Biochar and nitrogen fertilizer co-application changed SOC content and fraction composition in Huang-Huai-Hai plain, China

Biochar can significantly enhance soil organic carbon (SOC) and crop yield, and it is therefore the preferred material for soil improvement in medium-low yield fields. In this study, a field experiment was designed to explore the impacts of biochar application on SOC content and fraction composition...

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Veröffentlicht in:Chemosphere (Oxford) 2022-03, Vol.291 (Pt 1), p.132925-132925, Article 132925
Hauptverfasser: Dong, Linlin, Yang, Xiao, Shi, Linlin, Shen, Yuan, Wang, Lingqing, Wang, Jidong, Li, Chuanzhe, Zhang, Haidong
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Sprache:eng
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Zusammenfassung:Biochar can significantly enhance soil organic carbon (SOC) and crop yield, and it is therefore the preferred material for soil improvement in medium-low yield fields. In this study, a field experiment was designed to explore the impacts of biochar application on SOC content and fraction composition. Results indicated that incorporation of biochar into soil increased the SOC content by 26.9%–65.3% in the surface layer (0–10 cm) and 30.3%–63.0% in the subsurface layer (10–20 cm) of soil, while water-soluble organic carbon (WSOC) of the two layers was increased by 2.2–40.0% and 2.3–39.8%, respectively. Microbial biomass carbon decreased under conventional nitrogen treatments and increased with biochar addition under increased nitrogen application. The C:N value increased with biochar application, while the water-soluble C:N value of soil applied with 30 t ha−1 biochar was lower than that of soil applied with 15 t ha−1 biochar, both in the two tested soil layers. Wheat yield is evidently correlated with SOC, with the correlation coefficients of 0.919 and 0.952 in the surface and subsurface soil layers (P 
ISSN:0045-6535
1879-1298
DOI:10.1016/j.chemosphere.2021.132925