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논문 기본 정보

자료유형
학술저널
저자정보
Xin Lin (Nanjing Institute of Technology) Junda Gong (Nanjing Institute of Technology) Hang Li (Nanjing Institute of Technology) Haiyun Zhang (Nanjing Institute of Technology) Yang Yu (Nanjing Institute of Technology) Wenyi Tan (Nanjing Institute of Technology)
저널정보
대한환경공학회 Environmental Engineering Research Environmental Engineering Research 제28권 제1호
발행연도
2023.2
수록면
251 - 259 (9page)

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초록· 키워드

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Solar-powered electrocoagulation (EC) process is proven to be an alternative option for wet flue gas desulfurization (WFGD) wastewater treatment, due to simultaneous removal of multiple pollutants efficiently and reduce the operation costs significantly. Rapid and stable photoelectricity response is necessary for the removal efficiency of pollutants (eg. COD and turbudity), especially in low solar irradiation intensity. In this paper, dimensionally stable anode (DSA) and operation voltages in EC process driven by solar cells were investigated, for the purpose of the optimized removal of pollutants, including COD, turbidity, (free residual chlorine and chlorine dioxide). The results show that the removal efficiency of COD and turbidity can respectively reach 59.12% and 39.11% within 30 min of illumination time (the enhanced solar radiation = 915.8 W m<SUP>-2</SUP>), when Ti-based plates were adopted. The concentration of free residual chlorine and chlorine dioxide can reach 2.70 and 5.31 mg L<SUP>-1</SUP>, indicating that chlorine ions present in WFGD wastewater have been converted into active chlorine partly. Solar-powered EC equipped with Ti-based plates have a potential prospect in EC process for WFGD wastewater treatment.

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ABSTRACT
1. Introduction
2. Materials and Methods
3. Results and Discussion
4. Conclusions
References

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