Controlled Humidity Synthesis of Surface Sulfate Functionalized CDS for Enhanced Visible Light Photocatalysis

19 Pages Posted: 17 Apr 2024

See all articles by Hui Zhao

Hui Zhao

Shandong University of Technology

Zihan Zhang

Shandong University of Technology

Xu Ma

Shandong University of Technology

Ning Zhang

Shandong University of Technology

Pingke Yan

Shandong University of Technology

Yujuan Gao

Shandong University of Technology

Hailin Cong

Qingdao University

Qian Zhang

Shandong University of Technology

Abstract

At present, the pollution of antibiotic wastewater is serious, which has a potential impact on the survival of organisms. In this study, SO42- functionalized small-sized flower-like CdS is successfully synthesized by utilizing H2S at various levels of relative humidity. The CdS catalyst is then employed for the degradation of tetracycline hydrochloride (TC) through photocatalytic processes. Experimental findings indicate that CdS-8%RH exhibits the highest photocatalytic efficiency, degrading 98.6% of TC within 80 min, which is 1.5 times more efficient than CdS alone. HPLC-MS analysis is used to identify degradation intermediates and pathways, and to evaluate the toxicity and mutagenicity of these intermediates. The photocatalytic mechanism is elucidated through species capture experiments, electrochemical tests, KPFM tests, and conduction valence band position analysis.

Keywords: humidity control, SO42- functionalized CdS, photochemical catalysis, flower-like CdS

Suggested Citation

Zhao, Hui and Zhang, Zihan and Ma, Xu and Zhang, Ning and Yan, Pingke and Gao, Yujuan and Cong, Hailin and Zhang, Qian, Controlled Humidity Synthesis of Surface Sulfate Functionalized CDS for Enhanced Visible Light Photocatalysis. Available at SSRN: https://ssrn.com/abstract=4797072 or http://dx.doi.org/10.2139/ssrn.4797072

Hui Zhao

Shandong University of Technology ( email )

No: 88, Gongqingtuan west road
No. 88 Gongqingtuan Road
Zibo, 255012
China

Zihan Zhang

Shandong University of Technology ( email )

No: 88, Gongqingtuan west road
No. 88 Gongqingtuan Road
Zibo, 255012
China

Xu Ma

Shandong University of Technology ( email )

No: 88, Gongqingtuan west road
No. 88 Gongqingtuan Road
Zibo, 255012
China

Ning Zhang

Shandong University of Technology ( email )

No: 88, Gongqingtuan west road
No. 88 Gongqingtuan Road
Zibo, 255012
China

Pingke Yan

Shandong University of Technology ( email )

No: 88, Gongqingtuan west road
No. 88 Gongqingtuan Road
Zibo, 255012
China

Yujuan Gao

Shandong University of Technology ( email )

No: 88, Gongqingtuan west road
No. 88 Gongqingtuan Road
Zibo, 255012
China

Hailin Cong

Qingdao University ( email )

No. 308 Ning Xia Road
Qingdao, 266071
China

Qian Zhang (Contact Author)

Shandong University of Technology ( email )

No: 88, Gongqingtuan west road
No. 88 Gongqingtuan Road
Zibo, 255012
China

Do you have a job opening that you would like to promote on SSRN?

Paper statistics

Downloads
6
Abstract Views
97
PlumX Metrics