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保障生态安全 促进核能工业发展 被引量:5
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作者 商照荣 唐森铭 陈晓秋 《核安全》 2008年第4期1-8,12,共9页
生态安全是与政治安全、国防安全、经济安全、粮食安全同等重要的安全概念,发展核电是我国迈向优化能源结构、保育生态、实现可持续发展的重要步骤。水生态系统是核动力厂运行时低放废水和冷却水排放的对象,也是我国部分核燃料循环设施... 生态安全是与政治安全、国防安全、经济安全、粮食安全同等重要的安全概念,发展核电是我国迈向优化能源结构、保育生态、实现可持续发展的重要步骤。水生态系统是核动力厂运行时低放废水和冷却水排放的对象,也是我国部分核燃料循环设施低放废水排放处置的受纳体,核能工业对生态安全的影响及人类安全的威胁倍受社会各界的关注,成为影响核电发展的关键因素之一。为了保证核能的可持续发展,本文从与核能发展相关的几个生态安全问题,如温排水影响、生态敏感区、生态恢复等方面,说明发展核能应保证生态安全。 展开更多
关键词 生态安全 核能发展 温排水影响 生态敏感区 生态恢复
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CO_2 permeability of fractured coal subject to confining pressures and elevated temperature: Experiments and modeling 被引量:8
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作者 JU Yang WANG JianGuo +3 位作者 WANG HuiJie ZHENG JiangTao RANJITH Pathegama G GAO Feng 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第12期1931-1942,共12页
The CO_2 permeability of fractured coal is of great significance to both coalbed gas extraction and CO_2 storage in coal seams, but the effects of high confining pressure, high injection pressure and elevated temperat... The CO_2 permeability of fractured coal is of great significance to both coalbed gas extraction and CO_2 storage in coal seams, but the effects of high confining pressure, high injection pressure and elevated temperature on the CO_2 permeability of fractured coal with different fracture extents have not been investigated thoroughly. In this paper, the CO_2 permeability of fractured coals sampled from a Pingdingshan coal mine in China and artificially fractured to a certain extent is investigated through undrained triaxial tests. The CO_2 permeability is measured under the confining pressure with a range of 10–25 MPa, injection pressure with a range of 6–12 MPa and elevated temperature with a range of 25–70°C. A mechanistic model is then proposed to characterize the CO_2 permeability of the fractured coals. The effects of thermal expansion, temperature-induced reduction of adsorption capacity, and thermal micro-cracking on the CO_2 permeability are explored. The test results show that the CO_2 permeability of naturally fractured coal saliently increases with increasing injection pressure. The increase of confining pressure reduces the permeability of both naturally fractured coal and secondarily fractured coal. It is also observed that initial fracturing by external loads can enhance the permeability, but further fracturing reduces the permeability. The CO_2 permeability decreases with the elevation of temperature if the temperature is lower than 44°C, but the permeability increases with temperature once the temperature is beyond 44°C. The mechanistic model well describes these compaction mechanisms induced by confining pressure, injection pressure and the complex effects induced by elevated temperature. 展开更多
关键词 CO2 permeability fractured coal confining pressure elevated temperature thermal effects mechanistic models
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