Application of Digestate from a Methane Fermentation Process for Supplying Water and Nutrients in Sweet Potato Cultivation in Sandy Soil

Methane Pub Date : 2024-07-04 DOI:10.3390/methane3030023
Y. Kitaya, Siqinbatu, Ryosuke Endo, T. Shibuya
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Abstract

To develop technology to efficiently utilize digestate from methane fermentation in agricultural production, the application of digestate from methane fermentation for supplying nutrients in sweet potato cultivation was investigated in sandy soil. Different strengths of diluted digestate with water were applied to sweet potato plants as water and nutrient supplies to determine the appropriate strength of digestate from methane fermentation for sweet potato production in sandy soil. The growth of sweet potato cultivated with diluted digestate was also compared with that of sweet potato cultivated with a commercial chemical nutrient solution. The growth rate of the tuberous roots with the strength of 1/20 of the digestate was greatest among the treatments with different digestate strengths (1/80–1/2) and commercial nutrient solutions (1/4–1). Consequently, we proposed a sweet potato production system using a bottom irrigation method with digestate from methane fermentation, which will be applicable in semiarid regions. In conclusion, the results of this study can be effectively used in a regional agricultural system combined with a methane fermentation system and can contribute to increasing food production as well as the establishment of a resource recycling society.
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应用甲烷发酵过程产生的沼渣为沙质土壤中的甘薯种植提供水分和养分
为了开发在农业生产中有效利用沼气发酵产生的沼渣的技术,研究了在沙质土壤中应用沼气发酵产生的沼渣为甘薯种植提供养分的情况。向甘薯植株施用不同浓度的加水稀释沼液作为水分和养分供应,以确定沼气发酵沼液在沙质土壤中生产甘薯的适当浓度。使用稀释沼液栽培甘薯的生长情况也与使用商业化学营养液栽培甘薯的生长情况进行了比较。在不同沼渣强度(1/80-1/2)和商业营养液(1/4-1)的处理中,沼渣强度为 1/20 的块根生长率最高。因此,我们提出了一种利用沼气发酵产生的沼渣进行底层灌溉的甘薯生产系统,该系统将适用于半干旱地区。总之,本研究的成果可有效地用于与沼气发酵系统相结合的区域农业系统,并可为提高粮食产量和建立资源循环型社会做出贡献。
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