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高压氧舱急救供排氧装置的改进
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作者 吴建军 《医疗设备信息》 1994年第3期5-7,共3页
高压氧舱急救供排氧装置的改进济南军区总医院高压氧科吴建军我院高压氧舱急救供排氧装置采用半开放式连续供氧系统。人的呼吸流量的变化规律近似于正弦曲线。使用上述装置,当病人需要吸入纯氧时,供氧流量必须大于病人的吸气流量峰值... 高压氧舱急救供排氧装置的改进济南军区总医院高压氧科吴建军我院高压氧舱急救供排氧装置采用半开放式连续供氧系统。人的呼吸流量的变化规律近似于正弦曲线。使用上述装置,当病人需要吸入纯氧时,供氧流量必须大于病人的吸气流量峰值(25~75L/min)。这个值三... 展开更多
关键词 高压 急救 供排氧装置 设备
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医用高压氧舱氧浓度超标故障维修
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作者 杜昂 《医疗装备》 2024年第17期108-109,共2页
高压氧治疗是指在超过1个大气压的环境中呼吸纯氧气。其需满足以下2个条件:(1)环境气体压力高于常压;(2)呼吸气体中的氧压高于常压。随着高压氧医学的发展,高压氧治疗在临床上的应用越来越广泛,其适应证包括100余种,主要涉及各种缺血缺... 高压氧治疗是指在超过1个大气压的环境中呼吸纯氧气。其需满足以下2个条件:(1)环境气体压力高于常压;(2)呼吸气体中的氧压高于常压。随着高压氧医学的发展,高压氧治疗在临床上的应用越来越广泛,其适应证包括100余种,主要涉及各种缺血缺氧性疾病。医用高压氧舱是一种用于临床医学领域的医学科研治疗设备,主要通过特殊型载人压力容器直接对人体产生作用。高压氧舱的运行状态直接影响患者的身体健康及安全,属于较高风险设备。因此,必须对从事高压氧舱使用和维护的工作人员提出严要求、高标准,且相应的技术人员必须持证上岗[1]。氧气的主要用途是助燃剂和供呼吸,高压氧舱中氧浓度的高低对其安全、正常运行及患者的治疗效果均具有非常重要的作用[2]。氧浓度超标是医用高压氧舱的常见故障,为其运行带来较大风险及安全隐患,也是维修工程师和氧舱操作人员的关注重点[3]。导致氧浓度超标的原因较多、涉及范围广、维修难度大,加强对设备的日常维护是保证医用高压氧舱正常运行和延长设备寿命的关键措施,同时应加强相关工作人员的培训。本研究首先介绍我院医用高压氧舱的基本信息、安全使用规范和日常维护保养要点,然后介绍氧浓度超标故障实例的维修过程,为同行提供参考。 展开更多
关键词 高压 维修 浓度 供排氧
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高压氧舱吸排氧装置细菌污染与消毒效果分析 被引量:2
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作者 梁红英 秦美华 马秋霞 《中华航海医学与高气压医学杂志》 CAS CSCD 2009年第4期249-250,共2页
高压氧治疗是患者通过吸排氧装置进行吸氧完成的,其中包括供氧管、排氧管、三通管及面罩。以往很多医院的做法是:在高压氧治疗时除面罩专人专用外,吸、排氧管、三通管均统一使用,定期消毒,通常是每周消毒1次。由于高压氧舱是一个... 高压氧治疗是患者通过吸排氧装置进行吸氧完成的,其中包括供氧管、排氧管、三通管及面罩。以往很多医院的做法是:在高压氧治疗时除面罩专人专用外,吸、排氧管、三通管均统一使用,定期消毒,通常是每周消毒1次。由于高压氧舱是一个封闭空间,容积较小,多人同时治疗时,患者病情各异,存在院内交叉感染的危险。为此,我科对高压氧舱内供排氧装置采用不同方法进行消毒和清洁,以探寻有效、简易的方法,防止院内交叉感染。 展开更多
关键词 高压舱内 装置 消毒效果 细菌污染 院内交叉感染 高压治疗 供排氧装置 三通管
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Water, Air Emissions, and Cost Impacts of Air-Cooled Microturbines for Combined Cooling, Heating, and Power Systems: A Case Study in the Atlanta Region
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作者 Jean-Ann James Valerie M. Thomas +2 位作者 Arka Pandit Duo Li John C. Crittenden 《Engineering》 SCIE EI 2016年第4期470-480,共11页
The increasing pace of urbanization means that cities and global organizations are looking for ways to increase energy efficiency and reduce emissions. Combined cooling, heating, and power (CCHP) systems have the po... The increasing pace of urbanization means that cities and global organizations are looking for ways to increase energy efficiency and reduce emissions. Combined cooling, heating, and power (CCHP) systems have the potential to improve the energy generation efficiency of a city or urban region by providing energy for heating, cooling, and electricity simultaneously. The purpose of this study is to estimate the water consumption for energy generation use, carbon dioxide (CO2) and NOx emissions, and economic impact of implementing CCHP systems for five generic building types within the Atlanta metropolitan region, under various operational scenarios following the building thermal (heating and cooling) demands. Operating the CCHP system to follow the hourly thermal demand reduces CO2 emissions for most building types both with and without net metering. The system can be economically beneficial for all building types depending on the price of natural gas, the implementation of net metering, and the cost structure assumed for the CCHP system. The greatest reduction in water consumption for energy production and NOx emissions occurs when there is net metering and when the system is operated to meet the maximum yearly thermal demand, although this scenario also results in an increase in greenhouse gas emissions and, in some cases, cost. CCHP systems are more economical for medium office, large office, and multifamilv residential buildings. 展开更多
