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首页> 外文期刊>Water science & technology >Optimum backwashing conditions and ammonium-nitrogen treatment efficiency of iron oxide modified sands coated in biofilm
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Optimum backwashing conditions and ammonium-nitrogen treatment efficiency of iron oxide modified sands coated in biofilm

机译:生物膜包覆氧化铁改性砂的最佳反冲洗条件和氨氮处理效率

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摘要

In this study, iron oxide modified sands with nano-pores (IOMSNP) were enveloped in biofilm (B-IOMSNP) in order to treat the ammonium-nitrogen (NH4+-N) in micro-polluted raw water. The biomass, optimum backwashing conditions, treatment efficiency, and surface morphological properties of the B-IOMSNP were investigated via bio-filtration experiments. The raw quartz sands (RQS) and IOMSNP exhibited biomass levels of 24.32 nmol-P/(g-sand) and 83.71 nmol-P/(g-sand), respectively. The B-IOMSNP filter exhibited a lower swelling ratio, smaller initial head loss, and longer filtration period when water and air were used alternately for backwashing rather than water alone. In addition, the B-IOMSNP was most effective when air alone (at a strength of q(air,I) = 7 L/(s.m(2)) for t(air,I) = 6 min), a combination of air and water (at strengths of q(air,II) = 7 L/(s.m(2)) and q(water,II) = 5 L/(s.m(2)) for t(air-water,II) = 6 min, respectively), and water alone (at a strength of q(water,III) = 7 L/(s.m(2)) for t(water,III) = 4 min) were used alternately for flushing. The results indicated that the proposed B-IOMSNP could efficiently resist the shock induced by high NH4+-N concentrations (4 mg/L). The ripening period of the B-IOMSNP column was equal to 30 minutes. Furthermore, the B-IOMSNP reduced the turbidity of the water to values of less than 0.2 NTU for 72 hours and exhibited an NH4+-N removal rate of up to 96% and a head loss of 132 cm. In contrast, the biofilm-coated RQS exhibited an NH4+-N removal rate varying from 60% to 82%, a filtration period of 16 hours, and a terminal head loss of 58 cm. Due to its nano-pores and rough surface, the IOMSNP exhibited a specific surface area 39 times greater than that of the RQS, resulting in a higher filtration performance and absorption capacity.
机译:在这项研究中,将具有纳米孔的氧化铁改性砂(IOMSNP)包裹在生物膜(B-IOMSNP)中,以处理微污染原水中的铵氮(NH4 + -N)。通过生物过滤实验研究了B-IOMSNP的生物量,最佳反冲洗条件,处理效率和表面形态特性。原始石英砂(RQS)和IOMSNP的生物量分别为24.32 nmol-P /(g-sand)和83.71 nmol-P /(g-sand)。当交替使用水和空气而不是单独使用水时,B-IOMSNP过滤器表现出较低的溶胀率,较小的初始压头损失和较长的过滤时间。此外,当单独使用空气(空气的组合为t(air,I)= 6分钟,强度为q(air,I)= 7 L /(sm(2))时,B-IOMSNP最有效。和水(强度为q(空气,II)= 7 L /(sm(2))和q(水,II)= 5 L /(sm(2))对于t(空气-水,II)= 6分钟分别)和单独使用水(强度为q(水,III)= 7 L /(sm(2))的t(水,III)= 4分钟)交替冲洗。结果表明,所提出的B-IOMSNP能有效抵抗高浓度NH4 + -N(4 mg / L)引起的电击。 B-IOMSNP色谱柱的成熟期等于30分钟。此外,B-IOMSNP在72小时内将水的浊度降低至小于0.2 NTU的值,并显示出高达96%的NH4 + -N去除率和132 cm的水头损失。相反,涂覆生物膜的RQS的NH4 + -N去除率从60%到82%不等,过滤时间为16小时,末端水头损失为58 cm。由于其纳米孔和粗糙的表面,IOMSNP的比表面积是RQS的39倍,因此具有更高的过滤性能和吸收能力。

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