The impact of cationic polymer dosage on aerobic granular sludge formation and system performance

IF 3.1 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Sajid Hussain, Zulfiqar Ali Solangi and Gianni Andreottola
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引用次数: 0

Abstract

Aerobic granular sludge technology faces a significant challenge regarding slow startup time when dealing with real wastewater. The present study introduces an innovative approach to decrease the granulation time while maintaining a substantial degree of organic and inorganic pollutant extraction. With this new strategy, aerobic granulation in an SBR is improved and accelerated by adding a cationic polymer. Hydrofloc cationic polymers were used to augment granule formation. Results show that adding a cationic polymer dosage of 15 ppm accelerated the formation of granules, reducing the reactor startup time. In the initial days, COD efficiency fluctuated due to the reactor's instability because of biomass discharge in the effluent. However, the COD removal efficiency reached 97 ± 1.5% after 15 days of operation of the reactor. NH4+–N, total phosphorus (TP), and total nitrogen (TN) removal efficiencies were 97%, 63%, and 76% on average throughout the 16–50 day stable operating stage. The findings suggest that using a cationic polymer can enhance the granulation process in an aerobic granular system.

Abstract Image

阳离子聚合物用量对好氧颗粒污泥形成及系统性能的影响
好氧颗粒污泥技术在处理实际废水时面临启动时间慢的重大挑战。本研究介绍了一种创新的方法,以减少造粒时间,同时保持相当程度的有机和无机污染物的提取。利用这种新策略,通过添加阳离子聚合物,SBR中的好氧造粒得到改善和加速。用阳离子聚合物增强颗粒的形成。结果表明,添加15 ppm的阳离子聚合物加速了颗粒的形成,缩短了反应器启动时间。在最初的几天里,由于出水中有生物质排放,反应器不稳定,COD效率波动。运行15 d后,COD去除率达到97±1.5%。在16-50 d的稳定运行阶段,NH4+ -N、总磷(TP)和总氮(TN)的平均去除率分别为97%、63%和76%。研究结果表明,使用阳离子聚合物可以提高好氧颗粒系统的造粒过程。
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来源期刊
Environmental Science: Water Research & Technology
Environmental Science: Water Research & Technology ENGINEERING, ENVIRONMENTALENVIRONMENTAL SC-ENVIRONMENTAL SCIENCES
CiteScore
8.60
自引率
4.00%
发文量
206
期刊介绍: Environmental Science: Water Research & Technology seeks to showcase high quality research about fundamental science, innovative technologies, and management practices that promote sustainable water.
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