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101.
天津环境空气SO2的年均浓度始终超过国家二级标准。年均浓度超标主要因为采暖期SO2浓度过高所至,采暖期SO2平均浓度是非采暖期浓度的3倍左右;在2002--2005年的三个采暖期里,SO2污染逐年加重,导致了年均SO2浓度的逐年升高。天津SO2污染与采暖期增多的低烟囱排放、不利的气象条件有关,也与流动源的隐性排放、能源利用效率低下有关。结合天津经济发展速度、每年煤耗增量、现有环境治理手段来做预测,空气SO2浓度要在未来几年内达到国家二级标准仍是不可能的。 相似文献
102.
生活污水回用作循环冷却水补充水处理方案的研究 总被引:2,自引:0,他引:2
分析了自来水及经膜生物反应器处理后的生活污水的水质指标,计算了水质判断指数,结果表明两者均为腐蚀性水质。通过静态缓蚀实验筛选合理的药剂,结果表明HEDP,ATMP,PBTCA的最高缓蚀率均高达90%以匕,HEDP,PBTCA与Zn^2+复配的协同效果较好,复配后最高缓蚀率提高到98%以上。研究了考虑阻垢问题时的水处理药剂配方,通过正交试验筛选出最佳药剂浓度配方为:T-325:PBTCA:Zn^2+=8:4:3。 相似文献
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2002年我国事故与灾害状况综述 总被引:3,自引:36,他引:3
本对我国2002年的安全生产事故及自然灾害情况进行了总结和评述。包括火灾(城乡火灾、森林火灾、草原火灾)、天气气候特征、农业自然灾害(干旱、洪涝、风雹、低温冻害)、海洋灾害(风暴潮、赤潮、海浪)、地质灾害(地震、泥石流、水土流失)等。 相似文献
105.
自然灾害变动的集成预测模型及其应用 总被引:7,自引:2,他引:7
本文提出了以非线性回归拟合发展趋势、正弦函数逼近周期变动和马尔可夫链刻划随机扰动的集成预测模型,并应用于山东省农业自然灾害成灾面积的变动规律模拟,得到了较好的预测效果。理论和实践表明,集成预测模型优于传统的单模型预测,为预测具有复杂机制的自然灾害演变提供了一种新方法。 相似文献
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Aida Mendez Gary R. Sands Berangere Basin Chang‐Xing Jin Paul J. Wotzka 《Journal of the American Water Resources Association》2004,40(2):385-400
ABSTRACT: Surface and subsurface drainage make crop production economically viable in much of southern Minnesota because drainage allows timely field operations and protects field crops from extended periods of flooded soil conditions. However, subsurface drainage has been shown to increase nitrate/nitrogen losses to receiving waters. When engaging in drainage activities, farmers are increasingly being asked to consider, apart from the economic profit, the environmental impact of drainage. The Agricultural Drainage and Pesticide Transport model (ADAPT) was used in this study to evaluate the impact of subsurface drainage design on the soil water balance over a two‐year period during which observed drainage discharge data were available. Twelve modeling scenarios incorporated four drainage coefficients (DC), 0.64 cm/d, 0.95 cm/d, 1.27 cm/d, and 1.91 cm/d, and three drain depths, 0.84 m, 1.15 m, and 1.45 m. The baseline condition corresponded to the drainage system specifications at the field site: a drain depth and spacing of 1.45 m and 28 m, respectively (DC of 0.64 cm/d). The results of the two‐year simulation suggested that for a given drainage coefficient, soils with the shallower drains (but equal DC) generally have less subsurface drainage and can produce more runoff (but reduced total discharge) and evapotranspiration. The results also suggested that it may be possible to design for both water/nitrate/nitrogen reduction and crop water needs. 相似文献
110.
There are growing interests to use co-composted drilling wastes contaminated with hydrocarbons as growth media for planting in land reclamation. However, such use of the compost may have potential problems such as inherent toxicity of residual hydrocarbon and microbial N immobilization due to high compost C to N ratios. We investigated the growth, biomass production, N uptake, and foliar delta13C of white spruce (Picea glauca [Moench] Voss) seedlings in a pot experiment using 1-, 2-, 3-, and 4-yr-old composts (with different hydrocarbon concentrations and C to N ratios) and a local noncontaminated soil with (200 kg N ha(-1)) or without N fertilization. Growth and N content of seedlings (particularly N content in roots) were lower when grown in the compost media as compared with those grown in the soil. Within the compost treatments seedling growth was affected by compost age, but the magnitude of growth reduction was not linearly proportional to hydrocarbon concentrations. Plant N uptake increased with compost age, which corresponds with an increase in indigenous mineral N concentration. Effects of N fertilization on N uptake were curtailed by the presence of indigenous mineral N (e.g., in the 4-yr-old compost) and by fertilization-induced stimulation of microbial activities (e.g., in the 1-yr-old compost). The differences in foliar delta13C values between seedlings grown in compost and soil (P < 0.05) suggest that limitations on water uptake caused by the residual hydrocarbon might have been the predominant factor limiting seedling growth in the compost media. This study suggests that water stress caused by residual hydrocarbons may be a critical factor for the successful use of co-composted drilling wastes as a growth medium. 相似文献