An approach of estimating struvite growth kinetic incorporating thermodynamic and solution chemistry, kinetic and process description

Ali, Md. Imtiaj, and Schneider, Philip Andrew (2008) An approach of estimating struvite growth kinetic incorporating thermodynamic and solution chemistry, kinetic and process description. Chemical Engineering Science, 63 (13). pp. 3514-3525.

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DOI: 10.1016/j.ces.2008.04.023

View at Publisher Website: http://dx.doi.org/10.1016/j.ces.2008.04....

Abstract

Discharge of untreated nutrient-rich wastewater is a problematic issue, which may cause root burning and the eutrophication of receiving water. It is also a problematic issue due to the formation of crystalline deposits in waste water systems. The recovery of nutrient using crystallization technique may provide a value added product. The recovered product is struvite, which is chemically known as magnesium ammonium phosphate hexahydrates. The key focus of this paper is the modeling and simulation of struvite growth, incorporating solution chemistry and thermodynamics, growth kinetic and process description of the recovery system. An ensemble of experimental data is combined with the dynamic model to estimate struvite growth kinetics.

ID Code:6070
Item Type:Article (Refereed Research - C1)
Keywords:struvite; growth model; themodynamic; kinetic; process; development engineering; kinetic estimation
FoR Codes:09 ENGINEERING > 0904 Chemical Engineering > 090407 Process Control and Simulation @ 50%
09 ENGINEERING > 0904 Chemical Engineering > 090499 Chemical Engineering not elsewhere classified @ 50%
SEO Codes:96 ENVIRONMENT > 9611 Physical and Chemical Conditions of Water > 961199 Physical and Chemical Conditions of Water not elsewhere classified @ 100%
Deposited On:15 Jan 2010 10:14
Last Modified:25 May 2013 00:52
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