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海水淡化中空纤维反渗透膜需求量倍增 总被引:1,自引:0,他引:1
罗益锋 《高科技纤维与应用》2011,36(1):1-5
简述了海水淡化中空纤维反渗透(RO)膜的发展历程,并重点介绍国内外以三醋酸纤维素为代表的中空纤维膜发展情况、膜元件的结构特点和技术水平,以及它与卷式RO膜的竞争和市场增长情况.同时简要介绍海水淡化前处理用的中空纤维超滤(UF)和微滤(MF)膜的发展概况. 相似文献
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该文对常规膜法海水淡化系统的系统功能、设备出力、蓄水能力、设备选型、运行管理等方面提出了优化调整意见,使之在安全运行的前提下,适应可再生能源电力波动的特点,如此不但能解决可再生能源发电量不稳定、发电量与用电负荷不匹配等问题,大幅提高可再生能源发电设备的利用小时数,还能解决我国淡水资源紧缺问题,创造利用可再生能源和海水资源的新循环经济模式。 相似文献
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以中东沙特某水泥厂的中型海水淡化工程为实例,介绍了反渗透膜法在该海水淡化项目中的应用。运行结果表明,该海水淡化处理工艺设计合理,出水水质符合工艺用水和饮用水要求,与MED热法相比,具有良好的环境效益和经济效益,对中东沿海区域海水淡化的发展具有借鉴意义。 相似文献
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通过对聚砜多孔支撑膜皮层孔型结构的调控,制备了2种性能优异的海水淡化反渗透膜,并利用SEM、AFM和FTIR等技术对其结构和性能进行了系统研究;模拟海水条件下,对由相应膜片卷制的海水淡化用膜元件的耐温性和耐盐度稳定性进行了系统评价。并以国外高性能海水淡化反渗透膜为参照进行了对比评测。结果表明,聚砜多孔支撑膜的孔型结构可以作为调控聚酰胺脱盐层结构并开发高性能海水淡化反渗透膜的有效手段;所制备的海水淡化反渗透膜膜片脱盐率最高超过99.90%,且耐温度稳定性好。相应膜元件除具有优异的脱盐率和水通量性能外,还具有较强的耐高温和耐高盐度冲击能力,并且其耐酸碱清洗能力远优于参照膜元件。 相似文献
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海水反渗透淡化技术的分析与探讨 总被引:1,自引:0,他引:1
反渗透海水淡化技术是一种高效、节能、先进的液体分离技术.论述了目前国内外海水反渗透淡化技术的应用现状,着重介绍了反渗透膜材料及特点、膜污染及清洗、典型的海水反渗透淡化流程,探讨了反渗透海水淡化技术目前存在的问题及未来发展趋势. 相似文献
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Benjamin D. Stanford Aleksey N. Pisarenko R. David Holbrook Shane A. Snyder 《臭氧:科学与工程》2011,33(5):379-388
The purpose of this bench-top study was to demonstrate the feasibility and effect of applying ozone and ozone/peroxide upstream of reverse osmosis (RO) membranes as a means of controlling organic fouling during reuse applications. A series of ozone or ozone/peroxide doses was applied to surface water and a membrane bioreactor (MBR) filtrate using a HiPOx® reactor skid, with ozone-to-dissolved organic carbon ratios of approximately 0.25 to 1.75. Results from the flat-sheet testing indicate that both ozone- and ozone/peroxide-treated waters, even at the lowest ozone dose of 1.5 mg/L, fouled the membranes less than the MBR filtrate and surface control waters while both treated and control waters maintained consistent levels of salt rejection throughout the tests. 相似文献
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A new method, comprised of a biological treatment followed by membrane separation, has been suggested for the treatment of spent prehydrolysis liquor (PHL) from a rayon grade pulp mill. First, the PHL was treated biologically using the torula utilis strain for the conversion of sugar into yeast. Reductions of 57 % in the amount of total reducing sugar (TRS) and about 46 % in COD were achieved in the biological treatment step. A “shifting order type” rate equation, where the order shifts from (m–n) at high concentrations to m at lower concentrations, was found to predict the total reducing sugar with high accuracy. An ultracentrifuge was used to separate out the yeast formed during the biological treatment. The clarified biologically treated liquor was subjected to reverse osmosis (RO) to remove all the remaining solutes. The permeate obtained was observed to be of disposable/reusable grade (negligible COD and less than 0.9 mg/L sugar). An attempt was made to predict the permeate flux during reverse osmosis (RO) using an osmotic pressure model. Modified osmotic pressure and concentration polarization models were utilized for the estimation of the osmotic pressure of different concentrations of the PHL's solute constituents. Three different concentration parameters (TRS, COD, and Brix) were chosen to estimate the osmotic pressures. The prediction of the permeate flux by the combination of these models was found to be in good agreement with experimental flux values. 相似文献
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反渗透海水淡化技术以其特有的优点得到了越来越广泛的应用,近几十年来我国对该技术的研究取得了较大发展。该文综述了反渗透海水淡化技术的发展过程及应用状况,重点介绍了反渗透膜、预处理技术、能量回收技术、反渗透系统优化设计等方面的技术进步及存在的问题,根据该技术研究及应用现状,提出了我国反渗透海水淡化技术未来发展的看法。 相似文献