关键词 Combined cooling heating and power (CCHP) Air-cooled microturbines Distributed energy generation Water for energy production Net metering
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Model and Design of Cogeneration System for Different Demands of Desalination Water, Heat and Power Production 被引量:1
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作者 吴现力 胡仰栋 +1 位作者 伍联营 李红 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第3期330-338,共9页
In order to improve the energy efficiency, reduce the CO2 emission and decrease the cost, a cogenera- tion system for desalination water, heat and power production was studied in this paper. The superstructure of the ... In order to improve the energy efficiency, reduce the CO2 emission and decrease the cost, a cogenera- tion system for desalination water, heat and power production was studied in this paper. The superstructure of the cogeneration system consisted of a coal-based thermal power plant (TPP), a multi-stage flash desalination (MSF) module and reverse osmosis desalination (RO) module. For different demands of water, heat and power production, the corresponding optimal production structure was different. After reasonable simplification, the process model ot each unit was built. The economical model, including the unit investment, and operation and maintenance cost, was presented. By solving this non-linear programming (NLP) model, whose objective is to minimize the annual cost, an optimal cogeneration system can be obtained. Compared to separate production systems, the optimal system can reduce 16.1%-21.7% of the total annual cost. showing this design method was effective. 展开更多
关键词 cogeneration system thermal power plant multi-stage flash desalination reverse osmosis desalination non-linear programming optimal design
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Assessment of Solar-Coal Hybrid Electricity Power Generating Systems
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作者 Moses Tunde Oladiran Cheddi Kiravu Ovid Augustus Plumb 《Journal of Energy and Power Engineering》 2012年第1期12-19,共8页
Botswana currently depends on electricity generated from coal-based power plant or electricity supplied from the border in South Africa. The country has good reserves of coal and the solar radiation is sufficiently hi... Botswana currently depends on electricity generated from coal-based power plant or electricity supplied from the border in South Africa. The country has good reserves of coal and the solar radiation is sufficiently high to make solar thermal attractive for generating electricity. The paper presents two conceptual coal-fired power station designs in which a solar sub-system augments heat to the feed heaters or to the boiler. The thermal and economic analyses showed enhanced system performance which indicates that solar power could be embedded into existing fossil fuel plants or new power stations. Integrating solar energy with existing or new fossil fuel based power plants could reduce the cost of stand-alone solar thermal power stations, reduce CO2 emissions and produce experience necessary to operate a full scale solar thermal electricity generation facility. 展开更多
关键词 Hybrid systems SOLAR COAL ECONOMICS performance.
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