Jiang Zhen Hui, Shi Jiang Lan, Jia Zhou, Ding Ting Ting, Tian Xiao Hong
College of Natural Resources and Environment, Northwest A&F University/Key Laboratory for Plant Nutrition and the Agri-environment in Northwest China, Ministry of Agriculture, Yangling 712100, Shaanxi, China.
Ying Yong Sheng Tai Xue Bao. 2016 Apr 22;27(4):1196-1202. doi: 10.13287/j.1001-9332.201604.022.
A 52-day incubation experiment was conducted to investigate the effects of maize straw decomposition with combined medium element (S) and microelements (Fe and Zn) application on arable soil organic carbon sequestration. During the straw decomposition, the soil microbial biomass carbon (MBC) content and CO-C mineralization rate increased with the addition of S, Fe and Zn, respectively. Also, the cumulative CO-C efflux after 52-day laboratory incubation significantly increased in the treatments with S, or Fe, or Zn addition, while there was no significant reduction of soil organic carbon content in the treatments. In addition, Fe or Zn application increased the inert C pools and their proportion, and apparent balance of soil organic carbon, indicating a promoting effect of Fe or Zn addition on soil organic carbon sequestration. In contrast, S addition decreased the proportion of inert C pools and apparent balance of soil organic carbon, indicating an adverse effect of S addition on soil organic carbon sequestration. The results suggested that when nitrogen and phosphorus fertilizers were applied, inclusion of S, or Fe, or Zn in straw incorporation could promote soil organic carbon mineralization process, while organic carbon sequestration was favored by Fe or Zn addition, but not by S addition.
进行了一项为期52天的培养实验,以研究添加中量元素(S)和微量元素(Fe和Zn)对玉米秸秆分解及耕地土壤有机碳固存的影响。在秸秆分解过程中,土壤微生物量碳(MBC)含量和CO₂-C矿化率分别随S、Fe和Zn的添加而增加。此外,在添加S、Fe或Zn的处理中,52天实验室培养后的累积CO₂-C通量显著增加,而这些处理中的土壤有机碳含量没有显著降低。另外,施用Fe或Zn增加了惰性碳库及其比例以及土壤有机碳的表观平衡,表明添加Fe或Zn对土壤有机碳固存具有促进作用。相反,添加S降低了惰性碳库的比例和土壤有机碳的表观平衡,表明添加S对土壤有机碳固存具有不利影响。结果表明,在施用氮磷肥时,秸秆还田添加S、Fe或Zn可促进土壤有机碳矿化过程,而添加Fe或Zn有利于有机碳固存,添加S则不然。