Laser & Optoelectronics Progress, Volume. 61, Issue 5, 0501001(2024)

Spatial Distribution of Bromine and its Influencing Factors Near the Eastern Shore of Leizhou Peninsula

Weiyi Liu, Zhengye Xiong*, Jingyuan Guo, Xiaoting Liao, and Guo Yu
Author Affiliations
  • College of Electronic and Information Engineering, Guangdong Ocean University, Zhanjiang 524088, Guangdong , China
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    References(41)

    [1] Zhou W, Zeng M, Wang J et al. Determination of major and rare earth elements in rare earth ores by X-ray fluorescence spectrometry with fusion sample preparation[J]. Rock and Mineral Analysis, 37, 298-305(2018).

    [2] Ni Z Y, Cheng D W, Liu M B et al. The rapid detection of trace mercury in soil with EDXRF[J]. Spectroscopy and Spectral Analysis, 41, 734-738(2021).

    [3] Lin Y, Wang H Y, Zhou Y R et al. Research and development status of bromine extracting technique from sea water[J]. Inorganic Chemicals Industry, 44, 5-7(2012).

    [4] Wang X R, Jia Z Y, Chen S et al. ICP-MS determination of bromine and iodine in waters[J]. Physical Testing and Chemical Analysis (Part B: Chemical Analysis), 51, 1187-1190(2015).

    [5] Chen X N. Research on the determination of bromide in water[D], 5-11(2013).

    [6] Jones D R. Applying the phenol red colorimetric method for bromide analysis to reducing waters[J]. Talanta, 40, 43-51(1993).

    [7] Uraisin K, Takayanagi T, Oshima M et al. Kinetic-spectrophotometric method for the determination of trace amounts of bromide in seawater[J]. Talanta, 68, 951-956(2006).

    [8] Jones D R. Improved spectrophotometric method for the determination of low levels of bromide[J]. Analytica Chimica Acta, 271, 315-321(1993).

    [9] Shi J, Zhang J L, Li M. Determination of micro-amounts of bromide by the oxidation and coupled reaction of hydroxylamine[J]. Chemical Engineer, 19, 23-26(2005).

    [10] Shen M. Determination of bromine ion in brine: phenol red spectrophotometry[J]. China Well and Rock Salt, 24, 42-43(1993).

    [11] Fan X T, Zhan X C, Gong A H. Determination of trace elements(Br, Rb, As)in brines by energy dispersive XRF method[J]. Rock and Mineral Analysis, 23, 15-18(2004).

    [12] Li J L, Yuan C G, Tang S M. Rapid determination of bromine in brine[J]. Sea-Lake Salt and Chemical Industry, 33, 26-29(2004).

    [13] Wehausen R, Schnetger B, Brumsack H J et al. Determination of major and minor ions in brines by X-ray fluorescence spectrometry: comparison with other common analytical methods[J]. X-Ray Spectrometry, 28, 168-172(1999).

    [14] Song J T, Zhao Q L. Determination of bromine in brine samples by wavelength dispersive X-ray fluorescence spectrometry with pressed powder preparation[J]. Rock and Mineral Analysis, 30, 494-496(2011).

    [15] Pashkova G V, Aisueva T S, Finkelshtein A L et al. Analytical approaches for determination of bromine in sediment core samples by X-ray fluorescence spectrometry[J]. Talanta, 160, 375-380(2016).

    [16] Kozachuk M S, Sham T K, Martin R R et al. Bromine, a possible marine diet indicator? A hypothesis revisited[J]. Archaeometry, 62, 1267-1279(2020).

    [17] Song H S, Chen Z, Xu D C et al. Prediction of Cr, Mn, and Ni in medium and low alloy steels by GA-BP neural network combined with EDXRF technology[J]. Laser & Optoelectronics Progress, 59, 1234001(2022).

    [18] Li Z Y, Wang C, Li Q L et al. Prediction model of aluminized layer thickness based on X-ray fluorescence and extreme gradient boosting[J]. Laser & Optoelectronics Progress, 59, 2134001(2022).

    [19] Wen H M. The research about the relevant technologies involved in X-ray fluorescence analysis[D], 21-25(2010).

    [20] Chen S L, Chi J, Chen B et al. Uncertainty evaluation of measurement results for the determination of lead in soil samples by X-ray fluorescence spectrometry[J]. Environmental Monitoring in China, 24, 43-47(2008).

    [21] Xie X Q, Huo H Y. Determination of six components in high titanium slag by energy dispersive X-ray fluorescence spectrometry with pressed powder pellet[J]. Metallurgical Analysis, 41, 34-39(2021).

    [22] Huang W, Hu B Q, Xu L et al. Rapid in situ assaying of deep-sea sediments by portable X-ray fluorescence spectrometry and its applicability assessment[J]. Geological Bulletin of China, 40, 423-433(2021).

