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81.
采用道化学公司火灾、爆炸危险指数法对中国石化某厂综合储罐区进行安全评价,得出了其安全措施补偿前后的火灾、爆炸指数(F&EI)、危险等级、暴露半径、暴露面积以及暴露体积等。结果表明,该企业综合储罐区采取的安全措施较为适用,能降低火灾、爆炸事故发生的概率和事故损害. 相似文献
82.
阐述了定量风险评价的个人风险和社会风险指标,并从前期准备、资料数据搜集、危险辨识、失效频率分析、失效后果分析、风险计算和风险评估等环节对某石化企业液化气一级重大危险源进行了定量风险评估。评估结果显示该重大危险源的个人风险和社会风险值基本符合安监总局40号令的要求。 相似文献
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文章从战略环境影响评价的概念和分类进行分析,结合我国战略环境影响评价的当前发展,对战略环境影响评价在我国经济发展中的意义和必要性进行研究。结合其对经济发展和地区规划的影响等多方面的分析,提出战略环境影响评价所遵循的原则和评价程序,并对其评价程序进行分析和论证,进一步论述了战略环境影响评价的意义。 相似文献
85.
如何提高压差法测定BOD_5标样考核合格率 总被引:1,自引:0,他引:1
针对压差法测定生化需氧量的技术特点,通过总结日常分析、标样考核取得的经验,提出了想要提高压差法测定BOD标样考核合格率应注意的问题。 相似文献
86.
刘久祥 《辽宁城乡环境科技》2012,(3):66-68,75
通过对大凌河朝阳段5个采样点9个样本的底栖动物监测分析,检出底栖动物59种,采用BI指数进行水质评价。调查结果表明,大凌河南大桥及上游河段为清洁,市区段下游为轻污染至中污染。 相似文献
87.
通过对沈阳市典型公共场所室内环境监测数据的统计分析,研究沈阳市公共场所室内环境污染的原因及室内环境污染特点,为今后沈阳市开展典型室内公共场所污染治理提供必要的技术支持。 相似文献
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89.
Some emerging technologies are expected to be pivotal for solving many of the environmental challenges faced today, especially those related to energy. However, many of these technologies may incur significant environmental impacts over their life cycle, while having environmental benefits during their use. This paper presents results of a Life Cycle Assessment (LCA) of a proposed type of nanophotovoltaic, quantum dot photovoltaic (QDPV) module. The LCA is confined to the stages of raw materials acquisition, manufacturing, and use. The impacts of QDPV are compared with other types of PV modules and energy sources - both renewable and nonrenewable. To provide a comprehensive comparative assessment, QDPV modules were compared with mature as well as emerging PV types for which data are available. Comparative assessment with other types of energy sources includes coal, oil, lignite, natural gas, diesel, nuclear, wind, and hydropower.QDPV modules may have the potential to overcome two current barriers of solar technology: low efficiencies and high manufacturing costs. If higher efficiencies are realized, QDPV modules could pave the way to large scale implementation of solar energy, helping nations move toward greater energy independence. On the other hand, candidate materials as quantum dots for solar cell applications are mostly compound semiconductors such as cadmium selenide, cadmium telluride, and lead sulfide which may be toxic and for which renewable options are limited. Toxic effects of these materials may be exacerbated by their nanoscale features.The LCA was carried out using the software SimaPro, and the Ecoinvent Life Cycle Inventory (LCI) database supplemented with available literature and patent information. Our results indicate that while QDPV modules have shorter Energy PayBack Time (EPBT), lower Global Warming Potential (GWP), SOx and NOx emissions than other types of PV modules, they have higher heavy metal emissions, underscoring the need for investigation of emerging technologies, especially nano-based ones, from a life cycle perspective. QDPV modules are better in all impact categories assessed than carbon-based energy sources but they have longer EPBT than wind and hydropower and higher GWP. 相似文献
90.
Patrick RoussetArmando Caldeira-Pires Alexander SablowskiThiago Rodrigues 《Journal of Cleaner Production》2011,19(14):1647-1653
This paper sets out to describe the environmental impact assessment for wood charcoal briquettes produced from eucalyptus wood in Brazil, with specific reference to those impacts associated with Global Warming Potential. To achieve that objective, the work was undertaken in accordance with ISO 14040 "Environmental management - Life cycle assessment - Principles and framework" which describes essential LCA characteristics and good practices. Charcoal briquettes are produced from two basic raw materials, charcoal fines and starch. The fines result from the production of charcoal from sustainably managed eucalyptus plantations. Starch is extracted from babaçu pulp in the Amazon region. Multi-output processes were allocated based on income from the different by-products. The results showed that more than 90% of incoming CO2 was due to biomass production for charcoal, and the remainder to starch biomass production. Based on Brazilian data, as well as information provided by the GaBi4.3 database, it turned out that supplying the energy content of 1 kg of briquettes resulted in the sequestration of 3.9690 kg of CO2, i.e. around 4 kg of CO2 per kg of briquettes produced. CO2 emissions throughout the briquette production process are totally compensated for by the environmental quality of the raw materials used. 相似文献