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铁矿石烧结过程中 PCDD/Fs 的形成与减排。

Formation and mitigation of PCDD/Fs in iron ore sintering.

机构信息

Fortescue Metals Group Ltd, 87 Adelaide Terrace, East Perth, WA 6004, Australia.

出版信息

Chemosphere. 2011 Oct;85(3):291-9. doi: 10.1016/j.chemosphere.2011.08.020. Epub 2011 Aug 30.

Abstract

The sintering of iron ore is presently a significant industrial source of polychlorinated dibenzo-p-dioxins and polychlorinated dibenzofurans (PCDD/Fs) worldwide owing to the fundamental requirement of the operation of a high temperature process to pre-treat fines and to recycle plant by-products arising from the integrated iron and steelworks. The process is a noteworthy contributor of PCDD/F indirectly due to decreasing PCDD/F releases from municipal solid waste incineration. Commonly PCDD/F formation from the process is associated with the addition of oily mill scales although raw material containing a combination of C, Cl and specific metal catalyst has been shown to drastically increase PCDD/F formation in the process. The degenerate graphitic structure of carbon present in coke fuel and soot formed and the chemistry of catalytic metals and Cl are important factors. A review on PCDD/F emission in this process has been carried out, including examination of its formation mechanism, congener distribution, contributing factors and mitigation strategies, with emphasis on the use of inhibiting compound to achieve suppression. A detailed analysis of the de novo and precursor theories of formation and the contributing factor is given since the subject of PCDD/F formation is still controversial. The de novo formation pathway identified in sinter plants and controlled studies performed in the laboratory as well as at pilot-scale are discussed; where appropriate, a comparison is drawn between sintering and other thermal processes emitting PCDD/Fs. Summary of the latest developments in PCDD/F downstream abatement strategies presently employed in full scale industrial plants is provided. Potential inhibiting compounds are discussed in terms of their mode of action and merits under sintering conditions.

摘要

由于高温预处理细粉和综合钢铁厂厂内副产物回收的基本操作要求,目前全球铁矿石烧结是多氯二苯并对二恶英和多氯二苯并呋喃(PCDD/Fs)的重要工业来源。由于城市固体废物焚烧的 PCDD/F 排放量减少,该工艺间接地成为 PCDD/F 的重要排放源。通常,该工艺中 PCDD/F 的形成与油性轧钢厂炉渣的添加有关,尽管已经表明,含有 C、Cl 和特定金属催化剂的原料会大大增加该工艺中 PCDD/F 的形成。焦炭燃料中存在的碳的退化石墨结构和形成的烟尘以及催化金属和 Cl 的化学性质是重要因素。对该工艺中的 PCDD/F 排放进行了综述,包括检查其形成机制、同系物分布、贡献因素和缓解策略,重点是使用抑制化合物来实现抑制。由于 PCDD/F 形成的主题仍然存在争议,因此对形成的新理论和前体理论以及贡献因素进行了详细分析。讨论了在烧结厂中确定的新形成途径以及在实验室和中试规模上进行的受控研究;在适当的情况下,将烧结与其他排放 PCDD/Fs 的热工艺进行了比较。提供了目前在全规模工业工厂中采用的 PCDD/F 下游减排策略的最新发展摘要。根据在烧结条件下的作用方式和优点,讨论了潜在的抑制化合物。

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