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Article

Extraction Methods and Their Influence on Yield When Extracting Thermo-Vacuum-Modified Chestnut Wood

1
Department of Science, University of Basilicata, Viale dell’Ateneo Lucano 10, 85100 Potenza, Italy
2
School of Agricultural Forestry, Food, and Environmental Science, University of Basilicata, Viale dell’Ateneo Lucano 10, 85100 Potenza, Italy
*
Author to whom correspondence should be addressed.
Forests 2021, 12(1), 73; https://doi.org/10.3390/f12010073
Submission received: 6 October 2020 / Revised: 5 January 2021 / Accepted: 7 January 2021 / Published: 10 January 2021
(This article belongs to the Special Issue Methods and New Technologies for Wood Modification)

Abstract

Improvements in the yield and solubility of chestnut wood extractives, by using different extraction methods and molybdenum catalysts as support, have rarely been reported in literature. Many studies focus on the different parts of trees, except for the chemical characteristics of the remaining extractives achieved from thermally modified (THM) chestnut (Castanea sativa Mill) wood. This research seeks to better understand the effects of extraction techniques and catalysts on the yield and solubility of extractives. GC-MS analysis of the chloroform soluble and insoluble fractions was also used. Accelerated Solvent Extraction (ASE) 110 °C, Soxhlet, and autoclave extraction techniques were used to obtain extractives from untreated and thermally modified (THM) chestnut wood (170 °C for 3 h). Ethanol/H2O, ethanol/toluene, and water were the solvents used for each technique. A polyoxometalate compound (H3PMo12O40) and MoO3 supported on silica were used as catalysts. The THM induced a change in the wood’s surface color (ΔE = 21.5) and an increase in mass loss (5.9%), while the equilibrium moisture content (EMC) was reduced by 17.4% compared to the control wood. The yields of the extractives and their solubility were always higher in THM and mainly used ASE as the technique. GC-MS analysis of the extractives, without catalyst support, showed different results for each extraction technique and type of wood (untreated and THM). Ultimately, the amount of extractive compound dissolved in each solvent will differ, and the choice of extraction technique will depend on the intended final application of the extracted chemical product.
Keywords: Castanea sativa; thermo-modified wood; extractives; ASE; phosphomolybdic acid; silica-supported molybdenum trioxide Castanea sativa; thermo-modified wood; extractives; ASE; phosphomolybdic acid; silica-supported molybdenum trioxide

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MDPI and ACS Style

D’Auria, M.; Mecca, M.; Bruno, M.R.; Todaro, L. Extraction Methods and Their Influence on Yield When Extracting Thermo-Vacuum-Modified Chestnut Wood. Forests 2021, 12, 73. https://doi.org/10.3390/f12010073

AMA Style

D’Auria M, Mecca M, Bruno MR, Todaro L. Extraction Methods and Their Influence on Yield When Extracting Thermo-Vacuum-Modified Chestnut Wood. Forests. 2021; 12(1):73. https://doi.org/10.3390/f12010073

Chicago/Turabian Style

D’Auria, Maurizio, Marisabel Mecca, Maria Roberta Bruno, and Luigi Todaro. 2021. "Extraction Methods and Their Influence on Yield When Extracting Thermo-Vacuum-Modified Chestnut Wood" Forests 12, no. 1: 73. https://doi.org/10.3390/f12010073

APA Style

D’Auria, M., Mecca, M., Bruno, M. R., & Todaro, L. (2021). Extraction Methods and Their Influence on Yield When Extracting Thermo-Vacuum-Modified Chestnut Wood. Forests, 12(1), 73. https://doi.org/10.3390/f12010073

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