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High flux water purification using aluminium hydroxide hydrate gels

机译:使用氢氧化铝水合物凝胶的高通量水净化

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摘要

Filtration of aqueous liquids has wide implications, for example for provision of clean drinking water. Nevertheless, many people still lack access to safe water and suffer from preventable water-borne microbial diseases. This study reports a new ultrafiltration-range separation technology using a gelatinous layer of aluminium hydroxide polyhydrate as a secondary membrane on a retaining fabric that enables simple and cost-effective production of filtered water. Properties include at least 4-fold higher flux rates than currently available membranes, pressure-resistance, impenetrability to filtered particles, easy cleaning by backwashing and simple, cost-effective replacement by gel injection. Depending on the substrate, filtration is achieved through a packed bed of 1–2 nm hydrate gel globules, partly by mechanical straining with a size exclusion of approx. 10 nm and partly by physical adsorption. As a result, filtration of water (e.g. turbid river water) contaminated with colloids and microorganisms, including viruses, yields clear water that is free of measurable particles or detectable microorganisms. However, small water-soluble molecules (salts, sugars, proteins) remain in the filtrate. The findings demonstrate the potential for wide applicability of hydrate gels in high-flux and low-cost water purification devices.
机译:水性液体的过滤具有广泛的意义,例如用于提供清洁的饮用水。然而,许多人仍然无法获得安全的水,并患有可预防的水传微生物疾病。这项研究报告了一种新的超滤范围分离技术,该技术使用多水合氢氧化铝的胶状层作为保留织物上的次级膜,从而能够简单且经济高效地生产过滤水。其性能包括:通量比目前的膜高至少4倍;耐压性;对过滤颗粒的不可渗透性;易于通过反冲洗进行清洁;以及通过凝胶注射进行简单,经济高效的替换。根据基质的不同,可通过1–2 nm水合物凝胶小球的填充床进行过滤,部分是通过机械过滤进行的,尺寸排除在外。 10 nm,部分通过物理吸附。结果,过滤被胶体和微生物(包括病毒)污染的水(例如浑浊的河水),得到的清澈的水不含可测量的颗粒或可检测的微生物。但是,小的水溶性分子(盐,糖,蛋白质)保留在滤液中。这些发现证明了水合凝胶在高通量和低成本净水设备中的广泛应用潜力。

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