Anaerobic ammonium oxidation (ANAMMOX) technology has potential technical superiority and economical efficiency for the nitrogen removal from landfill leachate, which contains high-strength ammonium nitrogen (NH4^...Anaerobic ammonium oxidation (ANAMMOX) technology has potential technical superiority and economical efficiency for the nitrogen removal from landfill leachate, which contains high-strength ammonium nitrogen (NH4^+-N) and refractory organics. To complete the ANAMMOX process, a preceding partial nitritation step to produce the appropriate ratio of nitrite/ammonium is a key stage. The objective of this study was to determine the optimal conditions to acquire constant partial nitritation for landfill leachate treatment, and a bench scale fixed bed bio-film reactor was used in this study to investigate the effects of the running factors on the partial nitritation. The results showed that both the dissolved oxygen (DO) concentration and the ammonium volumetric loading rate (Nv) had effects on the partial nitritation. In the controlling conditions with a temperature of 30±1℃, Nv of 0.2-1.0 kg NH4+-N/(m^3·d), and DO concentration of 0.8-2.3 mg/L, the steady partial nitritation was achieved as follows: more than 94% partial nitritation efficiency (nitrite as the main product), 60%-74% NH4^+-N removal efficiency, and NO2^--N/NH4^+-N ratio (concentration ratio) of 1.0-1.4 in the effluent.The impact of temperature was related to Nv at certain DO concentration, and the temperature range of 25-30℃ was suitable for treating high strength ammonium leachate. Ammonium-oxidizing bacteria (AOB) could be acclimated to higher FA (free ammonium) in the range of 122-224 mg/L. According to the denaturing gradient gel electrophoresis analysis result of the bio-film in the reactor, there were 25 kinds of 16S rRNA gene fragments, which indicated that abundant microbial communities existed in the bio-film, although high concentrations of ammonium and FA may inhibit the growth of the nitrite-oxidizing bacteria (NOB) and other microorganisms in the reactor.展开更多
在连续流反应器中接种成熟好氧颗粒污泥(AGS)处理低氨氮污水,通过控制溶解氧(DO)和出水氨氮(NH_4^+-N)的浓度,研究了控制DO/NH_4^+-N(R值)实现连续流好氧颗粒污泥系统短程硝化的可行性和不同温度(30、20、10℃)条件下实现短程硝化系统对...在连续流反应器中接种成熟好氧颗粒污泥(AGS)处理低氨氮污水,通过控制溶解氧(DO)和出水氨氮(NH_4^+-N)的浓度,研究了控制DO/NH_4^+-N(R值)实现连续流好氧颗粒污泥系统短程硝化的可行性和不同温度(30、20、10℃)条件下实现短程硝化系统对R值的需求.结果表明,通过比值控制,连续流好氧颗粒污泥系统可以快速实现短程硝化;在30、20、10℃条件下,系统实现短程硝化所需要的R值分别为0.50(±0.05)、0.35(±0.03)和0.20(±0.02).因此可知,温度越低,系统实现短程硝化所需要的氧抑制越强.采用荧光原位杂交(fluorescence in situ hybridization,FISH)实验表明,通过比值控制,氨氧化菌(AOB)得到一定的富集,而亚硝酸盐氧化菌(NOB)的相对数量逐渐减少.基于比值控制和污水水质的特点,选择短程硝化的方式有所不同,低氨氮废水选择半量亚硝化,而高氨氮污水则选择全量亚硝化.展开更多
基金Project supported by the National Natural Science Foundation of China (No. 50238050)the Hi-Tech Research and Development Program (863) of China (No. 2002AA649250).
文摘Anaerobic ammonium oxidation (ANAMMOX) technology has potential technical superiority and economical efficiency for the nitrogen removal from landfill leachate, which contains high-strength ammonium nitrogen (NH4^+-N) and refractory organics. To complete the ANAMMOX process, a preceding partial nitritation step to produce the appropriate ratio of nitrite/ammonium is a key stage. The objective of this study was to determine the optimal conditions to acquire constant partial nitritation for landfill leachate treatment, and a bench scale fixed bed bio-film reactor was used in this study to investigate the effects of the running factors on the partial nitritation. The results showed that both the dissolved oxygen (DO) concentration and the ammonium volumetric loading rate (Nv) had effects on the partial nitritation. In the controlling conditions with a temperature of 30±1℃, Nv of 0.2-1.0 kg NH4+-N/(m^3·d), and DO concentration of 0.8-2.3 mg/L, the steady partial nitritation was achieved as follows: more than 94% partial nitritation efficiency (nitrite as the main product), 60%-74% NH4^+-N removal efficiency, and NO2^--N/NH4^+-N ratio (concentration ratio) of 1.0-1.4 in the effluent.The impact of temperature was related to Nv at certain DO concentration, and the temperature range of 25-30℃ was suitable for treating high strength ammonium leachate. Ammonium-oxidizing bacteria (AOB) could be acclimated to higher FA (free ammonium) in the range of 122-224 mg/L. According to the denaturing gradient gel electrophoresis analysis result of the bio-film in the reactor, there were 25 kinds of 16S rRNA gene fragments, which indicated that abundant microbial communities existed in the bio-film, although high concentrations of ammonium and FA may inhibit the growth of the nitrite-oxidizing bacteria (NOB) and other microorganisms in the reactor.
文摘在连续流反应器中接种成熟好氧颗粒污泥(AGS)处理低氨氮污水,通过控制溶解氧(DO)和出水氨氮(NH_4^+-N)的浓度,研究了控制DO/NH_4^+-N(R值)实现连续流好氧颗粒污泥系统短程硝化的可行性和不同温度(30、20、10℃)条件下实现短程硝化系统对R值的需求.结果表明,通过比值控制,连续流好氧颗粒污泥系统可以快速实现短程硝化;在30、20、10℃条件下,系统实现短程硝化所需要的R值分别为0.50(±0.05)、0.35(±0.03)和0.20(±0.02).因此可知,温度越低,系统实现短程硝化所需要的氧抑制越强.采用荧光原位杂交(fluorescence in situ hybridization,FISH)实验表明,通过比值控制,氨氧化菌(AOB)得到一定的富集,而亚硝酸盐氧化菌(NOB)的相对数量逐渐减少.基于比值控制和污水水质的特点,选择短程硝化的方式有所不同,低氨氮废水选择半量亚硝化,而高氨氮污水则选择全量亚硝化.