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Gıda Sektöründe Kullanılan Bazı Kimyasalların Honduras Rosewood (Dalbergia stevensonii Standl.) Ahşabında Renk Açma Kimyasalı Olarak Kullanılması Üzerine Bir Çalışma

Year 2024, Volume: 2 Issue: 1, 32 - 40, 28.06.2024

Abstract

Bu çalışmada, gıda sektöründe kullanılan bazı kimyasalların (karbonat, alıç ve üzüm sirkesi) Honduras Rosewood (Dalbergia stevensonii Standl.) ahşabında (öz ve diri odun kısımları üzerinde) renk açma kimyasalı olarak kullanılmış olunup, meydana gelen yüzey değişimleri araştırılmıştır. Muamele edilmiş ve edilmemiş yüzeylere ait sonuçlar birbirleriyle kıyaslanmıştır. Sonuçlara göre, varyans analizleri bütün testler üzerinde anlamlı olarak tespit edilmiştir. ∆E* değerleri öz odunda üzüm sirkesi + karbonat ile 5.35 ve alıç sirkesi + karbonat ile 3.41 bulunurken, diri odunda üzüm sirkesi + karbonat ile 8.41 ve alıç sirkesi + karbonat ile 8.48 olarak belirlenmiştir. İki farklı çözelti ile öz ve diri odunda L* değerlerinde azalışlar belirlenirken, b* değerlerinde artışlar görülmüştür. a* değerinde öz ve diri odunlarda üzüm sirkesi + karbonat çözeltisi ile artarken, alıç sirkesi + karbonat çözeltisi ile azalmıştır. Buna ek olarak her iki yönde WI* değerleri öz ve diri odunlarda hazırlanan çözeltiler ile azalmıştır.

References

  • Allison, L.E. & Moodie, C.D. (1965). Carbonate. Methods of soil analysis: part 2 chemical and microbiological properties. Agronomy Monograph, 9, 1379-1396.
  • Anonim, (1945). Department of Scientific and Industrial Research, A handbook of Empire timbers, Rev. ed. Forest Prod. Res. Lab., 142 pp.
  • Anonim, (1955). Department of Scientific and Industrial Research, A handbook of hardwoods. Forest Prod. Res. Lab., 269 pp.
  • Antoniewicz, J., Jakubczyk, K., Kupnicka, P., Bosiacki, M., Chlubek, D. & Janda, K. (2022). Analysis of selected minerals in homemade grape vinegars obtained by spontaneous fermentation. Biological Trace Element Research, 200(2), 910-919.
  • ASTM D 2240, (2010). Standard test method for rubber property-durometer hardness, American Society for Testing and Materials, West Conshohocken, Pennsylvania, United States.
  • ASTM D 2244-3, (2007). Standard practice for calculation or color tolerances and color, differences from instrumentally measured color coordinates, ASTM International, West Conshohocken, PA.
  • ASTM E313-15e1. (2015). Standard practice for calculating yellowness and whiteness indices from instrumentally measured color coordinates, ASTM International, West Conshohocken, PA.
  • Chen, H., Chen, T., Giudici, P. & Chen, F. (2016). Vinegar functions on health: Constituents, sources, and formation mechanisms. Comprehensive Reviews in Food Science and Food Safety, 15(6), 1124-1138.
  • Čulík, M., Danihelová, A. & Danihelová, Z. (2015). Evaluation of properties of black mulberry wood for xylophone bars. Akustika, 23, 2-5.
  • Danihelova, A., Culik, M. & Danihelova, Z. (2015). Assessment of properties of ailanthus wood for xylophone bars. Akustika, 24, 42-49.
  • DIN 5033, (1979). Deutsche Normen, Farbmessung. Normenausschuß Farbe (FNF) im DIN Deutsches Institut für Normung eV, Beuth, Berlin März.
  • Flynn, J. H. (1994). A Guide to Useful Woods of The World. Forest Products Society, Madison, USA.
  • Horn, E.F. (1918). Properties and uses of some of the more important woods grown in Brazil, U.S. Forest Serv. Forest Prod. Lab. Rpt. R83, 53 pp.
  • ISO 554, (1976). Standard atmospheres for conditioning and/or testing, International Standardization Organization, Geneva, Switzerland.
  • Johnston, C.S. & Gaas, C.A. (2006). Vinegar: medicinal uses and antiglycemic effect. Medscape General Medicine, 8(2), 61.
  • Lange, D.R. (1999). Fundamentals of Colourimetry - Application Report No. 10e. DR Lange: New York, NY, USA.
  • Mabberley, D.J. (1987). The plant-book. Cambridge University Press, Cambridge.
  • Mitsui, K. & Tsuchikawa, S. (2005). Low atmospheric temperature dependence on photodegradation of wood. Journal of Photochemistry and Photobiology B: Biology, 81(2), 84-88.
  • Record, S.J. (1942). American timbers of the genera Dalbergia and Machaerium, Tropical Woods, 72: 1-11.
  • Record, S.J. & Hess, R.W. (1943). Timbers of the New World, 640 pp., illus. New Haven, Conn.
  • Richter, H.G., Krause, V.J. & Muche, C. (1996). Dalbergia congestiflora Standl.: wood structure and physico-chemical properties compared with other Central American species of Dalbergia. Iawa Journal, 17(3), 327-341.
  • Stevens, W.C. & Pratt, G.H. (1952). Kiln operator’s handbook, Dept. Sci and Indus. Res. Forest Ptod. Res. Lab., 138 pp. illus.
  • Stevenson, N.S. (1927). The honduras rosewood, Tropical Woods, 12: 1-3.
  • Tesfaye, W., Morales, M.L., Garcıa-Parrilla, M.C. & Troncoso, A.M. (2002). Wine vinegar: technology, authenticity and quality evaluation. Trends in Food Science & Technology, 13(1), 12-21.
  • Wangaard, F.F., Stern, W.L. & Goodrich, S.L. (1955). Properties and uses of tropical woods. V. Tropical Woods, 103: 1-139.
  • Wimmers, G. (2017). Wood: a construction material for tall buildings. Nature Reviews Materials, 2(12), 1-2.
  • Woods, R.P. (1951). Timbers of South America, Ed. 2. Timber Dev. Assoc., Ltd., 77 pp., illus. London.

