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废水厌氧(水解)—好氧生物组合处理工艺研究进展 被引量:18
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作者 洪铭媛 李清彪 邓旭 《化工环保》 CAS CSCD 北大核心 2005年第2期104-109,共6页
比较了厌氧(水解)法和好氧法废水生物处理技术的优缺点,分析了厌氧(水解)—好氧组合工艺的主要优势;并根据组合工艺在空间和时间上的4种不同实现形式,总结了近年来国内外组合工艺的应用现状和发展趋势。
关键词 废水 生物处理 厌氧 水解 好氧
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生物膜水解-好氧一体化高效处理技术 被引量:2
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作者 洪铭媛 李清彪 +2 位作者 黄宇 邓旭 卢英华 《水处理技术》 CAS CSCD 北大核心 2005年第6期60-63,共4页
为了实现同一反应器内生物膜内层兼氧和生物膜外层好氧两种状态的组合,探究水解和好氧两过程的组合优势,本实验采用对生物膜反应器限制性供氧的方法。实验结果表明,限氧条件下的生物膜反应器内,兼氧菌群与好氧菌群良好的协同作用使反应... 为了实现同一反应器内生物膜内层兼氧和生物膜外层好氧两种状态的组合,探究水解和好氧两过程的组合优势,本实验采用对生物膜反应器限制性供氧的方法。实验结果表明,限氧条件下的生物膜反应器内,兼氧菌群与好氧菌群良好的协同作用使反应器能稳定且快速有效地处理一系列不同浓度的模拟淀粉废水。用该反应器间歇处理COD4370~8070mg/L的废水,反应2h就能使废水中的淀粉去除率和COD去除率都达90%以上。 展开更多
关键词 生物膜 水解 好氧 一体化 淀粉废水
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Preliminary Study on the Performance and Interaction of Recycling Hydrolytic-Aerobic Combined Process of High Concentration Starch Wastewater 被引量:2
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作者 李清彪 廖鑫凯 +6 位作者 吴志旺 邓旭 黄益丽 卢英华 孙道华 洪铭媛 王琳 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2004年第1期108-112,共5页
A new recycling hydrolytic-aerobic combined process was developed to treat the high concentration organic wastewater. Simulated wastewater containing 10 g·L^-1 starch with a CODcr value of 10000 mg·L^-1 wasu... A new recycling hydrolytic-aerobic combined process was developed to treat the high concentration organic wastewater. Simulated wastewater containing 10 g·L^-1 starch with a CODcr value of 10000 mg·L^-1 wasused. At first, the hydrolytic degradation and aerobic degradation process were examined in two batch reactors, respectively. In the stand-alone hydrolytic process, starch in the wastewater almost disappeared after 11 h treatment, but CODCr remained as high as 5803mg·L^-1 after two days. In the aerobic process, the biodegradation rate of starch was much slower during the first 11 h than that in the hydrolytic process, although the CODCr removal efficiency reached 89.6% and more than 90% starch could be degraded after 37.5 h. To determine the interaction effects of the two processes, a series of hydrolytic-aerobic combinations were examined in details. Hydrolytic process played an important role in the whole recycle combination process as it could improve the biodegradability of the high concentration starch wastewater. However, from the other experiments, the negative effect of hydrolytic acidification was found in the hydrolytic-aerobic combination, which suggested that the aerobic microorganisms needed time to adapt themselves to the acidic environment. The effect of the degrading time, which was spent in the hydrolytic and aerobic unit, and the number of circulations, with which the wastewater went through the two units were investigated. It was found that a recycle combination of 6 h hydrolytic process with 12 h aerobic process was highly effective and potentially economical, in which the final removal efficiency of CODcr and efficiency of starch degradation reached 94.1% and 98.8%, respectively. 展开更多
关键词 activated sludge COD STARCH RECYCLING hydrolytic-aerobic
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