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Assessment of Heavy Metal Contamination in Sugar Beet (Beta Vulgaris) Plant Along Erzincan–Erzurum Highway in Eastern Anatolia Region

Yıl 2025, Cilt: 18 Sayı: 1, 264 - 273, 28.03.2025
https://doi.org/10.18185/erzifbed.1609801

Öz

Bu çalışmada, Erzincan-Erzurum D100-25 karayolu boyunca yetişen şeker pancarı bitkisinin trafik ve tarımsal faaliyet kaynaklı arsenik (As), kadmiyum (Cd), kobalt (Co), krom (Cr) ve kurşun (Pb) gibi ağır metal kirliliğinin belirlenmesi ve şeker pancarı bitkisindeki ağır metal miktarının karayoluna olan mesafeye bağlı olarak olası değişiminin ortaya konulması amaçlanmıştır. Bu amaçla, şeker pancarı bitkileri otoyoldan 10, 20, 30, 40 ve 50 metre uzaklıktaki 5 noktadan toplanmış ve örneklerdeki ağır metal seviyeleri indüktif eşleşmiş plazma kütle spektrometresi (ICP-MS) ile belirlenmiştir. Sonuçlar, şeker pancarı bitkilerinin otoyoldan uzaklığa bağlı olarak Cr (585.5-2687.8 µg kg-1) > Co (143.4-500.7 µg kg-1) > Pb (52.1-476.7 µg kg-1) > As (9.1-112.4 µg kg-1) > Cd (4.4-65.2 µg kg-1) gibi çeşitli ağır metallerle kirlendiğini göstermiştir. Şeker pancarı bitkilerindeki ağır metal kirlilik seviyelerinin otoyola olan mesafe ile azaldığı ve mesafe ile ağır metal içeriği arasında yüksek bir korelasyon (As: 0.977; Cd: 0.944; Co: 0.995; Cr: 0.989 ve Pb: 0.999) olduğu tespit edilmiştir.

