Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2022, , 94 - 102, 29.12.2022
https://doi.org/10.51435/turkjac.1190831

Öz

Kaynakça

  • [1] Vural, A. and Aydal, D. (2020) Soil geochemistry study of the listvenite area of Ayvacik (Çanakkale, Turkey). Caspian Journal of Environmental Sciences. 18 (3), 205–215.
  • [2] Vural, A. (2006) Bayramiç (Çanakkale) ve Çevresindeki Altın Zenginleşmelerinin Araştırılması, Ankara Üniversitesi, 2006.
  • [3] Murchission, R., de Verneuil, E., and Von Seyserling, A. (1845) The geology of Russia in Europe and the Ural Mountains. Geology. John Murray, London, UK.
  • [4] Vural, A. and Aydal, D. (2016) Soil geochemical prospecting at listvenite area, Bayramiç, (Çanakkale Turkey). in: 34th National and the 2nd International Geosciences Congress, Tehran, Iran.
  • [5] Koç, Ş. and Kadioğlu, Y. (1996) Mineralogy, geochemistry and precious metal content of Karacakaya listwaenites, Turkey. Ofioliti. 21 125–130.
  • [6] Aydal, D. (1990) Gold-bearing listwaenites in the Arac Massif, Kastamonu, Turkey. Terra Nova. 2 43–52.
  • [7] Hinsken, T., Bröcker, M., Strauss, H., and Bulle, F. (2017) Geochemical, isotopic and geochronological characterization of listvenite from the Upper Unit on Tinos, Cyclades, Greece. Lithos. 282–283 281–297.
  • [8] Zoheir, B. and Lehmann, B. (2011) Listvenite-lode association at the Barramiya gold mine, Eastern Desert, Egypt. Ore Geology Reviews. 39 (1–2), 101–115.
  • [9] Frost, B.R., Evans, K.A., Swapp, S.M., Beard, J.S., and Mothersole, F.E. (2013) The process of serpentinization in dunite from new caledonia. Lithos. 178 24–39.
  • [10] Yusuf, M., Kumar, M., Khan, M.A., Sillanpa, M., and Arafat, H. (2019) Hydrothermal listvenitization and associated mineralizations in Zagros Ophiolites: Implications for mineral exploration in Iraqi Kurdistan. Journal of Geochemical Exploration. 102036.
  • [11] Kiliç, A.D. and İnceöz, M. (2015) Mineralogical, geochemical and isotopic effect of silica in ultramaphic systems, eastern Anatolian Turkey. Geochemistry International. 53 (4), 369–382.
  • [12] Belogub, E. V., Melekestseva, I.Y., Novoselov, K.A., Zabotina, M. V., Tret’yakov, G.A., Zaykov, V. V., et al. (2017) Listvenite-related gold deposits of the South Urals (Russia): A review. Ore Geology Reviews. 85 247–270.
  • [13] Yang, Y., Zhao, L., Zheng, R., and Xu, Q. (2019) Evolution of the early Paleozoic Hongguleleng–Balkybey Ocean: Evidence from the Hebukesaier ophiolitic mélange in the northern West Junggar, NW China. Lithos. 324–325 519–536.
  • [14] Vural, A. and Kaygusuz, A. (2022) On Heavy Metal Pollution Associated with Listvenite Developments: Ayvacık-Bayramiç/ Çanakkale-West Türkiye). in: 8th International Zeugma Conference on Scientific Researches, Gaziantep, Türkiyepp. 492–501.
  • [15] Vural, A. (2015) Contamination assessment of heavy metals associated with an alteration area: Demirören Gumushane, NE Turkey. Journal of the Geological Society of India. 86 (2), 215–222.
  • [16] Vural, A. (2018) Demirören (Gümüşhane) ve Çevre Kayaçlarının Element İçeriklerinin Tıbbi Jeoloji Açısından İncelenmesi. in: 71. Türkiye Jeoloji Kurultayı, Türkiye Jeoloji Kurultayı, Ankara, Türkiyepp. 885–886.
  • [17] Vural, A. and Şahin, E. (2012) Gümüşhane Şehir Merkezinden Geçen Karayolunda Ağır Metal Kirliliğine Ait İlk Bulgular. Gümüşhane Üniversitesi, Fen Bilimleri Enstitüsü Dergisi. 2 (1), 21–35.
  • [18] Vural, A. and Kaya, A. (2021) Arzular-Yitirmez Maden/Alterasyon Sahalarının (Gümüşhane) Doğal (226Ra, 232Th ve 40K) ve Yapay (137Cs) Radyoaktivitelerinin Araştırılması. in: 1st International Conference of Physics, Ankara, Türkiyepp. 315–327.
  • [19] Vural, A. (2015) Biogeochemical characteristics of Rosa canina grown in hydrothermally contaminated soils of the Gümüşhane Province, Northeast Turkey. Environmental Monitoring and Assessment. 187 (8), 486.
  • [20] Sungur, A., Vural, A., Gundogdu, A., and Soylak, M. (2020) Effect of antimonite mineralization area on heavy metal contents and geochemical fractions of agricultural soils in Gümüşhane Province, Turkey. Catena. 184 (January 2019), 104255.
  • [21] Vural, A. (2015) Assessment of metal pollution associated with an alteration area: Old Gümüşhane, NE Black Sea. Environmental Science and Pollution Research. 22 (5), 3219–3228.
  • [22] Gündoğdu, A., Vural, A., Bulut, V.N., Baltacı, C., and Soylak, M. (2018) Gümüşhane’deki Bazı Yüzey Sularının Su Kalitesi Açısından İzlenmesi ve Değerlendirilmesi. in: International Trace Analysis Congress (ITAC 2018/ES-AN 2018), 8 Sivas-Turkeyp. 54.
  • [23] Vural, A., Gündoğdu, A., Saka, F., Baltaci, C., Bulut, V.N., Alemdağ, S., et al. (2018) Regional monitoring and assessment of water quality surface waters in Arzular-Kabaköy Mineralization/alteration area in Gümüşhane (NE Turkey). in: 36th National and the 3rd International Geosciences Congress, Tehran, Iran.
  • [24] Bulut, V.N., Gündoğdu, A., Vural, A., Baltacı, C., and Soylak, M. (2018) Gümüşhane Harşit Çayı’nın Florür İçeriğinin Jeolojik ve Antropojenik Olarak İncelenmesi. in: International Trace Analysis Congress (ITAC 2018/ES-AN 2018), Sivas, Türkiyep. 74.
  • [25] Vural, A. and Gündoğdu, A. (2020) High-fluoride risk and toxicity in surface waters in Gümüşhane-Gökdere valley drainage network (NE Turkey). Journal of Engineering Research and Applied Science. 9 (1), 1323–1334.
  • [26] Vural, A. and Gündoğdu, A. (2014) Investigation of Heavy Metal Contamination In Harşit Brook (Gümüşhane) Arising from (Abondoned) Mining Sites in the Region: Preliminary Findings. in: International Environmental Sciences Symposium of Van, Van, Türkiyepp. 170–171.
  • [27] Vural, A., Gundogdu, A., Akpinar, I., and Baltaci, C. (2017) Environmental impact of Gümüşhane City, Turkey, waste area in terms of heavy metal pollution. Natural Hazards. 88 (2), 867–890.
  • [28] Sungur, A., Vural, A., Gündoğdu, A., and Soylak, M. (2018) Gümüştuğ Köyü (Torul-Gümüşhane) Tarım Topraklarında Manganın Jeokimyasal Karakterizasyonu. in: International Trace Analysis Congress (ITAC 2018/ES-AN 2018), Sivas, Türkiyep. 231.
  • [29] Vural, A. and Çiftçi, A. (2021) An Analysis of Some Concepts Related to Environmental Issues and Development by N-Gram. Euroasia Journal of Social Sciences & Humanities. 8 (19), 18–28.
  • [30] Çiftçi, A., Vural, A., and Ural, M.N. (2021) Analysis of Some Concepts Related to the Environment and Health with the N-Gram Method. Journal of International Health Sciences and Management. 7 (13), 47–54.
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  • [35] Vural, A. and Kaygusuz, A. (2021) Kuşçayırı Plütonunun Petrografisi, Jeokimyası ve Petrolojisi (KB Türkiye). in: 4th International European Conference on Interdisciplinary Scientific Research, Warsaw, Polandpp. 51–69.
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Heavy Metal Pollution from Listvenitization: In Case of Alakeçi (Bayramiç-Çanakkale/West Türkiye)

