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钢铁冶炼行业二英排放特性和厂区内大气中二英分布规律
引用本文:王凤炜,付建英,林晓青,陈彤,詹明秀.钢铁冶炼行业二英排放特性和厂区内大气中二英分布规律[J].环境科学学报,2018,38(4):1404-1409.
作者姓名:王凤炜  付建英  林晓青  陈彤  詹明秀
作者单位:天津市环境监测中心;中国联合工程公司;浙江大学热能工程研究所能源清洁利用国家重点实验室;中国计量大学计量测试工程学院;
基金项目:国家自然科学基金(No.51476138)
摘    要:对我国某市6家钢铁企业烟气中的二噁英(PCDD/Fs)污染水平和排放特性做了初步研究,同时对厂区内大气中的二噁英浓度水平进行了分析.结果表明,6家钢铁企业中,铁矿石烧结炉排放的二噁英浓度远高于炼钢精炼炉,烧结炉二噁英排放浓度为0.098~3.6 ng·Nm~(-3)(以ITEQ计),2个炼钢精炼炉烟气中二噁英的浓度分别为0.0037和0.078 ng·Nm~(-3)(以I-TEQ计),烟气排放达标率为66.67%.6家钢铁企业厂区内大气环境中的二噁英浓度变化范围为0.17~0.69 pg·m~(-3)(以I-TEQ计),平均值为0.41 pg·m~(-3)(以I-TEQ计),其中有两家企业略高于大气质量二噁英的推荐值.对烟气和大气中17种有毒二噁英的分布进行对比分析发现,污染源和大气中二噁英分布具有相似的指纹特性,推测厂区内大气中二噁英分布主要与污染源排放有关.

关 键 词:二英  钢铁行业  烧结炉  精炼炉  指纹特性
收稿时间:2017/9/5 0:00:00
修稿时间:2017/11/4 0:00:00

The emission characteristics of dioxins from steel industry and distribution of dioxins in the atmosphere of plant
WANG Fengwei,FU Jianying,LIN Xiaoqing,CHEN Tong and ZHAN Mingxiu.The emission characteristics of dioxins from steel industry and distribution of dioxins in the atmosphere of plant[J].Acta Scientiae Circumstantiae,2018,38(4):1404-1409.
Authors:WANG Fengwei  FU Jianying  LIN Xiaoqing  CHEN Tong and ZHAN Mingxiu
Institution:Tianjin Environmental Monitoring Center, Tianjin 300000,China United Engineering Corporation, Hangzhou 310052,State Key Laboratory of Clean Energy Utilization, Institute for Thermal Power Engineering, Zhejiang University, Hangzhou 310027,State Key Laboratory of Clean Energy Utilization, Institute for Thermal Power Engineering, Zhejiang University, Hangzhou 310027 and College of Metrology and Measurement Engineering, China Jiliang University, Hangzhou 310018
Abstract:The emission level and characteristics of dioxins from 6 steel plants were investigated as well as the concentration of dioxins in the surrounding atmosphere. The results showed that the concentration of dioxins emitted from the sintering furnace were much higher than that of the refining furnaces. In detail, the concentrations of dioxins ranged from 0.098~3.6 ng·Nm-3 (as I-TEQ) for sintering furnaces. Moreover, the concentrations of dioxins were 0.0037 and 0.078 ng·Nm-3 (as I-TEQ) for the other two refining furnaces. Furthermore, only 66.67% of flue gas samples met the dioxin emission standard for steel industry. The concentrations of dioxins in the surrounding atmosphere ranged from 0.17 to 0.69 pg·m-3(as I-TEQ) with the average value of 0.41 pg·m-3(as I-TEQ), and two of them exceeded the recommended value. The similar fingerprints of 17 toxic dioxins were observed in the flue gas and surrounding atmosphere. It is speculated that the distribution of dioxins in the atmosphere is mainly related to the emission of pollution sources.
Keywords:dioxin  steel industry  sintering furnace  refining furnace  fingerprint
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