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TDLAS直接吸收法测量CO2的基线选择方法

朱晓睿,卢伟业,饶雨舟,李越胜,卢志民,姚顺春

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朱晓睿, 卢伟业, 饶雨舟, 李越胜, 卢志民, 姚顺春. TDLAS直接吸收法测量CO2的基线选择方法[J]. , 2017, 10(4): 455-461. doi: 10.3788/CO.20171004.0455
引用本文: 朱晓睿, 卢伟业, 饶雨舟, 李越胜, 卢志民, 姚顺春. TDLAS直接吸收法测量CO2的基线选择方法[J]. , 2017, 10(4): 455-461.doi:10.3788/CO.20171004.0455
ZHU Xiao-rui, LU Wei-ye, RAO Yu-zhou, LI Yue-sheng, LU Zhi-min, YAO Shun-chun. Selection of baseline method in TDLAS direct absorption CO2 measurement[J]. Chinese Optics, 2017, 10(4): 455-461. doi: 10.3788/CO.20171004.0455
Citation: ZHU Xiao-rui, LU Wei-ye, RAO Yu-zhou, LI Yue-sheng, LU Zhi-min, YAO Shun-chun. Selection of baseline method in TDLAS direct absorption CO2measurement[J].Chinese Optics, 2017, 10(4): 455-461.doi:10.3788/CO.20171004.0455

TDLAS直接吸收法测量CO2的基线选择方法

doi:10.3788/CO.20171004.0455
基金项目:

广东省质量技术监督局科技计划项目2016ZT01

"广东特支计划"科技青年拔尖人才资助项目2014TQ01N334

广州市珠江科技新星专项2014J2200054

详细信息
    作者简介:

    朱晓睿(1993-), 男, 广东湛江人, 硕士研究生, 主要从事TDLAS技术监测气体方面的研究。E-mail:1241997882@qq.com

    姚顺春(1983-), 男, 浙江龙游人, 博士, 副教授, 硕士生导师, 主要从事燃烧诊断、排放监测及其控制技术方面的研究

    通讯作者:

    姚顺春, E-mail:epscyao@scut.edu.cn

  • 中图分类号:O443.1

Selection of baseline method in TDLAS direct absorption CO2measurement

Funds:

Science and Technology Project of GDQTS2016ZT01

Project of "Guangdong Special Branch Plan "Science Young Talents2014TQ01N334

Guangzhou Pearl River Science and Technology Rising Star Special Project2014J2200054

More Information
  • 摘要:本文基于可调谐半导体 吸收谱线(TDLAS)技术的直接吸收测量,选用中心工作波长为1 580 nm的DFB 器,在室温及大气常压条件下检测了模拟烟气中的CO 2浓度;采用去峰拟合法和纯N 2线拟合法获得基线后反算出了CO 2的浓度,并将反算结果进行了对比。结果表明:采用纯N 2线拟合法反算出的浓度的最大相对误差为2.64%,均方值为1.69%;采用去拟合法反算出的浓度的最大相对误差为9.81%,均方值为7.81%。以纯N 2吸收谱线作基线的纯N 2线拟合方法反算出的浓度的准确度较高,可以为CO 2浓度测量的基线选择提供参考。

  • 图 1CO2、H2O、NO在1 580 nm附近的吸收谱线图[12]

    Figure 1.Absorption lines of CO2, H2O, NO nearby 1 580 nm

    图 2实验装置图

    Figure 2.Experimental setup

    图 31 580 nm 器测得的纯N2线与各体积分数CO2的吸收谱线

    Figure 3.Pure N2line and absorption lines of different concentrations of CO2measured by 1 580 nm laser

    图 4去峰拟合法获得的基线

    Figure 4.Baseline obtained by the removing absorption peak fitting method

    图 5纯N2线拟合法获得的基线

    Figure 5.Baseline obtained by the pure N2line fitting method

    图 6CO2配置浓度与反算浓度之间的线性关系

    Figure 6.Linear relationship between true concentration of CO2and its fitted concentration

