Li Zhi-Hua, Fan Chang-Qing, Wang Xiao-Chang
Key Laboratory of Northwest Water Resources, Environment and Ecology, Ministry of Education, School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.
Huan Jing Ke Xue. 2013 Jun;34(6):2314-8.
The volumetric oxygen transfer coefficient (k(L)a) was tested with mature aerobic granules in the same aeration measurement device and under the same aeration conditions. The k(L)a (min(-1)) was 0.586 1 +/- 0.009 5, 0.586 1 +/- 0.0272, 0.555 6 +/- 0.016 8, 0.5338 +/- 0.0268 for floc sludge, and 0.645 5 +/- 0.027 6, 0.632 0 +/- 0.0755, 0.618 5 +/- 0.062 5, 0.640 6 +/- 0.055 5 for aerobic granules, when the sludge concentration MLSS (mg x L(-1)) was controlled at 2 000, 4 000, 6 000, 8 000, respectively. This indicated that granular sludge exhibited higher k(L)a values than the flocs, and the k(L)a value of floc sludge decreased with the increase of the sludge concentration; however, insignificant decease was found for granular sludge. After screening of granules with different diameter, the k(L)a values of the aerobic granular sludge with different sizes which had the same MLSS, volume, surface area and particle number were compared, and insignificant difference was found, suggesting that the effects of these factors on the k(L)a of granular sludge were negligible. The findings of this work may have significance for the energy-saving operation of wastewater treatment plants.
在相同的曝气测量装置和相同的曝气条件下,用成熟的好氧颗粒测定了体积传氧系数(k(L)a)。当污泥浓度MLSS(mg x L(-1))分别控制在2000、4000、6000、8000时,絮状污泥的k(L)a(min(-1))分别为0.586 1±0.009 5、0.586 1±0.0272、0.555 6±0.016 8、0.5338±0.0268,好氧颗粒的k(L)a分别为0.645 5±0.027 6、0.632 0±0.0755、0.618 5±0.062 5、0.640 6±0.055 5。这表明颗粒污泥的k(L)a值高于絮体,絮状污泥的k(L)a值随污泥浓度的增加而降低;然而,颗粒污泥的k(L)a值下降不明显。筛选不同直径的颗粒后,比较了具有相同MLSS、体积、表面积和颗粒数的不同尺寸好氧颗粒污泥的k(L)a值,发现差异不显著,表明这些因素对颗粒污泥k(L)a的影响可忽略不计。这项工作的研究结果可能对污水处理厂的节能运行具有重要意义。