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Evaluation of microfiltration system performance as pre-treatment for reverse osmosis seawater desalination through pilot-plant operation

机译:通过中试装置操作评估微滤系统作为反渗透海水淡化预处理的性能

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摘要

This study was undertaken to evaluate the suitability of microfiltration (MF) as pre-treatment for reverse osmosis (RO) seawater desalination to treat the seawater suffering from red-tide contamination using long-term operation of pilot plant. The one and a half year pilot MF operation had two objectives: stable production of the flow rate of 5 m~3/h and acceptable water quality (SDI less than 3). The pilot plant operation revealed that the MF system successfully produced the target flow rate despite red-tide contamination of the seawater. The average flow rate of 5.2 m~3/h was obtained at the average operating pressure of 0.53 bar. However, the MF system failed to achieve the target flow rate at red-tide bloom. When red-tide bloom occurred the chlorophyll-a concentration became 136 mg/m~3, the flow rate decreased to half of the target, and energy consumption became extremely high. Subsequently, the operation was stopped. According to the relationship between the flow rate of the MF system and chlorophyll-a concentration developed in this study, it would be desirable to stop the MF operation at chlorophyll-a concentration of 57 mg/m~3. The MF system produced acceptable quality water for RO feeding. The SDI of the MF treated was consistently less than 3. The MF system consumed 0.5 KWh of energy to produce 1 m~3/h of MF treated, if the data during the red-tide bloom were excluded. Extra equipment (intake pump, control system, monitoring system, air conditioner) caused higher energy consumption than expected.
机译:这项研究旨在评估微滤(MF)作为反渗透(RO)海水淡化预处理的适合性,并通过中试工厂的长期运营来处理遭受赤潮污染的海水。一年半的MF中试操作有两个目标:稳定生产5 m〜3 / h的流量和可接受的水质(SDI小于3)。试点工厂的运行表明,尽管海水被赤潮污染,MF系统仍成功产生了目标流量。在0.53 bar的平均工作压力下,平均流量为5.2 m〜3 / h。但是,MF系统未能在赤潮大潮时达到目标流量。当发生赤潮水华时,叶绿素-a浓度变为136 mg / m〜3,流速降低至目标值的一半,能耗极高。随后,操作停止。根据本研究开发的MF系统流量与叶绿素a浓度之间的关系,希望在57 mg / m〜3的叶绿素a浓度下停止MF操作。 MF系统生产的RO用水质量合格。处理过的MF的SDI始终小于3。如果排除了赤潮暴发期间的数据,则MF系统消耗0.5 KWh的能量以产生1 m〜3 / h的MF处理。额外的设备(进气泵,控制系统,监控系统,空调)导致的能耗高于预期。

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