Page 261 - 《环境工程技术学报》2022年第5期
P. 261
第 5 期 黄俊霖等:深圳市典型溶剂使用 源 VOC 排放特征、治理现状与减排对策 · 1617 ·
s
actual measurement of VOCs raw materials and pollution 性炭上吸附平衡的影响[J]. 环境科学学报,2002,22(2):194-
process[J]. Research of Environmental Sciences,2021 ,34 (1 ) : 198.
114-123. GAO H S, WANG D H, YE Y C, et al. The influence of
[17] 黄鹤雯, 沙青娥, 朱曼妮, 等.珠三角2010—2017年主要工业源 atmospheric humidity on the adsorption capacity of activated
VOCs排放结构与组分变化[J]. 中国环境科学,2020,40(11): carbon for low-concentration VOCs[J]. Acta Scientiae
4641-4651. Circumstantiae,2002,22(2):194-198.
HUANG H W, SHA Q E, ZHU M N, et al. Evolution of emission [27] 陈雷, 张喆, 马千里, 等.影响活性炭吸附挥发性有机化合物效
characteristics and species of industrial VOCs emission in Pearl 果的因素解析[J]. 汽车工艺与材料,2016(5):48-50.
River Delta Region, 2010-2017[J]. China Environmental [28] 成志明, 张海鹰, 林吉凡.UV光催化处理VOCs的技术要点探
Science,2020,40(11):4641-4651.
析[J]. 山东工业技术,2018(7):30.
[18] 吴健, 高松, 陈曦, 等.涂料制造行业挥发性有机物排放成分谱
[29] 吴迪, 刘淼, 董德明, 等.影响羟基自由基在O /UV体系中生成
3
及影响[J]. 环境科学,2020,41(4):1582-1588.
规律的因素[J]. 吉林大学学报(地球科学版),2007,37(1):148-
WU J, GAO S, CHEN X, et al. Source profiles and impact of
152.
volatile organic compounds in the coating manufacturing
WU D, LIU M A, DONG D M, et al. Some impact factors of
industry[J]. Environmental Science,2020,41(4):1582-1588.
generation rules of hydroxyl radicals in O /UV system[J]. Journal
3
[19] 郝睿. VUV/β-Ga O 光催化降解室内VOCs研究[D]. 杭州: 浙江
2 3
of Jilin University (Earth Science Edition),2007 ,37 (1 ) :148-
大学, 2010.
152.
[20] LEWANDOWSKI D A. Design of thermal oxidation system for
[30] 秦德昌, 庆宏, 钟瑞芬, 等.医院在用紫外线杀菌灯辐射照度分
volatile organic compounds[M]. Boca Raton: Lewis Publisher,
布状况及衰减规律研究[J]. 中国医疗设备,2019,34(12):23-
2000.
25.
[21] 修光利, 吴应, 王芳芳, 等.我国固定源挥发性有机物污染管控
QIN D C, QING H, ZHONG R F, et al. Research on irradiance
的现状与挑战[J]. 环境科学研究,2020,33(9):2048-2060.
distribution and attenuation rule of ultraviolet germicidal lamps in
XIU G L, WU Y, WANG F F, et al. Current status and challenge
use in our hospital[J]. China Medical Devices,2019,34(12):23-
for control of volatile organic compounds (VOCs) from
25.
stationary sources in China[J]. Research of Environmental
[31] 王迪, 赵文娟, 张玮琦, 等.溶剂使用源挥发性有机物排放特征
Sciences,2020,33(9):2048-2060.
与污染控制对策[J]. 环境科学研究,2019,32(10):1687-1695.
[22] 费波. 船舶涂装工艺VOCs处理关键技术及试验性研究[D]. 徐
WANG D, ZHAO W J, ZHANG W Q, et al. Emission profile and
州: 中国矿业大学, 2019.
control countermeasures of volatile organic compounds in
[23] 刘晓敏, 邓先伦, 朱光真.活性炭吸附挥发性有机物的影响因素
solvent-using source[J]. Research of Environmental Sciences,
研究进展[J]. 生物质化学工程,2010,44(6):52-58.
2019,32(10):1687-1695.
LIU X M, DENG X L, ZHU G Z. Research progress in the
[32] 邹文君, 刘杰, 鲍仙华, 等.国内外涂料制造工业挥发性有机物
activated carbon adsorption on volatile organic compounds[J].
排放标准比较[J]. 环境科学研究,2019,32(3):380-389.
Biomass Chemical Engineering,2010,44(6):52-58.
[24] 高宗江, 李成, 郑君瑜, 等.工业源VOCs治理技术效果实测评 ZOU W J, LIU J, BAO X H, et al. Comparison of emission
估[J]. 环境科学研究,2015,28(6):994-1000. standards of volatile organic compounds for coating industry in
GAO Z J, LI C, ZHENG J Y, et al. Evaluation of industrial VOCs domestic and foreign areas[J]. Research of Environmental
treatment techniques by field measurement[J]. Research of Sciences,2019,32(3):380-389.
Environmental Sciences,2015,28(6):994-1000. [33] 何晓辉.印刷材料VOCs含量测试[J]. 中国印刷与包装研究,
[25] 高宗江. 典型工业涂装行业VOCs排放特征研究[D]. 广州: 华南 2014,6(1):66-70.
理工大学, 2015. HE X H. Test on content of VOCs in printing materials[J]. China
[26] 高华生, 汪大翚, 叶芸春, 等.空气湿度对低浓度有机蒸气在活 Printing and Packaging Study,2014,6(1):66-70. □