Olive husk (OH) quality, in respect of constituting particles characteristics (olive stones and pulp residues as result after pressing), represents an important issue. OH particles size class distribution and composition play, in fact, an important role for OH utilization as: organic amendment, bio-mass, food ingredient, plastic filler, abrasive, raw material in the cosmetic sector, dietary animal supplementation, etc. . OH is characterised by a strong variability according to olive characteristics and olive oil production process. Actually it does not exist any strategy able to quantify OH chemical-physical attributes versus its correct utilisation adopting simple, efficient and low costs analytical tools. Furthermore the possibility to perform its continuous monitoring, without any samples collection and analysis at laboratory scale, could strongly enhance OH utilization, with a great economic and environmental benefits. In this paper an analytical approach, based on HyperSpectral Imaging (HSI) is presented. HSI allows to perform, also on-line, a full quantification of OH characteristics in order to qualify this product for its further re-use, with particular reference as bio-mass. HSI was applied to different samples of OH, characterized by different moisture, different residual pulp content and different size class distributions. Results are presented and critically evaluated. © 2011 IFIP International Federation for Information Processing.

Hyperspectral sensing techniques applied to bio-masses characterization: The olive husk case / Bonifazi, Giuseppe; Serranti, Silvia. - STAMPA. - 347 AICT:PART 4(2011), pp. 751-764. (Intervento presentato al convegno 4th IFIP International Conference on Computer and Computing Technologies in Agriculture and the 4th Symposium on Development of Rural Information, CCTA 2010 tenutosi a Nanchang nel 22 October 2010 through 25 October 2010) [10.1007/978-3-642-18369-0_89].

Hyperspectral sensing techniques applied to bio-masses characterization: The olive husk case

BONIFAZI, Giuseppe;SERRANTI, Silvia
2011

Abstract

Olive husk (OH) quality, in respect of constituting particles characteristics (olive stones and pulp residues as result after pressing), represents an important issue. OH particles size class distribution and composition play, in fact, an important role for OH utilization as: organic amendment, bio-mass, food ingredient, plastic filler, abrasive, raw material in the cosmetic sector, dietary animal supplementation, etc. . OH is characterised by a strong variability according to olive characteristics and olive oil production process. Actually it does not exist any strategy able to quantify OH chemical-physical attributes versus its correct utilisation adopting simple, efficient and low costs analytical tools. Furthermore the possibility to perform its continuous monitoring, without any samples collection and analysis at laboratory scale, could strongly enhance OH utilization, with a great economic and environmental benefits. In this paper an analytical approach, based on HyperSpectral Imaging (HSI) is presented. HSI allows to perform, also on-line, a full quantification of OH characteristics in order to qualify this product for its further re-use, with particular reference as bio-mass. HSI was applied to different samples of OH, characterized by different moisture, different residual pulp content and different size class distributions. Results are presented and critically evaluated. © 2011 IFIP International Federation for Information Processing.
2011
4th IFIP International Conference on Computer and Computing Technologies in Agriculture and the 4th Symposium on Development of Rural Information, CCTA 2010
biomasses; recycling; hyperspectral imaging; solid waste; olive husk
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Hyperspectral sensing techniques applied to bio-masses characterization: The olive husk case / Bonifazi, Giuseppe; Serranti, Silvia. - STAMPA. - 347 AICT:PART 4(2011), pp. 751-764. (Intervento presentato al convegno 4th IFIP International Conference on Computer and Computing Technologies in Agriculture and the 4th Symposium on Development of Rural Information, CCTA 2010 tenutosi a Nanchang nel 22 October 2010 through 25 October 2010) [10.1007/978-3-642-18369-0_89].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/377461
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