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比较三种不同膜蒸馏构型中使用 PTFE 膜时胶体二氧化硅的污染行为。

Comparison of colloidal silica involved fouling behavior in three membrane distillation configurations using PTFE membrane.

机构信息

CSIRO Manufacturing, Private Bag 10, Clayton South MDC, Vic 3169, Australia; Institute of Marine Geology and Resource, Ocean College, Zhejiang University, Zhoushan, Zhejiang 316021, China.

CSIRO Manufacturing, Private Bag 10, Clayton South MDC, Vic 3169, Australia.

出版信息

Water Res. 2018 Mar 1;130:343-352. doi: 10.1016/j.watres.2017.12.002. Epub 2017 Dec 5.

DOI:10.1016/j.watres.2017.12.002
PMID:29248804
Abstract

Colloidal silica involved fouling behaviors in direct contact membrane distillation (DCMD), vacuum membrane distillation (VMD) and sweeping gas membrane distillation (SGMD) were studied. Three foulants were used in the experiments, including colloidal silica as representative of particulate foulants, calcium bicarbonate as dissolved inorganic foulant, and NOM (humic acid + alginate + BSA) as the dissolved organic foulant. The three types of fouants were combined to produce four different feed waters: silica alone; silica + calcium bicarbonate; silica + NOM; and silica + calcium bicarbonate + NOM. With 25% feed recovery, it was found that VMD showed the worst performance for most of the foulant combinations due to turbulence dead zones caused by the membrane deformation that increased foulant deposition. For the silica + calcium bicarbonate + NOM feed DCMD had the greatest fouling rate, although DCMD also had the highest flux of all configurations. SGMD showed the best fouling resistance of all configurations, although it was inclined to calcium carbonate fouling because carbon dioxide was removed in the permeate leading to calcium carbonate precipitation and could be alleviated by using air as sweeping gas. For feeds containing high-concentration calcium bicarbonate or carbonate foulants, VMD should be avoided to lower the formation of carbonate precipitants on the membrane surface if scale inhibitors are not used.

摘要

胶体二氧化硅在直接接触膜蒸馏(DCMD)、真空膜蒸馏(VMD)和吹扫气膜蒸馏(SGMD)中的结垢行为进行了研究。实验中使用了三种污染物,包括胶体二氧化硅作为颗粒污染物的代表、碳酸钙作为溶解无机污染物,以及 NOM(腐殖酸+海藻酸钠+BSA)作为溶解有机污染物。这三种类型的污染物被组合成四种不同的进料水:单独的二氧化硅;二氧化硅+碳酸钙;二氧化硅+NOM;以及二氧化硅+碳酸钙+NOM。在 25%的进料回收率下,发现对于大多数污染物组合,VMD 的性能最差,这是由于膜变形引起的湍流死区导致污染物沉积增加。对于含有高浓度碳酸钙或碳酸盐污染物的进料,如果不使用阻垢剂,VMD 应避免使用,以降低膜表面碳酸盐沉淀的形成。尽管 DCMD 的通量在所有配置中最高,但 SGMD 显示出所有配置中最好的抗污染能力,因为二氧化碳在渗透物中被去除,导致碳酸钙沉淀,而使用空气作为吹扫气可以缓解这种情况。

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