Development of in-situ detection method of transparent exopolymer particles (TEP) as an early warning system for algae blooms

Over the past two decades, many methods have been developed to quantify and determine transparent exopolymer particles (TEP), a transparent and sticky organic substances that found abundantly in oceans. TEP was originally quantified by light microscopy, a slow yet labour-intensive method. This lead...

Full description

Saved in:
Bibliographic Details
Main Author: Lee, Darren Yong Shern
Other Authors: Chong Tzyy Haur
Format: Final Year Project
Language:English
Published: 2017
Subjects:
Online Access:http://hdl.handle.net/10356/71355
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Nanyang Technological University
Language: English
id sg-ntu-dr.10356-71355
record_format dspace
spelling sg-ntu-dr.10356-713552023-03-03T17:09:02Z Development of in-situ detection method of transparent exopolymer particles (TEP) as an early warning system for algae blooms Lee, Darren Yong Shern Chong Tzyy Haur School of Civil and Environmental Engineering Nanyang Environment and Water Research Institute DRNTU::Engineering::Environmental engineering::Water treatment Over the past two decades, many methods have been developed to quantify and determine transparent exopolymer particles (TEP), a transparent and sticky organic substances that found abundantly in oceans. TEP was originally quantified by light microscopy, a slow yet labour-intensive method. This lead to the development of the first semi-quantitative method proposed by (U. Passow & A. Alldredge, 1995) and subsequently many other quantitative methods. Even though the methods were diverse, the similarity was the use of alcian blue solution (AB) as a staining agent to quantify TEP. The limitations of these methods were, being unable to be used for on-line monitoring of TEP, time consumed and implementation of several steps, that could increase the likelihood of human errors happening, possibly rendering the results unsuitable for use. Previously prominent common findings from studies have shown that peak concentrations with TEP were associated with phytoplankton blooms (Alldredge et al., 1998; Grossart et al., 1997; Mari & Kiørboe, 1996; U. Passow et al., 2001; Riebesell et al., 1995; Xavier & Adrian, 1998), and that increased release of TEP may occur during or after algae blooms. In this study, a simple on-line monitoring method is proposed for the measurement of TEP in various water sources accurately, yet quickly, to correlate the TEP concentration measured by the proposed method with algae concentrations. This method uses the Commission Internationale de l’Eclairage (CIE) 1976 colour expressions L* a* b* and alcian blue (0.02% alcian blue and 0.06% acetic acid, pH 2.5) solution as a staining agent. Cross flow ultrafiltration was the main mode to facilitate this method using a regenerated cellulose membrane of 30 kDa. The normalised b* value was then determined after the end of each filtration (90 minutes), first staining the membrane with alcian blue then using a fibre-optic spectrometer and light source emitter to detect the variation in colour. Calibration of this new method was first done with Xanthan Gum (XG), a model for TEP, with concentrations from 0 – 100 ppm (mg/L), and this calibration was then correlated against the conventional method proposed by (U. Passow & A. Alldredge, 1995). Further validation of this method was then carried out using several water samples such as a model foulant (alginic acid), natural sources (seawater, aquaculture and pond water) and cultivated algae seawater. The linear relationship, good correlation and increased sensitivity obtained from the results of this method shows the possible potential of an on-line quantification of TEP and its precursors that could possibly serve as an early warning system for algae bloom. Bachelor of Engineering (Environmental Engineering) 2017-05-16T06:18:07Z 2017-05-16T06:18:07Z 2017 Final Year Project (FYP) http://hdl.handle.net/10356/71355 en Nanyang Technological University 60 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Environmental engineering::Water treatment
spellingShingle DRNTU::Engineering::Environmental engineering::Water treatment
Lee, Darren Yong Shern
Development of in-situ detection method of transparent exopolymer particles (TEP) as an early warning system for algae blooms
description Over the past two decades, many methods have been developed to quantify and determine transparent exopolymer particles (TEP), a transparent and sticky organic substances that found abundantly in oceans. TEP was originally quantified by light microscopy, a slow yet labour-intensive method. This lead to the development of the first semi-quantitative method proposed by (U. Passow & A. Alldredge, 1995) and subsequently many other quantitative methods. Even though the methods were diverse, the similarity was the use of alcian blue solution (AB) as a staining agent to quantify TEP. The limitations of these methods were, being unable to be used for on-line monitoring of TEP, time consumed and implementation of several steps, that could increase the likelihood of human errors happening, possibly rendering the results unsuitable for use. Previously prominent common findings from studies have shown that peak concentrations with TEP were associated with phytoplankton blooms (Alldredge et al., 1998; Grossart et al., 1997; Mari & Kiørboe, 1996; U. Passow et al., 2001; Riebesell et al., 1995; Xavier & Adrian, 1998), and that increased release of TEP may occur during or after algae blooms. In this study, a simple on-line monitoring method is proposed for the measurement of TEP in various water sources accurately, yet quickly, to correlate the TEP concentration measured by the proposed method with algae concentrations. This method uses the Commission Internationale de l’Eclairage (CIE) 1976 colour expressions L* a* b* and alcian blue (0.02% alcian blue and 0.06% acetic acid, pH 2.5) solution as a staining agent. Cross flow ultrafiltration was the main mode to facilitate this method using a regenerated cellulose membrane of 30 kDa. The normalised b* value was then determined after the end of each filtration (90 minutes), first staining the membrane with alcian blue then using a fibre-optic spectrometer and light source emitter to detect the variation in colour. Calibration of this new method was first done with Xanthan Gum (XG), a model for TEP, with concentrations from 0 – 100 ppm (mg/L), and this calibration was then correlated against the conventional method proposed by (U. Passow & A. Alldredge, 1995). Further validation of this method was then carried out using several water samples such as a model foulant (alginic acid), natural sources (seawater, aquaculture and pond water) and cultivated algae seawater. The linear relationship, good correlation and increased sensitivity obtained from the results of this method shows the possible potential of an on-line quantification of TEP and its precursors that could possibly serve as an early warning system for algae bloom.
author2 Chong Tzyy Haur
author_facet Chong Tzyy Haur
Lee, Darren Yong Shern
format Final Year Project
author Lee, Darren Yong Shern
author_sort Lee, Darren Yong Shern
title Development of in-situ detection method of transparent exopolymer particles (TEP) as an early warning system for algae blooms
title_short Development of in-situ detection method of transparent exopolymer particles (TEP) as an early warning system for algae blooms
title_full Development of in-situ detection method of transparent exopolymer particles (TEP) as an early warning system for algae blooms
title_fullStr Development of in-situ detection method of transparent exopolymer particles (TEP) as an early warning system for algae blooms
title_full_unstemmed Development of in-situ detection method of transparent exopolymer particles (TEP) as an early warning system for algae blooms
title_sort development of in-situ detection method of transparent exopolymer particles (tep) as an early warning system for algae blooms
publishDate 2017
url http://hdl.handle.net/10356/71355
_version_ 1759854213930680320