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复合藻-菌净化系统处理麦秆造纸废液初步研究 被引量:1
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作者 饶本强 张列宇 陈坤 《信阳师范学院学报(自然科学版)》 CAS 2009年第4期593-597,共5页
在室内模拟条件下,采用正交设计法建立了一种由蛋白核小球藻(Chlorella pyrenoidosa)、鱼腥藻7120(Anabaena sp.PCC7120)、硝化细菌(Nitrate bacteria)和荚膜红假单胞菌(Rhodopseudomonas capsulata)组成的复合藻-菌净化系统去除造纸废... 在室内模拟条件下,采用正交设计法建立了一种由蛋白核小球藻(Chlorella pyrenoidosa)、鱼腥藻7120(Anabaena sp.PCC7120)、硝化细菌(Nitrate bacteria)和荚膜红假单胞菌(Rhodopseudomonas capsulata)组成的复合藻-菌净化系统去除造纸废液中有机质和氨态氮的最优化模型,确定了藻类与细菌的最优化数量配比关系为蛋白核小球藻∶鱼腥藻7120∶硝化细菌∶荚膜红假单胞菌=1∶2.17∶2.83∶5.09.比较了复合藻-菌净化系统最优化模型与单藻、单菌去除造纸废液中有机质和氨态氮的代谢速率的差异.结果显示,复合藻-菌系统代谢有机质、氨态氮的速率远高于单藻、单菌,其去除率分别为91.3%、79.2%;39.9%、22.7%;58.6%、68.9%.研究了光照强度和温度等生态因子对复合藻-菌净化系统最优化模型代谢有机质和氨态氮的影响.结果表明,在光照与黑暗条件下,复合藻-菌系统代谢有机质和氨态氮的速率存在明显差异,黑暗有利于有机质代谢而光照利于氨态氮的去除.藻-菌系统对有机质和氨态氮的代谢能力与系统的环境温度相关. 展开更多
关键词 复合藻-菌净化系统 麦秆造纸废液 藻-菌数量配比 有机质代谢 氨态氮去除
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Biological treatment of high NH_4^+-N wastewater using an ammonia-tolerant photosynthetic bacteria strain (ISASWR2014) 被引量:4
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作者 周琴 张光明 +1 位作者 郑祥 刘国华 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第10期1712-1715,共4页
Wastewater with high NH_4^+-N is difficult to treat by traditional methods.So in this paper,a wild strain of photosynthetic bacteria was used for high NH_4^+-N wastewater treatment together with biomass recovery.Isola... Wastewater with high NH_4^+-N is difficult to treat by traditional methods.So in this paper,a wild strain of photosynthetic bacteria was used for high NH_4^+-N wastewater treatment together with biomass recovery.Isolation,identification,and characterization of the microorganism were carried out.The strain was inoculated to the biological wastewater treatment unit.The impacts of important factors were examined,including temperature,dissolved oxygen,and light intensity.Results showed that photosynthetic bacteria could effectively treat high NH_4^+-N wastewater.For wastewater with NH_4^+-N of 2300 mg·L^(-1),COD/N=1.0,98.3%of COD was removed,and cell concentration increased by 43 times.The optimal conditions for the strain's cell growth and wastewater treatment were 30℃,dissolved oxygen of 0.5-1.5 mg·L^(-1) and a light intensity of 4000 lx.Photosynthetic bacteria could bear a lower C/N ratio than bacteria in a traditional wastewater treatment process,but the NH_4^+-N removal was only 20%-40%because small molecule carbon source was used prior to NH_4^+-N.Also,the use of photosynthetic bacteria in chicken manure wastewater containing NH4+-N about 7000 mg·L^(-1) proved that photosynthetic bacteria could remove NH_4^+-N in a real case,finally,83.2%of NH_4^+-N was removed and 66.3%of COD was removed. 展开更多
关键词 High NH4+-N wastewater C/N Photosynthetic bacteria Chicken manure wastewater
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Effects of main factors on remedying northern landscaping water by hybrid ecological filter
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作者 刘书宇 马放 +3 位作者 吴明红 刘一龙 张杰 郭静波 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2009年第5期623-627,共5页
Natural zeolite and coal cinder were layered as main packing medium of the ecological filter instead of traditional filling to remedy the static lake water in Northern China.The ecological filter was running in a comb... Natural zeolite and coal cinder were layered as main packing medium of the ecological filter instead of traditional filling to remedy the static lake water in Northern China.The ecological filter was running in a combined upward and downward flow mode.Dynamic experiments were carried out to study the effects of retention time and ambient temperature on pollutants' removal efficiency of the hybrid ecological filter.The function of plant was also studied by contrast test.It is showed that the removal efficiencies of NH4+-N and TP are increased when the retention time is changed from 1 h to 2 h and 4 h,but the removal efficiency of TN is decreased,the removal efficiency of NH4+-N is increased from 91.5% to 98% and that of TP is increased from 31.8% to 52.5%.When the temperature declines,the temporal removal efficiency of NH4+-N is reduced,but the removal efficiency of 24 h and 48 h is remained.The removal efficiency of TP after 24 h and 48 h is decreased when the temperature declines evidently.The retention time plays an important role in NH4+-N and TP removal,and the ambient temperature is significant for TP removal.The plant favors for TP and organic matter removal but has little effect on TN removal. 展开更多
关键词 ZEOLITE hybrid ecological filter landscaping water TEMPERATURE retention time
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