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固定化微藻珠浓度对废水养分去除的影响。

Effect of immobilized microalgal bead concentrations on wastewater nutrient removal.

作者信息

Tam N F, Wong Y S

机构信息

Department of Biology and Chemistry, City University of Hong Kong, Tat Chee Avenue, Kowloon Tong, Kowloon, Hong Kong.

出版信息

Environ Pollut. 2000 Jan;107(1):145-51. doi: 10.1016/s0269-7491(99)00118-9.

Abstract

A unicellular green microalga, Chlorella vulgaris, entrapped in calcium alginate as algal beads were employed to remove nutrients (N and P) from simulated settled domestic wastewater. A significantly higher nutrient reduction was found in bioreactors containing algal beads (at concentrations ranging from 4 to 20 beads ml(-1) wastewater) than the blank alginate beads (without algae). A complete removal of NH(4)(+)-N and around 95% reduction of PO(4)(3-)-P was achieved within 24 h of treatment in bioreactors having the optimal algal bead concentration (12 beads ml(-1), equivalent to 1:3 algal beads:wastewater, v/v). The NH(4)(+)-N removal was significantly lower at low (around 4 beads ml(-1)) and high (>15 beads ml(-1)) algal bead concentrations. On the other hand, the effect of bead concentration on phosphate removal was less obvious, and bead concentrations ranging from 8 to 20 beads ml(-1) showed comparable percentages of phosphate reduction. Algal uptake and adsorption on alginate gels were found to be the major processes involved in the removal of N and phosphate in the present study. In addition, NH(4)(+)-N could be lost via ammonia volatilization while PO(4)(3-)-P was removed by chemical precipitation, as alkaline pH was recorded in the immobilized microalgal treatment system.

摘要

一种单细胞绿色微藻——普通小球藻,被包埋在海藻酸钙中制成藻珠,用于去除模拟的生活污水沉淀液中的营养物质(氮和磷)。与空白海藻酸钙珠(不含藻类)相比,含有藻珠的生物反应器(藻珠浓度范围为4至20个/毫升废水)对营养物质的去除率显著更高。在具有最佳藻珠浓度(12个/毫升,相当于藻珠与废水体积比为1:3)的生物反应器中,处理24小时内可实现对NH₄⁺-N的完全去除以及对PO₄³⁻-P约95%的去除。在低藻珠浓度(约4个/毫升)和高藻珠浓度(>15个/毫升)下,NH₄⁺-N的去除率显著较低。另一方面,藻珠浓度对磷酸盐去除的影响不太明显,藻珠浓度在8至20个/毫升范围内显示出相当的磷酸盐去除百分比。在本研究中,藻类吸收和在海藻酸凝胶上的吸附是去除氮和磷酸盐的主要过程。此外,由于在固定化微藻处理系统中记录到碱性pH值,NH₄⁺-N可能会通过氨挥发而损失,而PO₄³⁻-P则通过化学沉淀被去除。

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