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1.
采用自主设计的生物质燃烧实验装置,在不同燃烧状态(明燃、阴燃)下,对大兴安岭林区5种典型乔木树种的不同部位(枝、叶、皮)燃烧释放PM2.5中的水溶性元素特性进行研究.结果显示,不同树种间PM2.5的排放因子差异显著,排放范围为(2.408±0.854)~(9.227±1.172)g/kg.5种乔木树种燃烧释放PM2.5中主要检测到Mg、Ca、K等16 种元素,其中Ca、K、Zn、Mg 4种元素的排放因子明显大于其它元素.不同树种间元素排放因子差异较大,针叶树的排放因子一般高于阔叶树.除Cd元素外,不同器官间排放的元素总量无明显差异.不同树种不同器官燃烧释放PM2.5中水溶性元素的占比顺序较为一致,其中Ca、K、Zn和Mg 4种元素的排放因子在枝、叶、皮中均较高.此外,燃烧状态对元素排放特征影响较大,Li、Mg、Ca等7种元素的排放因子均表现为明燃显著高于阴燃.  相似文献   
2.
Nahanni National Park Reserve is located at southwestern NWT-Yukon border. One of the first UNESCO World Heritage sites, Nahanni lies within Taiga Cordillera and Taiga Shield Ecozones. Base and precious metal mining occurred upstream of Nahanni prior to park establishment. Nahanni waters, sediments, fish, and caribou have naturally elevated metals levels. Baseline water, sediment and fish tissue quality data were collected and analyzed throughout Nahanni during 1988–91 and 1992–97. These two programs characterized how aquatic quality variables are naturally varying in space and time, affected by geology, stream flow, seasonality, and extreme meteorological and geological events. Possible anthropogenic causes of aquatic quality change were examined. Measured values were compared to existing Guidelines and site-specific objectives were established.  相似文献   
3.
对沈阳张士污灌区大气、水、土壤和生物各分室中Cd的库存量和各分室间Cd的循环通量进行了研究,建立了土壤-水稻系统中Cd流分室模型。该模型表明,Ⅱ闸和Ⅲ闸地区土壤分室中Cd的库存增量均为正值。可见,该污灌区近年来Cd污染程度由于污水灌溉仍然处于加剧的趋势。研究最后指出,该污灌区Cd的污染防治对策主要是减少污水灌溉量、进一步降低灌溉水中Cd的浓度和通过富Cd植物收获带走Cd.其中,以野生苋的收获带走Cd最有意义,它可使Ⅱ闸和Ⅲ闸地区Cd的下降速率分别依次达到29.49和22.81mg/(m ̄2·a)。  相似文献   
4.
海洋中丙烯酸的研究进展   总被引:1,自引:0,他引:1  
丙烯酸是海洋中的短链脂肪酸,是海洋中主要含硫化合物DMSP(dimethylsulfoniopropionate,β-二甲基巯基丙酸内盐)裂解的产物之一。本文综述了海洋中丙烯酸的来源、性质、在海洋中的作用以及海水中丙烯酸的测定方法。通过观测海水中丙烯酸的含量、分布及生物地球化学循环过程,有助于了解丙烯酸对海洋生态系统碳循环和硫循环的贡献。并对海洋中丙烯酸的进一步研究提出了展望。  相似文献   
5.
Speiran, Gary K., 2010. Effects of Groundwater-Flow Paths on Nitrate Concentrations Across Two Riparian Forest Corridors. Journal of the American Water Resources Association (JAWRA) 46(2):246-260. DOI: 10.1111/j.1752-1688.2010.00427.x Abstract: Groundwater levels, apparent age, and chemistry from field sites and groundwater-flow modeling of hypothetical aquifers collectively indicate that groundwater-flow paths contribute to differences in nitrate concentrations across riparian corridors. At sites in Virginia (one coastal and one Piedmont), lowland forested wetlands separate upland fields from nearby surface waters (an estuary and a stream). At the coastal site, nitrate concentrations near the water table decreased from more than 10 mg/l beneath fields to 2 mg/l beneath a riparian forest buffer because recharge through the buffer forced water with concentrations greater than 5 mg/l to flow deeper beneath the buffer. Diurnal changes in groundwater levels up to 0.25 meters at the coastal site reflect flow from the water table into unsaturated soil where roots remove water and nitrate dissolved in it. Decreases in aquifer thickness caused by declines in the water table and decreases in horizontal hydraulic gradients from the uplands to the wetlands indicate that more than 95% of the groundwater discharged to the wetlands. Such discharge through organic soil can reduce nitrate concentrations by denitrification. Model simulations are consistent with field results, showing downward flow approaching toe slopes and surface waters to which groundwater discharges. These effects show the importance of buffer placement over use of fixed-width, streamside buffers to control nitrate concentrations.  相似文献   
6.