A Study on the Use of Some Chemicals Used in the Food Sector as Color-Changing Chemical for Honduras Rosewood (Dalbergia stevensonii Standl.) Wood

Year 2024, Volume: 2 Issue: 1, 32 - 40, 28.06.2024

Abstract

In this study, certain chemicals used in the food industry (carbonate, hawthorn, and grape vinegar) were employed for color lightening purposes on Honduras Rosewood (Dalbergia stevensonii Standl.) wood (on both heartwood and sapwood sections), and the resulting surface changes were investigated. The results of treated and untreated surfaces were compared with each other. According to the results, variance analyses revealed significant differences across all tests. In heartwood, the ∆E* values were determined as 5.35 for grape vinegar (A) + carbonate and 3.41 for hawthorn vinegar (B) + carbonate. In sapwood, the ∆E* values were determined as 8.41 for grape vinegar (A) + carbonate and 8.48 for hawthorn vinegar (B) + carbonate. A decrease in L* values and an increase in b* values were observed in both heartwood and sapwood with two different solutions. In heartwood and sapwood, the a* values increased with grape vinegar (A) + carbonate solution, while they decreased with hawthorn vinegar (B) + carbonate solution. Additionally, in both directions, the WI* values decreased in heartwood and sapwood with the solutions prepared.

