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701.
沂北水稻主产区田间土—水磷素流失潜能 总被引:2,自引:0,他引:2
选取嘉善、余姚、德清、余杭4个具有代表性浙北水稻主产区,研究了水田土-水磷素流失潜能及环境意义。4稻区高水平磷肥投入促进了土壤高磷化,土壤Olsen-P积累的同时,相应地提高了土壤生物性有效磷、水浸提磷,并提高了土壤磷素的流失潜能。稻区土壤在富磷化过程中,存在着土壤磷素的农学意义向环境意义方向演变的趋势。在非植稻期,稻区农田水体,包括沟渠水、田表水、排渠水、暗管排水等总磷(TP)平均超过了易诱发水体富营养化临界值,其中溶解磷(DRP)占总磷40%;主要是源于绿肥田表水及部分排渠中的溶解磷对稻区外水体构成了直接危害。在非植稻期,因稻区间农耕措施的差异导致了土壤富磷水平与对应田表水磷素水平不具相关性;在植稻期,施磷措施促进水田土壤富磷,相应地提高了田表水磷素水平。 相似文献
702.
近年来银川市冬季重污染过程频发,为明确银川市冬季PM2.5重污染的特征,分析其主要来源及成因,于2016年12月-2017年1月在银川市选取3个采样点开展PM2.5的样品采集与化学组分分析,利用CMB(化学质量平衡)模型对银川市冬季PM2.5进行来源解析,对比分析了重污染日与非重污染日污染特征的差异.结果表明:①银川市冬季重污染日ρ(PM2.5)[(181±33.6)μg/m3]是非重污染日的2.1倍;重污染日和非重污染日的ρ(NO3-)/ρ(SO42-)均小于1,表明燃煤仍是银川市冬季PM2.5的重要来源.银川市冬季PM2.5中ρ(SOC)为(14.4±7.34)μg/m3,约占ρ(OC)的65.2%.②与非重污染日相比,重污染日人为源无机元素As、Pb、Cd和Zn质量浓度在ρ(PM2.5)中的占比分别升高33.2%、18.4%、9.8%和2.9%,表明银川市冬季重污染主要受人为源贡献影响.③源解析结果表明,燃煤源、机动车尾气源、二次离子源和扬尘源是银川市PM2.5的主要污染源,与非重污染日相比,重污染日机动车尾气源的贡献率明显降低.研究显示,银川市冬季重污染受人为源污染物排放的影响较大,燃煤源是银川市冬季PM2.5的重要来源. 相似文献
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704.
It is widely accepted that urban plant leaves can capture airborne particles. Previous studies on the particle capture capacity of plant leaves have mostly focused on particle mass and/or size distribution. Fewer studies, however, have examined the particle density, and the size and shape characteristics of particles, which may have important implications for evaluating the particle capture efficiency of plants, and identifying the particle sources. In addition, the role of different vegetation types is as yet unclear. Here, we chose three species of different vegetation types, and firstly applied an object-based classification approach to automatically identify the particles from scanning electron microscope(SEM)micrographs. We then quantified the particle capture efficiency, and the major sources of particles were identified. We found(1) Rosa xanthina Lindl(shrub species) had greater retention efficiency than Broussonetia papyrifera(broadleaf species) and Pinus bungeana Zucc.(coniferous species), in terms of particle number and particle area cover.(2) 97.9% of the identified particles had diameter ≤10 μm, and 67.1% of them had diameter ≤2.5 μm. 89.8% of the particles had smooth boundaries, with 23.4% of them being nearly spherical.(3) 32.4%–74.1% of the particles were generated from bare soil and construction activities, and 15.5%–23.0% were mainly from vehicle exhaust and cooking fumes. 相似文献
705.
韩静 《中国环境管理干部学院学报》2011,(6):51-54
北镇生态市建设具有基础条件好、生态环境良好和旅游资源丰富等优势;同时也存在一些制约因素,如经济发展水平较低,城市基础设施不完善,农村面源污染较重,以及资金短缺等。通过分析北镇生态市建设的优势和制约因素,以期为其生态市创建工作提供参考。 相似文献
706.
707.
Influence of calcium chloride on the thermal behavior of heavy and alkali metals in sewage sludge incineration 总被引:2,自引:0,他引:2
In order to separate and reuse heavy and alkali metals from flue gas during sewage sludge incineration, experiments were carried out in a pilot incinerator. The experimental results show that most of the heavy and alkali metals form condensed phase at temperature above 600 degrees C. With the addition of 5% calcium chloride into sewage sludge, the gas/solid transformation temperature of part of the metals (As, Cu, Mg and Na) is evidently decreased due to the formation of chloride, while calcium chloride seems to have no significant influence on Zn and P. Moreover, the mass fractions of some heavy and alkali metals in the collected fly ash are relatively high. For example, the mass fractions for Pb and Cu in the fly ash collected by the filter are 1.19% and 19.7%, respectively, which are well above those in lead and copper ores. In the case of adding 5% calcium chloride, the heavy and alkali metals can be divided into three groups based on their conversion temperature: Group A that includes Na, Zn, K, Mg and P, which are converted into condensed phase above 600 degrees C; Group B that includes Pb and Cu which solidify when the temperature is above 400 degrees C; and Group C that includes As, whose condensation temperature is as low as 300 degrees C. 相似文献
708.
709.
710.
Black carbon (BC) is a promising sediment amendment, as proven by its considerable adsorption capacity for hydrophobic organic pollutants and accessibility, but its reliability when used for the removal of pollutants in natural sediments still needs to be evaluated. For example, the ageing process, resulting in changing of surface physicochemical properties of BC, will decrease the adsorption capacity and performance of BC when applied to sediment pollution control. In this study, how the ageing process and BC proportion affect the adsorption capacity of BC-sediment systems was modelled and quantitatively investigated to predict their adsorption capacity under different ageing times and BC additions. The results showed that the ageing process decreased the adsorption capacity of both BC-sediment systems, due to the blockage of the non-linear adsorption sites of BC. The adsorption capacity of rice straw black carbon (RC)-sediment systems was higher than that of fly ash black carbon (FC)-sediment systems, indicating that RC is more efficient than FC for nonylphenol (NP) pollution control in sediment. The newly established model for the prediction of adsorption capacity fits the experimental data appropriately and yields acceptable predictions, especially when based on parameters from the Freundlich model. However, to fully reflect the influence of the ageing process on BC-sediment systems and make more precise predictions, it is recommended that future work considering more factors and conditions, such as modelling of the correlation between the adsorption capacity and the pore volume or specific surface area of BC, be applied to build an accurate and sound model. 相似文献