Kaynakça

  • [1] Doyi I, Essumang D, Gbeddy G, Dampare S, Kumassah E. and Saka D. (2018) Ecotoxicology and environmental safety spatial distribution, accumulation and human health risk assessment of heavy metals in soil and groundwater of the Tano Basin, Ghana, Ecotoxicology and Environmental Safety, 165, 540–546.
  • [2] Khalifa M and Gad A. (2018) Assessment of Heavy Metals Contamination in Agricultural Soil of Southwestern Nile Delta, Egypt, Soil and Sediment Contamination, 27, 619–642.
  • [3] Keshavarzi A and Kumar V. (2020) Spatial distribution and potential ecological risk assessment of heavy metals in agricultural soils of Northeastern Iran, Geology, Ecology and Landscapes, 4(2), 87–103.
  • [4] Li S, Zou D, Li L, Wu L, Liu F, Zeng X,Wang H, Zhu Y and Xiao Z. (2020) Evolution of heavy metals during thermal treatment of manure: a critical review and outlooks, Chemosphere, 247, 125962.
  • [5] Yassine, A., Taoufik, ER., Rachid, H., Driss, D., Mohamed, N., Abdelmajid, H. and Hanane, H. (2021) Assessing the contamination of trace toxic elements in the soils of sugar beet field (Beni-Mellal, Morocco), Arabian Journal of Geosciences, 14, 822.
  • [6] Qumenskou H, El Baghdadi M, Barakat A, Aquit M, Ennaji W, Karroum L.A. and Aadraoui M. (2018) Assessment of the heavy metal contamination using GIS-based approach and pollution indices in agricultural soils from Beni Amir irrigated perimeter, Tadla plain, Morocco, Arabian Journal of Geosciences, 11, 692.
  • [7] Adimalla N, Qian H and Wang H. (2019) Assessment of heavy metal (HM) contamination in agricultural soil lands in northern Telangana, India: an approach of spatial distribution and multivariate statistical analysis, Environmental Monitoring and Assessment, 191, 1–15.
  • [8] Qiuguo Z, Zou D, Zeng X, Li L, Wang A, Liu F. Wang H, Zeng Q and Wiao Z. (2021) Effect of the direct use of biomass in agricultural soil on heavy metals-activation or immobilization, Environmental Pollution, 372, 115989.
  • [9] Cai L, Xu Z, Ren M, Guo Q, Hu X, Hu G, Wan H and Peng P. (2012) Source identification of eight hazardous heavy metals in agricultural soils of Huizhou, Guangdong Province, China, Ecotoxicology and Environmental Safety, 78, 2–8.
  • [10] Jing F, Chen X, Yang Z and Guo B. (2018) Heavy metals status, transport mechanisms, sources, and factors affecting their mobility in Chinese agricultural soils, Environmental Earth Science, 77, 1–9.
  • [11] El Rasafi T, Oukarroum A, Haddioui A, Song H, Kwon E.E, Bolan N, Tack F.M.G, Sebastian A, Prasad M.N.V. and Rinklebe J. (2020) Cadmium stress in plants: a critical review of the effects, mechanisms, and tolerance strategies, Critical Reviews in Environmental Science and Technology, 52(5), 675-726.
  • [12] Ogundele DT, Adio AA and Oludele OE. (2015) Heavy Metal Concentrations in Plants and Soil along Heavy Traffic Roads in North Central Nigeria, Journal of Environmental Analytical Toxicology, 5, 6.
  • [13] Dolan LMJ, Van Boheman H, Whelan P, Akbar KF, O’Malley V, O’Leary G and Keizer PJ. (2006) Towards the sustainable development of modern road ecosystem, The Ecology of Transportation: Managing Mobility for the Environment, 10, 275-331.
  • [14] Zincirlioğlu, N., (2013) Investigation of the heavy hetal contents of some agricultural lands in the region of Manisa-Akhisar, Journal of Agricultural Faculty of Ege University, 50(3), 333-339.
  • [15] Öztürk, M, Aslan, Ş. and Demirbaş, A. (2017) Accumulation of arsenic in plants from arsenic contaminated irrigation water. Pamukkale University Journal of Engineering Sciences, 23(3), 288-296.
  • [16] Charkiewicz, A.E.,Omeljaniuk, W.J., Orywal, K., Czygier, M., Szmitkowski, M., Mroczko, B., Maślach, D. and Szpak, A. (2019) Concentration of Selected Elements and Antioxidative Potential in a Group of Males Working in the Metal Industry: Elements And Antioxidative Potential In Men. American Journal of Men's Health, 1-10.
  • [17] Leyssens, L., Vinck, B., Van Der Straeten, C., Wuyts, F. and Maes, L. (2017) Cobalt toxicity in humans-A review of the potential sources and systemic health effects, Toxicology, 387(15), 43-56.
  • [18] McNeill, L. McLean, J. Edwards, M. and Parks, J. (2012) State of the science of hexavalent chromium in drinking water, Water Res. Found, 6666(1).
  • [19] Dürüst, N., Dürüst, Y., Tuğrul, D and Zengin, M., (2004) Heavy Metal Contents of Pinus Radiata Trees of İzmit (Turkey), Asian Journal of Chemistry, 16(2), 1129-1134.