    表 1去峰拟合法处理得到的结果

    Table 1.Results obtained by the removingabsorption peak fitting method

    Serial
    number
    True
    concen-
    tration/%
    Fitted
    concen-
    tration/%
    Absolute
    error/%
    Relative
    error/%
    1 10 9.5 -0.48 -4.88
    2 12 10.8 -1.17 -9.81
    3 14 12.7 -1.27 -9.12
    4 16 14.9 -1.04 -6.51
    5 18 16.7 -1.22 -6.81
    6 20 18.3 -1.71 -8.56
    下载: 导出CSV

    表 2纯N2线拟合法处理得到的结果

    Table 2.Results obtained by the pure N2line fitting method

    Serial
    number
    True
    concen-
    tration/%
    Fitted
    concen-
    tration/%
    Absolute
    error/%
    Relative
    error/%
    1 10 10.1 0.05 0.55
    2 12 12.2 0.27 2.32
    3 14 14.3 0.37 2.64
    4 16 16.1 0.12 0.78
    5 18 17.9 -0.03 -0.17
    6 20 19.6 -0.38 -1.92
    下载: 导出CSV
  • [1] 张建宇, 潘荔, 杨帆, 等.中国燃煤电厂大气污染物控制现状分析[J].环境工程技术学报, 2011, 1(3):185-196.http://www.cnki.com.cn/Article/CJFDTOTAL-ZHBY200904020.htm

    ZHANG J Y, PAN L, YANG F, et al.. Study on current status of air pollution control for coal-fired power plants in China[J]. Journal of Environmental Engineering Technology, 2011, 1(3):185-196. (in Chinese)http://www.cnki.com.cn/Article/CJFDTOTAL-ZHBY200904020.htm
    [2] 李亚萍, 张广军, 李庆波.空间双光路红外CO2气体传感器及其测量模型[J].光学精密工程, 2009, 17(1):14-19

    LI Y P, ZHANG G J, LI Q B. Infrared CO2gas sensor based on space double beams and its measurement model[J]. Optics and Precision Engineering, 2009, 17(1):14-19. (in Chinese)
    [3] 潘卫东, 张佳薇, 戴景民, 等.可调谐半导体 吸收光谱技术检测痕量乙烯气体的系统研制[J].光谱学与光谱分析, 2012, 32(10):2875-2878.doi:10.3964/j.issn.1000-0593(2012)10-2875-04

    PAN W D, ZHANG J W, DAI J M, et al.. Tunable diode laser absorption spectroscopy system for trace ethylene detection[J]. Spectroscopy and Spectral Analysis, 2012, 32(10):2875-2878. (in Chinese)doi:10.3964/j.issn.1000-0593(2012)10-2875-04
    [4] 何莹, 张玉钧.基于 吸收光谱开放式大气CO2的在线监测[J].光谱学与光谱分析, 2009, 29(1):10-13.doi:10.3964/j.issn.1000-0593(2009)01-0010-04

    HE Y, ZHANG Y J. Open-path online monitoring of ambient atmospheric CO2based on laser absorption spectrum[J]. Spectroscopy and Spectral Analysis, 2009, 29(01):10-13. (in Chinese)doi:10.3964/j.issn.1000-0593(2009)01-0010-04
    [5] 姜波.提高CEMS测量可靠性的方法[J].资源节约与环保, 2014(9):73-74.http://www.cnki.com.cn/Article/CJFDTOTAL-ZYJH201409078.htm

    JIANG B. Methods to improve the reliability of CEMS measurement[J]. Resources Economization & Environmental Protection, 2014(9):73-74. (in Chinese)http://www.cnki.com.cn/Article/CJFDTOTAL-ZYJH201409078.htm
    [6] 罗淑芹. 基于TDLAS的CO2气体检测分析系统[D]. 哈尔滨: 哈尔滨工业大学, 2013.

