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131.
传统农业区土地利用对土壤氮素季节动态变化的影响——以官厅水库上游延庆盆地为例 总被引:3,自引:0,他引:3
土地利用对土壤养分时空动态变化的影响,不仅影响到土壤中养分元素的利用效率,同时会影响到养分流失的危险性和区域非点源污染的形成。本文通过野外采样分析,按照不同时期对官厅水库上游延庆盆地内的玉米地、蔬菜地、果园、其他经济类用地的土壤全氮含量进行了测定;分析了不同农业用地影响下土壤氮素的季节动态变化特征和土壤垂直剖面变化。结果发现:(1)0~40cm是玉米地养分活跃层;蔬菜地的养分含量在0~10cm土层变化最剧烈;果园整个剖面上养分变化均较剧烈;其它经济用地在25~40cm土层养分变化较大;(2)果园和蔬菜地是研究区内养分活动最活跃的土地利用方式,蔬菜地的表层养分流失风险性最高,对于地表水和地下水具有很高的潜在影响;果园在整个剖面上养分变化较大,其发生养分的淋溶流失的风险性最高;玉米和其他经济用地养分变化不大。研究结果建议,传统农业区在开展农业结构调整时,尤其是将传统的农作物种植改为蔬菜地和果园时,必须加强对农田生态系统研究,实施严格的科学管理,提高养分的利用效率,降低对环境的影响。 相似文献
132.
对西南喀斯特地区2种不同建园方式柑橘园水土流失情况进行连续3a的定位监测,并研究了4种类型柑橘园土壤含水量的年动态变化。结果表明,2种不同建园方式柑橘园的土壤流失量逐年减少,坡地柑橘园的年径流系数大于梯地柑橘园;不同类型柑橘园土壤含水量与土壤层次、建园方式及柑橘园成土母质有关;柑橘园土壤含水量与月降雨量呈正相关,应在不同月份对柑橘园采取不同水分调控措施。 相似文献
133.
氯碱生产中,氯气系统压力不易控制,容易发生泄漏爆炸事故。为解决这一难题,保证安全生产,金川公司化工厂于1996年设计并安装了一套氯气压力自动检测调节系统,经过两年的实际使用,达到了稳定氯气系统压力的良好效果。 相似文献
134.
陕西省干旱灾害的农业风险评估 总被引:4,自引:1,他引:3
分析了陕西干旱发生的时空规律,以缺水率划分干旱标准,评价陕西各季农业干旱状况,并对1949~1990年共42a粮食产量序列进行滑动平均模拟,以粮食减产百分率评估全省干旱灾害等级,得出干旱损失评估模式,使陕西干旱灾害的评估由定性到定量,为其它灾害的定量评估提供了经验。 相似文献
135.
通过应用箱工模型,模拟研究了实施排放标准对大气环境质量的影响,分析讨论了实施2排放标准的技术经济可行性。得出如下结论:(1)重庆市实施大气二氧化硫污染物排放标准能基本满足在气环境质量减级标准的要求。(2)实施标准所需二氧化硫治理静态投资费用总额计26.369亿元。(3)实施标准减少环境污染损失6.440亿元。 相似文献
136.
Adaptation Options Strategies for Hazards and Vulnerability Mitigation: An International Perspective
C.?Emdad?HaqueEmail author Ian?Burton 《Mitigation and Adaptation Strategies for Global Change》2005,10(3):335-353
The broad objective of this special issue of Mitigation and Adaptation Strategies for Global Change is to address some of the gaps in our knowledge and understanding of the policies, programs, and measures that might be applied
to natural hazards and their impacts in an era of climate change. Given the global impacts of climate change and world-wide
pattern of increasing losses from natural hazards we necessarily adopt an international perspective. The specific goals of
the special issue are to: (a) encompass experiential aspects, emphasizing current practice of mitigation and its associated
measures, and their results; and (b) explore primary or root causes of alarming shifts in human and economic costs of environmental
extremes. Special emphasis is placed on how human activities are playing a key role in enhancing vulnerability to NTEE (nature-triggered
environmental extremes), quite independently from the anthropogenic causes of climate change. The goals are also (c) to examine
costs, risks, and benefits (of all kinds including social, political, ecological) of mitigation, and adjustment and adaptation
measures; and (d) analyze policy implications of alternative measures. These components are expected to make significant contributions
to policy considerations – formulation, implementation and evaluation. There is much uncertainty about the rate of climate
change; however, the fact of increase of the atmospheric temperature in the last century is no longer a subject of scientific
or policy debate. Due to such changes in the geophysical parameters, certain types of nature-triggered environmental extreme
events are likely to continue to increase. How global warming will affect regional climates and pertinent variables is not
well known, limiting our ability to predict consequential effects. This factor poses serious constraints against any straightforward
policy decisions. Research findings of the work of this volume reaffirm that human dimensions, specifically our awareness
and decision-making behavior, are powerful explanatory factors of increasing disaster losses. Disaster mitigation through
addressing human, social, and physical vulnerability is one of the best means for contributing to ‘climate change adaptation
plans’, and sustainable development goals. Recent lessons from various countries have depicted that the formulation of mitigation
strategies cannot be exclusively top-down as it requires social, political, and cultural acceptance and sense of ownership.