  • [20] Erzincan Provincial Directorate of Agriculture and Forestry. (2024) Erzincan Province 2024 Agricultural Data Briefing Report, Erzincan.
  • [21] Gomaa, M. A., Abdel-Nasse,r G., Maareg, M. F. and El-Kholi. M. M. (2017) Sugar beet response to nitrogen and potassium fertilization treatments in sandy soil, Journal of the Advances in Agricultural Researches (Fac. Agric. Saba Basha), 22(2), 272-287.
  • [22] Nada E, Ferjani BA, Ali R, Bechir BR, Imed M. and Makki B. (2007) Cadmium-induced growth inhibition and alteration of biochemical parameters in almond seedlings grown in solution culture, Acta Physiologiae Plantarum, 29, 57–62.
  • [23] Sagardoy R, Morales F, López-Millán AF, Abadía A. and Abadía J. (2009) Effects of zinc toxicity on sugar beet (Beta vulgaris L.) plants grown in hydroponics, Plant Biology, 11, 339–350.
  • [24] Segura FR, Franco DF, Silva JJC and Batista BL, (2020) Variations in total As and As species in rice indicate the need for crop-tracking, J Food Compos Anal. 86,103392. [25] Sternbeck J, Sjödin A and Andréasson K. (2002) Metal emissions fromroad traffic and the influence of resuspension—results from two tunnel studies, Atmospheric Environment, 36, 4735–44.
  • [26] Lough G, Schauer JJ, Park JS, Shafer MM, Deminter JT and Weinstein J. (2005) Emissions of metals associated with motor vehicle roadways, Environmental Science and Technology, 39, 826–36.
  • [27] Ulaştırma Bakanlığı. (2023) Karayolları Genel Müdürlüğü 16. Bölge Müdürlüğüne ait 2023 yılı yıllık ortalama trafik değerleri. https://www.kgm.gov.tr/SiteCollectionDocuments/KGMdocuments/Trafik/trafikhacimharitasi/2023HacimHaritalari/Bolge16.pdf
  • [28] Knezevic, M., Stankovic, D., Krstic, B., Nikolic, M. S. and Dragica, V. (2009) Concentrations of Heavy Metals in Soil and Leaves of Plant Species Paulownia Elongata S.Y. Hu and Paulownia Fortunei Hemsl, African Journal of Biotechnology, 8(20), 5422-5429.
  • [29] Ertugay, M.F., Başlar, M. and Sallan, S. (2012) Determination of contamination levels of lead (Pb) and cadmium (Cd) in wheat grown around Beyşehir-Isparta highway, Dünya Gıda, 1, 84-88.
  • [30] Özkan A. (2017) Heavy Metal Pollution in Agricultural Lands and Plants around Antakya–Cilvegözü Highway, Çukurova University Journal of the Faculty of Engineering and Architecture, 32(3), 9-18.
  • [31] Amusan A.A. Bada S.B. Salami A. (2003). Effect of traffic density on heavy metal content of soil and vegetation along roadside in Osun state, Nigeria, West African Journal of Applied Ecology, 4, 107-114.
  • [32] Jaradat Q, Masadeh A, Zaitoun M, Maitah B.M. (2005) Heavy metal contamination of soil, plant and air of scrapyard of discarded vehicle at Zarqa city, Jordan, Soil Sedimentation Contamination, 14, 449–462.
  • [33] Nanda, S., Abraham, A., (2013) Remediation of heavy metal contaminated soil, African Journal of Biotechnology, 12(21), 3099–3109.
  • [34] Rahul J. and Jain M.K. (2016) Effect of Heavy Metals on Some Selected Roadside Plants and its Morphological Study: A Review, American-Eurasian Journal of Agriculture and Environmental Science, 16(1), 146-158.
  • [35] FAO/WHO (2011) Joint FAO/WHO Food Standards Programme Codex Committee on Contaminants in Foods, 64-89.
  • [36] WHO, (1996) Permissible Limits of Heavy Metals in Soil and Plants; World Health Organization: Geneva. Switzerland.
  • [37] Sancho, D., DebaÂn, L., Campos, I., Pardo, R. and Vega, M. (2000) Determination of nickel and cobalt in refined beet sugar by adsorptive cathodic stripping voltammetry without sample pretreatment, Food Chemistry, 71, 139-145.
  • [38] Jiang, M., Wang, K., Wang, Y., Zhao, Q. and Wang, W. 2022 Technologies for the cobalt-contaminated soil remediation: A review, Science of the Total Environment, 813, 151908.
  • [39] Nagajyoti, P. C., Lee, K. D. and Sreekanth, T. V. M. (2010) Heavy metals, occurrence and toxicity for plants: a review, Environmental Chemistry Letters, 8(3), 199–216.
  • [40] Ahmed, S., Fatema-Tuj-Zohra Mahdi, M. M., Nurnabi, M., Alam, M. Z. and Choudhury, T. R. (2022) Health risk assessment for heavy metal accumulation in leafy vegetables grown on tannery effluent contaminated soil, Toxicology Reports, 9.
  • [41] Kumar, P., Dipti Kumar, S. and Singh, R. P. (2022) Severe contamination of carcinogenic heavy metals and metalloid in agroecosystems and their associated health risk assessment, Environmental Pollution, 301, 118953.

