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Fluorescence characteristics of participate water-soluble organic compounds emitted from coal-fired boilers

机译:燃煤锅炉排放的水溶性有机化合物的荧光特性

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The fluorescence characteristics of particulate water-soluble organic compounds (WSOC) emitted by different power of coal-fired boilers (A total of 14 boilers including 1, 2, 4, 6, 10, 15, 20 tons steam per hour (th-1)) in Lanzhou, an industrial city of northwest China, were analyzed by excitation-emission matrix (EEM) fluorescence spectroscopy. Results showed that the fluorescence profiles of WSOC in different power coal-fired boiler samples had certain similarities, reflecting the consistency of the fluorophore structures in the coal-originated WSOC. In general, the main excitation (Ex) and emission (Em) wavelength ranges of fluorescence peaks generated by WSOC were XE. = 230-250 nm and XEm = 360-430 nm. Since the fluorophore of WSOC was mainly concentrated in the fluorescent regions II and III, the main components in the fluorophore were tryptophan-like, fulvic acid and humic-like substances. Humification index (HIX), fluorescence index (FI) and freshness index (BIX) were 0.36 0.36, 2.09 0.42 and 1.02 0.30, respectively. It may indicate that the particulate WSOC had a lower degree of humification and lower aromaticity. In the range of larger Stokes shift (41-XE1, > 1.2 um-1), the normalized fluorescence intensity of WSOC showed the largest peak, suggesting that there may be many hydrophobic substances containing a large number of n-conjugated systems in WSOC. These findings are not only conducive to cognize the optical characteristics of particulate matter emitted from coal-fired pollution sources, but also help to consummate the spectral characteristics of coal-fired pollution sources.
机译:燃煤锅炉以不同功率排放的颗粒状水溶性有机化合物(WSOC)的荧光特性(总共14台锅炉,每小时1、2、4、6、10、15、20吨蒸汽(th-1) ))通过激发发射矩阵(EEM)荧光光谱法分析了中国西北部工业城市兰州。结果表明,不同功率的燃煤锅炉样品中WSOC的荧光图具有一定的相似性,反映了起源于WSOC的荧光团结构的一致性。通常,由WSOC生成的荧光峰的主激发(Ex)和发射(Em)波长范围为XE。 = 230-250 nm,XEm = 360-430 nm。由于WSOC的荧光团主要集中在荧光区域II和III,因此荧光团的主要成分是色氨酸样,富里酸和腐殖质样物质。湿度指数(HIX),荧光指数(FI)和新鲜度指数(BIX)分别为0.36 0.36、2.09 0.42和1.02 0.30。这可能表明颗粒WSOC的腐化度较低,芳香性较低。在较大的斯托克斯频移(41-XE1,> 1.2 um-1)范围内,WSOC的归一化荧光强度显示最大峰,表明WSOC中可能存在许多包含大量n共轭体系的疏水性物质。这些发现不仅有助于认识燃煤污染源排放颗粒物的光学特性,而且有助于完善燃煤污染源的光谱特性。

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