Miyahara Morio, Kim Sang-Wan, Zhou Shengmin, Fushinobu Shinya, Yamada Takeshi, Ikeda-Ohtsubo Wakako, Watanabe Akira, Miyauchi Keisuke, Endo Ginro, Wakagi Takayoshi, Shoun Hirofumi
Department of Biotechnology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, Japan.
Biosci Biotechnol Biochem. 2012;76(3):495-500. doi: 10.1271/bbb.110785.
The aerobic denitrifier Pseudomonas stutzeri TR2 (strain TR2) has the potential to reduce nitrous oxide emissions during the wastewater treatment process. In this application, it is important to find the best competitive survival conditions for strain TR2 in complex ecosystems. To that end, we examined co-cultures of strain TR2 with activated sludge via five passage cultures in a medium derived from treated piggery wastewater that contained a high concentration of ammonium. The results are as follows: (i) The medium supported the proliferation of strain TR2 (P. stutzeri strains) under denitrifying conditions. (ii) Nitrite was a better denitrification substrate than nitrate for TR2 survival. (iii) Strain TR2 also demonstrated strong survival even under aerobic conditions. This suggests that strain TR2 is effectively augmented to the wastewater treatment process, aiding in ammonium-nitrogen removal and reducing nitrous oxide production with a partial nitrification technique in which nitrite accumulates.
好氧反硝化菌施氏假单胞菌TR2(菌株TR2)有潜力在废水处理过程中减少一氧化二氮的排放。在这种应用中,找到菌株TR2在复杂生态系统中的最佳竞争生存条件很重要。为此,我们通过在源自处理过的猪场废水且含有高浓度铵的培养基中进行五次传代培养,研究了菌株TR2与活性污泥的共培养。结果如下:(i)该培养基在反硝化条件下支持菌株TR2(施氏假单胞菌菌株)的增殖。(ii)亚硝酸盐比硝酸盐更适合TR2生存的反硝化底物。(iii)即使在有氧条件下,菌株TR2也表现出很强的生存能力。这表明菌株TR2能有效地应用于废水处理过程,通过亚硝酸盐积累的部分硝化技术有助于去除氨氮并减少一氧化二氮的产生。