Characterization of PCN emission and removal from secondary copper metallurgical processes.

Environ Pollut

Graduate Institute of Environmental Engineering, National Central University (NCU), Zhongli, 320, Taiwan. Electronic address:

Published: March 2020

AI Article Synopsis

  • * Low chlorinated homologues (Mono-to Tri-CNs) are identified as the main contributors to the PCNs found in flue gas, fly ash, and slag.
  • * Plant A employs a combination of pollution control technologies achieving a high PCN removal efficiency of 98%, while plant B's efficiency is 90%, but some increases in certain PCN compounds hint at a "memory effect" in their pollution control system.

Article Abstract

This study investigates the characteristics of PCN emission and removal from two secondary copper metallurgical processes (plants A and B) equipped with different air pollution control devices (APCDs). Different operating conditions and feeding materials result in varying emission factors of PCNs from two plants. The average PCN concentration emitted from plant B (7597 ng Nm) is significantly higher than that emitted from plant A (32.5 ng Nm) and those reported in China (5.8-2845 ng Nm). Similar trend is found for fly ash samples collected from two plants. Low chlorinated homologues (Mono-to Tri-CNs) are the major contributors to total PCNs measured in flue gas, fly ash and slag samples. Combination of semi-dry absorber, activated carbon injection and baghouse is effective for PCN removal in plant A, with the overall removal efficiency of 98%. The overall removal efficiency of PCNs achieved with APCDs equipped in plant B is 90%, however, increases of some homologues as the flue gases passing through baghouse and wet scrubber are found, suggesting the occurrence of memory effect within baghouse and wet scrubber.

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Source
http://dx.doi.org/10.1016/j.envpol.2019.113759DOI Listing

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