腐殖质
化学
食物垃圾
产量(工程)
肥料
食品科学
水分
制浆造纸工业
过硫酸盐
美拉德反应
有机质
人类受精
碳纤维
腐植酸
体积热力学
废物管理
绿色废弃物
废弃物
食品加工
过程(计算)
食品
原材料
糖
农业废弃物
环境科学
絮凝作用
有机化学
作者
Yanping Zhu,Yi Qiao,Dongfang Wang,Shihu Shu,Pan Zhao,Y. C. Yu,Weijia Liu,Tao Zhang,Li Liu,Jiping Shi,Weijian Zhang,Kaimin Zhu,Rongjun Zhang,Dongqing Cai
标识
DOI:10.1038/s41467-026-68295-6
摘要
Food waste is a major global issue due to its large volume and rapid putrefaction. Although composting is a common recycling method, its long processing time (20-60 d) drives the need for more efficient fertilization technologies. This study demonstrates rapid humification of waste potato (WP), as a model food waste, into fulvic-like acid (FLA) fertilizer (15 wt% FLA and 7.6 wt% K+) using microwave-triggered KOH/persulfate (MW/KOH/PS) process. Under synergistic MW irradiation (180 W) and KOH (2 wt%), PS (2 wt%) is activated to generate •OH and •SO4-. This process simultaneously dissolves organic matter and elevates system temperature, inducing humification of organic components within 10 min. Compositional analyses revealed Maillard reactions and amidation during humification. Compared to KOH/PS, microwave intensification reduces chemical consumption by 75%, while achieving comparable FLA yields and significantly lowering cost by 62.4%. Pot experiments validates the plant-growth promotion and soil-amendment capabilities of the humified product. Scale-up trials confirm the efficacy for practical vegetable residues and cooked food waste. Unlike composting, this process completes in 10 min without requiring optimal C/N ratio or moisture content, exhibited only 20.1% carbon loss (WP system), and operates in scalable reactor, thus enabling same-day waste valorization into fertilizer.
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