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[超声能量对废弃活性污泥特性的影响]

[Effect of ultrasonic energy on the characteristics of waste activated sludge].

作者信息

Feng Xin, Deng Jin-Chuan, Li Bi-Qing, Luo Gang, Lei Heng-Yi

机构信息

Guangzhou Sewage Treatment Co. Ltd., Guangzhou 510655, China.

出版信息

Huan Jing Ke Xue. 2011 Oct;32(10):3004-10.

Abstract

Seven ultrasonic energy levels ranging from 0 to 26 000 kJ x kg(-1) were used to disintegrate excess sludge to investigate the changes in physical characteristics. The results indicated that the ultrasonication process destroys floc structure, facilitates the transfer of matter into the aqueous phase, and breaks up cell walls, which facilitated the improvement of settleability and biodegradability. Low ultrasonic energies could improve the settleability and supernatant turbidity. When the energy of 1 000 kJ x kg(-1) was applied into the sludge, the maximal settling velocity of sludge at 45 min was increased by 18.58% and the supernatant turbidity at 24 h was decreased by 43.52%, compared to the control. However, high ultrasonic energies deteriorated the characteristics. The maximal settling velocity was reduced by 37.03% and the supernatant turbidity was increased by 10 times in comparison to the control when the energy dose of 26 000 kJ x kg(-1) was applied. With the increases in ultrasonic energies, the particle size was significantly decreased, the soluble solids increased and the floc clusters dispersed. These changes in sludge characteristics were directly dependent upon the amount of ultrasonic energy applied. Furthermore, these characteristics correlated significantly to the ultrasonic energy. 1000 kJ x kg(-1) was the optimal energy that improved the settleability and the supernatant turbidity, and that destructed the floc structure of sludge. On the other hand, particle size was an important factor affecting sludge settleability and supernatant turbidity. The optimal values led to best settleability and turbidity.

摘要

使用从0到26000 kJ·kg⁻¹的七个超声能量水平对剩余污泥进行分解,以研究其物理特性的变化。结果表明,超声处理过程破坏了絮体结构,促进了物质向水相的转移,并破坏了细胞壁,从而有助于沉降性能和生物降解性的改善。低超声能量可以提高沉降性能和上清液浊度。与对照相比,当向污泥施加1000 kJ·kg⁻¹的能量时,污泥在45分钟时的最大沉降速度提高了18.58%,24小时时的上清液浊度降低了43.52%。然而,高超声能量会使这些特性恶化。当施加26000 kJ·kg⁻¹的能量剂量时,与对照相比,最大沉降速度降低了37.03%,上清液浊度增加了10倍。随着超声能量的增加,颗粒尺寸显著减小,可溶性固体增加,絮体团簇分散。污泥特性的这些变化直接取决于施加的超声能量的量。此外,这些特性与超声能量显著相关。1000 kJ·kg⁻¹是改善沉降性能和上清液浊度以及破坏污泥絮体结构的最佳能量。另一方面,颗粒尺寸是影响污泥沉降性能和上清液浊度的重要因素。最佳值导致最佳的沉降性能和浊度。

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