Yıl 2022, , 94 - 102, 29.12.2022
https://doi.org/10.51435/turkjac.1190831

Öz

This study aimed to investigate the risk of element/heavy metal pollution caused by listvenitization. In this context, the heavy metal pollution risk of listvenite-derived soils in the region where listvenitized ultrabasic rocks are present as a result of hydrothermal alterations in the vicinity of Alakeçi (Bayramiç Çanakkale/Western Türkiye) was investigated with pollution index, geoaccumulation index and integrated pollution risk parameters. For this purpose, Cu, Zn, Pb element concentrations of 350 soil samples collected from the field were determined, and Pollution Index (PI) and Geo-accumulation Index (Igeo) parameters for each element and Integrated Pollution Index (IPI) parameters for each sampling point were calculated. In addition, distribution maps of PI, Igeo and IPI parameters were plotted. When the site is considered in terms of IPI parameter, it has been determined that the site has medium and high pollution risk. When the field is considered in terms of PI and Igeo parameters, a remarkable level of pollution has been detected in the field, especially by Ni, Co and As elements. When the distribution maps of the PI, Igeo and IPI parameters are examined, it has been determined that the pollution risk is higher than the other areas, especially in the areas where hydrothermal alteration is intense and in the tectonic line areas. Although listvenitizations and listvenite zones are important target areas especially for epithermal gold mineralizations, this study has shown that listvenitization areas are also areas at risk of heavy metal pollution. Therefore, listvenitization zones are areas that should be investigated in terms of heavy metal pollution risk as well as epithermal gold mineralization potentials.

