Chemistry Central Journal | |
Vertical distribution and analysis of micro-, macroelements and heavy metals in the system soil-grapevine-wine in vineyard from North-West Romania | |
Florin-Dumitru Bora2  Claudiu-Ioan Bunea2  Teodor Rusu1  Nastasia Pop2  | |
[1] Department of Technical and Soil Sciences, Faculty of Agriculture, University of Agricultural Sciences and Veterinary Medicine, 3-5 Mănăştur Street, Cluj-Napoca, 400372, Romania | |
[2] Department of Horticulture and Landscaping, Faculty of Horticulture, University of Agricultural Sciences and Veterinary Medicine, 3-5 Mănăştur Street, Cluj-Napoca, 400372, Romania | |
关键词: Grapevine cultivars; Vitis vinifera L; FAAS technology; Soil-grapevine-wine; Heavy metals; Macroelements; Micro-; | |
Others : 1170928 DOI : 10.1186/s13065-015-0095-2 |
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received in 2014-10-06, accepted in 2015-03-25, 发布年份 2015 | |
【 摘 要 】
Background
The determination of micro-, macroelements and heavy metals in the soil-grapevine-wine system is extremely important for the wine industry, the grape and wine quality, and also for consumer health. The quantitative analysis of 10 elements: Na, Ca, Mg, Fe, Cu, Zn, Pb, Cd, Ni, Co were made in soil at different depths and also in grapevines (leaves and canes). For grape juice and wine there were analyzed the concentrations of Cu, Zn, Pb, Ni and Cd on three cultivars Fetească albă, Fetească regală and Riesling italian, located in Turulung vineyard, NW Romania. All the elements were detected using flame atomic absorbtion spectrometry (FAAS).
Results
Only the Cu concentration View MathML"> has higher values than the maximum limit admitted (20 mg/kg). The concentrations of micro-, macroelements and heavy metals in aerial parts of grapevine cultivars occur in the following order: Ca > Na > Mg > Fe > Cu > Zn > Ni > Pb > Co > Cd in canes and leaves. Cu, Pb, Ni and Zn concentration levels decreased in wine compared to grape must, possibly forming insoluble components that can be removed through sedimentation together with yeasts and lees during fermentation. Cd was under the limit of detection. Heavy metals detected in Romanian wines were below the recommended health limits of the International organization of wine and vine (O.I.V.).
Conclusions
In soil, all the elements studied were under the maximum limit admitted, except, elevated concentrations of Cu. These high values obtained could be an effect of different Cu treatments in vineyards. In canes and leaves, Cu, Zn, Pb, Cd, Ni had higher concentration levels than in grape juice (must) and wine. Conversely, the metal acumulation of wines obtained by micro-vinification process (in the laboratory) are lower than in must.
【 授权许可】
2015 Bora et al.; licensee Springer.
【 预 览 】
Files | Size | Format | View |
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20150418013545801.pdf | 1016KB | download | |
Figure 2. | 32KB | Image | download |
Figure 1. | 51KB | Image | download |
【 图 表 】
Figure 1.
Figure 2.
【 参考文献 】
- [1]German JB, Walzem RL: The health benefits of wine. Annu Rev Nutr. 2000, 20:561-93.
- [2]Yang J, Martinson TE, Liu RH: Phytochemical profiles and antioxidant activities of wine grapes. Food Chem. 2009, 116:332-9.
- [3]Vystavna Y, Rushenko L, Diadin D, Klymenko O, Klymenko M: Trace metals in wine and vineyard environment in southern Ukraine. Food Chem. 2014, 146:339-44.
- [4]Fiket Z, Mikac N, Kniewald G: Arsenic and other trace elements in wines of eastern Croatia. Food Chem. 2011, 126:941-7.
- [5]Kostic D, Mitic S, Miletic G, Despotovic S, Zarubica A: The concentrations of Fe, Cu and Zn in selected wines from South-East Serbia. J Serb Chem Soc 2010, 75(12):1701-9.
- [6]Huzum R, Iancu OG, Buzgar N: Geochemical distribution of selected trace elements in vineyard soils from the Huşi area, Romania. Carpath J Earth Environ Sci. 2012, 7(3):61-70.
- [7]Hooda PS: Trace elements in soils. John Willey and Sons Ltd, Chichester, UK; 2010.
- [8]Bagdatlioglu N, Nergiz C, Ergonul PG: Heavy metal levels in leafy vegetables and some selected fruits. J Consum Protect Food Saf. 2010, 5:421-8.
