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Updated: Oct 2, 2026

Scalable Step-by-Step Approach of Sustainable Bioplastic Production from Food Waste
Published on: July 18, 2025
Enzymatic valorization of food waste leachate into volatile fatty acid-rich carbon source for enhanced
Wenyue Wang1, Jinhao Sun1, Zhenyang Wang1
1Shanghai Engineering Research Center of Biotransformation of Organic Solid Waste, School of Ecological and Environmental Sciences, East China Normal University, Shanghai, 200241, China.
Abstract:
Food waste leachate (FWL) is a high-strength organic waste stream that poses increasing disposal and resource recovery challenges. This study developed an integrated enzymatic fermentation strategy to convert FWL into a volatile fatty acid (VFA)-rich carbon source for wastewater denitrification. Screening of ultrasonic, alkaline, alkaline-thermal, and enzymatic pretreatments identified the combined amylase-protease treatment as the most effective for FWL solubilization, increasing SCOD by 23.4% and promoting the release of biodegradable organic matter. During semi-continuous thermophilic anaerobic fermentation (55 ± 2°C, HRT 3 d), the enzymatically pretreated FWL showed enhanced VFAs production compared with the untreated system, with acetate and butyrate as the dominant products. The fermentation broth derived from enzyme-pretreated FWL achieved 99.5% NO3--N removal within 8 h and showed nitrate-removal performance comparable to commercial sodium acetate. Metagenomic analysis indicated that enzymatic pretreatment enriched hydrolytic and acidogenic microorganisms associated with VFAs production, particularly Sporanaerobacteraceae and Tepidanaerobacter, while the VFA-rich fermentation broth promoted the enrichment of denitrifying bacteria such as Thauera and Paracoccus. Moreover, economic analysis shows that using FWL-derived fermentation carbon sources can reduce the estimated annual external carbon source cost by 34.4% compared to sodium acetate. These findings demonstrate a feasible waste-to-resource pathway for recovering intrinsic organic carbon from FWL as an alternative carbon source for wastewater denitrification.
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