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21.
本文运用最优化理论,对推式曝气池的结构优化设计作了探讨。通过对比分析,得出优化结果比一般方法节省投产20%,而且随着曝气池规模的增大,节省增大。 相似文献
22.
蹇江海 《安全.健康和环境》2020,(1):1-4
通过工艺流程动态模拟,研究某渣油加氢装置在反应进料泵事故紧急停车后,不同工艺设计方案组合条件下,引发高压气体反串到低压原料缓冲罐的事故影响。研究结果表明:泵出口双单向阀和紧急切断阀的设计对降低超压事故的发生有很好的保护作用;切断阀关闭时间越短对原料缓冲罐超压保护越有利;安全阀和缓冲罐的设计条件须与切断阀关闭时间和单向阀数量等设计条件综合考虑。通过动态模拟方法研究工艺操作异常工况,对优化工艺设计,提高本质安全设计有参考价值。 相似文献
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煤炭是中国的主要能源和资源,也是主要的污染源。煤炭燃料利用的不洁净使得其能源主导地位受到石油、天然气和新能源越来越大的挑战。寻求合理、高效、洁净的煤炭非燃料利用新途径应当成为煤化工发展的重要方向。本文在分析了煤炭燃料利用存在问题和前景的基础上,强调煤炭非燃料利用应当成为洁净煤技术的一种主要形式,并指出煤炭非燃料利用的合理途径。 相似文献
25.
通过洗煤车间除尘系统工程实例 ,阐述了在老厂房巧妙利用厂房结构 ,将吸尘罩设计为内开外密 ,负压作业的三级密闭形式 ,从而实现全面通风换气与局部通风除尘的设计思路。工程实践表明 :该设计可使尘源附近 (411机尾走廊 )空气中粉尘净化效率达到 81 16 %~ 94 93% ,对厂房主要作业点空气中粉尘净化效率达 6 0 %以上 ,为洗煤行业老厂房的防尘除尘工作探索了一条可行的途径 相似文献
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27.
Andreas Züttel 《Mitigation and Adaptation Strategies for Global Change》2007,12(3):343-365
Hydrogen storage and transportation or distribution is closely linked together. Hydrogen can be distributed continuously in
pipelines or batch wise by ships, trucks, railway or airplanes. All batch transportation requires a storage system but also
pipelines can be used as pressure storage system. Hydrogen exhibits the highest heating value per weight of all chemical fuels.
Furthermore, hydrogen is regenerative and environment friendly. There are two reasons why hydrogen is not the major fuel of
toady’s energy consumption: First of all, hydrogen is just an energy carrier. And, although it is the most abundant element
in the universe, it has to be produced, since on earth it only occurs in the form of water. This implies that we have to pay
for this energy, which results in a difficult economic task, because since the industrialization we are used to consuming
energy for free. The second difficulty with hydrogen as an energy carrier is the low critical temperature of 33 K, i.e. hydrogen
is a gas at room temperature. For mobile and in many cases also for stationary applications the volumetric and gravimetric
density of hydrogen in a storage system is crucial. Hydrogen can be stored by six different methods and phenomena: high pressure
gas cylinders (up to 800 bar), liquid hydrogen in cryogenic tanks (at 21 K), adsorbed hydrogen on materials with a large specific
surface area (at T < 100 K), absorbed on interstitial sites in a host metal (at ambient pressure and temperature), chemically bond in covalent
and ionic compounds (at ambient pressure), oxidation of reactive metals e.g. Li, Na, Mg, Al, Zn with water. These metals easily
react with water to the corresponding hydroxide and liberate the hydrogen from the water. Finally, the metal hydroxides can
be thermally reduced to the metals in a solar furnace. 相似文献
28.
赵喜萍 《辽宁城乡环境科技》2006,26(1):39-41
根据某污水处理场沉淀池的COD和SS去除率较低的情况,文中着重探讨了问题的产生原因,并针对平流式沉淀池及斜管式沉淀池提出了相应的改进方案,实践证明改进后提高了COD和SS去除率30%,并明显降低了二级生物处理阶段的有机物负荷,节省了大量的暴气量通过改进达到了降低处理场其它环节的负荷和降低污水处理成本的目的。 相似文献
29.
30.
V. Krishna Prasad K.V.S. Badarinath H. Tsuruta S. Sudo S. Yonemura John Cardina Benjamin Stinner Richard Moore Deborah Stinner Casey Hoy 《The Environmentalist》2003,23(2):175-187
Forests and soils are a major sink of carbon, and land use changes can affect the magnitude of above ground and below ground carbon stores and the net flux of carbon between the land and the atmosphere. Studies on methods for examining the future consequences of changes in patterns of land use change and carbon flux gains importance, as they provide different options for CO2 mitigation strategies. In this study, a simulation approach combining Markov chain processes and carbon pools for forests and soils has been implemented to study the carbon flows over a period of time. Markov chains have been computed by converting the land use change and forestry data of India from 1997 to 1999 into a matrix of conditional probabilities reflecting the changes from one class at time t to another class time t+1. Results from Markov modeling suggested Indian forests as a potential sink for 0.94 Gt carbon, with an increase in dense forest area of about 75.93 Mha and decrease of about 3.4 Mha and 5.0 Mha in open and scrub forests, if similar land use changes that occurred during 1997–1999 would continue. The limiting probabilities suggested 34.27 percent as dense forest, 6.90 as open forest, 0.4 percent mangrove forest, 0.1 percent scrub and 58 percent as non-forest area. Although Indian forests are found to be a potential carbon sink, analysis of results from transition probabilities for different years till 2050 suggests that, the forests will continue to be a source of about 20.59 MtC to the atmosphere. The implications of these results in the context of increasing anthropogenic pressure on open and scrub forests and their contribution to carbon source from land use change and forestry sector are discussed. Some of the mitigation aspects to reduce greenhouse gas emissions from land use change and forestry sector in India are also reviewed in the study. 相似文献