- [9]Chopin EIB, Marin B, Mkoungafoko R, Rigaux A, Hopgood MJ, Delannoy E, et al.: Factors affecting the distribution and mobility of trace elements (Cu, Pb, Zn) in a perennial grapevine (Vitis vinifera L.) in the Champagne region of France. Environ Pollut 2008, 156:1092-8.
- [10]Tariba B: Metals in wine-impact on wine quality and health outcomes. Biol Trace Elem Res. 2011, 144:143-56.
- [11]Albulescu M, Turuga L, Masu S, Uruioc S, Kiraly LS: Study regarding the heavy metal content (lead, chromium, cadmium) in soil and Vitis Vinifera in vineyards from the Caraş-Severin County. Ann West Univ Timişoara Ser Chem 2009, 18(3):45-52.
- [12]Damian F, Damian G, Lăcătușu R, Macovei G, Iepure G, Năprădean I, et al.: Soil from the Baia Mare zone and the heavy metals pollution. Carpath J Earth Environ Sci 2008, 3(1):85-98.
- [13]Gogoașă I, Maruțoiu C, Gergen I, Rada M, Tigae C: The use of vegetables as indicators in determining the environment pollution. Rev Chim. 2005, 56:1275-6.
- [14]Tuzen M, Soylak M: Evaluation of trace element contents in canned foods marketed from Turkey. Food Chem. 2007, 102:1089-95.
- [15]Vavoulidou E, Avramides EJ, Papadopoulos P, Dimitriou A: Trace metals in different crop/cultivation systems in Greece. Water Air Soil Pollut Focus. 2004, 4:631-40.
- [16]Nakov BK, Nakova MB, Rehab MAA: Long-term assessment of pollution problems in grape cenosys. J Environ Protect Ecol 2002, 3(4):890-5.
- [17]Bora FD, Pop TI, Mihaly L, Bunea CI, Pop N: Research on the chemical composition of soil with pollutant effect in some vineyards from Northwestern Transylvania. Bull UASVM Horticult 2013, 70(1):53-9.
- [18]Hărmănescu M, Alda LM, Bordean DM, Gogoașă I, Gergen I: Heavy metals health risk assessment for population via consumption of vegetables grown in old mining area; a case study: Banat County, Romania. Chem Cent J. 2011, 5:64. BioMed Central Full Text
- [19]Damian G, Damian F, Năsui D, Pop C, Pricop C: The soils quality from the southern-eastern part of Baia Mare zone affected by metallurgical industry. Carpath J Earth Environ Sci 2010, 5(1):139-47.
- [20]Lăcătușu R, Lăcătușu AR: Vegetable and fruits quality within heavy metals polluted areas in Romania. Carpath J Earth Environ Sci 2008, 3(2):115-29.
- [21]Blaga G, Filipov F, Udrescu S, Rusu I, Dumitru V: Pedologie. Academic Pres, Cluj-Napoca; 2005.
- [22]Pop N: Curs de viticultură generală. Editura Eikon, Cluj-Napoca; 2010.
- [23]Kment P, Mihaljevič M, Ettler V, Šebek O, Strnad L, Rohlová L: Differentiation of Czech wines using multielement composition – A comparison with vineyard soil. Food Chem. 2005, 91:157-65.
- [24]Provenzano MR, El Bilali H, Simeone V, Baser N, Mondelli D, Cesari G: Copper contents in grapes and wines from a Mediterranean organic vineyard. Food Chem. 2010, 122:1338-43.
- [25]Boubals D: Copper in the control of grapes in France. Vignevini 2001, 28(5):45-7.
- [26]Komárek M, Ĉadková E, Chrastný V, Bordas F, Bollinger JC: Contamination of vineyard soils with fungicides: a review of environmental and toxicological aspects. Environ Int. 2010, 36:138-51.
- [27]Adriano DC: Trace metals in terrestrial environments: biogeochemistry, bioavailability, and risks of metals. 2nd edition. Springer-Verlag, New York; 2001.
- [28]Chaignon V, Sanchez-Neira I, Herrmann P, Jaillard B, Hinsinger P: Copper bioavailability and extractability as related to chemical properties of contaminated soils from a vine-growing area. Environ Pollut. 2003, 123:229-38.
- [29]Peris M, Micò ox- C, Recatalá L, Sánchez R, Sánchez J: Heavy metal contents in horticultural crops of a representative area of the European Mediterranean region. Sci Total Environ. 2007, 378:42-8.
- [30]Ramos MC: Metals in vineyard soils of the Penedes area (NE Spain) after compost application. J Environ Manage. 2006, 78:209-15.
- [31]Arias M, Lopez E, Soto B: Copper distribution and fractionation in aggregate fractions from vineyard soils: comparison with zinc. Agrochimica. 2005, 49:60-9.
