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AC废水的氨氮脱除 被引量:6
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作者 郑林树 徐雪峰 《化工生产与技术》 CAS 2001年第6期34-35,共2页
阐述了脱氨氮的方法,重点介绍了吹脱法处理含氨氮的AC废水,经过试验得到吹脱的较佳条件:pH11,温度70℃,气液比1000,吹脱时间2h。在此条件下氨氮脱除率为97%以上。吹脱后的废水可进行生化处理。
关键词 AC废水处理 氨氮脱除处理 生化处理
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工厂化循环水养殖系统CO_(2)脱除工艺的研究进展
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作者 郭春阳 王伟平 +4 位作者 张现红 曹淑全 张延青 赵奎峰 刘宝良 《渔业现代化》 CSCD 2023年第3期11-19,共9页
循环水养殖是未来水产养殖的主要发展方向之一,系统中CO_(2)的过度富集会影响生物滤器过滤效率和养殖对象生长发育,因此CO_(2)的高效脱除是整个循环水养殖系统中的关键技术之一。中国循环水养殖产业在30多年的发展过程中,各项CO_(2)脱... 循环水养殖是未来水产养殖的主要发展方向之一,系统中CO_(2)的过度富集会影响生物滤器过滤效率和养殖对象生长发育,因此CO_(2)的高效脱除是整个循环水养殖系统中的关键技术之一。中国循环水养殖产业在30多年的发展过程中,各项CO_(2)脱除技术日渐成熟。文章围绕着目前国内外工厂化循环水养殖系统的应用现状,介绍了循环水系统中CO_(2)的来源、危害以及脱除的基本原理,综述了气体交换法、化学法和生态法3种CO_(2)脱除工艺的特点以及国内外研究进展,比较了各类脱除技术的优点,针对CO_(2)脱除主要存在的方法单一、主要设施占据空间大、成本高等问题,提出了多种脱除工艺并用、运行设备系统集约化、优化脱除过程及装备智能化等未来发展对策。本研究旨在为未来工厂化循环水养殖CO_(2)高效脱除技术工艺的优化与专用装备的研制提供参考。 展开更多
关键词 二氧化碳 循环水养殖系统 脱除处理 水质净化
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燃煤锅炉同时脱硫脱硝技术工艺性分析 被引量:2
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作者 郭新宇 《资源节约与环保》 2016年第9期14-14,共1页
燃煤锅炉是火电厂生产发电的最主要动力形式,对社会经济发展起着重要的保障与促进作用。但其排放烟气中所含的SO_2和NO_X严重污染自然环境并增加企业的能耗成本,影响工厂的节能减排建设。本文以同时脱硫脱硝技术为切入点,就其具体各类... 燃煤锅炉是火电厂生产发电的最主要动力形式,对社会经济发展起着重要的保障与促进作用。但其排放烟气中所含的SO_2和NO_X严重污染自然环境并增加企业的能耗成本,影响工厂的节能减排建设。本文以同时脱硫脱硝技术为切入点,就其具体各类脱除工艺做相应的分析与探讨,期望为我国同时脱硫脱硝工艺的技术发展与改进推广提供一定的借鉴。 展开更多
关键词 煤炭锅炉 同时 脱除处理
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A Modified Oxidation Ditch with Additional Internal Anoxic Zones for Enhanced Biological Nutrient Removal 被引量:5
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作者 LIU Wei YANG Dianhai XU Li SHEN Changming 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第2期192-198,共7页
A novel modified pilot scale anaerobic oxidation ditch with additional internal anoxic zones was operated experimentally, aiming to study the improvement of biological nitrogen and phosphorus removal and the effect of... A novel modified pilot scale anaerobic oxidation ditch with additional internal anoxic zones was operated experimentally, aiming to study the improvement of biological nitrogen and phosphorus removal and the effect of enhanced denitrifying phosphorus removal in the process. Under all experimental conditions, the anaero- bic-oxidation ditch with additional internal anoxic zones and an internal recycle ratio of 200% had the highest nutrient removal efficiency. The effluent NH4 -N, total nitrogen (TN), PO3 -P and total phosphorus (TP) contents were 1.2 mg.L-1, 13 mg.L 1, 0.3 mg.L -1 and 0.4 mg.L-1, respectively, all met the discharge standards in China. The TN and TP removal efficiencies were remarkably improved from 37% and 50% to 65% and 88% with the presence of additional internal anoxic zones and internal recycle ratio of 200%. The results indicated that additional internal anoxic zones can optimize the utilization of available carbon source from the anaerobic outflow for denitrification. It was also found that phosphorus removal via the denitrification process was stimulated in the additional internal anoxic zones, which was beneficial for biological nitrogen and phosphorus removal when treating wastewater with a limited carbon source. However, an excess internal recycle would cause nitrite to accumulate in the system. This seems to be harmful to biological phosphorus removal. 展开更多
关键词 internal anoxic zones internal recycle carbon source NITRATE PHOSPHORUS
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Study on Algae Removal by Immobilized Biosystem on Sponge 被引量:2
