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Enhanced Biological Phosphorus Removal with Pseudomonas putida GM6 from Activated Sludge 被引量:9
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作者 cai tian-ming GUAN Li-Bo +4 位作者 CHEN Li-Wei cai Shu LI Xiao-Dan CUI Zhong-Li LI Shun-Peng 《Pedosphere》 SCIE CAS CSCD 2007年第5期624-629,共6页
The enhanced biological phosphorus removal (EBPR) method is widely adopted for phosphorus removal from wastewater, yet little is known about its microbiological and molecular mechanisms. Therefore, it is difficult t... The enhanced biological phosphorus removal (EBPR) method is widely adopted for phosphorus removal from wastewater, yet little is known about its microbiological and molecular mechanisms. Therefore, it is difficult to predict and control the deterioration of the EBPR process in a large-scale municipal sewage treatment plant. This study used a novel strain isolated in the laboratory, Pseudomonas putida GM6, which had a high phosphate accumulating ability and could recover rapidly from the deteriorated system and enhance the capability of phosphorus removal in activated sludge. Strain GM6 marked with gfp gene, which was called GMTR, was delivered into a bench-scale sequencing batch reactor (SBR) of low efficiency, to investigate the colonization of GMTR and removal of phosphorus. After 21 days, the proportion of GMTR in the total bacteria of the sludge reached 9.2%, whereas the phosphorus removal rate was 96%, with an effluent concentration of about 0.2 mg L^-1. In the reactor with the addition of GMTR, phosphorus was removed quickly, in 1 h under anaerobic conditions, and in 2 h under aerobic conditions. These evidences were characteristic of EBPR processes. Field testing was conducted at a hospital sewage treatment facility with low phosphorus removal capability. Twentyone days after Pseudomonas putida GM6 was added, effluent phosphorus concentration remained around 0.3 mg L^-1, corresponding to a removal rate of 96.8%. It was therefore demonstrated that Pseudomonas putida GM6 could be used for a quick startup and enhancement of wastewater biological phosphorus removal, which provided a scientific basis for potential large-scale engineering application. 展开更多
关键词 activated sludge COLONIZATION enhanced biological phosphorus removal Pseudomonas putida GM6
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冲击荷载作用下非饱和场地的三维应力响应
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作者 李顺群 蔡田明 +4 位作者 张勋程 张丙坤 杨长松 周光毅 周燕 《岩土力学》 EI CAS 2024年第S01期477-484,共8页
由于具有明显的瞬时性和突变性,冲击荷载作用下非饱和土的应力变化特征与静力荷载和常规动力荷载显著不同。为研究冲击荷载作用下的空间应力状态,采用三维应力测试技术对某非饱和土路基进行了原位测试。三维土压力盒分别设置在地面以下0... 由于具有明显的瞬时性和突变性,冲击荷载作用下非饱和土的应力变化特征与静力荷载和常规动力荷载显著不同。为研究冲击荷载作用下的空间应力状态,采用三维应力测试技术对某非饱和土路基进行了原位测试。三维土压力盒分别设置在地面以下0.3 m和0.6 m处,在埋点地面投影处施加连续竖向冲击荷载,实时采集应力测试数据,并利用应力变换方法得到了相应的三维应力、主应力和主方向演变过程。在此基础上,与现有一维应力测试方法和成果进行比较,进一步阐述了三维应力测试的合理性和科学性。测试数据表明,在冲击荷载作用下冲击方向(即z轴方向)上的应力分量瞬时增长明显且其增量为正值,而y方向上的正应力增量为负值。主应力方向角α、β和γ在冲击过程中发生明显偏转,α变化范围在90。以内,而β和γ由初始值快速减小至其补角,且3个方向角在一次冲击持续时间内发生多次往复变化。该研究成果对深入认识冲击荷载作用下非饱和土的应力反应和演变过程具有理论意义,可为地震或其他冲击荷载作用下的本构模型、工程设计与施工研究提供参考。 展开更多
关键词 原位测试 冲击荷载 三维应力测试 主应力 主方向
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