N-enriched biochar increases carbon, nitrogen, and phosphorus accumulation associated with changes in plant ecological stoichiometry in subtropical rice paddy fields

生物炭 生物量(生态学) 生态化学计量学 氮气 化学 土壤学 营养物 农学 水田 水稻 植物 生物 生态学 土壤水分 有机化学 热解
作者
Jie Hei,Xiaolei Yin,Weiqi Wang,Jordi Sardans,Chun Wang,Xiaoxuan Chen,Akash Tariq,Z Zhang,Abdulwahed Fahad Alrefaei,Josep Peñuelas
出处
期刊:Experimental Agriculture [Cambridge University Press]
卷期号:59
标识
DOI:10.1017/s001447972300008x
摘要

Summary N-enriched biochar can increase the accumulation of carbon (C), nitrogen (N), phosphorus (P), and biomass in rice plants. On the other hand, the biomass and C, N, and P contents of plant organs are important indicators to reflect plant C, N, and P storages. We established control, 4 t ha −1 , and 8 t ha −1 N-enriched biochar treatment plots in a subtropical paddy field in China to investigate the effect of these treatments on C, N, and P storages, ecological stoichiometry in various rice plant organs, and their relationships with edaphic factors. The application of N-enriched biochar increased the biomass and storages of C, N, and P in rice roots, stems, leaves, and grains, mainly at 4 t ha −1 . The application of N-enriched biochar decreased the C/N and C/P ratios of rice organs, but increased their N/P ratio. Changes in C/N were mainly due to the changes in storage, while N/P was positively correlated with N storage of stems, leaves, and grains and negatively correlated with P storage in roots. Pearson’s correlation analysis revealed that pH was negatively correlated, and soil N content was positively correlated with P storage in various organs of rice. In addition, soil P content and chlorophyll were positively correlated with N storage. In conclusion, we found that the application of N-enriched biochar improved plant N and P storage and stoichiometrical relations among rice organs.
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