生物炭堆肥与无机氮肥配施对加纳北部低地水稻生长和氮素吸收的影响

Nitrogen Pub Date : 2022-07-06 DOI:10.3390/nitrogen3030027
D. Aboagye, Wilfred Teejay Adjadeh, E. Nartey, S. Asuming-Brempong
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引用次数: 0

摘要

固有的低土壤肥力状况限制了加纳北部低地生态中水稻的生产力。有机氮肥与无机氮肥配合施用有助于保持低地土壤的肥力,有利于水稻生产。通过筛房盆栽试验,研究了生物炭堆肥与无机氮肥复合施用对水稻氮素吸收和农艺性能的影响。采用单施无机氮肥及其与不同类型生物炭堆肥(根据生物炭与堆肥的比例)的组合处理。对照(未改良土壤)也包括在内。生物炭堆肥和无机氮肥的掺入改善了水稻植株的生长参数和产量组成。生物炭堆肥与无机氮肥配施也能提高水稻对氮的吸收。这种做法可能是缓解加纳北部低地土壤肥力问题和提高水稻生产力的最有可能可行的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Co-Application of Biochar Compost and Inorganic Nitrogen Fertilizer Affects the Growth and Nitrogen Uptake by Lowland Rice in Northern Ghana
Inherent low soil fertility status limits productivity of rice in the lowland ecologies in Northern Ghana. Combining organic and inorganic nitrogen fertilizers could help to maintain the fertility of lowland soils for rice production. A screen house pot experiment was carried out to investigate the combined effect of biochar compost and inorganic nitrogen fertilizer on the nitrogen uptake and agronomic performance of rice plants grown on an eutric gleysol lowland soil. Inorganic nitrogen fertilizer alone and its combinations with different types of biochar compost (based on the proportions of biochar and compost) were used as treatment. A control (unamended soil) was also included. The incorporation of biochar compost and inorganic nitrogen fertilizer improved the growth parameters and yield components of rice plants. The combination of biochar compost and inorganic nitrogen fertilizer was also found to improve nitrogen uptake in rice plants. This practice could be the most likely viable option for alleviating lowland soil fertility issues and increasing rice productivity in Northern Ghana.
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