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作者 PEI Haiyan HU Wenrong 《Journal of Ocean University of China》 SCIE CAS 2006年第4期327-332,共6页
In this study, sponges were used to immobilize domesticated sludge microbes in a limited space, forming an immobilized biosystem capable of algae and microcystins removal. The removal effects on algae, microcystins an... In this study, sponges were used to immobilize domesticated sludge microbes in a limited space, forming an immobilized biosystem capable of algae and microcystins removal. The removal effects on algae, microcystins and UV 260 of this biosystem and the mechanism of algae removal were studied. The results showed that active sludge from sewage treatment plants was able to remove algae from a eutrophic lake’s water after 7 d of domestication. The removal efficiency for algae, organic matter and microcystins increased when the domesticated sludge was immobilized on sponges. When the hydraulic retention time (HRT) was 5 h, the removal rates of algae, microcystins and UV 260 were 90%, 94.17% and 84%, respectively.The immobilized biosystem consisted mostly of bacteria, the Ciliata and Sarcodina protozoans and the Rotifer metazoans. Algal decomposition by zoogloea bacteria and preying by microcreatures were the two main modes of algal removal, which occurred in two steps: first, absorption by the zoogloea; second, decomposition by the zoogloea bacteria and the predacity of the microcreatures. 展开更多
关键词 SPONGE MICROBE IMMOBILIZED ALGAE MICROCYSTIN
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Biological Nutrient Removal in a Full Scale Anoxic/Anaerobic/Aerobic/ Pre-anoxic-MBR Plant for Low C/N Ratio Municipal Wastewater Treatment 被引量:8
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作者 胡香 谢丽 +2 位作者 SHIM Hojae 张善发 杨殿海 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第4期447-454,共8页
A novel full scale modified A2O (anoxic/anaerobic/aerobic/pre-anoxic)-membrane bioreactor (MBR) plant combined with the step feed strategy was operated to improve the biological nutrient removal (BNR) from low C... A novel full scale modified A2O (anoxic/anaerobic/aerobic/pre-anoxic)-membrane bioreactor (MBR) plant combined with the step feed strategy was operated to improve the biological nutrient removal (BNR) from low C/N ratio municipal wastewater in Southern China. Transformation of organic carbon, nitrogen and phosphorus, and membrane fouling were investigated. Experimental results for over four months demonstrated good efficiencies for chemical oxygen demand (COD) and NH4^+-N removal, with average values higher than 84.5%and 98.1%, re-spectively. A relatively higher total nitrogen (TN) removal efficiency (52.1%) was also obtained at low C/N ratio of 3.82, contributed by the configuration modification (anoxic zone before anaerobic zone) and the step feed with a distribution ratio of 1:1. Addition of sodium acetate into the anoxic zone as the external carbon source, with a theoretical amount of 31.3 mg COD per liter in influent, enhanced denitrification and the TN removal efficiency in-creased to 74.9%. Moreover, the total phosphate (TP) removal efficiency increased by 18.0%. It is suggested that the external carbon source is needed to improve the BNR performance in treating low C/N ratio municipal waste-water in the modified A^2O-MBR process. 展开更多
关键词 biological nutrient removal low C/N ratio wastewater membrane bioreactor DENITRIFICATION external carbon source
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