Insititute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences, Beijing, China.
Bioresour Technol. 2013 Jul;139:28-33. doi: 10.1016/j.biortech.2013.04.029. Epub 2013 Apr 15.
This study aimed to develop an ectopic fermentation system (EFS) to reduce the pollution of cow wastewater and to provide a basis for the production of biofertilizer with fermentation residues. Six thermophilic strains, three of which have efficient cellulose-degrading abilities and the other have good ammonia-N utilizing abilities, were chosen as the microbial inocula. The results showed that EFS inoculated with microbial consortium brought higher temperature and more wastewater was needed to ensure continuous fermentation. The pH values decreased in the early stage of fermentation, and then increased during the process. It caused increases in total Kjeldahl nitrogen, total phosphorous, and total potassium content. Decreases in organic matter content and C/N ratio were also observed. The high level of nutrients indicated the suitability of the paddings after fermentation for agronomic uses. It firstly attempted to combine cow wastewater treatment and bio-organic fertilizer production by EFS with mixed microbial culture.
本研究旨在开发一种异位发酵系统(EFS),以减少牛粪废水的污染,并为利用发酵残渣生产生物肥料提供依据。选择了六种嗜热菌株,其中三种具有高效的纤维素降解能力,另一种具有良好的氨氮利用能力,作为微生物接种物。结果表明,接种微生物菌剂的 EFS 需要更高的温度和更多的废水才能保证连续发酵。发酵初期 pH 值下降,然后在发酵过程中升高。这导致总凯氏氮、总磷和总钾含量增加。还观察到有机物含量和 C/N 比降低。高营养水平表明发酵后的垫料适合农业用途。这是首次尝试利用混合微生物培养的 EFS 将牛粪废水处理和生物有机肥生产相结合。