Abstract

BackgroundNo study was found in the literature on the combination of TiO2/GAC catalyst and non-thermal plasma for chlorinated volatile organic compounds abatement in air. This paper presents this hybrid process for the decomposition of chloroform (as a target compound) using a multi-pin to plate discharge reactor. The experiments were performed using a high frequency pulsed transformer as the power supply system to examine the effect of SIE, frequency, as well as initial concentration on the chloroform removal efficiency (RE). Toluene was added as a hydrogen-rich source to shift the reactions into the formation of environmentally desirable products.ResultsRE of around 60% was observed with the NTP-alone process at the highest possible SIE (3000 J L−1), while it rocketed up to 100% (total oxidation) in the presence of TiO2/GAC at SIE of 1000 J L−1. About 100% O3 destruction over TiO2/GAC and both adsorption and catalytic activities of GAC may be considered as the reasons for better performance of the hybrid process. Toluene feeding diminished the chlorinated by-products such as Cl2 and TCE significantly. The selectivity towards CO2 was noticed to enhance noticeably, when both catalyst and toluene were introduced, regardless of the input concentration.ConclusionsOur findings suggest that the hybrid of NTP with TiO2/GAC will highly be effective in the abatement of chloroform, and the addition of toluene will successfully decline harmful chlorinated by-products.

Highlights

  • No study was found in the literature on the combination of TiO2/Granular activated carbon (GAC) catalyst and non-thermal plasma for chlorinated volatile organic compounds abatement in air

  • Catalyst properties Both GAC and TiO2/GAC samples were subjected to XRD and SEM analysis

  • These findings revealed that the pore size of GAC was significantly affected by TiO2 coating and it decreased about 35 m2 gr−1 as TiO2 particles were covered on GAC surface

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Summary

Introduction

No study was found in the literature on the combination of TiO2/GAC catalyst and non-thermal plasma for chlorinated volatile organic compounds abatement in air. This paper presents this hybrid process for the decomposition of chloroform (as a target compound) using a multi-pin to plate discharge reactor. Prolonged exposure to chlorinated VOCs (CVOCs) and their emission into atmosphere has raised considerable public concern due to the fact that most of these pollutants can lead to harmful effects on human and some of them are known to be carcinogenic [4,5,6] Most of these compounds persist a long time in the environment [7]. Granular activated carbon (GAC) appears to be an extremely good adsorbent for the most of organic compounds

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