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氯漂非木材浆制备过程中二恶英/呋喃的形成动力学。

Kinetics of PCDD/Fs formation from non-wood pulp bleaching with chlorine.

机构信息

Dalian Institute of Chemical Physics, Chinese Academy of Sciences , 457 Zhongshan Road, Dalian 116023, China.

出版信息

Environ Sci Technol. 2014 Apr 15;48(8):4361-7. doi: 10.1021/es404347h. Epub 2014 Apr 2.

Abstract

Chlorine bleaching is still practiced by most of nonwood pulp and paper mills, resulting in a considerable amount of polychlorinated dibenzo-p-dioxins and polychlorinated dibenzofurans (PCDD/Fs) formation and emission. In this study, the effects of primary chlorination conditions on the formation of PCDD/Fs from nonwood pulp bleaching with elemental chlorine were investigated. It was found that low-chlorinated PCDD/Fs were usually formed and then underwent further chlorination to form highly chlorinated PCDD/Fs with increasing chlorination time. Higher available chlorine dosages and lower system pH values greatly accelerated dioxin formation, and pH 3 was the threshold for the formation of tetra- to octa-CDD/Fs. Higher temperatures promoted the formation of lower-chlorinated PCDD/Fs, while caused significant reduction of tetra- to hepta-CDDs and penta- to octa-OCDFs. PCDFs were formed much faster than PCDDs. A first-order kinetic model showed a good fit to the data for tetra- to oct-CDFs formation under different chlorination conditions, indicating that chlorine substitution was the rate determining step for their formation. Finally, the optimum chlorination conditions for minimizing and eliminating the formation of 2,3,7,8-TCDD/TCDF in nonwood pulp bleaching with elemental chlorine were established.

摘要

氯气漂白法仍被大多数非木材纸浆和造纸厂采用,导致相当数量的多氯二苯并对二恶英和多氯二苯并呋喃(PCDD/Fs)的形成和排放。在本研究中,考察了用元素氯对非木材纸浆进行初级氯化条件对 PCDD/Fs 形成的影响。结果表明,通常会形成低氯代 PCDD/Fs,然后随着氯化时间的增加,进一步氯化形成高氯代 PCDD/Fs。较高的有效氯剂量和较低的系统 pH 值大大加速了二恶英的形成,而 pH 值 3 是四氯到八氯 PCDD/Fs 形成的阈值。较高的温度促进了低氯代 PCDD/Fs 的形成,而导致四氯到七氯 PCDD 和五氯到八氯 OCDF 的显著减少。PCDFs 的形成速度远快于 PCDDs。一级动力学模型很好地拟合了不同氯化条件下四氯到八氯 PCDF 形成的数据,表明氯取代是其形成的速率决定步骤。最后,建立了用元素氯对非木材纸浆进行漂白时,最小化和消除 2,3,7,8-TCDD/TCDF 形成的最佳氯化条件。

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