Kaynakça

  • [1] Vural, A. and Aydal, D. (2020) Soil geochemistry study of the listvenite area of Ayvacik (Çanakkale, Turkey). Caspian Journal of Environmental Sciences. 18 (3), 205–215.
  • [2] Vural, A. (2006) Bayramiç (Çanakkale) ve Çevresindeki Altın Zenginleşmelerinin Araştırılması, Ankara Üniversitesi, 2006.
  • [3] Murchission, R., de Verneuil, E., and Von Seyserling, A. (1845) The geology of Russia in Europe and the Ural Mountains. Geology. John Murray, London, UK.
  • [4] Vural, A. and Aydal, D. (2016) Soil geochemical prospecting at listvenite area, Bayramiç, (Çanakkale Turkey). in: 34th National and the 2nd International Geosciences Congress, Tehran, Iran.
  • [5] Koç, Ş. and Kadioğlu, Y. (1996) Mineralogy, geochemistry and precious metal content of Karacakaya listwaenites, Turkey. Ofioliti. 21 125–130.
  • [6] Aydal, D. (1990) Gold-bearing listwaenites in the Arac Massif, Kastamonu, Turkey. Terra Nova. 2 43–52.
  • [7] Hinsken, T., Bröcker, M., Strauss, H., and Bulle, F. (2017) Geochemical, isotopic and geochronological characterization of listvenite from the Upper Unit on Tinos, Cyclades, Greece. Lithos. 282–283 281–297.
  • [8] Zoheir, B. and Lehmann, B. (2011) Listvenite-lode association at the Barramiya gold mine, Eastern Desert, Egypt. Ore Geology Reviews. 39 (1–2), 101–115.
  • [9] Frost, B.R., Evans, K.A., Swapp, S.M., Beard, J.S., and Mothersole, F.E. (2013) The process of serpentinization in dunite from new caledonia. Lithos. 178 24–39.
  • [10] Yusuf, M., Kumar, M., Khan, M.A., Sillanpa, M., and Arafat, H. (2019) Hydrothermal listvenitization and associated mineralizations in Zagros Ophiolites: Implications for mineral exploration in Iraqi Kurdistan. Journal of Geochemical Exploration. 102036.
  • [11] Kiliç, A.D. and İnceöz, M. (2015) Mineralogical, geochemical and isotopic effect of silica in ultramaphic systems, eastern Anatolian Turkey. Geochemistry International. 53 (4), 369–382.
  • [12] Belogub, E. V., Melekestseva, I.Y., Novoselov, K.A., Zabotina, M. V., Tret’yakov, G.A., Zaykov, V. V., et al. (2017) Listvenite-related gold deposits of the South Urals (Russia): A review. Ore Geology Reviews. 85 247–270.
  • [13] Yang, Y., Zhao, L., Zheng, R., and Xu, Q. (2019) Evolution of the early Paleozoic Hongguleleng–Balkybey Ocean: Evidence from the Hebukesaier ophiolitic mélange in the northern West Junggar, NW China. Lithos. 324–325 519–536.
  • [14] Vural, A. and Kaygusuz, A. (2022) On Heavy Metal Pollution Associated with Listvenite Developments: Ayvacık-Bayramiç/ Çanakkale-West Türkiye). in: 8th International Zeugma Conference on Scientific Researches, Gaziantep, Türkiyepp. 492–501.
  • [15] Vural, A. (2015) Contamination assessment of heavy metals associated with an alteration area: Demirören Gumushane, NE Turkey. Journal of the Geological Society of India. 86 (2), 215–222.
  • [16] Vural, A. (2018) Demirören (Gümüşhane) ve Çevre Kayaçlarının Element İçeriklerinin Tıbbi Jeoloji Açısından İncelenmesi. in: 71. Türkiye Jeoloji Kurultayı, Türkiye Jeoloji Kurultayı, Ankara, Türkiyepp. 885–886.
  • [17] Vural, A. and Şahin, E. (2012) Gümüşhane Şehir Merkezinden Geçen Karayolunda Ağır Metal Kirliliğine Ait İlk Bulgular. Gümüşhane Üniversitesi, Fen Bilimleri Enstitüsü Dergisi. 2 (1), 21–35.
