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活性炭吸附处理烟道气中二噁英类同系物的分离与去除

Partitioning and removal of dioxin-like congeners in flue gases treated with activated carbon adsorption.

作者信息

Chi Kai Hsien, Chang Shu Hao, Huang Chia Hua, Huang Hung Chi, Chang Moo Been

机构信息

Graduate Institute of Environmental Engineering, National Central University, Chungli 320, Taiwan.

出版信息

Chemosphere. 2006 Aug;64(9):1489-98. doi: 10.1016/j.chemosphere.2005.12.072. Epub 2006 Feb 20.

Abstract

Activated carbon adsorption is commonly used to control dioxin-like congener (PCDD/Fs and PCBs) emissions. Partitioning of PCDD/Fs and PCBs between vapor and solid phases and their removal efficiencies achieved with existing air pollution control devices (APCDs) at a large-scale municipal waste incinerator (MWI) and an industrial waste incinerator (IWI) are evaluated via intensive stack sampling and analysis. Those two facilities investigated are equipped with activated carbon injection (ACI) with bag filter (BF) and fixed activated carbon bed (FACB) as major PCDD/F control devices, respectively. Average PCDD/F and PCB concentrations of stack gas with ACI+BF as APCDs are 0.031 and 0.006ng-TEQ/Nm(3), and that achieved with FACB are 1.74 and 0.19ng-TEQ/Nm(3) in MWI and IWI, respectively. The results show that FACB could reduce vapor-phase PCDD/Fs and PCBs concentrations in flue gas, while the ACI+BF can effectively adsorb the vapor-phase dioxin-like congener and collect the solid-phase PCDD/Fs and PCBs in the meantime. Additionally, the results of the pilot-scale adsorption system (PAS) experimentation indicate that each gram activated carbon adsorbs 105-115ng-PCDD/Fs and each surface area (m(2)) of activated carbon adsorbs 10-25ng-PCDD/Fs. Based on the results of PAS experimentation, this study confirms that the surface area of mesopore+macropore (20-200A) of the activated carbon is a critical factor affecting PCDD/F adsorption capacity.

摘要

活性炭吸附常用于控制二噁英类同系物(多氯二苯并对二噁英/多氯二苯并呋喃和多氯联苯)排放。通过密集的烟囱采样和分析,评估了多氯二苯并对二噁英/多氯二苯并呋喃和多氯联苯在气相和固相之间的分配,以及在大型城市垃圾焚烧炉(MWI)和工业垃圾焚烧炉(IWI)中现有空气污染控制设备(APCD)实现的去除效率。所研究的这两个设施分别配备了以袋式过滤器(BF)和固定活性炭床(FACB)为主要多氯二苯并对二噁英/多氯二苯并呋喃控制设备的活性炭喷射(ACI)。在MWI和IWI中,以ACI + BF作为APCD时,烟囱气体的平均多氯二苯并对二噁英/多氯二苯并呋喃和多氯联苯浓度分别为0.031和0.006 ng-TEQ/Nm(3),而FACB实现的浓度分别为1.74和0.19 ng-TEQ/Nm(3)。结果表明,FACB可以降低烟气中气相多氯二苯并对二噁英/多氯二苯并呋喃和多氯联苯的浓度,而ACI + BF可以有效吸附气相二噁英类同系物并同时收集固相多氯二苯并对二噁英/多氯二苯并呋喃和多氯联苯。此外,中试规模吸附系统(PAS)实验结果表明,每克活性炭吸附105 - 115 ng-多氯二苯并对二噁英/多氯二苯并呋喃,每平方米活性炭表面积吸附10 - 25 ng-多氯二苯并对二噁英/多氯二苯并呋喃。基于PAS实验结果,本研究证实活性炭的中孔+大孔(20 - 200Å)表面积是影响多氯二苯并对二噁英/多氯二苯并呋喃吸附能力的关键因素。

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