Enhanced Phosphate Pollutant Removal from Liquid Via Adsorption Flotation Strategy: Synergic Effect of Fe(Iii)-Fulvic Acid Carrier and Ctab

37 Pages Posted: 14 Jul 2023

See all articles by Wenjuan Wang

Wenjuan Wang

Zhengzhou University

Yanfang Huang

Zhengzhou University

Hongfei Ma

Zhengzhou University

Lulu Kou

Zhengzhou University

Bingbing Liu

Zhengzhou University

Hu Sun

Zhengzhou University

Shuzhen Yang

Zhengzhou University

Guihong Han

Zhengzhou University

Abstract

Environmentally hazardous phosphate is widely found in waste liquids. Herein, an Fe(III)-fulvic acid carrier with a synergistic effect with a surfactant was fabricated for the first time by a solvothermal method and evaluated for the removal of phosphate via an adsorption flotation strategy. This study indicated that the solvothermal method significantly improved the specific surface area, pore structure and active site distribution of the adsorption carrier and initially enhanced its adsorption performance. In addition, based on the synergistic effect of Fe(III)-fulvic acid and cetyltrimethylammonium bromide (CTAB), the competitive effect of surfactant and target ion in the adsorption flotation process was effectively broken. The theoretical maximum adsorption capacity of Fe(III)-fulvic acid increased from 169.2047 ± 0.8460 mg·g-1 to 274.7252 ± 0.5500 mg·g-1 after introducing CTAB, which was improved by 62.32% relative to the adsorption stage. FTIR and XPS analyses verified that the re-enhancement of the adsorption performance of the adsorbent carrier was mainly attributed to the chemisorption of CTAB with the carboxyl groups on the carrier surface, which intensified the electrostatic attraction and ligand exchange between the carrier and phosphate. Additionally, fractal and EDLVO theories revealed that CTAB could obviously improve the floatability of the carrier particles. Concurrently, the regeneration studies suggested that Fe(III)-fulvic acid possessed stable adsorption and flotation separation performance after three cycles. Overall, the Fe(III)-fulvic acid fabricated in this study not only realized the resource utilization of fulvic acid but also had practical application potential for the purification of oxyanions.

Keywords: Fe(III)-fulvic acid, CTAB, synergistic, adsorption-flotation strategy, phosphate

Suggested Citation

Wang, Wenjuan and Huang, Yanfang and Ma, Hongfei and Kou, Lulu and Liu, Bingbing and Sun, Hu and Yang, Shuzhen and Han, Guihong, Enhanced Phosphate Pollutant Removal from Liquid Via Adsorption Flotation Strategy: Synergic Effect of Fe(Iii)-Fulvic Acid Carrier and Ctab. Available at SSRN: https://ssrn.com/abstract=4510323 or http://dx.doi.org/10.2139/ssrn.4510323

Wenjuan Wang

Zhengzhou University ( email )

100 Science Avenue
Zhengzhou, CO 450001
China

Yanfang Huang

Zhengzhou University ( email )

100 Science Avenue
Zhengzhou, CO 450001
China

Hongfei Ma

Zhengzhou University ( email )

100 Science Avenue
Zhengzhou, CO 450001
China

Lulu Kou

Zhengzhou University ( email )

100 Science Avenue
Zhengzhou, CO 450001
China

Bingbing Liu

Zhengzhou University ( email )

100 Science Avenue
Zhengzhou, CO 450001
China

Hu Sun

Zhengzhou University ( email )

100 Science Avenue
Zhengzhou, CO 450001
China

Shuzhen Yang

Zhengzhou University ( email )

100 Science Avenue
Zhengzhou, CO 450001
China

Guihong Han (Contact Author)

Zhengzhou University ( email )

100 Science Avenue
Zhengzhou, CO 450001
China

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

Paper statistics

Downloads
13
Abstract Views
104
PlumX Metrics