Shisheng Song, Hui Qin, Tangjuan Zhang, Yixuan Jia, Wenjuan Niu, Aibin Hu, Ping Ai
The residual biogas slurry (BS) generated after straw impregnation contains dissolved lignocellulosic fragments and other humification precursors but remains insufficiently utilized. Here, a mild radical-enhanced humification strategy was developed to convert post-impregnation BS into a humic acid (HA)-like product at room temperature. An alkaline persulfate (PS) activation system using citrate (CA)-chelated Fe2+ was established to promote the oxidative transformation and subsequent condensation of soluble organic precursors. Under the selected conditions (1.0 g KOH, 3.0 g PS, 0.75 g Fe2+, and 1.0 g CA per 100 mL BS), the HA yield reached approximately 13.3 g/L. Electron paramagnetic resonance and quenching experiments confirmed that sulfate and hydroxyl radicals were the dominant reactive species. Spectroscopic analyses demonstrated that radical oxidation preferentially transformed labile proteinaceous, polysaccharide-derived, and aliphatic fractions into reactive oxygenated intermediates, which subsequently underwent aromatic coupling, condensation, and polymerization to form humic-like macromolecules. In a bok choy pot experiment, the HA product produced greater plant length, root development, and biomass than untreated BS and mineral HA. Overall, this study provides a rapid, room-temperature approach for upgrading residual BS into a value-added HA-like product and supports the integrated utilization of straw and anaerobic-digestion effluents.