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污水处理过程中的氮和磷去除方法研究
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作者 辛珂 孙瑞星 《中文科技期刊数据库(文摘版)工程技术》 2024年第2期0165-0168,共4页
工业化与城市化步伐愈发迅猛,水环境污染日趋加剧过度引进氮、磷等养分将引发水华、赤潮等生态风险。城市生活污水中氮、磷去除策略探究迫不及待。本文着重探讨氮脱除与磷脱除技术。首先,本文对国内外现有的脱硝工艺进行了比较和分类。... 工业化与城市化步伐愈发迅猛,水环境污染日趋加剧过度引进氮、磷等养分将引发水华、赤潮等生态风险。城市生活污水中氮、磷去除策略探究迫不及待。本文着重探讨氮脱除与磷脱除技术。首先,本文对国内外现有的脱硝工艺进行了比较和分类。传统的脱硝技术主要包括硝化、反硝化以及深度脱硝。如今,这项技术已成熟应用。通过实验验证,效果显著,同步脱氮过程中的磷化反应(SNDP)以及零价铁方法的实用性已得到验证。实验证实,SNDP工艺可一举实现硝化、脱氮及除磷之功效,系统运行效能显著提升。深入探讨各类治疗方案的利弊,磷在废水中的去除效果。除却传统的化学沉淀技巧之外,生物脱磷吸附技术研究有序推进中,其中,特定场景下的生物磷消除方法,借助微生物的吸附能力,用于水处理的高效磷去除材料,活性炭与纳米复合材料均具有优异的磷去除效能。关键在于采用适当的工艺组合,实现氮磷高效经济去除之目标。这种方式满足了排放标准,使得水资源得以循环利用。总之,各类氮磷去除技术的研究得以深入探讨,这项技术为工程领域提供了坚实保障。 展开更多
关键词 去除 吸附去除 生物磷去除法
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Anoxic Biological Phosphorus Uptake in A^2O Process 被引量:10
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作者 WANG Xiaolian(王晓莲) +3 位作者 WANG Shuying(王淑莹) PENG Yongzhen(彭永臻) 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2005年第4期516-521,共6页
A lab-scale anaerobic-anoxic-oxic (A2O) process used to treat a synthetic brewage wastewater was investigated. The objectives of the study were to identify the existence of denitrifying phosphorus removing bacteria (D... A lab-scale anaerobic-anoxic-oxic (A2O) process used to treat a synthetic brewage wastewater was investigated. The objectives of the study were to identify the existence of denitrifying phosphorus removing bacteria (DPB), evaluate the contribution of DPB to biological nutrient removal and enhance the denitrifying phosphorus removal in A2O bioreactors. Sludge analysis confirmed that the average anoxic P uptake accounted for approximately 70% the total amount of P uptake, and the ratio of anoxic P uptake rate to aerobic P uptake rate was 69%. In addition, nitrate concentration in the anoxic phase and different organic substrate introduced into the anaerobic phase had significant effect on the anoxic P uptake. Compared with conventional A2O processes, good removal efficiencies of COD, phosphorus, ammonia and total nitrogen (92.3%, 95.5%, 96% and 79.5%, respectively) could be achieved in the anoxic P uptake system, and aeration energy consumption was saved 25%. By controlling the nitrate recirculation flow in the anoxic zone, anoxic P uptake could be enhanced, which solved the competition for organic substrates among poly-P organisms and denitrifiers successfully under the COD limiting conditions. Therefore, in wastewater treatment plants the control system should be applied according to the practical situation to optimize the operation. 展开更多
关键词 A^2O process nitrogen and phosphorus removal denitrifying phosphorus removing bacteria nitrate recirculation flow
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