光电工程
光電工程
광전공정
OPTO-ELECTRONIC ENGINEERING
2014年
9期
51-55
,共5页
何俊%尚丽平%邓琥%王顺利%武志翔
何俊%尚麗平%鄧琥%王順利%武誌翔
하준%상려평%산호%왕순리%무지상
多环芳烃%激光诱导荧光%定量检测%250nm激光%光学检测
多環芳烴%激光誘導熒光%定量檢測%250nm激光%光學檢測
다배방경%격광유도형광%정량검측%250nm격광%광학검측
polycyclic aromatic hydrocarbons (PAHs)%laser-induced fluorescence (LIF)%quantitative detection%250 nm laser%optical detection
为了提高激光诱导荧光(Laser-Induced Fluorescence,LIF)方法对土壤中多环芳烃(Polycyclic Aromatic Hydrocarbons,PAHs)检测的精度,以蒽、芘、菲三种多环芳烃的标准土壤混合物作为样本,通过紫外吸收光谱研究了这三种物质的最佳激发波长为250 nm,主要采用ND6000可调谐染料激光器、500is-sm型三光栅光谱仪和DK734-18F型ICCD构建了LIF方法测量土壤中多环芳烃的检测系统。在250 nm激光激发下,这三种PAHs的土壤混合样本的荧光发射光谱满足各自特征发射光谱,不同质量分数和其荧光强度线性相关系数达到0.97以上。实验结果表明该检测系统提高了对土壤中PAHs的检出限和线性相关性。
為瞭提高激光誘導熒光(Laser-Induced Fluorescence,LIF)方法對土壤中多環芳烴(Polycyclic Aromatic Hydrocarbons,PAHs)檢測的精度,以蒽、芘、菲三種多環芳烴的標準土壤混閤物作為樣本,通過紫外吸收光譜研究瞭這三種物質的最佳激髮波長為250 nm,主要採用ND6000可調諧染料激光器、500is-sm型三光柵光譜儀和DK734-18F型ICCD構建瞭LIF方法測量土壤中多環芳烴的檢測繫統。在250 nm激光激髮下,這三種PAHs的土壤混閤樣本的熒光髮射光譜滿足各自特徵髮射光譜,不同質量分數和其熒光彊度線性相關繫數達到0.97以上。實驗結果錶明該檢測繫統提高瞭對土壤中PAHs的檢齣限和線性相關性。
위료제고격광유도형광(Laser-Induced Fluorescence,LIF)방법대토양중다배방경(Polycyclic Aromatic Hydrocarbons,PAHs)검측적정도,이은、비、비삼충다배방경적표준토양혼합물작위양본,통과자외흡수광보연구료저삼충물질적최가격발파장위250 nm,주요채용ND6000가조해염료격광기、500is-sm형삼광책광보의화DK734-18F형ICCD구건료LIF방법측량토양중다배방경적검측계통。재250 nm격광격발하,저삼충PAHs적토양혼합양본적형광발사광보만족각자특정발사광보,불동질량분수화기형광강도선성상관계수체도0.97이상。실험결과표명해검측계통제고료대토양중PAHs적검출한화선성상관성。
Laser-Induced Fluorescence is a safe and highly sensitive optical inspection method for detecting Polycyclic Aromatic Hydrocarbons (PAHs) in the environment. To improve the precision of the detection, we use as samples the anthracene-soil, pyrene-soil, and phenanthrene-soil mixtures, respectively. Through the measurements of ultraviolet absorption spectrum, we determine the optimal excitation wavelength of the three PAHs to be 250 nm. The detection system is constructed mainly by ND6000 tunable dye laser, 500is-sm spectrograph, and ICCD (DK734-18F). With 250 nm laser, the fluorescence emission spectra of the three mixture samples are consistent with their characteristic emissions, respectively, and different mass fractions exhibit good linearity to the fluorescence intensities with the correlation coefficients up to above 0.97. It is demonstrated by experiment that the detection system improves the limit of detection and the linear correlation.