共 9 条
- [1] Huang W., Qiu Z.M., Xiao J.J., Et al., Application and research progress in water-borne coatings, New Chemical Materials, 43, 8, pp. 210-212, (2015)
- [2] Mo Z.W., Niu H., Lu S.H., Et al., Process-based emission characteristics of volatile organic compounds(VOCs) from paint industry in the Yangtze River Delta, China, Environmental Science, 36, 6, pp. 1944-1951, (2015)
- [3] Chen W.Y., Industrial VOC hazard analysis and treatment technology research, Chemical Engineering Design Communications, 44, 4, (2018)
- [4] Zhang H.L., Ying Q., Secondary organic aerosol formation and source apportionment in Southeast Texas, Atmospheric Environment, 45, 19, pp. 3217-3227, (2011)
- [5] Boeglin M.L., Wessels D., Henshel D., An investigation of the relationship between air emissions of volatile organic compounds and the incidence of cancer in Indiana counties, Environmental Research, 100, 2, pp. 242-254, (2006)
- [6] Wang H.L., Chemical loss of volatile organic compounds and its impact on the formation of ozone in Shanghai, Environmental Science, 36, 9, pp. 3159-3167, (2015)
- [7] Lu B., Huang C., Lu Q., Et al., Emission inventory and pollution characteristics of industrial VOCs in Hangzhou, China, Environmental Science, 39, 2, pp. 533-542, (2018)
- [8] Gao S., Zhang K., Gao S., Et al., Characteristics of reactive VOCs species during high haze-pollution events in suburban area of Shanghai in winter, Environmental Science, 38, 3, pp. 855-866, (2017)
- [9] Gao W.F., Ran H., Zhao X.X., Et al., Discussion on intercoat-free coating process for automotive, Paint & Coatings Industry, 45, 3, pp. 77-80, (2015)