Obtaining Phenolic-Enriched Liquid Fractions and Compostable Pomace for Agriculture from Alperujo Using Standard Two-Phase Olive Oil Mill Equipment

Author:

Rodríguez Márquez Manuel1ORCID,Rodríguez Gutiérrez Guillermo2ORCID,Giménez Marianela3ORCID,Rizzo Pedro Federico4ORCID,Bueno Luis1ORCID,Deiana Cristina3ORCID,Monetta Pablo1ORCID

Affiliation:

1. Instituto Nacional de Tecnología Agropecuaria (INTA), EEA San Juan, Calle 11 S/N, Pocito 5427, San Juan, Argentina

2. Instituto de la Grasa, Consejo Superior de Investigaciones Científicas (CSIC), Campus Universitario Pablo de Olavide, Edificio 46, Ctra. de Utrera, km 1, 41013 Sevilla, Spain

3. Instituto de Ingeniería Química, Facultad de Ingeniería, Universidad Nacional de San Juan (UNSJ), Av. Libertador Gral. San Martín 1109, San Juan 5400, San Juan, Argentina

4. Instituto Nacional de Tecnología Agropecuaria (INTA), EEA Mendoza, San Martín 3853, Luján de Cuyo 5507, Mendoza, Argentina

Abstract

Olive oil extraction by two-phase systems generates a by-product called “alperujo” which presents several difficulties for its valorization. The present work evaluated an industrial approach, based on the application of thermal treatments to alperujo followed by solid/liquid separation using standard two-phase olive oil mill equipment. Treatments consisted of the thermo-malaxation of alperujo at 70 °C for 45 or 90 min, with or without acid addition, followed by solid/liquid separation in an industrial decanter. The solid was characterized concerning subsequent use for composting, while total and hydrophilic phenolics were analyzed in liquid for their recovery. Additionally, a laboratory-scale trial to compare phenolic purification by ethylic acetate extraction with chromatographic procedures was also included. The static respiration index showed that solid fractions presented higher susceptibility to biodegradation processes than raw alperujo. The phenolic content of treated liquid fractions was higher than in raw alperujo. Total phenolics were maximum at the longest exposure time without acid addition, while hydrophilic phenolics were highest at the shortest exposure time in acidified samples. The use of non-ionic resins seemed attractive for obtaining highly concentrated phenolic fractions. The proposed thermal treatments can be applied in olive oil industries, allowing in situ pomace valorization and the recovery of phenolic-enriched liquid fractions.

Publisher

MDPI AG

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