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Renewable Energy Powered Membrane Systems: Inorganic Contaminant Removal from Australian Groundwaters

机译:可再生能源动力膜系统:从澳大利亚地下水中去除无机污染物

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摘要

A photovoltaic powered ultrafiltration and reverse osmosis system was tested with a number of natural groundwaters in Australia. The objective of this study was to compare system performance at six remote field locations by assessing the impact of water composition and fluctuating energy on inorganic contaminant removal using a BW30-4040 membrane. Solar irradiance directly affected pressure and flow. Groundwater characteristics (including TDS, salts, heavy metals, and pH), impacted other performance parameters such as retention,specific energy consumption and flux. During continual system operation, retention of ions such as Ca2+ and Mg2+ was high (> 95%) with each groundwater which can be attributed to steric exclusion. The retention of smaller ions such as NO3 - was affected by weather conditions and groundwater composition, as convection/diffusion dominate retention. When solar irradiance was insufficient or fluctuations too great for system operation, performance deteriorated and retention dropped significantly (< 30% at Ti Tree). Groundwater pH affected flux and retention of smaller ions (NO3 - and F-) because charge repulsion increases with pH. The results highlight variations in system performance (ion retention, flux, specific energy consumption) with real solar irradiance, groundwater composition, and pH conditions.
机译:光伏驱动的超滤和反渗透系统已在澳大利亚的许多天然地下水中进行了测试。这项研究的目的是通过评估水成分和波动能量对使用BW30-4040膜去除无机污染物的影响,比较六个偏远地区的系统性能。太阳辐射直接影响压力和流量。地下水特征(包括TDS,盐,重金属和pH)影响了其他性能参数,例如保留率,比能耗和通量。在连续的系统运行过程中,每个地下水中诸如Ca2 +和Mg2 +之类的离子的保留率很高(> 95%),这可归因于空间排阻。较小的离子(例如NO3-)的保留受到天气条件和地下水成分的影响,因为对流/扩散占主导。当太阳辐射不足或系统操作波动太大时,性能会下降,保持力会大大下降(在Ti Tree上<30%)。地下水的pH值会影响通量和较小离子(NO3-和F-)的保留,因为电荷排斥力随pH值增加。结果突出显示了系统性能(离子保留,通量,比能耗)随实际太阳辐照度,地下水成分和pH条件的变化。

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