Fondazione Edmund Mach, Via E. Mach 1, San Michele a/A, 38098, Italy.
Fondazione Edmund Mach, Via E. Mach 1, San Michele a/A, 38098, Italy.
Waste Manag. 2023 Mar 15;159:75-83. doi: 10.1016/j.wasman.2023.01.024. Epub 2023 Feb 2.
In this study, hydrochar (HC), a carbon-rich product originated from hydrothermal conversion treatment (HTC), was obtained from wastes of the wine and dairy industries. The effect of mixing secondary char and compost was tested, before and after the aerobic mixing of compost (COM) and HC at increasing doses (from 15 to 75 Mg ha DM), in an effort to lower the HC phytotoxicity due to potential phytotoxic compounds of secondary char. The results indicated that, after the aerobic stabilization, the mix HC/COM was able to double the plant growth in comparison to COM alone. The presence of easily degradable organic compounds probably led to poor stability of HC, increased microbial activity and, consequently, root anoxia when used at high doses. Chemical, spectroscopic and thermal investigation confirmed this hypothesis. In particular, HC shows a high content of dissolved organic matter, characterized by the presence of small molecules, which is negatively correlated with the growth index of lettuce. Furthermore, thermal characterization suggests a higher proportion of less complex and thermally stable molecular compounds in HC in comparison to COM. Therefore, co-composting of HC allows obtaining a useful amendment to support soil organic matter and fertility.
在这项研究中,水炭(HC)是一种富碳产物,来源于水热转化处理(HTC),是从葡萄酒和奶制品工业废物中获得的。测试了在增加剂量(从 15 到 75 Mg ha DM)下,混合二次炭和堆肥之前和之后,混合堆肥(COM)和 HC 的好氧混合效果,以降低由于二次炭中潜在的植物毒性化合物导致的 HC 植物毒性。结果表明,好氧稳定后,与单独使用 COM 相比,混合 HC/COM 能够使植物生长增加一倍。易降解有机化合物的存在可能导致 HC 稳定性差,微生物活性增加,从而在高剂量使用时导致根缺氧。化学、光谱和热研究证实了这一假设。特别是,HC 含有大量溶解的有机物,其特征是小分子的存在,这与生菜生长指数呈负相关。此外,热特性表明 HC 中较不复杂和热稳定的分子化合物的比例高于 COM。因此,HC 的共堆肥可以获得一种有用的改良剂,以支持土壤有机质和肥力。