Industry-Academic Cooperation Foundation, Sangji University, Wonju, 26339, Republic of Korea.
Department of Applied Plant Science, Sangji University, Wonju-si, 26339, Republic of Korea.
Sci Rep. 2024 Jan 2;14(1):72. doi: 10.1038/s41598-023-50649-5.
Utilizing livestock manure as organic fertilizer in sustainable agriculture is crucial and should be developed through an appropriate manufacturing process. Solid-liquid separation contributes to reducing odor, managing nutrients in livestock excretions, and lowering the cost of transporting manure to arable soil. To investigate the impact of fermentation after solid-liquid separation, we examined the specific correlation between chemical properties and bacterial communities in solid-liquid manures before and after the fermentation process. In terms of chemical properties before fermentation, the levels of electrical conductivity, nitrogen, ammonium nitrogen (NH-N), potassium, sodium, and chloride were higher in the liquid sample than in the solid sample. However, the chemical components of the liquid sample decreased during fermentation, which could be attributed to the low organic matter content. Many chemical components increased in the solid samples during fermentation. Fifty-six bacterial species were significantly correlated with NH-N and phosphorus. Following fermentation, their abundance increased in the solid samples and decreased in the liquid samples, indicating the potential for NH-N release or phosphorus mineralization from organic matter. These results provide information regarding changes in nutrient and bacterial formation when applying the fermentation process after solid-liquid separation.
利用家畜粪便作为有机肥料在可持续农业中至关重要,应通过适当的制造工艺来开发。固液分离有助于减少气味、管理家畜排泄物中的养分,并降低将粪便运输到耕地的成本。为了研究固液分离后的发酵的影响,我们研究了发酵前后固液粪便中化学性质和细菌群落之间的具体相关性。在发酵前的化学性质方面,电导率、氮、铵态氮(NH-N)、钾、钠和氯的水平在液体样本中高于固体样本。然而,液体样本中的化学成分在发酵过程中减少,这可能是由于有机物含量低所致。许多化学成分在发酵过程中在固体样本中增加。56 种细菌物种与 NH-N 和磷显著相关。发酵后,它们在固体样本中的丰度增加,在液体样本中的丰度降低,表明 NH-N 释放或磷从有机物中矿化的潜力。这些结果提供了有关应用固液分离后发酵工艺时营养物质和细菌形成变化的信息。
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