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1.
介绍采用聚合氯化铁(PFC)为絮凝剂,对海水进行混凝除浊预处理方法。考察了原海水pH、搅拌速度、反应时间及PFC用量对海水预处理效果的影响。结果表明,在原海水pH凋至9.0,搅拌速度控制在200min^-1,反应时间选择8—10min,PFC用量0.10μg/g的最佳条件下,能使处理后的海水浊度降至0.05mol/L,而联产的酸性废水中和剂浆料中Mg(OH)2含量在25%~45%,大肠菌群的去除率大于89.3%。  相似文献   
2.
The ennoblement of corrosion potential (Ecorr) of passive metal immersed in seawater was investigated with electrochemical technology and epifluorescence microscopy. The in situ observation showed that the bacteria number increased on the metal surface according to an exponential law which was in the same way with the ennoblement of Ecorr. At the same time, the anodic polarization current of high‐Mo stainless steel decreased in the initial days. According to the mix‐potential theory and the characteristics of polarization curves of high‐Mo steel in natural seawater, the ennoblement of corrosion potential may be induced by the decrease of the passive current density.  相似文献   
3.
海水介质中高活性镁合金负极的电化学性能   总被引:12,自引:0,他引:12  
研制了一种新型镁合金负极材料;用电化学方法测定了镁合金负极在人造海水介质中的电化学性能,用浸泡法测定了材料在人造海水介质中的自腐蚀速度,用扫描电子显微镜观察了镁合金腐蚀后的表面形貌,并与AP65合金和纯镁进行了比较。结果表明,新研制的镁合金在人造海水介质中的开路电位增加,自腐蚀速度降低,稳定工作电位提高,电极表面腐蚀均匀,可开发用于高电性能电池的负极材料。  相似文献   
4.
在大型水利水电施工中,经常遇到岩质高边坡稳定问题,天荒坪抽水蓄能电站500kV开关站所处的地形地质条件非常复杂,本文着重介绍在边坡开挖和支护过程中,根据不同的地形地质情况所采取的控制爆破和支护措施。  相似文献   
5.
我国抽水蓄能电站发展问题探讨   总被引:5,自引:0,他引:5  
赵永生 《水力发电》2003,29(7):69-71
抽水蓄能电站在电力系统中担负着调峰填谷、调频、调相、事故备用等重要任务,是电网经济而有效的调控手段。但以电量为唯一评价指标,其动态效益不能转化为财务效益,严重影响抽水蓄能电站的财务生存能力。建议借鉴国外经验,结合中国国情,加强对这一课题的研究,以充分发挥抽水蓄能电站的作用和效益。  相似文献   
6.
着重说明海水泵房临海的大围堰工程是厂区土石方开挖和厂房施工的先决条件之一。外方设计方案偏离厂址实际情况 ,存在许多施工难题。中方根据厂区实际情况 ,提出新的施工方案 ,不仅保证了1 998年 6月 8日第一罐混凝土施工 ,还节约了几百万资金  相似文献   
7.
综述了镍基耐海水腐蚀材料的研究概况,阐述了Ni-Cu,Ni-Cr,Ni-Mo和Ni-Cr-Mo合金的耐腐蚀性能及其影响因素,展望了该材料研究未来的发展方向。  相似文献   
8.
Local-strain and linear-elastic fracture-mechanics (LEFM) methodologies have been investigated for prediction of the corrosion-fatigue life of notched components of specially developed Al-2.5Mg alloys exposed to Arabian Gulf seawater environment. Corrosion-fatigue crack initiation life estimates were obtained using strain-life relationships; corrosion-fatigue crack propagation life estimates were obtained using LEFM relationships. The total corrosion-fatigue life was considered to be the sum of the crack initiation and crack propagation lives. Estimated corrosion-fatigue lives were compared with experimentally obtained corrosion-fatigue life data using center-notched specimens of three types of Al-2.5Mg alloys (containing different amounts of chromium) exposed to Arabian Gulf seawater environment. Two notch geometries, a circular notch (K t= 2.42) and an elliptical notch (K t= 4.2), were investigated. Good corrosion-fatigue life predictions can be obtained using local-strain and LEFM methodologies by determining the relevant material constants via a few simple fatigue tests on smooth specimens and a few crack-growth-rate tests in the environment at the frequency of interest.  相似文献   
9.
Ever since seawater desalination has been applied on an industrial scale, and particular in the countries of the Arabian Gulf, the application of desalination processes in dual-purpose facilities—water and power—as a hybrid configuration has been discussed in many feasibility investigations and also planning concepts. It is above all the combination of reverse osmosis with thermal processes that has found increasing interest with the aim of ensuring, as economically as possible, uniform water supplies under the specific, greatly varying load conditions in the Gulf countries. Such design concepts for hybrid configurations encompass straightforward structures with a low degree of coupling between membrane and thermal desalination processes, but range up to very complex configurations with strong interconnections on both the water side and thermally, as well as with several desalination processes connected in series or in parallel. Classical hybrid concepts in which the permeate from an RO desalination component is mixed with distillate from thermal desalination have already been implemented in Saudi Arabian dual-purpose plants, like Jeddah and Yanbu-Medina. Although hybrid systems of greater complexity have been addressed in many design studies and publications, up to now none has been brought to fruition. Coming into consideration asthe design basis for determining the capacity shares of the various desalination processes operated in a hybrid configuration are: arrangement of thermal cycle of the power plant component; water/power ratio of the dual-purpose seawater desalination and power plant; provision of undiminished water production of the desalination plant as electricity generation varies; provision of a specified drinking water quality with regard to composition and salt content; combination of all these aspects. Also gaining in importance are concerns of environmental pollution and sustainable development when selecting seawater desalination and power plant configurations, as well as their optimization when considering desalination and electricity generation as a whole. In the practical design of hybrid membrane and thermal systems, aspects come to light, though, that restrict linking of the two systems and joint utilization of facilities, as conceived in studies and conceptual design investigations. This applies both for common utilization of intakes and the use of heated up cooling water from thermal processes as a feed stream for the RO part of the desalination process. Additionally, requirements of drinking water composition, particularly chloride content, TDS and compliance with a specific residual content of boron, influence specifically the design of the membrane process part and its share in the total desalination capacity. Such practical aspects have greatly influenced the design and configuration of the Fujairah hybrid plant for which, from a total desalination capacity of 100 MIGD (454,600 m3/d), the share of 37.5 MIGD (170,500 m3/d) makes its seawater RO plant the biggest currently being constructed anywhere in the world. From the findings of the engineering of this plant and the idea that, by increasing interconnection between the two processes on the water side, it is possible to advance a hybrid configuration of this type with regard to cost optimization in the membrane installation, but also by joint utilization of the intake equipment, perspectives result for applied research efforts over the near and long terms, for example: long-term behavior of membranes at elevated temperatures; tendency for biofouling in membrane process with common utilization of cooling water and brine; influences of such interconnections on the overall availability of the facility. But also for the operation and maintenance organization of such large facilities, consequences can be foreseen for the future development of hybrid plants, particularly for operation management and organisation of the interplay of the different power plant and desalination systems, monitoring of SWRO membrane replacement and cleaning, as well as controlling water quality.  相似文献   
10.
张雷  刘玉录 《水处理技术》1997,23(2):105-109
针对海岛风力资源丰富,但用电用水困难的问题,用风力发电-电渗析淡化苦咸水法成功地解决了海岛用电、吃水问题,具有较大的实用意义和社会效益。  相似文献   
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