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81.
针对安全性评价过程评价周期长,工作量大,手段落后等问题,依据安全检查表法及评价理论,以Microsoft Visual Basic6.0为开发工具,开发了火力发电厂安全性评价计算机辅助系统,在企业局域网中实现,可以减少安全评价过程中大量重复工作,提高效率,其它行业也可以基于此方法,开发相应的计算机辅助评价系统。  相似文献   
82.
针对电力和供热导致石家庄市空气污染严重的问题,结合该市目前的电力和供热现状,提出了减少污染的措施及建议,希望对改善该市空气质量起到促进作用。  相似文献   
83.
针对目前水资源短缺状况,以齐鲁石化热电厂为例提出了利用生活污水,养鱼场排水、锅炉排污水以及化学反洗水作循环冷却水补充水的优化方案,并就废水田用方案的实施及运行中发现的问题进行了分析与探讨。  相似文献   
84.
在综合调查省内各火电厂废水处理系统运行现状的基础上,总结了各类废水处理系统的特点及其运行中存在的问题,提出了改进意见。  相似文献   
85.
在安全评价中,人因失误特别是事故后人因失误越来越受到重视;但相对而言,事故前人因失误没有引起足够的重视。本通过对大量核电厂安全分析报告和运行事件报告的考察,系统地阐述了事故前人因失误对系统安全的显影响,并在此基础上,归纳出在核电站开展事故前人因(失误)分析的程序。该程序主要包括系统熟悉,定性分析,筛选,定量计算,与故障树的集成,敏感性分析与不确定性分析,形成分析档等几个步骤。  相似文献   
86.
关于污水处理厂质量监理工作的探讨   总被引:2,自引:0,他引:2  
污水处理已引起我国政府的高度重视。以此为契机,通过对阳江市第一净水厂工程监理工作的回顾,初步探讨了污水处理厂质量监理工作。  相似文献   
87.
神州煤电焦化股份公司焦化厂调整思路,探索出一套“以人为本,重在落实”的基层车间管理办法,通过实践,证明该方法是行之有效的,使该厂形成了互相监督、互相制约的良好安全氛围。  相似文献   
88.
Subsidence is a primary factor governing marsh deterioration in Mississippi River deltaic plain coastal marshes. Marsh surface-water level relationships are maintained primarily through soil organic matter accumulation and inorganic sediment input. In this study we examined the role of soil organic matter accumulation in maintaining marsh elevation in a brackish Spartina patens marsh. Measured rates of soil organic accumulation were compared to plant biomass production and soil respiration (carbon dioxide and methane emission) at the study sites. The study demonstrated the importance of plant biomass production to soil organic carbon accumulation in maintaining viable Spartina patens marshes in sediment-deficient coastal environments. The role of Mississippi River freshwater reintroduction in maintaining conditions for organic accretion is discussed.  相似文献   
89.
ABSTRACT: Ground water contamination by excess nitrate leaching in row‐crop fields is an important issue in intensive agricultural areas of the United States and abroad. Giant cane and forest riparian buffer zones were monitored to determine each cover type's ability to reduce ground water nitrate concentrations. Ground water was sampled at varying distances from the field edge to determine an effective width for maximum nitrate attenuation. Ground water samples were analyzed for nitrate concentrations as well as chloride concentrations, which were used as a conservative ion to assess dilution or concentration effects within the riparian zone. Significant nitrate reductions occurred in both the cane and the forest riparian buffer zones within the first 3.3 m, a relatively narrow width. In this first 3.3 m, the cane and forest buffer reduced ground water nitrate levels by 90 percent and 61 percent, respectively. Approximately 40 percent of the observed 99 percent nitrate reduction over the 10 m cane buffer could be attributed to dilution by upwelling ground water. Neither ground water dilution nor concentration was observed in the forest buffer. The ground water nitrate attenuation capabilities of the cane and forest riparian zones were not statistically different. During the spring, both plant assimilation and denitrification were probably important nitrate loss mechanisms, while in the summer nitrate was more likely lost via denitrification since the water table dropped below the rooting zone.  相似文献   
90.
/ Rivers transport sediment from eroding uplands to depositional areas near sea level. If the continuity of sediment transport is interrupted by dams or removal of sediment from the channel by gravel mining, the flow may become sediment-starved (hungry water) and prone to erode the channel bed and banks, producing channel incision (downcutting), coarsening of bed material, and loss of spawning gravels for salmon and trout (as smaller gravels are transported without replacement from upstream). Gravel is artificially added to the River Rhine to prevent further incision and to many other rivers in attempts to restore spawning habitat. It is possible to pass incoming sediment through some small reservoirs, thereby maintaining the continuity of sediment transport through the system. Damming and mining have reduced sediment delivery from rivers to many coastal areas, leading to accelerated beach erosion. Sand and gravel are mined for construction aggregate from river channel and floodplains. In-channel mining commonly causes incision, which may propagate up- and downstream of the mine, undermining bridges, inducing channel instability, and lowering alluvial water tables. Floodplain gravel pits have the potential to become wildlife habitat upon reclamation, but may be captured by the active channel and thereby become instream pits. Management of sand and gravel in rivers must be done on a regional basis, restoring the continuity of sediment transport where possible and encouraging alternatives to river-derived aggregate sources.KEY WORDS: Dams; Aquatic habitat; Sediment transport; Erosion; Sedimentation; Gravel mining  相似文献   
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