Liaoning Key Laboratory for Chemical Clean Production, Liaoning Key Laboratory for Surface Functionalization of Titanium Dioxide Powder, Institute of Ocean Research, Institute Environmental Research, College of Chemistry and Material Engineering, Bohai University, Jinzhou, 121013, Liaoning, China.
Liaoning Key Laboratory for Chemical Clean Production, Liaoning Key Laboratory for Surface Functionalization of Titanium Dioxide Powder, Institute of Ocean Research, Institute Environmental Research, College of Chemistry and Material Engineering, Bohai University, Jinzhou, 121013, Liaoning, China.
Environ Res. 2024 Apr 15;247:118147. doi: 10.1016/j.envres.2024.118147. Epub 2024 Jan 13.
In order to reduce the mineralization of soil organic carbon (SOC) and enhance the ability of soil carbon sequestration. Mn-modified waste dander biochar (Mn-BC) was successfully prepared via impregnation and pyrolysis, and MnSO was formed on its surface. Mn-BC increases the carbon retention and reduces the emissions of CO and SO in way of forming CO, Mn-O-C bond and MnSO. At the same time, the stability of the original biochar was reserved due to forming a conjugated structure (CC and pyridine-N bond), and the carbon sequestration content was increased to 25.63%. Importantly, the application of Mn-BC can directly regulate the transformation of microbial bacterial community and lead to create stable carbon dominant bacteria (Firmicutes). And the mineralization rate of SOC is reduced to 0.48 mg CO/(g·d), together with an increased content of TOC (48.16%), thus the purpose of efficient carbon sequestration is achieved in soil.
为了减少土壤有机碳(SOC)的矿化并增强土壤碳固存能力。通过浸渍和热解成功制备了 Mn 改性废角蛋白生物炭(Mn-BC),并在其表面形成了 MnSO。Mn-BC 通过形成 CO、Mn-O-C 键和 MnSO 来增加碳的保留并减少 CO 和 SO 的排放。同时,由于形成共轭结构(CC 和吡啶-N 键),保留了原始生物炭的稳定性,碳固存含量增加到 25.63%。重要的是,Mn-BC 的应用可以直接调节微生物细菌群落的转化,导致形成稳定的碳优势细菌(Firmicutes)。并且 SOC 的矿化率降低到 0.48 mg CO/(g·d),同时 TOC(48.16%)的含量增加,从而在土壤中实现了高效的碳固存。