  • [18] Vural, A. and Kaya, A. (2021) Arzular-Yitirmez Maden/Alterasyon Sahalarının (Gümüşhane) Doğal (226Ra, 232Th ve 40K) ve Yapay (137Cs) Radyoaktivitelerinin Araştırılması. in: 1st International Conference of Physics, Ankara, Türkiyepp. 315–327.
  • [19] Vural, A. (2015) Biogeochemical characteristics of Rosa canina grown in hydrothermally contaminated soils of the Gümüşhane Province, Northeast Turkey. Environmental Monitoring and Assessment. 187 (8), 486.
  • [20] Sungur, A., Vural, A., Gundogdu, A., and Soylak, M. (2020) Effect of antimonite mineralization area on heavy metal contents and geochemical fractions of agricultural soils in Gümüşhane Province, Turkey. Catena. 184 (January 2019), 104255.
  • [21] Vural, A. (2015) Assessment of metal pollution associated with an alteration area: Old Gümüşhane, NE Black Sea. Environmental Science and Pollution Research. 22 (5), 3219–3228.
  • [22] Gündoğdu, A., Vural, A., Bulut, V.N., Baltacı, C., and Soylak, M. (2018) Gümüşhane’deki Bazı Yüzey Sularının Su Kalitesi Açısından İzlenmesi ve Değerlendirilmesi. in: International Trace Analysis Congress (ITAC 2018/ES-AN 2018), 8 Sivas-Turkeyp. 54.
  • [23] Vural, A., Gündoğdu, A., Saka, F., Baltaci, C., Bulut, V.N., Alemdağ, S., et al. (2018) Regional monitoring and assessment of water quality surface waters in Arzular-Kabaköy Mineralization/alteration area in Gümüşhane (NE Turkey). in: 36th National and the 3rd International Geosciences Congress, Tehran, Iran.
  • [24] Bulut, V.N., Gündoğdu, A., Vural, A., Baltacı, C., and Soylak, M. (2018) Gümüşhane Harşit Çayı’nın Florür İçeriğinin Jeolojik ve Antropojenik Olarak İncelenmesi. in: International Trace Analysis Congress (ITAC 2018/ES-AN 2018), Sivas, Türkiyep. 74.
  • [25] Vural, A. and Gündoğdu, A. (2020) High-fluoride risk and toxicity in surface waters in Gümüşhane-Gökdere valley drainage network (NE Turkey). Journal of Engineering Research and Applied Science. 9 (1), 1323–1334.
  • [26] Vural, A. and Gündoğdu, A. (2014) Investigation of Heavy Metal Contamination In Harşit Brook (Gümüşhane) Arising from (Abondoned) Mining Sites in the Region: Preliminary Findings. in: International Environmental Sciences Symposium of Van, Van, Türkiyepp. 170–171.
  • [27] Vural, A., Gundogdu, A., Akpinar, I., and Baltaci, C. (2017) Environmental impact of Gümüşhane City, Turkey, waste area in terms of heavy metal pollution. Natural Hazards. 88 (2), 867–890.
  • [28] Sungur, A., Vural, A., Gündoğdu, A., and Soylak, M. (2018) Gümüştuğ Köyü (Torul-Gümüşhane) Tarım Topraklarında Manganın Jeokimyasal Karakterizasyonu. in: International Trace Analysis Congress (ITAC 2018/ES-AN 2018), Sivas, Türkiyep. 231.
  • [29] Vural, A. and Çiftçi, A. (2021) An Analysis of Some Concepts Related to Environmental Issues and Development by N-Gram. Euroasia Journal of Social Sciences & Humanities. 8 (19), 18–28.
  • [30] Çiftçi, A., Vural, A., and Ural, M.N. (2021) Analysis of Some Concepts Related to the Environment and Health with the N-Gram Method. Journal of International Health Sciences and Management. 7 (13), 47–54.
  • [31] Vural, A. and Aydal, D. (2016) Bayramiç ve Yakın Çevresindeki Altın Zenginleşmelerinin Araştırılması. in: 69. Türkiye Jeoloji Kurultayı, Türkiye Jeoloji Kurultayı, Ankara, Türkiyepp. 376–377.
  • [32] Vural, A. and Aydal, D. (2016) Using soil geochemistry for gold exploration:Ayvacık (Çanakkale-Northwest Turkey). in: 34th National and the 2nd International Geosciences Congress, Tehran, Iran.