An interactive, participatory process, involving local communities, produces best expected outcomes concerning mitigation,
preparedness, and recovery. An emerging consensus is that there is a need to move towards the ‘mission’ of the International
Strategy for Disaster Reduction which aims at building disaster resilient communities by promoting increased awareness of
the importance of disaster reduction as an integral component of sustainable development, with the goal of reducing human,
social, economic and environmental losses due to natural hazards and related technological and environmental disasters. Sharing
of best practices and lessons globally is certain to produce more efficiency and understanding in policy and decision making. 相似文献
137.
138.
Stable hydrogen isotopes of two chlorinated solvents, trichloroethylene (TCE) and 1,1,1-trichloroethane (TCA), provided by five different manufacturers, were determined and compared to their carbon and chlorine isotopic signatures. The isotope ratio for delta2H of different TCEs ranged between +466.9 per thousand and +681.9 per thousand, for delta13C between -31.57 per thousand and -27.37 per thousand, and for delta37Cl between -3.19 per thousand and +3.90 per thousand. In the case of the TCAs, the isotope ratio for delta2H ranged between -23.1 per thousand and +15.1 per thousand, for delta13C between -27.39 per thousand and -25.84 per thousand, and for delta37Cl between -3.54 per thousand and +1.39 per thousand. As well, a column experiment was carried out to dechlorinate tetrachloroethylene (PCE) to TCE using iron. The dechlorination products have completely different hydrogen isotope ratios than the manufactured TCEs. Compared to the positive values of delta2H in manufactured TCEs (between +466.9 per thousand and +681.9 per thousand), the dechlorinated products had a very depleted delta2H (less than -300 per thousand). This finding has strong implications for distinguishing dechlorination products (PCE to TCE) from manufactured TCE. In addition, the results of this study show the potential of combining 2H/1H analyses with 13C/12C and 37Cl/35Cl for isotopic fingerprinting applications in organic contaminant hydrogeology. 相似文献
139.
针对煤质粉末活性炭最显著的热危险特性——自燃危险性进行试验。采用粉尘层最低着火温度测定系统对煤质粉末活性炭进行自燃试验,测定煤质粉末活性炭的最低着火温度;采用SDT Q600热重分析仪测定煤质粉末活性炭在氮气和空气气氛中以20℃/min的速率升温至700℃时的热解和燃烧特性,通过TG/DTG曲线计算其着火温度,并进行热稳定性评价。粉尘层自燃试验结果表明,煤质粉末活性炭最低着火温度为400℃,具有自燃危险性,易形成阴燃;氮气气氛中热解试验表明,热解过程经历了室温~120.0℃和280.0~700.0℃两次轻缓失重阶段,646.44℃时挥发分热失重速率最大,对应热失重速率峰值为0.082 6%/℃,自燃危险性较低;空气气氛中燃烧试验表明,燃烧过程经历了室温~95.5℃和300.0~600.0℃两次剧烈失重阶段,分别为吸附水分受热蒸发和氧化生成的有机官能团分解脱附导致,565.35℃时挥发分热失重速率最大,对应热失重速率峰值为13.20%/min,粉末较强的氧气吸附效应和较低的导热系数导致其自燃倾向较高,火灾危险性较大。 相似文献
140.
薄膜覆盖减少化肥养分流失研究 总被引:7,自引:1,他引:6
我国化肥的利用率低,使用量又不断增长,增加了农业面源污染问题的严重性.本研究针对化肥流失主要通过水带走的特性,进行大田试验种植玉米,利用薄膜覆盖所施用的化肥,实现"肥与水隔离",以减少化肥流失.试验一方面观察了不同施肥处理二季甜玉米的生长和产量,另一方面测定了作物对肥料的利用率以及地表径流养分含量.结果表明,在本土壤条件下甜玉米只需施用常规施肥量的70%即可达到高产.甜玉米收获后土壤中碱解氮、有效磷、有效钾的含量比不经薄膜覆盖的显著提高,其顺序为100%施肥量+覆膜70%施肥量+覆膜100%施肥量、70%施肥量不施肥.氮、磷、钾肥料的表观利用率分别为42%~87%、0%~3%和5%~15%,覆膜处理一般高于不覆膜处理,特别是在高施肥量情况下更为明显.通过8次径流水的收集测定,无薄膜覆盖的施肥处理的地表径流N、P和K平均浓度分别为27.72、2.70和7.07 mg.L-1,薄膜覆盖技术处理降低N、P、K浓度的效果分别达到了39.54%、28.05%、43.74%,对于减少农业面源污染和水体富营养化可起到明显效果. 相似文献