Feedstock-dependent mechanisms of biochar on soil aggregation: The overlooked role of manganese oxides

Published: 29 December 2025| Version 1 | DOI: 10.17632/27g6ndp8nc.1
Contributors:
Zhouyuan Lin, Qinhai Cheng, Zichuan Li, Cheng Liu, Ning Zhao, Zhuozhe Wang, Yulin Wang, Yanjun Chai, Yan Li, Shengdao Shan, Kiril Manevski, Ming Hung Wong

Description

Soil aggregation is a cornerstone process regulating carbon sequestration, nutrient cycling, and erosion resistance in terrestrial systems. The stability of soil aggregates is governed by a complex interplay of organic and inorganic binding agents. While the role of organic matter is well-appreciated, the specific contributions and interactions of redox-sensitive and hydrolyzable metals (e.g., Fe, Al, Mn) as inorganic cements are less constrained, especially under anthropogenic interventions such as biochar amendment. Our study mechanistically investigates how biochar—a carbon-rich soil amendment—modifies the geochemical environment to alter the speciation, distribution, and efficacy of these key binding agents, thereby controlling aggregate formation and stability.

Files

Categories

Soil, Iron Oxide, Manganese Oxide, Biochar, Soil Organic Carbon, Aluminum Oxide

Licence