  • [33] Vural, A. and Aydal, D. (2018) Kısacık-Ayvacık (Çanakkale) Altın Cevherlesmesinin Jeolojik, Mineralojik, Jeokimyasal Açıdan İncelenmesi. in: 8. Jeokimya Sempozyumu, pp. 121–122.
  • [34] Vural, A. and Aydal, D. (2020) Determination of Lithological Differences and Hydrothermal Alteration Areas by Remote Sensing Studies: Kısacık (Ayvacık-Çanakkale, Biga Peninsula, Turkey). Journal of Engineering Research and Applied Science. 9 (1), 1341–1357.
  • [35] Vural, A. and Kaygusuz, A. (2021) Kuşçayırı Plütonunun Petrografisi, Jeokimyası ve Petrolojisi (KB Türkiye). in: 4th International European Conference on Interdisciplinary Scientific Research, Warsaw, Polandpp. 51–69.
  • [36] Vural, A. and Kaygusuz, A. (2022) Yumrudağı Volkaniklerinin (Çanakkale/Türkıye) Genel Jeolojisi, Petrografisi ve Jeokimyası. in: Rumeli 1st International Scientific Research Conference On Sustainable EngineeringAnd Technology, İstanbul, Türkiyepp. 352–363.
  • [37] Okay, A.İ., Siyako, M., and Burkan, K.A. (1990) Geology and tectonic of the Biga Peninsula. Turk. Assoc. Pet. Geol. Bull. 2 83–121.
  • [38] Aydal, D., Vural, A., Taşdelen Uslu, İ., and Aydal, E.G. (2006) Investigation of Kuşçayırı-Kartaldağı (Bayramiç-Çanakkale) mineral enhancement region by Crosta technique with LANDSAT 7 ETM+ bands. in: Technical University of İstanbul, First Remote Sensing Workshop and Panel, İstanbul, Türkiyep. 11.
  • [39] Aydal, D., Vural, A., Uslu (Taşdelen), İ., and Aydal, E.G. (2006) Kuşçayırı-Kartaldağı (Bayramiç-Çanakkale) cevherleşme bölgesinin LANDSAT 7 ETM+ kullanılarak Crosta tekniği ile incelenmesi. in: 1.Uzaktan Algılama-CBS Çalıştay ve Paneli, p. 11.
  • [40] Aydal, D., Vural, A., Taşdelen Uslu, İ., and Aydal, E.G. (2006) Crosta Technique Application on Bayramic (Alakeçi-Kisacik) Mineralized Area by Using Landsat 7 TM Data. in: 30th Anniversary Fikret Kurtman Geology Symposium, Konya, Türkiyep. 195.
  • [41] Aydal, D., Vural, A., Taşdelen Uslu, İ., and Aydal, E.G. (2007) Crosta Technique Application on Bayramiç (Alakeçi-Kısacık) Mineralized Area by Using Landsat 7 Etm+ Data. Journal of Engineering and Architecture Faculty of Selcuk University. 22 (3), 29–40.
  • [42] Vural, A., Aydal, D., and Akpınar, İ. (2011) A low sulphur epithermal gold mineralization in Kisacik-Ayvacik area (Çanakkale-Turkey). in: Goldschmidt Conference Abstracts, Prague, Czech Republicp. 2105.
  • [43] Rose, A.W., Hawkes, H., and Webs, J. (1991) Geochemistry in Mineral Exploration. 2nd ed. Academic Press, Londan, England.
  • [44] Skoog, D., West, D., Holler, F., and Crouch, S. (2004) Fundamentals of analytical chemistry. 8th ed. Brooks/Cole-Thomson Learning, Belmont, CA 94002, USA.
  • [45] Vural, A. (2013) Assessment of Heavy Metal Accumulation in the Roadside Soil and Plants of Robinia pseudoacacia, in Gumushane, Northeastern Turkey. Ekoloji. 22 (89), 1–10.
  • [46] Vural, A. and Çiçek, B. (2019) Heavy Metal Pollution in Developed Soils on Mineralization Zone. in: 3rd International Conference on Advanced Engineering Technologies, 3rd International Conference on Advanced Engineering Technologies (ICADET), Bayburt, Türkiye.
  • [47] Chen, C.W., Kao, C.M., Chen, C.F., and Dong, C. Di (2007) Distribution and accumulation of heavy metals in the sediments of Kaohsiung Harbor, Taiwan. Chemosphere. 66 (8), 1431–1440.