- [32]Mîrlean N, Roisenberg A, Chies JO: Metal contamination of vineyard soils in the wet subtropics (southern Brazil). Environ Pollut. 2007, 149:10-7.
- [33]Angelova VR, Ivanov AS, Braikov DM: Heavy metals (Pb, Cu, Zn and Cd) in the system soil-grapevine-grape. J Sci Food Agri. 1999, 79:713-21.
- [34]Reis AP, Menezes de Almeida L, Ferreira da Silva E, Sousa AJ, Patinha C, Fonseca EC: Assessing the geochemical inherent quality of natural soils in the Douro river basin for grapevine cultivation using data analysis and geostatistics. Geoderma. 2007, 141:370-83.
- [35]Çetin ES, Altinöz D, Tarçan E, Baydar NG: Chemical composition of grape canes. Ind Crop Prod. 2011, 34:994-8.
- [36]Ko B-G, Vogeler I, Bolan NS, Clothier B, Green S, Kennedy J: Mobility of copper, chromium and arsenic from treated timber into grapevines. Sci Total Environ. 2007, 388:35-42.
- [37]Bragança CV, Melnikov P, Zanoni LZ: Trace elements in fruit juices. Biol Trace Elem Res. 2012, 146:256-61.
- [38]Pessanha S, Carvalho ML, Becker M, von Bohlen A: Quantitative determination on heavy metals in different stages of wine production by total reflection X-ray fluorescence and energy dispersive X-ray fluorescence: comparison on two vineyards. Spectrochimica Acta Part B. 2010, 65:504-7.
- [39]Dehelean A, Măgdaș DA, Cristea G: The carbon isotopes ratio and trace metals content determinations in some Transylvanian fruit juices. AIP Conf Proceed. 2012, 1425:171.
- [40]Kristl J, Veber M, Slekovec M: The contents of Cu, Mn, Zn, Cd, Cr and Pb at different stages of the winemaking process. Acta Chim Slov. 2003, 50:123-36.
- [41]OIV. International organization of wine and vine. International oenological codex. 2013; Available on the official: http://www.oiv.int/oiv/info/enplubicationoiv#world, Accessed at 27.06.2014.
- [42]Serbula SM, Miljkovic DD, Kovacevic RM, Ilic AA: Assessment of airborne heavy metal pollution using plant parts and topsoil. Ecotox Environ Safe. 2012, 76:209-14.
- [43]Kabata-Pendias A, Pendias H: Trace elements in soils and plants. CRC Press, Boca Raton, FL; 2001.
- [44]Order of the Ministry of Waters, Forests and Environmental Protection No. 756/3 November 1997, approving the regulation on the assessment of environmental pollution, Bucharest, Romania; 1997
- [45]Szentesi A: Contributions to the study of relevant agrochemical indices of soil variability in northwest country. PhD Thesis. University of Agricultural Sciences and Veterinary Medicine, Cluj-Napoca, Romania; 2002
- [46]Weather station, within the Research Station and Agricultural Development. Livada, Satu-Mare County, Romania; 2014
- [47]Order of the Ministry of Agriculture, Food and Forests. No. 223, updated and published in Romanian Official Monitor No. 598/13 August, Bucharest, Romania; 2002.
- [48]Rusu M, Toader C, Mărghitaș M, Mihai M: Cartarea Agrochimică – Studiul Agrochimic al Solurilor. Academic Pres, Cluj-Napoca; 2010.
- [49]Davidescu D, Davidescu V, Radu L. Macroelemente în agricultură. Editura Academiei Republicii Socialiste Romania; 1988.
- [50]Lung ML: Researches regarding the content in substances with antioxidant effect, at some vine varieties from different culture areas of Romania. PhD Thesis. University of Agricultural Sciences and Veterinary Medicine, Department of Horticulture and Landscaping; Cluj-Napoca, Romania; 2012
- [51]Alvarez M, Moreno IM, Jos A, Camean AM, Gonzalez AG: Differentiation of two ‘Andalusian DO fin’ wines according to their metal content ICP-OES by using supervised pattern recogniation methods. Microchm J. 2007, 87:72-6.
- [52]Geana I, Iordache A, Ionete R, Marinescu A, Ranca A, Culea M: Geographical origin identification of Romanian wines by ICP-MS elemental analysis. Food Chem. 2013, 138:1125-34.
- [53]Galani-Nikolakaki S, Kallithrakas-Kontos N, Katsanos AA: Trace element analysis of Cretan wines and wineproducts. Sci Total Environ. 2002, 285:155-63.