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· 1616 ·                                环境工程技术学报                                         第 12 卷

            元件制造业      的  VOC 排放贡献主要来源于排放量>                         2013-2017  trends  in  summer  surface  ozone  in  China[J].
                              s
            300 t/ 的大型企业,不同排放规模的橡胶和塑料制                              Proceedings of the National Academy of Sciences of the United
                 a
                                                                    States of America,2019,116(2):422-427.
            品企业、印刷企业,对行          业  VOC 排放贡献较为均匀。
                                        s
                                                              [  7  ]   LI  L,  LI  Q,  HUANG  L,  et  al.  Air  quality  changes  during  the
                (2)受水性原料替代和末端治理设施等控制
                                                                    COVID-19 lockdown over the Yangtze River Delta Region: an
            政策的影响,四大行业固定排放源                   VOC 组分以               insight into the impact of human activity pattern changes on air
                                                  s
            OVOC 为主,排放量占比          为  76.8%~97.0%;表面涂               pollution  variation[J].  Science  of  the  Total  Environment,2020,
                  s
            装行业、电子元件制造业的特征污染物为甲醛,平均                                 732:139282.
            排放量占比分别         为  47.6 %  和  23.1%;橡胶和塑料制        [  8  ]   成翔, 赵继峰, 肖洋, 等.工业聚集区大气VOCs组成特征及对臭
                                                                    氧生成的影响[J]. 环境工程技术学报,2020,10(5):823-830.
            品行业、印刷行业的特征污染物为乙醛,平均排放量
                                                                    CHENG  X,  ZHAO  J  F,  XIAO  Y,  et  al.  Composition
            占比分别     为  18.3 %  和  18.1%。
                                                                    characteristics of atmospheric VOCs and the influence on ozone
                (3)四大行业的末端工艺类型均              以  U 光解、水              formation  in  an  industrial  cluster  area[J].  Journal  of
                                                 V
            喷淋、活性炭吸附的低效组合工艺为主,占比约                                   Environmental Engineering Technology,2020,10(5):823-830.
            51.4%~69.6%;评估结果显示,所测试的典型组合工                      [  9  ]   陈颖, 叶代启, 刘秀珍, 等.我国工业源VOCs排放的源头追踪和
            艺中,78   %  的设施平均处理率均低          于  35%,治理方案              行业特征研究[J]. 中国环境科学,2012,32(1):48-55.
                                                                    CHEN  Y,  YE  D  Q,  LIU  X  Z,  et  al.  Source  tracing  and
            缺乏针对性、运行管理缺乏规范性是造成溶剂使用
                                                                    characteristics of industrial VOCs emissions in China[J]. China
            源  VOC 末端削减率偏低的主要因素。
                   s
                                                                    Environmental Science,2012,32(1):48-55.
                (4)为有效削减末端排放          口  VOC 排放水平,应           [10]   ZHOU Z H, TAN Q W, DENG Y, et al. Emission inventory of
                                             s
            当针对各类      涉  VOC 工序选取合适的环境友好型原                         anthropogenic air pollutant sources and characteristics of VOCs
                              s
            辅料进行源头替代;同时,应统筹考虑末端治理的技                                 species  in  Sichuan  Province,  China[J].  Journal  of  Atmospheric
            术可行性和管理有效性,鼓励并指导企业建设适宜                                  Chemistry,2019,76(1):21-58.
                                                              [11]   徐超, 罗灯远.涂装喷漆室有机废气VOC治理技术研究[J]. 汽
            高效的治理设施,对采用高效治理技术的企业予以
                                                                    车实用技术,2019(1):165-167.
            环保资金的倾向,提升末端治理水平。
                                                                    XU C, LUO D Y. Study on VOC treatment technology of organic
                                                                    exhaust  gas  in  paint  shop[J].  Automobile  Applied  Technology,
            参考文献                                                    2019(1):165-167.
            [  1  ]   沈劲, 陈多宏, 汪宇, 等.基于情景分析的珠三角臭氧与前体物         [12]   DHITAL N B, YANG H H, WANG L C, et al. VOCs emission
                  排放关系研究[J]. 生态环境学报,2018,27(10):1925-1932.          characteristics  in  motorcycle  exhaust  with  different  emission
                  SHEN J, CHEN D H, WANG Y, et al. Study on the relationship  control  devices[J].  Atmospheric  Pollution  Research,2019,
                  between ozone and precursors emission in the Pearl River Delta  10(5):1498-1506.
                  based  on  scenario  analysis[J].  Ecology  and  Environmental  [13]   栾志强, 郝郑平, 王喜芹.工业固定源VOCs治理技术分析评
                  Sciences,2018,27(10):1925-1932.                   估[J]. 环境科学,2011,32(12):3476-3486.
            [  2  ]   YANG Y C, LIU X G, ZHENG J, et al. Characteristics of one-  LUAN  Z  Q,  HAO  Z  P,  WANG  X  Q.  Evaluation  of  treatment
                  year  observation  of  VOCs,  NO ,  and  O   at  an  urban  site  in  technology  of  volatile  organic  compounds  for  fixed  industrial
                                      x     3
                  Wuhan, China[J]. Journal of Environmental Sciences,2019,79:  resources[J]. Environmental Science,2011,32(12):3476-3486.
                  297-310.                                    [14]   王刚, 魏巍, 米同清, 等.典型工业无组织源VOCs排放特征[J].
            [  3  ]   ZHENG  J  Y,  SHAO  M,  CHE  W  W,  et  al.  Speciated  VOC  中国环境科学,2015,35(7):1957-1964.
                  emission  inventory  and  spatial  patterns  of  ozone  formation  WANG  G,  WEI  W,  MI  T  Q,  et  al.  Characteristics  of  VOCs
                  potential  in  the  Pearl  River  Delta,  China[J].  Environmental  emitted from typical industrial fugitive[J]. China Environmental
                  Science & Technology,2009,43(22):8580-8586.       Science,2015,35(7):1957-1964.
            [  4  ]   YAHAYA N A, JALALUDIN J. Exposure to indoor PM  and  [15]   羌宁, 史天哲, 缪海超.挥发性有机物污染控制方案的运行费用
                                                      10
                  volatile organic compounds and its association with respiratory  效能比较[J]. 环境科学,2020,41(2):638-646.
                  health  among  preschool  children  from  urban  and  rural  areas  in  QIANG N, SHI T Z, MIAO H C. Operation and maintenance of
                  Selangor[C]//Springer, 2014. doi:10.1007/978-981-4560-70-2_3.  cost-effective   volatile   organic   compounds   abatement
            [  5  ]   严刚, 薛文博, 雷宇, 等.我国臭氧污染形势分析及防控对策建               alternatives[J]. Environmental Science,2020,41(2):638-646.
                  议[J]. 环境保护,2020,48(15):15-19.               [16]   王敏燕, 姚震, 聂磊, 等.基于含VOCs原辅材料和产污环节实测
                  YAN G, XUE W B, LEI Y, et al. Situation and control measures  的印刷行业VOCs排放特征分析[J]. 环境科学研究,2021,
                  of ozone pollution in China[J]. Environmental Protection,2020,  34(1):114-123.
                  48(15):15-19.                                     WANG M Y, YAO Z, NIE L, et al. Volatile organic compounds
            [  6  ]   LI  K,  JACOB  D  J,  LIAO  H,  et  al.  Anthropogenic  drivers  of  (VOCs)  emission  characteristics  in  printing  industry  based  on
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