College of Life Science, Northeast Agricultural University, Harbin 150030, China.
School of Civil Engineering, Heilongjiang University, Harbin 150080, China.
Waste Manag. 2018 Sep;79:462-471. doi: 10.1016/j.wasman.2018.08.025. Epub 2018 Aug 13.
The aim of this work was to explore the effect of the addition of exogenous precursors on humic substance (HS) formation during composting. HS formation is a complex biochemical process that occurs during composting. In addition, HS precursors and bacterial communities were recognized as the key factors that affect HS formation. The addition of exogenous precursors can promote the humification process during composting, but few studies have explored the potential relationships between the proportion of additional exogenous precursors, the bacterial community and HS formation. Jointly adding benzoic acid (BA) and soybean residue after extracted oil (SR) treatment can promote HS formation, especially humic acid formation. In addition, the increase in the proportion of exogenous precursors added could strengthen the relationship among different precursors, thereby changing the bacterial community composition and further promoting the humification process during composting. In addition, a structural equation model (SEM) showed that precursors were the key factors to regulate HS formation and certain bacteria as the direct drivers to affect HS formation. This model provides more possibilities to regulate HS formation during composting and enhances its potential applicability under real conditions.
本研究旨在探讨在堆肥过程中外源前体的添加对腐殖质(HS)形成的影响。HS 的形成是堆肥过程中发生的复杂生化过程。此外,HS 前体和细菌群落被认为是影响 HS 形成的关键因素。添加外源前体可以促进堆肥过程中的腐殖化过程,但很少有研究探讨额外添加的外源前体的比例、细菌群落和 HS 形成之间的潜在关系。联合添加苯甲酸(BA)和提取油后的大豆残渣(SR)处理可以促进 HS 的形成,特别是腐殖酸的形成。此外,增加添加的外源前体的比例可以增强不同前体之间的关系,从而改变细菌群落组成,进一步促进堆肥过程中的腐殖化过程。此外,结构方程模型(SEM)表明,前体是调节 HS 形成的关键因素,某些细菌是影响 HS 形成的直接驱动因素。该模型为调节堆肥过程中 HS 的形成提供了更多的可能性,并增强了其在实际条件下的潜在适用性。