  • [48] Vural, A. (2015) Hidrotermal Olarak Kirlenmiş Topraklarda Yetişen Meşe Ağaçlarının Element Biriktirme Karakteri: Gümüşhane, Kuzeydoğu Türkiye. in: 2. Tıbbi Jeoloji Sempozyumu, Konya, Türkiyepp. 113–114.
  • [49] Vural, A. (2015) Alterasyon Sahalarının Potansiyel Ağır Metal Kirliliği Riski: Canca-Gümüşhane. in: 2. Tıbbi Jeoloji Sempozyumu, Konya, Türkiyepp. 105–108.
  • [50] Vural, F.B. and Vural, A. (2014) Phytoremediation of Solid Waste Storage Areas:Case of Gümüşhane. in: International Environmental Sciences Symposium of Van, Van, Türkiyepp. 178–179.
  • [51] Rudnick, R. and Gao, S. (2010) Composition of the Continental Crust. in: H. Holland, K. Turekian (Eds.), Readings of Treatise on Geochemistry, 2nd ed., Elsevier, Londan, England.
  • [52] Muller, G. (1969) Index of geoaccumulation in sediments of the Rhine River. Geological Journal. 2 108–118.
  • [53] Krige, D.G. (1951) A stastical Approach to Some Basic Mine Valuation Problems on the Witwatersrand. Journal of the Chemical Metallurgical & Society of South Mining Africa. 52 (6), 119–139.
  • [54] Matheron, G. (1963) Principles of geostatistics. Economic Geology. 58 (8), 1246–1266. [55] Matheron, G. (1971) The Theory of Regionalized Variables and Its Applications. École national supérieure des mines, Paris.
  • [56] Akçay, M., Lermi, A., and Van, A. (1998) Biogeochemical exploration for massive sulphide deposits in areas of dense vegetation: An orientation survey around the Kankoy Deposit. Journal of Geochemical Exploration. 63 (3), 173–187. [57] Aǧca, N. (2015) Spatial distribution of heavy metal content in soils around an industrial area in Southern Turkey. Arabian Journal of Geosciences. 8 (2), 1111–1123.
  • [58] Patinha, C., Correia, E., Ferreira da Silva, E., Simões, A., Reis, P., Morgado, F., et al. (2008) Definition of geochemical patterns on the soil of Paul de Arzila using correspondence analysis. Journal of Geochemical Exploration. 98 (1–2), 34–42.
  • [59] Buttafuoco, G., Tallarico, A., Falcone, G., and Guagliardi, I. (2010) A geostatistical approach for mapping and uncertainty assessment of geogenic radon gas in soil in an area of southern Italy. Environmental Earth Sciences. 61 (3), 491–505.
  • [60] Basaran, M., Erpul, G., Ozcan, A.U., Saygin, D.S., Kibar, M., Bayramin, I., et al. (2011) Spatial information of soil hydraulic conductivity and performance of cokriging over kriging in a semi-arid basin scale. Environmental Earth Sciences. 63 (4), 827–838.
  • [61] Webster, R. and Oliver, M.A. (2007) Geostatistics for Environmental Scientists. 2nd ed. Jhon Wiley&Sons Ltd., .
  • [62] Hengl, T. (2007) A Practical Guide to Geostatistical Mapping of Environmental Variables. .
  • [63] Vural, A. and Erdoğan, M. (2014) Eski Gümüşhane Kırkpavli Alterasyon Sahasında Toprak Jeokimyası. Gümüşhane Üniversitesi Fen Bilimleri Enstitüsü Dergisi. 4 (1), 1–15.
  • [64] Vural, A. and Çiçek, B. (2020) Cevherleşme Sahasında Gelişmiş Topraklardaki Ağır Metal Kirliliği. Düzce Üniversitesi Bilim ve Teknoloji Dergisi. 8 1533–1547.
  • [65] Chaplot, V., Darboux, F., Bourennane, H., Leguédois, S., Silvera, N., and Phachomphon, K. (2006) Accuracy of interpolation techniques for the derivation of digital elevation models in relation to landform types and data density. Geomorphology. 77 (1–2), 126–141.
Toplam 63 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Analitik Kimya
Bölüm Research Articles
Yazarlar

