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国家自然科学基金(50608064)

作品数:6 被引量:79H指数:4
相关作者:王亚宜李军张宇坤殷芳芳彭永臻更多>>
相关机构:浙江工业大学同济大学北京工业大学更多>>
发文基金:国家自然科学基金浙江省自然科学基金海外青年学者合作研究基金更多>>
相关领域:环境科学与工程更多>>

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Characteristics of anoxic phosphors removal in sequence batch reactor被引量:18
2007年
The characteristics of anaerobic phosphorus release and anoxic phosphorus uptake were investigated in sequencing batch reactors using denitrifying phosphorus removing bacteria (DPB) sludge. The lab-scale experiments were accomplished under conditions of various nitrite concentrations (5.5, 9.5, and 15 mg/L) and mixed liquor suspended solids (MLSS) (1844, 3231, and 6730 mg/L). The results obtained confirmed that nitrite, MLSS, and pH were key factors, which had a significant impact on anaerobic phosphorus release and anoxic phosphorus uptake in the biological phosphorous removal process. The nitrites were able to successfully act as electron acceptors for phosphorous uptake at a limited concentration between 5.5 and 9.5 mg/L. The denitrification and dephosphorous were inhibited when the nitrite concentration reached 15 mg/L. This observation indicated that the nitrite would not inhibit phosphorus uptake before it exceeded a threshold concentration. It was assumed that an increase of MLSS concentration from 1844 mg/L to 6730 mg/L led to the increase of denitrification and anoxic P-uptake rate. On the contrary, the average P-uptake/N denitrifying reduced from 2.10 to 1.57 mg PO4^3--P/mg NO3^--N. Therefore, it could be concluded that increasing MLSS of the DEPHANOX system might shorten the reaction time of phosphorus release and anoxic phosphorus uptake. However, excessive MLSS might reduce the specific denitrifying rate. Meanwhile, a rapid pH increase occurred at the beginning of the anoxic conditions as a result of denitrification and anoxic phosphate uptake. Anaerobic P release rate increased with an increase in pH. Moreover, when pH exceeded a relatively high value of 8.0, the dissolved P concentration decreased in the liquid phase, because of chemical precipitation. This observation suggested that pH should be strictly controlled below 8.0 to avoid chemical precipitation if the biological denitrifying phosphorus removal capability is to be studied accurately.
WANG Ya-yiPAN Mian-liYAN MinPENG Yong-zhenWANG Shu-ying
关键词:NITRITEMLSS
Influence of carbon source and temperature on the denitrifying phosphorus removal process
2007年
To supply the valuable operating parameters for the popular usage of the new denitrifying phosphors removal process,it is essential to study the dominant biochemical reactions and the characteristics of denitrifying phosphorus removing bacteria(DPB).Thus,parallel batch experiments using DPB sludge were carried out to assess the effect of substrates(sewage,HAc,and endogenous carbon source)on denitrifying dephosphorus removal efficiency in this study.The results showed that the initial specific phosphorus release rate increased with the high concentration of the short-chain volatile fatty acids ratio in the influent,and sufficient phos-phorus was released by DPB.This improved the subsequent denitrification and phosphorus uptake efficiency.The specific endogenous denitrification mainly relies on the internal carbon source(PHB)stored by poly-P bacteria.Denitrifying phosphorus removing bacteria were very hungry when the internal PHB was consumed.Consequently,the specific endogenous denitrification rate was low and the phosphorus uptake did not happen.On the other hand,in the experiment,the denitrifying phosphorus removal performance under two temperature conditions(8-10°C and 25-26°C)was also investigated and analyzed.It was found that the lower temperature decreased the specific phosphorus release and uptake rate,but did not inhibit the denitrifying phosphorus removal completely.Therefore,the negative influence of the low temperature on the overall phosphorus removal was not significant.
WANG YayiWANG ShuyingPENG YongzhenZhu GuibingLING Yunfang
关键词:TEMPERATURE
双污泥SBR工艺反硝化除磷脱氮特性及影响因素被引量:36
2008年
以生活污水为处理对象,研究了双污泥A2NSBR工艺反硝化除磷脱氮特性,重点考察了进水C/P和C/N及HRT的影响作用;同时基于DO、ORP和pH的典型变化规律,验证它们作为反硝化除磷过程控制参数的可行性.结果表明,在本试验条件下,P的去除率随着进水C/P的升高整体呈现上升趋势.当进水C/P≥19.39左右时,系统可维持优良的除磷效果;而当进水C/P降至15.36以下时,系统除磷效果呈恶化趋势.另一方面,A2NSBR在低C/N条件下仍可获得相对良好的除磷率,但易导致反硝化脱氮率的下降.C/N的升高增加了聚磷菌厌氧阶段合成PHB的量,继而提高最终的脱氮和除磷效果;但C/N过高将使厌氧段未反应完全的过剩碳源滞留到缺氧段,优先支持反硝化异养菌(ordinary heterotrophic organisms,OHOs)的反硝化反应而减少了缺氧阶段DNPAOs可利用的电子受体数,致使缺氧除磷效果恶化.此外,A2NSBR拥有2套完全独立的SBR,较利于建立以DO、ORP和pH为参数的过程控制体系.
王亚宜彭永臻殷芳芳李军张宇坤
关键词:反硝化除磷COD/N
城市污水处理厂好氧颗粒污泥的特性被引量:15
2008年
对城市污水处理厂曝气池中筛选出的好氧颗粒污泥进行了分析.结果表明,这些颗粒污泥的直径主要在0.2-0.8mm范围;平均圆度为1.29;沉淀速率约在10~42mh^-1之间;比耗氧速率(SOUR)为14.2~18.9mgg^-1h^-1,小于活性污泥;挥发性物质占总固体的量与活性污泥基本相似.这些颗粒污泥占污泥总量的0.1%~0.5%.颗粒污泥的激光共聚焦扫描显微镜(CLSM)图像显示:颗粒污泥内部几乎都由胞外聚合物(EPS)组成;细菌主要分布在颗粒污泥表面至100μm厚度区域,少部分分布在100-400μm厚度区域.
李军周延年何梅王亚宜韦苏KERSTIN GarnyTHOMAS R.NeuHARALD Horn
关键词:好氧颗粒污泥推流式EPS
序批式生物膜反应器同步硝化反硝化的曝气时间控制及其机制分析被引量:7
2008年
装有鲍尔环填料的序批式生物膜反应器(SBBR)具有很好的同步硝化反硝化(SND)效果。从试验结果可以看出,SBBR具备了生成和保存内碳源以及产生缺氧区的良好条件;当硝化结束后,应立即停止曝气,可以降低出水TN并实现节能。分析了生物膜内各种基质、DO、聚β-羟基丁酸(PHB)的变化曲线,描述了生物膜内发生SND的过程和机制,并提出了SBBR中达到良好SND效果的曝气时间控制方式。
倪永炯李军潘成苏志强寿银海韦甦王亚宜
关键词:序批式生物膜反应器聚Β-羟基丁酸
不同基质的聚磷菌和聚糖菌竞争的代谢模型被引量:3
2009年
主要阐述了3种不同基质(乙酸盐、丙酸盐、葡萄糖)下聚磷菌(PAOs)和聚糖菌(GAOs)厌氧阶段的代谢模型,对比分析了不同代谢模型下的化学计量系数的差别及其对PAOs和GAOs竞争的影响。针对目前代谢模型主要集中于化学计量学方面,提出今后应在动力学及相关代谢中酶的活动方面进行深入研究。
鲁文敏王亚宜高乃云杨健
关键词:基质代谢模型
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