Changes in the species composition and a decrease in species diversity and total plant biomass along the gradient of soil pollution with heavy metals have been shown. Data on the concentrations of chemical elements (Zn, Cu, Cd, Pb, Co, Ni, Mn, Cr, and Fe) in the aboveground organs of herbaceous plants and the biomass of each species make it possible to estimate the role of higher producers in the incorporation of chemical elements into biogenic cycles in background zones and under conditions of chemical pollution. Plants of the composite family (Asteraceae) play the main role in accumulation of chemical elements. The results obtained indicate that natural ecosystems have mechanisms limiting excessive accumulation of chemical elements into the aboveground plant biomass.  相似文献   
7.
对沈阳张土污灌区大气、水、土壤和生物各分室中Cd的库存量和各分室间Cd的循环通量进行了研究,建立了土壤水稻系统中Cd流分室模型,该模型表明,Ⅱ闸和Ⅲ闸地区土壤分室中Cd的库存增量均为正值。可见,该污灌区近年来Cd污染程度由于污水灌溉仍然处于加剧的趋势,研究最后指出,该污灌区Cd的污染防治对策主要是减少污水灌溉量、进一步降低灌溉水中Cd的浓度和通过富Cd的下降速率分别依次达到29.49和22.81m  相似文献   
8.
SUMMARY

Ecology has developed from its position as an obscure science to being at the interface of science and public policy. The impact of mankind can be described in ecological terms relating to population size, energy use and non-renewability. Sustainable development needs to be addressed on the basis of knowledge of ecological processes which maintain the environment in a state of change; the processes need to be conserved, not maintained in any particular state. Recent advances in the understanding of ecological processes are reviewed to highlight the potential contribution of this knowledge to the development of a sustainable policy. At the level of the population the significance of considering the extinction risks in the framework of spatio-temporal dynamics is now established indicating opportunities for planning land use more precisely to sustain biodiversity. Whilst the maintenance of habitats is generally the key to the persistence of biodiversity, they must be viewed as ever-changing mosaics within which cycles of succession, best described by Markovian sets of probabilities, are occurring continually. The extent to which these probabilities are distorted will determine whether the ecosystem returns to the same system or moves to a novel one. At the global level, biogeochemical cycles have a certain flexibility in relation to fluxes and stocks, hence pollution must be defined by relating the flow rate of the substance to this flexibility, which often permits the accommodation of anthropogenic perturbations. Non-sustainable processes can be defined in ecological terms, thus providing functional definitions of a sustainable policy and of sustainable development.  相似文献   
9.
It is important for humans to live in harmony with ecosystems. Evaluation of ecosystem services (ES) may be helpful in achieving this objective. In Japan, forest ecosystems need to be re-evaluated to prevent their degradation due to lack of forest management.In order to evaluate the effects of forest management on forest ES, we developed a process-based biogeochemical model to estimate water, carbon, and nitrogen cycles in forest ecosystems (BGC-ES). This model consists of four submodels: biomass, water cycle, carbon-nitrogen (CN) cycles, and forest management. The biomass submodel can calculate growth of forest biomass under forest managements.Several parameters of the model were calibrated using data from observations of evapotranspiration flux and quality of stream flow in forests. The model results were compared with observations of runoff water from a dam catchment site and with carbon flux observations.Our model was coupled with a basin-level GIS database of forests. Evaluations under various forest management scenarios were carried out for forests in a basin contained in the Ise Bay basin (Chubu region, Japan), where plantations (artificial forests) seemed to have degraded from poor forest management.Comparing our simulation results with those of forests without management in the basin, we found that the amounts of absorbed carbon and runoff were larger in managed forests. In addition, the volume of harvested timber was larger and its quality (diameter) was better in managed forests. Changes of ES within the various scenarios were estimated for their economic value and were compared with the cost of forest management.  相似文献   
10.
依据1998—2006年18个航次13个站的调查资料,简要描述和分析了大鹏湾表层沉积物中包括碳、氮、磷的多项生物地球化学要素多年的平均空间分布和年际变化,并依据TOC/TN原子比探讨沉积物中有机质的来源.结果表明,大鹏湾的水动力条件对沉积物中各生物地球化学要素的分布变化影响不大,TOC、TN和TP含量分别为(17600±4600) mg·kg-1、(1738±446) mg·kg-1和(562±89) mg·kg-1,比珠江口和大亚湾高.9年调查期间,TOC、TC、TN和TP含量的年际变化趋势都是上升的,表明随着周边地区经济的迅速发展和人口的不断增加,产生的大量有机质通过小河流和地表径流排放入海,使大鹏湾中沉积物的环境逐渐恶化.TOC/TN原子比为12.4±2.5,介于海洋浮游生物源和陆生高等植物源之间,反映了大鹏湾表层沉积物中有机质是陆源和水生2种来源的混合输入.TOC/TN原子比呈逐年上升趋势,表明大鹏湾接受陆源有机质与水生有机质的比例逐渐增加.  相似文献   
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