Isaka Kazuichi, Date Yasuhiro, Kimura Yuya, Sumino Tatsuo, Tsuneda Satoshi
Hitachi Plant Technologies Ltd, Matsudo, Chiba, Japan.
FEMS Microbiol Lett. 2008 May;282(1):32-8. doi: 10.1111/j.1574-6968.2008.01095.x. Epub 2008 Mar 18.
An anaerobic ammonium oxidation (anammox) process for ammonia-rich wastewater treatment has not been reported at temperatures below 15 degrees C. This study used a gel carrier with entrapped anammox bacteria to obtain a stable nitrogen removal performance at low temperatures. In a continuous feeding test, a high nitrogen conversion rate (6.2 kg N m(-3) day(-1)) was confirmed at 32 degrees C. Nitrogen removal activity decreased gradually with decreasing operation temperature; however, it still occurred at 6 degrees C. Nitrogen conversion rates at 22 and 6.3 degrees C were 2.8 and 0.36 kg N m(-3) day(-1), respectively. Moreover, the stability of anammox activity below 20 degrees C was confirmed for more than 130 days. In batch experiments, anammox gel carriers were characterized with respect to temperature. The optimum temperature for anammox bacteria was found to be 37 degrees C. Furthermore, it was clear that the temperature dependence changed at about 28 degrees C. The apparent activation energy in the temperature range from 22 to 28 degrees C was calculated as 93 kJ mol(-1), and that in the range from 28 to 37 degrees C was 33 kJ mol(-1). This value agrees with the result of a continuous feeding test (94 kJ mol(-1), between 6 and 22 degrees C). The nitrogen removal performance demonstrated at the low temperatures used in this study will open the door for the application of anammox processes to many types of industrial wastewater treatment.
尚未有在15摄氏度以下温度处理高氨废水的厌氧氨氧化(anammox)工艺的相关报道。本研究使用包埋了厌氧氨氧化细菌的凝胶载体,以在低温下获得稳定的脱氮性能。在连续进料试验中,在32摄氏度时确认了高氮转化率(6.2 kg N m(-3) 天(-1))。随着操作温度降低,脱氮活性逐渐下降;然而,在6摄氏度时仍有脱氮活性。22摄氏度和6.3摄氏度时的氮转化率分别为2.8和0.36 kg N m(-3) 天(-1)。此外,在20摄氏度以下厌氧氨氧化活性的稳定性在130多天内得到了确认。在批次实验中,对厌氧氨氧化凝胶载体进行了温度特性研究。发现厌氧氨氧化细菌的最佳温度为37摄氏度。此外,很明显温度依赖性在约28摄氏度时发生变化。22至28摄氏度温度范围内的表观活化能计算为93 kJ mol(-1),28至37摄氏度范围内为33 kJ mol(-1)。该值与连续进料试验的结果(6至22摄氏度之间为94 kJ mol(-1))相符。本研究在低温下展示的脱氮性能将为厌氧氨氧化工艺应用于多种工业废水处理打开大门。