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利用手持技术数字化实验探究不同运动状态下吸入与呼出气体的含量变化
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作者 雷宇浩 钱扬义 +3 位作者 郑燕娴 温金菊 刘颖彤 陈浚铭 《化学教育(中英文)》 CAS 北大核心 2024年第19期68-73,共6页
针对初中化学“探究呼吸过程中气体含量的变化”的主题实验,基于手持技术数字化实验,提供了一种新颖、高效的方法,并对不同运动状态下吸入与呼出气体的含量变化进行了探究。通过集成氧气、二氧化碳和水蒸气传感器设计实验,旨在深入了解... 针对初中化学“探究呼吸过程中气体含量的变化”的主题实验,基于手持技术数字化实验,提供了一种新颖、高效的方法,并对不同运动状态下吸入与呼出气体的含量变化进行了探究。通过集成氧气、二氧化碳和水蒸气传感器设计实验,旨在深入了解运动状态如何影响呼吸气体的成分。实验结果显示静息与运动后,呼出气体中的c(CO_(2))和c(H2O)均增加,c(O_(2))减少,且气体浓度的差异源自不同运动方式的耗氧差异。 展开更多
关键词 手持技术数字化实验 呼吸过程 气体含量变化 跨学科
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Greenhouse gas emissions from shallow uncovered coal seams 被引量:3
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作者 Saghafi Abouna 《International Journal of Mining Science and Technology》 SCIE EI 2014年第3期341-344,共4页
This study discusses a method of quantifying emissions from surface coal mining that has been trialled in Australia. The method is based on direct measurement of surface emissions from uncovered coal seams in mine pit... This study discusses a method of quantifying emissions from surface coal mining that has been trialled in Australia. The method is based on direct measurement of surface emissions from uncovered coal seams in mine pits, concurrent measurement of residual gas content of blasted coal in mine pits, and measurement of pre-mining gas content of the same seam from cores retrieved from exploration boreholes drilled away from active mining. The results from one of the mines studied are presented in this paper. In this mine,the pre-mining gas content of the target seam was measured using cores from an exploration borehole away from active mining. Gas content varied from 0.7 to 0.8 m3/t and gas composition varied from16% to 21% CH4(84–79% CO2). In-pit measurements included seam surface emissions and residual gas content of blasted and ripped coal. Residual gas content varied from 0.09 to 0.15 m3/t, less than twofold across the mine pit. Composition of the residual gas was in general 90% CO2and 10% CH4, with slight variation between samples. Coal seam surface emissions varied from 1.03 to 7.50 mL of CO2-e per minute and per square meter of the coal seam surface, a sevenfold variation across the mine pit. 展开更多
关键词 Coal mining Gas content Gas emission CO2 CH4 Greenhouse gas
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