Assessment of Heavy Metal Contamination in Sugar Beet (Beta Vulgaris) Plant Along Erzincan–Erzurum Highway in Eastern Anatolia Region

Yıl 2025, Cilt: 18 Sayı: 1, 264 - 273, 28.03.2025
https://doi.org/10.18185/erzifbed.1609801

Öz

In this study, it was aimed to determine the traffic and agricultural activity-induced heavy metal including arsenic (As), cadmium (Cd), cobalt (Co), chromium (Cr) and lead (Pb) pollution of sugar beet plants (Beta Vulgaris) grown along the Erzincan-Erzurum D100-25 highway and to reveal the possible change in the amount of heavy metals in sugar beet plants depending on distance to the highway. For this purpose, sugar beet plants were collected from 5 points of 10, 20, 30, 40 and 50 meters away from the highway and heavy metal levels of the samples were determined by inductively coupled plasma mass spectrometry (ICP-MS). The results showed that sugar beet plants were contaminated with various heavy metals such as Cr (585.5-2687.8 µg kg-1) > Co (143.4-500.7 µg kg-1) > Pb (52.1-476.7 µg kg-1) > As (9.1-112.4 µg kg-1) > Cd (4.4-65.2 µg kg-1) depending on the distance from the highway. It was determined that heavy metal pollution levels in sugar beet plants decreased with distance from the motorway and there was a high correlation (As: 0.977; Cd: 0.944; Co: 0.995; Cr: 0.989 and Pb: 0.999) between distance and heavy metal content.