    [23] Wang H M, Zhang Y, Xu L et al. Determination of twenty-eight elements in marine clastic sediment samples by energy dispersive X-ray fluorescence spectrometry[J]. Advances in Marine Science, 38, 70-80(2020).

    [24] Wang Y, Gan T T, Zhao N J et al. Rapid detection method of heavy metal chromium in water by enrichment of chlorella pyrenoidosa and XRF spectrometry[J]. Acta Optica Sinica, 42, 2430004(2022).

    [25] Zhan X C, Chen Y J, Zheng M Z et al. Determination of trace Br, Cl and S in rock, soil and sediment samples by X-ray fluorescence spectrometry[J]. Rock and Mineral Analysis, 21, 12-18(2002).

    [26] Zhang Q, Li G H, Fan S Z et al. Study on determination of 42 major, minor and trace elements in soil and stream sediment samples[J]. Chinese Journal of Analysis Laboratory, 27, 51-57(2008).

    [27] Mayer L M, Macko S A, Mook W H et al. The distribution of bromine in coastal sediments and its use as a source indicator for organic matter[J]. Organic Geochemistry, 3, 37-42(1981).

    [28] Vainikka P, Hupa M. Review on bromine in solid fuels. Part 1: natural occurrence[J]. Fuel, 95, 1-14(2012).

    [29] Wang Q J, Zhou Y F, Zhou J X et al. Doped PANI coated nano-Ag electrode for rapid in-situ detection of bromide in seawater[J]. Coatings, 9, 325(2019).

    [30] Fukushi K, Ishio N, Urayama H et al. Simultaneous determination of bromide, nitrite and nitrate ions in seawater by capillary zone electrophoresis using artificial seawater as the carrier solution[J]. Electrophoresis, 21, 388-395(2000).

    [31] Xie L L, Cao R X, Shang Q T. Progress of study on coastal circulation near the shore of western Guangdong[J]. Journal of Guangdong Ocean University, 32, 94-98(2012).

    [32] Wang Q Y, Wang X W, Yan L. Role of wind-induced current through Qiongzhou Strait in summer[C], 135-137(2010).

    [33] Shi M C, Chen C S, Xu Q C et al. The role of Qiongzhou strait in the seasonal variation of the South China Sea circulation[J]. Journal of Physical Oceanography, 32, 103-121(2002).

    [34] Yan J H, Chen D S. The characteristics of low frequency currents in the area of Shuidong anchored floating whelf in the west of Guangdong coastal waters[J]. Transaction of Oceanology and Limnology, 8-15(2005).

    [35] Sun X P, Xiu S M, Su Y F. Preliminary study on “the continental shelf warm currents in the East China Sea and South China Sea”[J]. Marine Science Bulleten, 15, 1-10(1996).

    [36] Yang S Y, Bao X W, Chen C S et al. Analysis on characteristics and mechanism of current system in west coast of Guangdong Province in the summer[J]. Acta Oceanologica Sinica, 25, 1-8(2003).

    [37] Chen D S, Chen B, Yan J H et al. The seasonal variation characteristics of residual currents in the Qiongzhou strait[J]. Transactions of Oceanology and Limnology, 12-17(2006).

    [38] Pang H L, Gao H W, Song P P et al. Analysis of diffuse route of the Zhujiang River diluted water in Summer[J]. Marine Forecasts, 23, 58-63(2006).

    [39] Ying Z F. On the coast current and its deposit along western coast in Guangdong[J]. Acta Scientiarum Naturalium Universitatis Sunyatseni, 38, 85-89(1999).

    [40] Li X B, Sun X Y, Song J et al. Three-dimensional numerical simulation of tidal current in Zhanjiang Bay[J]. Marine Science Bulletin, 30, 509-517(2011).

    [41] Sha W Y, Lü X G, Zhang W J et al. Synthetic property of diurnal constituent, tide and tidal current of the sea regions around Taiwan island[J]. Marine Sciences, 26, 62-69(2002).

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    Weiyi Liu, Zhengye Xiong, Jingyuan Guo, Xiaoting Liao, Guo Yu. Spatial Distribution of Bromine and its Influencing Factors Near the Eastern Shore of Leizhou Peninsula[J]. Laser & Optoelectronics Progress, 2024, 61(5): 0501001

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    Paper Information

    Category: Atmospheric Optics and Oceanic Optics

    Received: Dec. 31, 2022

    Accepted: Mar. 15, 2023

    Published Online: Feb. 27, 2024

    The Author Email: Zhengye Xiong (xiongzhengye@139.com)

    DOI:10.3788/LOP223454

    CSTR:32186.14.LOP223454

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