Graduate School of Engineering, Nagoya University, Tokai National Higher Education and Research System, Nagoya 464-8603, Japan.
Institute of Materials and Systems for Sustainability, Nagoya University, Tokai National Higher Education and Research System, Nagoya 464-8603, Japan.
Int J Environ Res Public Health. 2022 Nov 17;19(22):15173. doi: 10.3390/ijerph192215173.
This study aimed to elucidate the origin of extracellular electron mediating (EEM) functionality and redox-active center(s) in humic substances, where they are ubiquitously distributed. Here, we show the emergence of EEM functionality during the humification of rice straw in artificial soil (kaolin and sand) with a matric potential of -100 cm at 20 °C for one year. We used the dechlorination activity of an EEM material-dependent pentachlorophenol-dechlorinating anaerobic microbial consortium as an index of the EEM functionality. Although rice straw and its mixture with artificial soil did not initially have EEM functionality, it emerged after one month of humification and increased until six months after which the functionality was maintained for one year. Chemical and electrochemical characterizations demonstrated that the emergence and increase in EEM functionality were correlated with the degradation of rice straw, formation of quinone structures, a decrease in aromatic structures, an increase in nitrogenous and aliphatic structures, and specific electric capacitance during humification. The newly formed quinone structure was suggested as a potential redox-active center for the EEM functionality. These findings provide novel insights into the dynamic changes in EEM functionality during the humification of organic materials.
本研究旨在阐明广泛分布于腐殖质中的胞外电子媒介(EEM)功能及其氧化还原活性中心的起源。在这里,我们展示了在 20°C 下,人工土壤(高岭土和沙子)中水稻秸秆腐殖化过程中 EEM 功能的出现,基质势为-100 cm ,持续一年。我们使用 EEM 物质依赖的五氯酚脱氯厌氧微生物群落的脱氯活性作为 EEM 功能的指标。尽管水稻秸秆及其与人工土壤的混合物最初没有 EEM 功能,但在腐殖化一个月后出现,并在六个月后增加,此后功能维持了一年。化学和电化学特性表明,EEM 功能的出现和增加与水稻秸秆的降解、醌结构的形成、芳香结构的减少、含氮和脂肪结构的增加以及腐殖化过程中的比电容特定值有关。新形成的醌结构被认为是 EEM 功能的潜在氧化还原活性中心。这些发现为有机物质腐殖化过程中 EEM 功能的动态变化提供了新的见解。