Anaerobic Digestion of Phytoremediation Biomass: Biogas Production and Cadmium Stabilization from Sedum alfredii

Phytoremediation is a promising technique for remediation of cadmium (Cd)-contaminated soils, while the derived Cd-rich phytoremediation biomass should be appropriately disposed of. In this work, anaerobic digestion was employed as a synergistic strategy to simultaneously address these challenges by converting Cd-rich Sedum alfredii biomass into biogas energy and stabilized digestate without external chemical amendments. The process maintained robust stability, achieving a methane yield of 237 mL/g VS with kinetics well described by the modified Gompertz model (R2 > 0.99). Microbial community succession revealed that Chloroflexota and Pseudomonadota dominated hydrolysis and acidogenesis, while Desulfobacterota enriched in the mid-to-late phase drove Cd immobilization via sulfide precipitation, and acetoclastic Methanothrix became the dominant methanogen. Over 83% of total Cd was retained in the solid digestate, where the exchangeable fraction dropped sharply from 80% to 22%, and Cd was transformed into stable Fe-Mn oxide-bound, organic-bound, and residual forms. Leachates from both TCLP and SPLP tests were far below U.S. Environmental Protection Agency regulatory limits, and the biogas slurry met China’s fertilizer standards. This study establishes a sustainable anaerobic digestion-based strategy for the concurrent recovery of bioenergy and heavy metal stabilization from phytoremediation biomass, offering a feasible pathway toward safe resource utilization and environmental risk mitigation of phytoremediation residues.

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Journal
Processes
Published
2026-09-22
DOI
https://doi.org/10.3390/pr14193035
Primary Topic
Anaerobic Digestion and Biogas Production
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article
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article

Anaerobic Digestion of Phytoremediation Biomass: Biogas Production and Cadmium Stabilization from Sedum alfredii

Haiguang Fu, Lanxin Cao, Zhanjun Cheng, Kiran Yasmin Khan et al.
Processes
Anaerobic Digestion and Biogas Production
article

Anaerobic Digestion of Phytoremediation Biomass: Biogas Production and Cadmium Stabilization from Sedum alfredii

Haiguang Fu, Lanxin Cao, Zhanjun Cheng, Kiran Yasmin Khan, Xiaoqiang Cui, Junxia Wang, Guanyi Chen, Beibei Yan
article en

Abstract

Phytoremediation is a promising technique for remediation of cadmium (Cd)-contaminated soils, while the derived Cd-rich phytoremediation biomass should be appropriately disposed of. In this work, anaerobic digestion was employed as a synergistic strategy to simultaneously address these challenges by converting Cd-rich Sedum alfredii biomass into biogas energy and stabilized digestate without external chemical amendments. The process maintained robust stability, achieving a methane yield of 237 mL/g VS with kinetics well described by the modified Gompertz model (R2 > 0.99). Microbial community succession revealed that Chloroflexota and Pseudomonadota dominated hydrolysis and acidogenesis, while Desulfobacterota enriched in the mid-to-late phase drove Cd immobilization via sulfide precipitation, and acetoclastic Methanothrix became the dominant methanogen. Over 83% of total Cd was retained in the solid digestate, where the exchangeable fraction dropped sharply from 80% to 22%, and Cd was transformed into stable Fe-Mn oxide-bound, organic-bound, and residual forms. Leachates from both TCLP and SPLP tests were far below U.S. Environmental Protection Agency regulatory limits, and the biogas slurry met China’s fertilizer standards. This study establishes a sustainable anaerobic digestion-based strategy for the concurrent recovery of bioenergy and heavy metal stabilization from phytoremediation biomass, offering a feasible pathway toward safe resource utilization and environmental risk mitigation of phytoremediation residues.

ProcessesVol. 14(19)
Tianjin University of Commerce (CN), Jiangnan University (CN), Tianjin University (CN)
Responsible consumption and production
Openalex Percentile: Top 14%
Anaerobic Digestion and Biogas Production
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Anaerobic Digestion of Phytoremediation Biomass: Biogas Production and Cadmium Stabilization from Sedum alfredii — Haiguang Fu, Lanxin Cao, et al. · Processes (2026) | TGRS Research Map | TGRS