    LUO S H Q. Detection and analysis system for CO2gas based on TDLAS[D]. Harbin:Harbin Institute of Technology, 2013. (in Chinese)
    [7] 涂兴华, 刘文清, 张玉钧. CO和CO2的1.58 μm波段可调谐二极管 吸收光谱的二次谐波检测研究[J].光谱学与光谱分析, 2006, 26(7):1190-1194.

    TU X H, LIU W Q, ZHANG Y J. Second-harmonic detection with tunable diode laser absorption spectroscopy of CO and CO2at 1.58 μm[J]. Spectroscopy and Spectral Analysis, 2006, 26(7):1190-1194. (in Chinese)
    [8] 李宁. 基于可调谐 吸收光谱技术的气体在线检测及二维分布重建研究[D]. 杭州: 浙江大学, 2008.

    LI N. Research on gas detection and 2D distribution reconstruction by tunable diode laser absorption spectroscopy technique[D]. Hangzhou:Zhejiang University, 2008. (in Chinese)
    [9] 张志荣, 夏滑, 董凤忠.可调谐半导体 吸收光谱方法的多组分气体浓度同时在线监测技术[J].光学精密工程, 2013, 21(11):2771-2777.http://www.cnki.com.cn/Article/CJFDTOTAL-GXJM201311006.htm

    ZHANG ZH R, XIA H, DONG F ZH. Simultaneous and on-line detection of multiple gas concentration with tunable diode laser absorption spectroscopy[J]. Optics and Precision Engineering, 2013, 21(11):2771-2777. (in Chinese)http://www.cnki.com.cn/Article/CJFDTOTAL-GXJM201311006.htm
    [10] 曾怡帅, 杨友良, 马翠红.有尘环境多组分气体成分检测系统的设计[J].发光学报, 2016, 37(7):859-865.http://www.cnki.com.cn/Article/CJFDTOTAL-FGXB201607027.htm

    ZENG Y SH, YANG Y L, MA C H. Design of the detection system of multi component gas composition in dust environment[J]. Chinese Journal of Luminescence, 2016, 37(7):859-865. (in Chinese)http://www.cnki.com.cn/Article/CJFDTOTAL-FGXB201607027.htm
    [11] 陈霄, 隋青美, 苗飞, 等.应用单一超窄线宽 器的多气体检测系统设计[J].光学精密工程, 2011, 19(7):1495-1502.http://www.cnki.com.cn/Article/CJFDTOTAL-GXJM201107013.htm

    CHEN X, SUI Q M, MIAO F, et al.. Design of detecting system for multi-component gases based on single ultra-narrow-linewidth laser[J]. Optics and Precision Engineering, 2011, 19(7):1495-1502. (in Chinese)http://www.cnki.com.cn/Article/CJFDTOTAL-GXJM201107013.htm
    [12] HITRAN. HITRAN Database[Z/OL].[2017-02-21].http://www.hitran.org.
    [13] 姚华. 采用可调谐 吸收光谱技术遥测甲烷气体浓度的研究[D]. 杭州: 浙江大学, 2011.

    YAO H. Research on remote sensing of methane based on tunable diode laser absorption spectroscopy technique[D]. Hangzhou:Zhejiang University, 2011. (in Chinese)
    [14] 窦贺鑫. 基于TDLAS的气体在线检测系统研究[D]. 天津: 天津大学, 2007.

    DOU H X. Detection and analysis system for CO2gas based on TDLAS[D]. Tianjin:Tianjin University, 2007. (in Chinese)
    [15] 何莹, 张玉钧, 阚瑞峰, 等.基于 吸收光谱乙炔在线监测技术的研究[J].光谱学与光谱分析, 2008(10):2228-2231.doi:10.3964/j.issn.1000-0593(2008)10-2228-04

    HE Y, ZHANG Y J, KAN R F, et al.. The development of acetylene on-line monitoring technology based on laser absorption spectrum[J]. Spectroscopy and Spectral Analysis, 2008(10):2228-2231. (in Chinese)doi:10.3964/j.issn.1000-0593(2008)10-2228-04
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出版历程
  • 收稿日期:2017-02-21
  • 修回日期:2017-03-31
  • 刊出日期:2017-08-01

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