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通过微藻实现奢侈摄取过程——确定多磷酸盐动态变化

Towards a luxury uptake process via microalgae--defining the polyphosphate dynamics.

作者信息

Powell Nicola, Shilton Andy, Chisti Yusuf, Pratt Steven

机构信息

Centre for Environmental Technology and Engineering, Massey University, Private Bag 11 222, Palmerston North, New Zealand.

出版信息

Water Res. 2009 Sep;43(17):4207-13. doi: 10.1016/j.watres.2009.06.011. Epub 2009 Jun 11.

Abstract

Microalgae in waste stabilization ponds (WSP) have been shown to accumulate polyphosphate. This luxury uptake of phosphorus is influenced by the wastewater phosphate concentration, light intensity and temperature, but the dynamics of how these factors affect luxury uptake with respect to time are not understood. With improved understanding of the dynamics of this mechanism and how it could be manipulated, a phosphorus removal process utilizing luxury uptake by microalgae might be developed. In this work, luxury uptake was investigated by chemical extraction of the acid-soluble and acid-insoluble fractions of polyphosphate in the microalgae. The results showed that the initial accumulation and subsequent utilization of both acid-soluble polyphosphate (ASP) and acid-insoluble polyphosphate (AISP) is a function of the wastewater phosphate concentration. It was found that light intensity influenced both the accumulation and utilization of ASP. The temperature influenced the accumulation of AISP. AISP is believed to be a form of phosphorus storage and ASP is involved in metabolism however, the results of this work show that ASP can also act as a short term form of phosphorus storage. To optimize luxury uptake by microalgae a 'luxury uptake pond' is proposed where the conditions the microalgae are exposed to can be manipulated. This 'luxury uptake pond' would be designed to expose the microalgae to a high phosphate concentration and high light intensity for a short period of time in order to achieve optimal polyphosphate accumulation. Subsequent harvesting would then remove the phosphorus rich microalgae from the system.

摘要

已证明,稳定塘(WSP)中的微藻会积累多聚磷酸盐。这种对磷的奢侈摄取受废水磷酸盐浓度、光照强度和温度的影响,但这些因素如何随时间影响奢侈摄取的动态过程尚不清楚。随着对该机制动态过程及其调控方式的深入了解,或许可以开发出一种利用微藻奢侈摄取的除磷工艺。在这项研究中,通过化学提取微藻中多聚磷酸盐的酸溶性和酸不溶性部分来研究奢侈摄取。结果表明,酸溶性多聚磷酸盐(ASP)和酸不溶性多聚磷酸盐(AISP)的初始积累及后续利用均是废水磷酸盐浓度的函数。研究发现,光照强度影响ASP的积累和利用。温度影响AISP的积累。据信,AISP是一种磷的储存形式,而ASP参与新陈代谢,然而,本研究结果表明,ASP也可作为磷的短期储存形式。为了优化微藻的奢侈摄取,提出了一个“奢侈摄取塘”,在其中可以控制微藻所接触的条件。这个“奢侈摄取塘”的设计目的是让微藻在短时间内暴露于高磷酸盐浓度和高光强下,以实现最佳的多聚磷酸盐积累。随后的收获操作将从系统中去除富含磷的微藻。

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