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Dive into the research topics where A. Luís Amaral is active.

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Featured researches published by A. Luís Amaral.


Analytica Chimica Acta | 2013

Prediction of intracellular storage polymers using quantitative image analysis in enhanced biological phosphorus removal systems

D. P. Mesquita; Cristiano Leal; Jorge Cunha; Adrian Oehmen; A. Luís Amaral; Maria A.M. Reis; E. C. Ferreira

The present study focuses on predicting the concentration of intracellular storage polymers in enhanced biological phosphorus removal (EBPR) systems. For that purpose, quantitative image analysis techniques were developed for determining the intracellular concentrations of PHA (PHB and PHV) with Nile blue and glycogen with aniline blue staining. Partial least squares (PLS) were used to predict the standard analytical values of these polymers by the proposed methodology. Identification of the aerobic and anaerobic stages proved to be crucial for improving the assessment of PHA, PHB and PHV intracellular concentrations. Current Nile blue based methodology can be seen as a feasible starting point for further enhancement. Glycogen detection based on the developed aniline blue staining methodology combined with the image analysis data proved to be a promising technique, toward the elimination of the need for analytical off-line measurements.


Analytica Chimica Acta | 2015

Polyhydroxyalkanoate granules quantification in mixed microbial cultures using image analysis: Sudan Black B versus Nile Blue A staining.

D. P. Mesquita; A. Luís Amaral; Cristiano Leal; Adrian Oehmen; Maria A.M. Reis; E. C. Ferreira

Polyhydroxyalkanoates (PHA) can be produced and intracellularly accumulated as inclusions by mixed microbial cultures (MMC) for bioplastic production and in enhanced biological phosphorus removal (EBPR) systems. Classical methods for PHA quantification use a digestion step prior to chromatography analysis, rendering them labor intensive and time-consuming. The present work investigates the use of two quantitative image analysis (QIA) procedures specifically developed for PHA inclusions identification and quantification. MMC obtained from an EBPR system were visualized by bright-field and fluorescence microscopy for PHA inclusions detection, upon Sudan Black B (SBB) and Nile Blue A (NBA) staining, respectively. The captured color images were processed by QIA techniques and the image analysis data were further treated using multivariate statistical analysis. Partial least squares (PLS) regression coefficients of 0.90 and 0.86 were obtained between QIA parameters and PHA concentrations using SBB and NBA, respectively. It was found that both staining procedures might be seen as alternative methodologies to classical PHA determination.


Reviews in Environmental Science and Bio\/technology | 2017

Monitoring biological wastewater treatment processes: Recent advances in spectroscopy applications

D. P. Mesquita; C. Quintelas; A. Luís Amaral; E. C. Ferreira

Biological processes based on aerobic and anaerobic technologies have been continuously developed to wastewater treatment and are currently routinely employed to reduce the contaminants discharge levels in the environment. However, most methodologies commonly applied for monitoring key parameters are labor intensive, time-consuming and just provide a snapshot of the process. Thus, spectroscopy applications in biological processes are, nowadays, considered a rapid and effective alternative technology for real-time monitoring though still lacking implementation in full-scale plants. In this review, the application of spectroscopic techniques to aerobic and anaerobic systems is addressed focusing on UV–Vis, infrared, and fluorescence spectroscopy. Furthermore, chemometric techniques, valuable tools to extract the relevant data, are also referred. To that effect, a detailed analysis is performed for aerobic and anaerobic systems to summarize the findings that have been obtained since 2000. Future prospects for the application of spectroscopic techniques in biological wastewater treatment processes are further discussed.


Environmental Monitoring and Assessment | 2018

Use of chemometric analyses to assess biological wastewater treatment plants by protozoa and metazoa monitoring

A. Luís Amaral; Cristiano Leal; A. Isabel Vaz; J. Carvalho Vieira; Andreia Quinteiro; M. Lourdes Costa; L. Miguel Castro

Protozoa and metazoa biota communities in biological wastewater treatment plants (WWTP) are known to be dependent of both the plant type (oxidation ditch, trickling filter, conventional activated sludge, among others) and the working operational conditions (incoming effluent characteristics, toxics presence, organic load, aeration, hydraulic and sludge retention times, nitrification occurrence, etc.). Thus, for analogous WWTP operating in equivalent operating conditions, similar protozoa and metazoa communities can be found. Indeed, the protozoa and metazoa biota monitoring can be considered a quite useful tool for assessing the functioning of biological WWTP. Furthermore, the use of chemometric techniques in WWTP monitoring is becoming widespread to enlighten interrelationships within the plant, especially when a large collection of data can be obtained. In the current study, the protozoa and metazoa communities of three different types of WWTP, comprising one oxidation ditch, four trickling filters, and three conventional activated sludge plants, were monitored. For that purpose, metazoa, as well as the main protozoa groups (flagellates, free-swimming, crawling and sessile ciliates, and testate amoeba) were determined in terms of contents and relative abundance. The collected data was further processed by chemometric techniques, such as cross-correlation, principal components, multivariate ANOVA, and decision trees analyses, allowing to successfully identify, and characterize, the different studied WWTP, and thus, being able to help monitoring and diagnosing operational problems.


Analytica Chimica Acta | 2013

Activated sludge characterization through microscopy: A review on quantitative image analysis and chemometric techniques

D. P. Mesquita; A. Luís Amaral; E. C. Ferreira


Chemical Engineering Journal | 2016

Estimation of effluent quality parameters from an activated sludge system using quantitative image analysis

D. P. Mesquita; A. Luís Amaral; E. C. Ferreira


Archive | 2018

Quantification of pharmaceuticals contaminants in wastewaters by NIR spectroscopy

C. Quintelas; D. P. Mesquita; E. C. Ferreira; A. Luís Amaral


Archive | 2017

Extraction and characterization of extracellular polymeric substances from aerobic granular sludge from a full-scale sequencing batch reactor in Portugal

Ana Oliveira; D. P. Mesquita; Catarina L. Amorim; A. Luís Amaral; E. C. Ferreira; Mark C.M. van Loosdrecht; Paula M. L. Castro


Archive | 2017

Quantitative Image Analysis: a monitoring tool in wastewater treatment

D. P. Mesquita; A. Luís Amaral; E. C. Ferreira


Archive | 2017

Microbial evaluation of full-scale wastewater treatment plants by microscopy survey and chemometric analysis

A. Luís Amaral; Cristiano Leal

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Adrian Oehmen

Universidade Nova de Lisboa

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Maria A.M. Reis

Universidade Nova de Lisboa

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