中国环境科学
中國環境科學
중국배경과학
CHINA ENVIRONMENTAL SCIENCE
2014年
11期
2796-2804
,共9页
王亚宜%陈玉%周东%林喜茂
王亞宜%陳玉%週東%林喜茂
왕아의%진옥%주동%림희무
N2O%滴滤池%温差%生物膜%硝化作用
N2O%滴濾池%溫差%生物膜%硝化作用
N2O%적려지%온차%생물막%초화작용
nitrous oxide%tricking filter%temperature difference%biofilm%nitrification
研究了某大学污水处理厂的一个滴滤池(生物膜系统)随季节变化 N2O 的释放特征.结果表明,滴滤池中 N2O 的释放浓度范围为0~18.21×10-6,释放量为20.5~554g N2O/(m3?a),其释放因子(N2O-N/进水NH3-N)为0.1%~0.8%.N2O释放量与季节变化有关,夏季产生量较高而春季较少,空气和进水的温差是影响滴滤池中硝化作用和N2O释放的主要因素,7月份时气温和水温温差较小,导致空气中的氧气无法充入水中,水中溶解氧的不足使得滴滤池硝化不完全,N2O释放量最高.另外,N2O释放量的昼夜变化规律表明,滴滤池的N2O释放、硝化作用和温度变化相关,通过在线监测N2O释放和水温/气温温度变化可以间接反映滴滤池的生物硝化效果.
研究瞭某大學汙水處理廠的一箇滴濾池(生物膜繫統)隨季節變化 N2O 的釋放特徵.結果錶明,滴濾池中 N2O 的釋放濃度範圍為0~18.21×10-6,釋放量為20.5~554g N2O/(m3?a),其釋放因子(N2O-N/進水NH3-N)為0.1%~0.8%.N2O釋放量與季節變化有關,夏季產生量較高而春季較少,空氣和進水的溫差是影響滴濾池中硝化作用和N2O釋放的主要因素,7月份時氣溫和水溫溫差較小,導緻空氣中的氧氣無法充入水中,水中溶解氧的不足使得滴濾池硝化不完全,N2O釋放量最高.另外,N2O釋放量的晝夜變化規律錶明,滴濾池的N2O釋放、硝化作用和溫度變化相關,通過在線鑑測N2O釋放和水溫/氣溫溫度變化可以間接反映滴濾池的生物硝化效果.
연구료모대학오수처리엄적일개적려지(생물막계통)수계절변화 N2O 적석방특정.결과표명,적려지중 N2O 적석방농도범위위0~18.21×10-6,석방량위20.5~554g N2O/(m3?a),기석방인자(N2O-N/진수NH3-N)위0.1%~0.8%.N2O석방량여계절변화유관,하계산생량교고이춘계교소,공기화진수적온차시영향적려지중초화작용화N2O석방적주요인소,7월빈시기온화수온온차교소,도치공기중적양기무법충입수중,수중용해양적불족사득적려지초화불완전,N2O석방량최고.령외,N2O석방량적주야변화규률표명,적려지적N2O석방、초화작용화온도변화상관,통과재선감측N2O석방화수온/기온온도변화가이간접반영적려지적생물초화효과.
As a powerful greenhouse gas,nitrous oxide (N2O) is found in wastewater treatment plants. The factors influencing N2O emission from a natural-draft trickling filter (TF) was investigated in situ by treating domestic wastewater. The concentration of N2O released from TF varied between 0~18.21×10-6and the amount of N2O emission was estimated to be 20.5~554g N2O/(m3?a), representing 0.1%~0.8%of oxidized ammonia. Variations of N2O emission followed the seasonal weather pattern, with more N2O emission in the summer period and less in the spring. Temperature differences between air and water were the most influential environmental factors governing the nitrification and the N2O emission patterns in TF. The highest N2O emission occurred in July when temperature differences between air and water were minimal, causing insufficient oxygen availability and incomplete nitrification. The daily patterns indicated that N2O emission was closely correlated with the variations of nitrification and temperature differences, which made it possible for using on-line temperature or N2O monitor to identify the nitrification failures.