-PV/T) system are two practical solar systems, both of which use heat pipes to transfer heat. By selecting appropriate working fluid of the heat-pipes, these systems can be used in the cold region without being frozen. However, performances of these two solar systems are different because the HP-PV/T system can simultaneously provide electricity and heat, whereas the HP-SWH system provides heat only. In order to understand these two systems, this work presents a mathematical model for each system to study their one-day and annual performances. One-day simulation results showed that the HP-SWH system obtained more thermal energy and total energy than the HP-PV/T system while the HP-PV/T system achieved higher exergy efficiency than the HP-SWH system. Annual simulation results indicated that the HP-SWH system can heat the water to the available temperature (45°C) solely by solar energy for more than 121 days per year in typical climate regions of China, Hong Kong, Lhasa, and Beijing, while the HP-PV/T system can only work for not more than 102 days. The HP-PV/T system, however, can provide an additional electricity output of 73.019 kWh/m2, 129.472 kWh/m2, and 90.309 kWh/m2 per unit collector area in the three regions, respectively. 相似文献
160.
Morey Burnham Zhao Ma Joanna Endter‐Wada Tim Bardsley 《Journal of the American Water Resources Association》2016,52(6):1366-1384
In the Wasatch Range Metropolitan Area of Northern Utah, water management decision makers confront multiple forms of uncertainty and risk. Adapting to these uncertainties and risks is critical for maintaining the long‐term sustainability of the region's water supply. This study draws on interview data to assess the major challenges climatic and social changes pose to Utah's water future, as well as potential solutions. The study identifies the water management adaptation decision‐making space shaped by the interacting institutional, social, economic, political, and biophysical processes that enable and constrain sustainable water management. The study finds water managers and other water actors see challenges related to reallocating water, including equitable water transfers and stakeholder cooperation, addressing population growth, and locating additional water supplies, as more problematic than the challenges posed by climate change. Furthermore, there is significant disagreement between water actors over how to best adapt to both climatic and social changes. This study concludes with a discussion of the path dependencies that present challenges to adaptive water management decision making, as well as opportunities for the pursuit of a new water management paradigm based on soft‐path solutions. Such knowledge is useful for understanding the institutional and social adaptations needed for water management to successfully address future uncertainties and risks. 相似文献