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NOM Removal by Adsorption and Membrane Filtration Using Heated Aluminum Oxide Particles

机译:使用加热的氧化铝颗粒通过吸附和膜过滤去除NOM

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Heated aluminum oxide particles (HAOPs) are a newly synthesized adsorbent with attractive properties for use in hybrid adsorption/membrane filtration systems. This study compared removal of natural organic matter (NOM) from water by adsorption onto HAOPs with that by adsorption onto powdered activated carbon (PAC) or coagulation with alum or ferric chloride (FeCl_3);explored the overlap between the NOM molecules that preferentially adsorb to HAOPs and those that are removed by the more conventional approaches; and evaluated NOM removal and fouling in hybrid adsorbent/membrane systems. For equivalent molar doses of the trivalent metals, HAOPs remove more NOM, and NOM with higher SUVA_(254), than alum or FeCb. Most of the HAOPs-nonadsorbable fraction of the NOM can be adsorbed by PAC; in fact, that fraction appears to be preferentially adsorbed compared to the average NOM in untreated water. Predeposition of the adsorbents on a microfiltration membrane improves system performance. For the water tested, at a flux of 100 L/m~2-hr, predeposition of 11 mg/L PAC and 5 mg/L HAOPs (as Al~(3+)) allowed the system to operate 5 times as long before the transmembrane pressure increased by 1 psi and to remove 10-20 times as much NOM as when no adsorbents were added.
机译:加热的氧化铝颗粒(HAOPs)是一种新合成的吸附剂,具有吸引人的性能,可用于混合吸附/膜过滤系统。这项研究比较了通过吸附在HAOPs上与通过吸附在粉状活性炭(PAC)上或与明矾或氯化铁(FeCl_3)凝结而从水中去除天然有机物(NOM)的关系;探索了优先吸附到NOM分子之间的重叠。 HAOP和那些通过更常规的方法删除的HAOP;并评估了混合吸附剂/膜系统中NOM的去除和结垢。对于三摩尔金属的等效摩尔剂量,与铝或FeCb相比,HAOPs去除的NOM和SUVA_(254)更高的NOM。 PAC可以吸附NOM的大部分HAOPs不可吸收部分;实际上,与未处理水中的平均NOM相比,该馏分似乎被优先吸附。在微滤膜上预先沉积吸附剂可改善系统性能。对于被测试的水,流量为100 L / m〜2-hr,预先沉积11 mg / L PAC和5 mg / L HAOP(作为Al〜(3+))可使系统运行5倍于之前跨膜压力增加了1 psi,与未添加吸附剂时相比,去除了10-20倍的NOM。

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