References

  • Allison, L.E. & Moodie, C.D. (1965). Carbonate. Methods of soil analysis: part 2 chemical and microbiological properties. Agronomy Monograph, 9, 1379-1396.
  • Anonim, (1945). Department of Scientific and Industrial Research, A handbook of Empire timbers, Rev. ed. Forest Prod. Res. Lab., 142 pp.
  • Anonim, (1955). Department of Scientific and Industrial Research, A handbook of hardwoods. Forest Prod. Res. Lab., 269 pp.
  • Antoniewicz, J., Jakubczyk, K., Kupnicka, P., Bosiacki, M., Chlubek, D. & Janda, K. (2022). Analysis of selected minerals in homemade grape vinegars obtained by spontaneous fermentation. Biological Trace Element Research, 200(2), 910-919.
  • ASTM D 2240, (2010). Standard test method for rubber property-durometer hardness, American Society for Testing and Materials, West Conshohocken, Pennsylvania, United States.
  • ASTM D 2244-3, (2007). Standard practice for calculation or color tolerances and color, differences from instrumentally measured color coordinates, ASTM International, West Conshohocken, PA.
  • ASTM E313-15e1. (2015). Standard practice for calculating yellowness and whiteness indices from instrumentally measured color coordinates, ASTM International, West Conshohocken, PA.
  • Chen, H., Chen, T., Giudici, P. & Chen, F. (2016). Vinegar functions on health: Constituents, sources, and formation mechanisms. Comprehensive Reviews in Food Science and Food Safety, 15(6), 1124-1138.
  • Čulík, M., Danihelová, A. & Danihelová, Z. (2015). Evaluation of properties of black mulberry wood for xylophone bars. Akustika, 23, 2-5.
  • Danihelova, A., Culik, M. & Danihelova, Z. (2015). Assessment of properties of ailanthus wood for xylophone bars. Akustika, 24, 42-49.
  • DIN 5033, (1979). Deutsche Normen, Farbmessung. Normenausschuß Farbe (FNF) im DIN Deutsches Institut für Normung eV, Beuth, Berlin März.
  • Flynn, J. H. (1994). A Guide to Useful Woods of The World. Forest Products Society, Madison, USA.
  • Horn, E.F. (1918). Properties and uses of some of the more important woods grown in Brazil, U.S. Forest Serv. Forest Prod. Lab. Rpt. R83, 53 pp.
  • ISO 554, (1976). Standard atmospheres for conditioning and/or testing, International Standardization Organization, Geneva, Switzerland.
  • Johnston, C.S. & Gaas, C.A. (2006). Vinegar: medicinal uses and antiglycemic effect. Medscape General Medicine, 8(2), 61.
  • Lange, D.R. (1999). Fundamentals of Colourimetry - Application Report No. 10e. DR Lange: New York, NY, USA.
  • Mabberley, D.J. (1987). The plant-book. Cambridge University Press, Cambridge.
  • Mitsui, K. & Tsuchikawa, S. (2005). Low atmospheric temperature dependence on photodegradation of wood. Journal of Photochemistry and Photobiology B: Biology, 81(2), 84-88.
  • Record, S.J. (1942). American timbers of the genera Dalbergia and Machaerium, Tropical Woods, 72: 1-11.
  • Record, S.J. & Hess, R.W. (1943). Timbers of the New World, 640 pp., illus. New Haven, Conn.
  • Richter, H.G., Krause, V.J. & Muche, C. (1996). Dalbergia congestiflora Standl.: wood structure and physico-chemical properties compared with other Central American species of Dalbergia. Iawa Journal, 17(3), 327-341.
  • Stevens, W.C. & Pratt, G.H. (1952). Kiln operator’s handbook, Dept. Sci and Indus. Res. Forest Ptod. Res. Lab., 138 pp. illus.
  • Stevenson, N.S. (1927). The honduras rosewood, Tropical Woods, 12: 1-3.
  • Tesfaye, W., Morales, M.L., Garcıa-Parrilla, M.C. & Troncoso, A.M. (2002). Wine vinegar: technology, authenticity and quality evaluation. Trends in Food Science & Technology, 13(1), 12-21.
  • Wangaard, F.F., Stern, W.L. & Goodrich, S.L. (1955). Properties and uses of tropical woods. V. Tropical Woods, 103: 1-139.
  • Wimmers, G. (2017). Wood: a construction material for tall buildings. Nature Reviews Materials, 2(12), 1-2.
  • Woods, R.P. (1951). Timbers of South America, Ed. 2. Timber Dev. Assoc., Ltd., 77 pp., illus. London.
There are 27 citations in total.

Details

Primary Language Turkish
Subjects Environmentally Sustainable Engineering
Journal Section Research Articles
Authors

Ümit Ayata 0000-0002-6787-7822

Elif Hümeyra Bilginer 0009-0009-5455-4408

Osman Çamlıbel 0000-0002-8766-1316

Publication Date June 28, 2024
Submission Date March 18, 2024
Acceptance Date May 3, 2024
Published in Issue Year 2024 Volume: 2 Issue: 1

Cite

APA Ayata, Ü., Bilginer, E. H., & Çamlıbel, O. (2024). Gıda Sektöründe Kullanılan Bazı Kimyasalların Honduras Rosewood (Dalbergia stevensonii Standl.) Ahşabında Renk Açma Kimyasalı Olarak Kullanılması Üzerine Bir Çalışma. Artvin Çoruh Üniversitesi Mühendislik Ve Fen Bilimleri Dergisi, 2(1), 32-40.