Alaaddin Vural 0000-0002-0446-828X

Yayımlanma Tarihi 29 Aralık 2022
Gönderilme Tarihi 18 Ekim 2022
Kabul Tarihi 21 Kasım 2022
Yayımlandığı Sayı Yıl 2022

Kaynak Göster

APA Vural, A. (2022). Heavy Metal Pollution from Listvenitization: In Case of Alakeçi (Bayramiç-Çanakkale/West Türkiye). Turkish Journal of Analytical Chemistry, 4(2), 94-102. https://doi.org/10.51435/turkjac.1190831
AMA Vural A. Heavy Metal Pollution from Listvenitization: In Case of Alakeçi (Bayramiç-Çanakkale/West Türkiye). TurkJAC. Aralık 2022;4(2):94-102. doi:10.51435/turkjac.1190831
Chicago Vural, Alaaddin. “Heavy Metal Pollution from Listvenitization: In Case of Alakeçi (Bayramiç-Çanakkale/West Türkiye)”. Turkish Journal of Analytical Chemistry 4, sy. 2 (Aralık 2022): 94-102. https://doi.org/10.51435/turkjac.1190831.
EndNote Vural A (01 Aralık 2022) Heavy Metal Pollution from Listvenitization: In Case of Alakeçi (Bayramiç-Çanakkale/West Türkiye). Turkish Journal of Analytical Chemistry 4 2 94–102.
IEEE A. Vural, “Heavy Metal Pollution from Listvenitization: In Case of Alakeçi (Bayramiç-Çanakkale/West Türkiye)”, TurkJAC, c. 4, sy. 2, ss. 94–102, 2022, doi: 10.51435/turkjac.1190831.
ISNAD Vural, Alaaddin. “Heavy Metal Pollution from Listvenitization: In Case of Alakeçi (Bayramiç-Çanakkale/West Türkiye)”. Turkish Journal of Analytical Chemistry 4/2 (Aralık 2022), 94-102. https://doi.org/10.51435/turkjac.1190831.
JAMA Vural A. Heavy Metal Pollution from Listvenitization: In Case of Alakeçi (Bayramiç-Çanakkale/West Türkiye). TurkJAC. 2022;4:94–102.
MLA Vural, Alaaddin. “Heavy Metal Pollution from Listvenitization: In Case of Alakeçi (Bayramiç-Çanakkale/West Türkiye)”. Turkish Journal of Analytical Chemistry, c. 4, sy. 2, 2022, ss. 94-102, doi:10.51435/turkjac.1190831.
Vancouver Vural A. Heavy Metal Pollution from Listvenitization: In Case of Alakeçi (Bayramiç-Çanakkale/West Türkiye). TurkJAC. 2022;4(2):94-102.



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