首页> 外文会议>International Symposium on Off-Flavours in the Aquatic Environment; 20021007-10; Barcelona(ES) >The effect of oxidants on 2-MIB concentration with the presence of cyanobacteria
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The effect of oxidants on 2-MIB concentration with the presence of cyanobacteria

机译:蓝藻存在下氧化剂对2-MIB浓度的影响

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In this study, the effect of three oxidants, sodium hypochlorite, potassium permanganate, and ozone, were tested for the removal of 2-MIB with presence of cyanobacteria. Algae in water samples from the source water of Feng-Shen waterworks (FSW), Taiwan were cultivated at 30℃ with continuous light at an intensity between 2,500 and 3,400 lux. During the cultivating process, water samples were analyzed for nutrients, light absorbance at 665nm (A665), and 2-MIB concentration. The 2-MIB concentrations within the incubated samples increased to as high as 1,000 ng/L to 2,000 ng/L, although no extra nutrients were added to the raw water. After 2 to 3 days incubation, the intracellular 2-MIB concentration was as high as 70% of the total 2-MIB in the samples. The algae that developed were mainly cyanobateria, and more than 90% belonged to the Genus Oscillatorias. An almost 100% removal of both 2-MIB and geosmin in the raw water was observed after ozonation for 10 minutes at a dosing rate of 0.91 mg/l-min. Chlorine and permanganate were much less effective, both removing only about 11 % of the 2-MIB within 60 minutes at oxidant concentration of 10 mg/l. Oxidation of the cultivated samples showed that chlorine and permanganate may damage algae cells causing them to release intracellular 2-MIB. During the 60 minutes of reaction time, the total 2-MIB concentrations (intracellular plus dissolved) varied by no more than 10%, however, the ratios between dissolved and total 2-MIB concentrations increased. Two effects of ozonation on the 2-MIB concentration in the cultivated samples were observed when the algae were young, namely 2-MIB release from damaged cells and 2-MIB oxidization. The rates of 2-MIB release and 2-MIB destruction were similar. However, old algae cells were more easily damaged. As a result, intracellular 2-MIB was released faster, and the soluble 2-MIB was destroyed more quickly by ozonation.
机译:在这项研究中,测试了三种氧化剂(次氯酸钠,高锰酸钾和臭氧)在蓝细菌存在下去除2-MIB的效果。台湾风神水厂(FSW)的原水的水样中的藻类在30℃连续光照下以2500至3,400 lux的强度进行培养。在培养过程中,分析了水样的营养成分,在665nm(A665)处的吸光度和2-MIB浓度。尽管未向原水中添加任何营养素,但温育样品中的2-MIB浓度增加至1,000 ng / L至2,000 ng / L。孵育2至3天后,细胞内2-MIB浓度高达样品中总2-MIB的70%。产生的藻类主要是蓝藻,超过90%的藻类属于颤藻属。在以0.91 mg / l-min的剂量速率臭氧化10分钟后,观察到原水中的2-MIB和土臭素几乎去除了100%。氯和高锰酸盐的效果要差得多,当氧化剂浓度为10 mg / l时,两者在60分钟内仅除去约11%的2-MIB。培养样品的氧化表明,氯和高锰酸盐可能会破坏藻类细胞,导致它们释放细胞内2-MIB。在60分钟的反应时间内,总的2-MIB浓度(细胞内和溶解的)变化不超过10%,但是溶解的和总的2-MIB浓度之比增加了。藻类年轻时观察到臭氧化对培养样品中2-MIB浓度的两种影响,即2-MIB从受损细胞中释放和2-MIB氧化。 2-MIB释放和2-MIB破坏的速率相似。但是,旧藻类细胞更容易受到破坏。结果,细胞内2-MIB被更快地释放,并且可溶性2-MIB被臭氧化更快地被破坏。

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