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干法后处理含盐废物陶瓷固化技术研究进展 被引量:2
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作者 刘雅兰 柴之芳 石伟群 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2020年第3期271-276,共6页
对于未来先进核燃料循环系统,基于熔盐电解的干法后处理技术是一种最具发展前景且可靠性好的后处理技术。对干法后处理各环节产生的含盐废物进行陶瓷固化处理,使之以稳定的废物形式在地质处置库中长期处置,是干法后处理最终实现工业化... 对于未来先进核燃料循环系统,基于熔盐电解的干法后处理技术是一种最具发展前景且可靠性好的后处理技术。对干法后处理各环节产生的含盐废物进行陶瓷固化处理,使之以稳定的废物形式在地质处置库中长期处置,是干法后处理最终实现工业化应用的重要保障。本文针对目前国际上主要的干法后处理废物陶瓷固化技术研究进展进行综述,重点介绍熔盐电解还原和电解精炼过程产生的含盐废物陶瓷固化技术的研究进展。 展开更多
关键词 干法后处理 含盐废物 陶瓷固化 熔盐电解 综述
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含盐焚烧锅炉积灰防治措施
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作者 骆骞 胡涛 池光辉 《现代化工》 CAS CSCD 北大核心 2021年第3期227-230,共4页
为解决含盐废弃物焚烧锅炉受热面积灰问题,从积灰形成机理、积灰危害以及结构设计上的积灰防范措施3个方面优化含盐焚烧锅炉的设计,并提出了积灰的防治措施。
关键词 含盐废物 锅炉 积灰 优化设计 防治措施
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Impact of salinity on treatment of saline wastewater by sequencing batch biofilm reactor process 被引量:4
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作者 卢杰 闫雪 +2 位作者 马艳飞 田彩星 丁金城 《Journal of Central South University》 SCIE EI CAS 2014年第5期1989-1994,共6页
High salinity industrial wastewater is difficult to treat using biological treatment system because of the high concentrations of salt.The potential of a sequencing batch biofilm reactor(SBBR)process in treating synth... High salinity industrial wastewater is difficult to treat using biological treatment system because of the high concentrations of salt.The potential of a sequencing batch biofilm reactor(SBBR)process in treating synthetic high salinity wastewater was evaluated at laboratory scale during a 110-day operation.The reactor was operated in a 12 h cycle,and each cycle consisted of 0.25 h influent addition,8 h aeration,3 h anoxic reaction,0.5 h sedimentation and 0.25 h effluent withdrawal.Gradual increase in salinity gradient was applied during the acclimatization period.The acclimated SBBR system was demonstrated to be an effective process to remove organic compounds and ammonia nitrogen under high salinity conditions with chemical oxygen demand(COD)and ammonia nitrogen(NH3-N)removal efficiencies of 88% and 80%,respectively.The microscopic examination indicated that rather than rotifers or vorticella,the zoogloea,filamentous fungus mingled with a small quantity of swimming infusorians were dominant bacteria in SBBR system.The removal efficiencies close to 80% in COD and 75% in NH3-N were achieved at an organic loading rate(OLR)of 0.96 kg COD/(m3·d),pH of 7.0,salinity of 14 g/L and NH3-N of 30 mg/L. 展开更多
关键词 sequencing batch biofilm reactor saline wastewater microscopic examination sludge acclimation salinity shock
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Isolation of a Halophilic Bacterium, Bacillus sp. Strain NY-6 for Organic Contaminants Removal in Saline Wastewater on Ship
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作者 Jie Gao Zhenjiang Yu +2 位作者 Xiaohui Zhang Dan Zhao Fangbo Zhao 《Journal of Marine Science and Application》 2013年第2期245-249,共5页
The objective of this research was to examine if certain strains of Bacillus bacteria, could survive in dry powder products and if so, could the bacteria degrade organic contaminants in saline wastewater on a ship. As... The objective of this research was to examine if certain strains of Bacillus bacteria, could survive in dry powder products and if so, could the bacteria degrade organic contaminants in saline wastewater on a ship. As part of the study, we isolated 7 domesticated strains named NY1, NY2,..., and NY7, the strain NY6 showed to have the best performance for organic matter degradation and could survive in dry powder more than 3 months. NY6 was identified as Bacillus aerius, based on the morphological and physic-chemical properties. Its optimal growth conditions were as follows: salinity was 2%; temperature was 37℃; pH was in 6.5-7.0; best ratio of C: N: P was 100:5:1. The capability of its dry powder for Chemical Oxygen Demand (COD) removal was 800mg COD/g in synthesized marine wastewater with 2% salinity. The spores in the dry powder were 1.972×108 g-1. 展开更多
关键词 halophilic bacterium saline wastewater BACILLUS Chemical Oxygen Demand NY6
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Performance and Modeling of an Up-flow Anaerobic Sludge Blanket(UASB) Reactor for Treating High Salinity Wastewater from Heavy Oil Production 被引量:1
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作者 Liu Chunshuang Zhao Dongfeng +1 位作者 Guo Yadong Zhao Chaocheng 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2012年第3期90-95,共6页
In this study,an up-flow anaerobic sludge blanket(UASB) reactor was applied to treat the high salinity wastewater from heavy oil production process.At a HRT of ≥24 h,the COD removal reached as high as 65.08% at an in... In this study,an up-flow anaerobic sludge blanket(UASB) reactor was applied to treat the high salinity wastewater from heavy oil production process.At a HRT of ≥24 h,the COD removal reached as high as 65.08% at an influent COD ranging from 350mg/L to 640mg/L.An average of 74.33% oil reduction was also achieved in the UASB reactor at an initial oil concentration between 112mg/L and 205mg/L.These results indicated that this heavy oil production related wastewater could be degraded efficiently in the UASB reactor.Granular sludge was formed in this reactor.In addition,two models,built on the back propagation neural network(BPNN) theory and linear regression techniques were developed for the simulation of the UASB system performance in the oily wastewater biodegradation.The average error of COD and oil removal was-0.65% and 0.84%,respectively.The results indicated that the models built on the BPNN theory were wellfitted to the detected data,and were able to simulate and predict the removal of COD and oil by the UASB reactor. 展开更多
关键词 up-flow anaerobic sludge blanket (UASB) high salinity heavy oil produced wastewater granule sludge BPNN
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