Changes in the Properties of Hazelnut Shells Due to Conduction Drying

Author:

Matin Ana1,Brandić Ivan1ORCID,Voća Neven1ORCID,Bilandžija Nikola1,Matin Božidar2ORCID,Jurišić Vanja1ORCID,Antonović Alan2,Krička Tajana1ORCID

Affiliation:

1. Faculty of Agriculture, University of Zagreb, Svetošimunska Cesta 25, 10000 Zagreb, Croatia

2. Faculty of Forestry and Wood Technology, University of Zagreb, Svetošimunska Cesta 23, 10000 Zagreb, Croatia

Abstract

In this study, the physical properties of two hazelnut species were investigated before and after drying at different temperatures and durations. The results showed that the physical properties of the hazelnut samples, including size, volume, density, weight, kernel mass, and shell mass, were significantly affected by temperature, duration, and their interactions. In addition, the moisture content of the samples decreased with increasing temperature and drying duration. The lowest value for the Istarski duguljasti variety was 5.36% (160 °C and 45 min), while the lowest value for Rimski okrugli was measured at 160 °C and 60 min (5.02%). Ash content was affected by both temperature and time, with the Istarski duguljasti variety having a minimum value of 0.84% at 120 °C and 60 min and Rimski okrugli a maximum value of 1.24% at 100 °C and 30 min. The variables of the ultimate analysis, such as nitrogen, carbon, sulfur, and hydrogen, increased with increasing temperature and time. The oxygen content and the higher heating value decreased with increasing temperature. Energy optimization in the drying process is crucial to reduce costs and save time. Effective energy optimization measures can lead to significant cost savings and improved operational efficiency in the drying process.

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

Reference41 articles.

1. The comparison of hazelnut shell co-pyrolysis with polyethylene oxide and previous ultra-high molecular weight polyethylene;Aydinli;J. Anal. Appl. Pyrolysis,2010

2. The effects of biomass availability and preparation on the sustainability of power plants in croatia;Zdilar;Teh. Vjesn.,2021

3. European Commission (2017). Sustainable and Optimal Use of Biomass for Energy in the EU beyond 2020 Final Report Pricewaterhousecoopers EU Services EESV’s Consortium to EC Directorate General for Energy Directorate C1-Renewables and CCS Policy, European Commission.

4. Evaluation of suitability of hazelnut shell energy for production of biofuels;Hebda;Eng. Rural. Dev.,2018

5. Rivas, S., Moure, A., and Parajó, J.C. (2020). Pretreatment of hazelnut shells as a key strategy for the solubilization and valorization of hemicelluloses into bioactive compounds. Agronomy, 10.

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