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Measurement of CO_(2) concentration based on supercontinuum laser absorption spectroscopy 被引量:3
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作者 li Hong-lian DI Shuai +3 位作者 li wen-duo LüWen-jing WANG Fan FANG li-de 《Optoelectronics Letters》 EI 2021年第3期176-182,共7页
The concentrations of CO_(2) were measured by the supercontinuum laser at normal temperature and variable temperature accurately in this paper. The absorption spectra of CO_(2) at different concentrations(1.2%—9.0%) ... The concentrations of CO_(2) were measured by the supercontinuum laser at normal temperature and variable temperature accurately in this paper. The absorption spectra of CO_(2) at different concentrations(1.2%—9.0%) were measured in the wavelength range of 1 425—1 445 nm under the optical path of 26.4 m at 293 K and 1 atm. The experimental results showed that the positions of the primary and secondary absorption peaks(1 432 nm, 1 437 nm) were consistent with the HITRAN database. A linear model of concentration and signal intensity at 1 432 nm was established. The maximum relative error of the concentration measurement was 3.3%. The line intensities of 99.9% CO_(2) in the 1 425—1 445 nm at different temperatures(298—373 K, interval of 15 K) were measured. The influence of temperature changes on the concentration measurement result was corrected and the relative error of the concentration measurement was reduced to 1.4%. Finally, the source of the uncertainty of the entire spectrum measurement system was analyzed and evaluated. This paper demonstrate that the supercontinuum laser can achieve the long-distance measurement of the CO_(2) under normal temperature or variable temperature environment accurately, which provide an important reference for the long-distance gas detection on site and simultaneous detection of multi-component gases. 展开更多
关键词 LASER ABSORPTION CONCENTRATION
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1,5-氢迁移助力远程碳-氢羧基化 被引量:1
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作者 李文多 夏纪宝 《有机化学》 SCIE CAS CSCD 北大核心 2020年第12期4375-4376,共2页
烯烃作为有机合成中重要的合成前体,其官能团化反应是快速高效构建复杂分子的重要方法,一直备受关注.最近,自由基加成和氢原子迁移的策略为非活化烯烃远程官能团化提供了新的思路和方法[1-2].二氧化碳(CO2)是一种温室气体,同时也是丰富... 烯烃作为有机合成中重要的合成前体,其官能团化反应是快速高效构建复杂分子的重要方法,一直备受关注.最近,自由基加成和氢原子迁移的策略为非活化烯烃远程官能团化提供了新的思路和方法[1-2].二氧化碳(CO2)是一种温室气体,同时也是丰富、无毒、易得的C1资源,利用CO2构建羧酸类化合物是CO2作为C1资源的重要应用之一[3-7].使用简单的化合物为原料,通过C—H羧基化实现羧酸类化合物的合成具有重要的应用价值,其中水杨酸的合成已经得到了工业化应用. 展开更多
关键词 氢羧基化 自由基加成 氢原子 氢迁移 有机合成 官能团化 羧酸类化合物 温室气体
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