| [1] Lu J, Zhou Q, Qi W, et al.The heterogeneous effects of Chinese industrial parks on environmental pollution[J].[J]. Science of The Total Environment, 2023, 896(00):165-279[2] Chen, M, Lin, C., Lai, C., Cheng, L., Yang, Y., Huang, L., et al..Excess lifetime cancer risk assessment of volatile organic compounds emitted from a petrochemical industrial complex. [J].Aerosol Air Qual. Res, 2016, 16(8):1954-1966[3] Hu R, Liu G, Zhang H, et al.Levels, characteristics and health risk assessment of VOCs in different functional zones of Hefei[J].[J]. Ecotoxicology and environmental safety, 2018, 160(00):301-307[4]Gao S, Shi C Z, Fu Q Y.Application of OP-FTIR in Air Pollution Monitoring of Chemical Industry[J].Environmental Science & Technology, 2017, 40(S2):201-206[5]高松, 施禅臻, 伏晴艳.在化工区空气特征污染监测中应用研究[J].环境科学与技术, 2017, 40(S2):201-206[6]Li X X, Gao M G, Xu L.Monitoring of Transport Gases CO\CO2\N2O and CH4 Emissions in Urban Area by OP-FTIR[J].Infrared Technology, 2011, 33(8):473-476[7]李相贤, 高闽光, 徐亮, 等.基于 - 法监测城市交通排放, _, _ 和 _ 气体[J].红外技术, 2011, 33(8):473-476[8]Li Y W, Gao S, Wang X M.A Study on Measurement Method of Air Pollution in Industrial Area Based on OP-FTIR[J].Environmental Monitoring and Forewarning, 2018, 10(5):6-11[9]李跃武, 高松, 王向明, 等.基于 - 的化工区空气特征污染实测方法研究[J].环境监控与预警, 2018, 10(5):6-11[10]Tsao Y C, Wu C F, Chang P E, et al.Efficacy of using multiple open-path Fourier transform infrared (OP-FTIR) spectrometers in an odor emission episode investigation at a semiconductor manufacturing plant[J].Science of the total environment, 2011, 409(17):3158-3165[11]Childers J W, Thompson Jr E L, Harris D B, et al.Multi-pollutant concentration measurements around a concentrated swine production facility using open-path FTIR spectrometry[J].Atmospheric Environment, 2001, 35(11):1923-1936[12]Cheng X X, Liu J G, Zu L.Ouantitative Analysis and Source of Trans-Boundary Gas Pollution inIndustrial Park[J].Spectroscopy and Spectral Analysis, 2022, 42(12):3762-3769[13]成潇潇, 刘建国, 徐亮, 等.工业园区边界污染气体定量分析及来源研究[J].Spectroscopy and Spectral Analysis, 2022, 42(12):3762-3769[14]Hao H, Wang H L, Wei Q.Theory of empirical mode decomposition and its application[J].Qualcomm Technologies & Communications, 2016, 26(01):67-80[15]郝欢, 王华力, 魏勤.经验模态分解理论及其应用[J].高技术通讯, 2016, 26(01):67-80[16]Zhu F G, Zhu X T.Study On the De-noising of Chromatographic Signalsusing the Self-adaptive Median Filter[J].PTCA (PART B:CHEMICAL ANALYSIS), 2004, 40(04):200-203[17]朱凤岗, 朱雪田.自适应中值滤波用于色谱信号去噪的研究[J].理化检验化学分册, 2004, 40(04):200-203[18]Yuan C L, Fan S L, Chai T Y.Advances in atmospheric dispersion modeling[J].ENERGY CONSERVATION, 2016, 35(10):14-18[19]苑春莉, 范世良, 柴天昱等.大气扩散模型的研究进展[J].节能, 2016, 35(10):14-18[20]Yu X M, Cao L.A Review of the Lagrangian Diffusion Model for Atmospheric Pollution[J].Environmental Engineering, 2020, 38(09):145-153[21]于潇萌, 曹乐.种常见拉格朗日大气污染扩散模型的理论与应用研究[J].环境工程, 2020, 38(09):145-153[22]Flesch T K, Wilson J D, Yee E.Backward-time Lagrangian stochastic dispersion models and their application to estimate gaseous emissions[J].Journal of Applied Meteorology and Climatology, 1995, 34(6):1320-1332[23] Bai M, Suter H, Lam S K, et al.Use of open-path FTIR and inverse dispersion technique to quantify gaseous nitrogen loss from an intensive vegetable production site[J]. [J].Atmospheric environment, 2014, 94(00):687-691[24]McGinn S M, Flesch T K, Harper L A, et al.An approach for measuring methane emissions from whole farms[J].Journal of environmental quality, 2006, 35(1):14-20[25] Wang W.Study of Techniques andMethods for MeasuringEmissions of GreenhouseGases and Stable lsotopes[D]. Hefei: University of Science and Technology of China, 2013.[26]王薇.温室气体及其稳定同位素排放通量测量技术和方法研究[D]. 合肥: 中国科学技术大学, 2013. |