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Adsorption as a technology to achieve ultra-low concentrations of phosphate: Research gaps and economic analysis.


ABSTRACT: Eutrophication and the resulting formation of harmful algal blooms (HAB) causes huge economic and environmental damages. Phosphorus (P) from sewage effluent and agricultural run-off has been identified as a major cause for eutrophication. Phosphorous concentrations greater than 100??g?P/L are usually considered high enough to cause eutrophication. The strictest regulations however aim to restrict the concentration below 10??g?P/L. Orthophosphate (or phosphate) is the bioavailable form of phosphorus. Adsorption is often suggested as technology to reduce phosphate to concentrations less than 100 and even 10??g?P/L with the advantages of a low-footprint, minimal waste generation and the option to recover the phosphate. Although many studies report on phosphate adsorption, there is insufficient information regarding parameters that are necessary to evaluate its application on a large scale. This review discusses the main parameters that affect the economics of phosphate adsorption and highlights the research gaps. A scenario and sensitivity analysis shows the importance of adsorbent regeneration and reuse. The cost of phosphate adsorption using reusable porous metal oxide is in the range of $ 100 to 200/Kg P for reducing the phosphate to ultra-low concentrations. Future research needs to focus on adsorption capacity at low phosphate concentrations, regeneration and reuse of both the adsorbent and the regeneration liquid.

SUBMITTER: Kumar PS 

PROVIDER: S-EPMC6614603 | biostudies-literature | 2019 Aug

REPOSITORIES: biostudies-literature

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Adsorption as a technology to achieve ultra-low concentrations of phosphate: Research gaps and economic analysis.

Kumar Prashanth Suresh PS   Korving Leon L   van Loosdrecht Mark C M MCM   Witkamp Geert-Jan GJ  

Water research X 20190406


Eutrophication and the resulting formation of harmful algal blooms (HAB) causes huge economic and environmental damages. Phosphorus (P) from sewage effluent and agricultural run-off has been identified as a major cause for eutrophication. Phosphorous concentrations greater than 100 μg P/L are usually considered high enough to cause eutrophication. The strictest regulations however aim to restrict the concentration below 10 μg P/L. Orthophosphate (or phosphate) is the bioavailable form of phospho  ...[more]

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