Enhanced removal of refractory pollutant from aniline aerofloat wastewater using combined vacuum ultraviolet and ozone (VUV/O3) process

Author:

Deng Xiaoyu1,Zhang Dachao1,Wu Meng1,Antwi Philip1,Su Hao1,Lai Cheng1

Affiliation:

1. School of Resources and Environmental Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China and Jiangxi Key Laboratory of Mining & Metallurgy Environmental Pollution Control, Ganzhou 341000, China

Abstract

Abstract Aerofloats, such as aniline aerofloat ((C6H5NH)2PSSH), are extensively employed for collection activities in wastewater particularly in cases where minerals are in flotation. Although this aniline aerofloat has efficient collection properties, they are ordinarily biologically persistent chemicals in which case their residual, as well as their byproducts, pose great environmental risks to water and soils. In this study, the removal efficiency of aniline aerofloat (AAF) by a combined vacuum ultraviolet (VUV) and ozone (O3) process (VUV/O3) was evaluated. Furthermore, the impacts of pH, O3, the concentration of AAF and coexisting ions (SiO32−, CO32−, Cl− (Na+), SO42−, Ca2+) were systematically studied. The experiments revealed that, with an initial AAF of 15 mg/L, AAF removal >88% was feasible with a reaction time of 60 min, pH of 8 and O3 of 6 g/h. The order of influence of the selected coexisting ions on the degradation of AAF by VUV/O3 was Ca2+ > CO32− > SiO32− > Cl− (Na+) >SO42−. Compared with VUV and O3 in terms of pollutant degradation rate, VUV/O3 showed a remarkable performance, followed by O3 and VUV. Additionally, the degradation kinetics of AAF by the VUV/O3 process agreed well with first-order elimination kinetics.

Funder

the Science and Technology Research Project of Jiangxi Province Education Department, China

the Scientific Research Start-up Fund of Jiangxi University of Science and Technology, China

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference38 articles.

1. Treatment of artificial acid mine drainage by a microbial fuel cell;Bu;Journal of Anhui Polytechnic University,2014

2. Chemical reagent – General method for the determination of silicate (GB/T 9742-2008) 2008 China Petroleum and Chemical Industry Federation/ National Chemical Standardization Technical Committee, China.

3. Research status and prospects of mineral processing wastewater treatment and cyclic utilization technology;Feng;Metal Mine,2016

4. Degradation of sodium n-butyl xanthate by vacuum UV-ozone (VUV/O3) in comparison with ozone and VUV photolysis

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