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21.
有限空间作业中毒窒息事故的预防 总被引:2,自引:2,他引:2
中毒窒息事故是有限空间危险作业的常发事故之一,多发生在封闭或半封闭设备,地上有限空间和地下有限空间,施害物主要为硫化氢、一氧化碳、二氧化碳、氨和甲烷(沼气)等。在我国,随着经济的迅猛发展,一大批农民转变成产业工人,由于新工人群体的总体文化素质低,自身的安全意识、安全知识和安全技能的缺乏,一些管理者对中毒窒息危险危害认识始终存在盲区,导致同类职业中毒事故悲剧不断重演,使农民工、临时工或新工人成为中毒窒息事故的主要受害对象。为有效防止类似事故再次发生,笔者结合几起中毒窒息典型案例,阐述发生中毒窒息的5点原因以及从中汲取的2个教训,即必须按照规章作业和施救必须以自身安全为前提,总结中毒窒息场所安全作业要求,提出了一系列的防范措施。 相似文献
22.
基于C/S与B/S混合模式的大气污染监测系统设计 总被引:1,自引:0,他引:1
以C/S与B/S混合模式为基础的大气监测系统、既能充分发挥网络资源的便捷化,实现企业监测数据与管理系统的快速链接,又充分利用C/S模式的安全性能,以保证系统的安全性。因而此系统是当前的一种较新型的,功能较为强大的网络监测系统。 相似文献
23.
Donna M. Cosgrove Gary S. Johnson 《Journal of the American Water Resources Association》2004,40(6):1469-1482
ABSTRACT: Increasing demands on western water are causing a mounting need for the conjunctive management of surface water and ground water resources. Under western water law, the senior water rights holder has priority over the junior water rights holder in times of water shortage. Water managers have been reluctant to conjunctively manage surface water and ground water resources because of the difficulty of quantification of the impacts to surface water resources from ground water stresses. Impacts from ground water use can take years to propagate through an aquifer system. Prediction of the degree of impact to surface water resources over time and the spatial distribution of impacts is very difficult. Response functions mathematically describe the relationship between a unit ground water stress applied at a specific location and stream depletion or aquifer water level change elsewhere in the system. Response functions can be used to help quantify the spatial and temporal impacts to surface water resources caused by ground water pumping. This paper describes the theory of response functions and presents an application of transient response functions in the Snake River Plain, Idaho. Transient response functions can be used to facilitate the conjunctive management of surface and ground water not only in the eastern Snake River Plain basin, but also in similar basins throughout the western United States. 相似文献
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关于综放开采技术安全问题的几点认识 总被引:4,自引:2,他引:4
王家臣 《中国安全生产科学技术》2005,1(5):21-25
本文从放顶煤开采的一次采高大、上覆岩层的活动范围大、破碎顶煤的存在等基本特征出发,论述了关于放顶煤开采中瓦斯、顶板和冲击地压等安全问题.放顶煤开采对有些安全问题可以缓解,比如工作面的瓦斯突出.但是也可能诱发一些安全问题,如坚硬顶板对支架的冲击、采空区垮落岩石的撞击与摩擦诱发瓦斯事故等.在放顶煤大面积推广应用的同时,更应重视其相应的安全问题的系统研究与解决. 相似文献
26.
City hazardous gas monitoring network 总被引:2,自引:0,他引:2
In our today's societies, many dangerous chemicals are produced and transported. Due to the vast use of chemicals, more chemical accidents are taking place with huge losses. In this study a city hazardous gas monitoring network was designed to detect the dispersion of toxic and combustible gases in the primary stages. The network could cover hazardous chemical facilities, important hazardous chemical routes, warehouses and special locations which may be the targets of terrorist attacks. The network is consisted of several local networks and a central control panel complex. Each local network has a local control panel in the center and many detectors and sounders around it at distances less than 3000 m that communicate with the local control panels wirelessly. In each location there are two types of gas detectors, toxic and combustible, and a sounder which are equipped with a wireless, radio frequency modem allowing the units to communicate readings and other information on a real-time basis with a remotely located local control panel. High sensitive Photo Ionization Detectors, PIDs, are used to provide fast and low-level on-site screening for chemicals contamination. Combustible gas detectors are the second choice to sense the combustible gas and verify the readings of PIDs in this regard. The central panel consists of several connected control panels work uniquely helping a computer set and the appropriate software and communicate with local control panels via telephone lines. All of the network components are shown on the monitor of central panel with special symbols by geographical information system program. The system is fully addressable so that the high level detection of a detector produces a blinking color double-circle around its symbol in GIS plan. In case of high level gas detection, a team of experts who are fully equipped with different portable detectors depart to the site to test the field to identify the chemicals. All readings of detectors are saved in a data bank and then analyzed to find any chemicals spills and leakages. The network was simulated by a special program so that the components of local networks and the central panel are shown in separate windows. By clicking on one detector on environmental window the formerly designed responses will be activated in central panel window. 相似文献
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钯离子液相催化氧化低浓度磷化氢 总被引:1,自引:0,他引:1
采用Pd^2+液相催化氧化低浓度PH3,考察了Pd^2+浓度、O2体积分数、PH3质量浓度、混合气流量、反应温度等因素对Pd^2+吸收液去除低浓度PH3效果的影响。实验结果表明,采用10mL Pd^2+浓度为0.112mol/L的水溶液作为吸收液净化含低浓度PH3的混合气,在反应温度22℃、O2体积分数5%、PH3质量浓度850mg/m^3、混合气流量190mL/min的条件下,印min之内PH3去除率保持在90%以上。Pd^2+浓度越高、O2体积分数越大、反应温度越高,PH3去除率越高;混合气流量越大,PH3去除率越低;反应温度越低、O2体积分数越大,PH3去除率的下降速率越小。 相似文献
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