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Novel Fe/Ca oxide co-embedded coconut shell biochar for phosphorus recovery from agricultural return flows.
Hu, Anqi; Jiang, Yongcan; An, Jiaqi; Huang, Xiaodian; Elgarhy, Abdelbaky Hossam; Cao, Huafen; Liu, Guanglong.
Afiliación
  • Hu A; PowerChina Huadong Engineering Corporation Ltd. Hangzhou 311122 Zhejiang Province China.
  • Jiang Y; State Environmental Protection Key Laboratory of Soil Health and Green Remediation, College of Resources and Environment, Huazhong Agricultural University Wuhan 430070 China liugl@mail.hzau.edu.cn.
  • An J; PowerChina Huadong Engineering Corporation Ltd. Hangzhou 311122 Zhejiang Province China.
  • Huang X; Institute of Soil and Water Resources and Environmental Science, College of Environmental and Resource Sciences, Zhejiang University Hangzhou 310058 Zhejiang Province China.
  • Elgarhy AH; State Environmental Protection Key Laboratory of Soil Health and Green Remediation, College of Resources and Environment, Huazhong Agricultural University Wuhan 430070 China liugl@mail.hzau.edu.cn.
  • Cao H; PowerChina Huadong Engineering Corporation Ltd. Hangzhou 311122 Zhejiang Province China.
  • Liu G; State Environmental Protection Key Laboratory of Soil Health and Green Remediation, College of Resources and Environment, Huazhong Agricultural University Wuhan 430070 China liugl@mail.hzau.edu.cn.
RSC Adv ; 14(37): 27204-27214, 2024 Aug 22.
Article en En | MEDLINE | ID: mdl-39193306
ABSTRACT
Efficient elimination and recovery of phosphorus from agricultural return flows are crucial for effective eutrophication management and phosphorus reuse. In this study, a neutral Fe/Ca oxide co-embedded biochar (FCBC) was synthesized using calcium peroxide and ferrous chloride as precursors for phosphate recovery from agricultural return flows. FCBC possesses a highly intricate pore structure and an abundance of surface-active groups. Fe/Ca oxides were loaded onto the biochar in the form of Ca2Fe2O5, Fe2O3, and CaCO3. FCBC demonstrated a broad pH tolerance range (pH = 6-12) in the aquatic environment. The maximum saturation adsorption capacity was 53.31 mg g-1. Phosphorus removal is influenced by Ca3(PO4)2 generation, intra-particle diffusion, and electrostatic attraction. The produced FCBC showed exceptional phosphorus removal efficiency in the presence of various anions, except for wastewater with high concentrations of SO4 2-, CO3 2-, HCO3 -, and F- (>500 mg L-1). FCBC can effectively remove phosphorus from agricultural return flows and reduce the risk of the water environment. Returning it to the field can also mitigate the depletion of phosphorus resources, effectively reduce carbon emissions from farmland, improve soil fertility, and realize multiple benefits.

Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: RSC Adv Año: 2024 Tipo del documento: Article

Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: RSC Adv Año: 2024 Tipo del documento: Article