Kaynakça

  • [1] Doyi I, Essumang D, Gbeddy G, Dampare S, Kumassah E. and Saka D. (2018) Ecotoxicology and environmental safety spatial distribution, accumulation and human health risk assessment of heavy metals in soil and groundwater of the Tano Basin, Ghana, Ecotoxicology and Environmental Safety, 165, 540–546.
  • [2] Khalifa M and Gad A. (2018) Assessment of Heavy Metals Contamination in Agricultural Soil of Southwestern Nile Delta, Egypt, Soil and Sediment Contamination, 27, 619–642.
  • [3] Keshavarzi A and Kumar V. (2020) Spatial distribution and potential ecological risk assessment of heavy metals in agricultural soils of Northeastern Iran, Geology, Ecology and Landscapes, 4(2), 87–103.
  • [4] Li S, Zou D, Li L, Wu L, Liu F, Zeng X,Wang H, Zhu Y and Xiao Z. (2020) Evolution of heavy metals during thermal treatment of manure: a critical review and outlooks, Chemosphere, 247, 125962.
  • [5] Yassine, A., Taoufik, ER., Rachid, H., Driss, D., Mohamed, N., Abdelmajid, H. and Hanane, H. (2021) Assessing the contamination of trace toxic elements in the soils of sugar beet field (Beni-Mellal, Morocco), Arabian Journal of Geosciences, 14, 822.
  • [6] Qumenskou H, El Baghdadi M, Barakat A, Aquit M, Ennaji W, Karroum L.A. and Aadraoui M. (2018) Assessment of the heavy metal contamination using GIS-based approach and pollution indices in agricultural soils from Beni Amir irrigated perimeter, Tadla plain, Morocco, Arabian Journal of Geosciences, 11, 692.
  • [7] Adimalla N, Qian H and Wang H. (2019) Assessment of heavy metal (HM) contamination in agricultural soil lands in northern Telangana, India: an approach of spatial distribution and multivariate statistical analysis, Environmental Monitoring and Assessment, 191, 1–15.
  • [8] Qiuguo Z, Zou D, Zeng X, Li L, Wang A, Liu F. Wang H, Zeng Q and Wiao Z. (2021) Effect of the direct use of biomass in agricultural soil on heavy metals-activation or immobilization, Environmental Pollution, 372, 115989.
  • [9] Cai L, Xu Z, Ren M, Guo Q, Hu X, Hu G, Wan H and Peng P. (2012) Source identification of eight hazardous heavy metals in agricultural soils of Huizhou, Guangdong Province, China, Ecotoxicology and Environmental Safety, 78, 2–8.
  • [10] Jing F, Chen X, Yang Z and Guo B. (2018) Heavy metals status, transport mechanisms, sources, and factors affecting their mobility in Chinese agricultural soils, Environmental Earth Science, 77, 1–9.
  • [11] El Rasafi T, Oukarroum A, Haddioui A, Song H, Kwon E.E, Bolan N, Tack F.M.G, Sebastian A, Prasad M.N.V. and Rinklebe J. (2020) Cadmium stress in plants: a critical review of the effects, mechanisms, and tolerance strategies, Critical Reviews in Environmental Science and Technology, 52(5), 675-726.
  • [12] Ogundele DT, Adio AA and Oludele OE. (2015) Heavy Metal Concentrations in Plants and Soil along Heavy Traffic Roads in North Central Nigeria, Journal of Environmental Analytical Toxicology, 5, 6.
  • [13] Dolan LMJ, Van Boheman H, Whelan P, Akbar KF, O’Malley V, O’Leary G and Keizer PJ. (2006) Towards the sustainable development of modern road ecosystem, The Ecology of Transportation: Managing Mobility for the Environment, 10, 275-331.
  • [14] Zincirlioğlu, N., (2013) Investigation of the heavy hetal contents of some agricultural lands in the region of Manisa-Akhisar, Journal of Agricultural Faculty of Ege University, 50(3), 333-339.
  • [15] Öztürk, M, Aslan, Ş. and Demirbaş, A. (2017) Accumulation of arsenic in plants from arsenic contaminated irrigation water. Pamukkale University Journal of Engineering Sciences, 23(3), 288-296.
  • [16] Charkiewicz, A.E.,Omeljaniuk, W.J., Orywal, K., Czygier, M., Szmitkowski, M., Mroczko, B., Maślach, D. and Szpak, A. (2019) Concentration of Selected Elements and Antioxidative Potential in a Group of Males Working in the Metal Industry: Elements And Antioxidative Potential In Men. American Journal of Men's Health, 1-10.
  • [17] Leyssens, L., Vinck, B., Van Der Straeten, C., Wuyts, F. and Maes, L. (2017) Cobalt toxicity in humans-A review of the potential sources and systemic health effects, Toxicology, 387(15), 43-56.
  • [18] McNeill, L. McLean, J. Edwards, M. and Parks, J. (2012) State of the science of hexavalent chromium in drinking water, Water Res. Found, 6666(1).
  • [19] Dürüst, N., Dürüst, Y., Tuğrul, D and Zengin, M., (2004) Heavy Metal Contents of Pinus Radiata Trees of İzmit (Turkey), Asian Journal of Chemistry, 16(2), 1129-1134.
  • [20] Erzincan Provincial Directorate of Agriculture and Forestry. (2024) Erzincan Province 2024 Agricultural Data Briefing Report, Erzincan.
  • [21] Gomaa, M. A., Abdel-Nasse,r G., Maareg, M. F. and El-Kholi. M. M. (2017) Sugar beet response to nitrogen and potassium fertilization treatments in sandy soil, Journal of the Advances in Agricultural Researches (Fac. Agric. Saba Basha), 22(2), 272-287.
  • [22] Nada E, Ferjani BA, Ali R, Bechir BR, Imed M. and Makki B. (2007) Cadmium-induced growth inhibition and alteration of biochemical parameters in almond seedlings grown in solution culture, Acta Physiologiae Plantarum, 29, 57–62.
  • [23] Sagardoy R, Morales F, López-Millán AF, Abadía A. and Abadía J. (2009) Effects of zinc toxicity on sugar beet (Beta vulgaris L.) plants grown in hydroponics, Plant Biology, 11, 339–350.
  • [24] Segura FR, Franco DF, Silva JJC and Batista BL, (2020) Variations in total As and As species in rice indicate the need for crop-tracking, J Food Compos Anal. 86,103392. [25] Sternbeck J, Sjödin A and Andréasson K. (2002) Metal emissions fromroad traffic and the influence of resuspension—results from two tunnel studies, Atmospheric Environment, 36, 4735–44.
  • [26] Lough G, Schauer JJ, Park JS, Shafer MM, Deminter JT and Weinstein J. (2005) Emissions of metals associated with motor vehicle roadways, Environmental Science and Technology, 39, 826–36.
  • [27] Ulaştırma Bakanlığı. (2023) Karayolları Genel Müdürlüğü 16. Bölge Müdürlüğüne ait 2023 yılı yıllık ortalama trafik değerleri. https://www.kgm.gov.tr/SiteCollectionDocuments/KGMdocuments/Trafik/trafikhacimharitasi/2023HacimHaritalari/Bolge16.pdf
  • [28] Knezevic, M., Stankovic, D., Krstic, B., Nikolic, M. S. and Dragica, V. (2009) Concentrations of Heavy Metals in Soil and Leaves of Plant Species Paulownia Elongata S.Y. Hu and Paulownia Fortunei Hemsl, African Journal of Biotechnology, 8(20), 5422-5429.
  • [29] Ertugay, M.F., Başlar, M. and Sallan, S. (2012) Determination of contamination levels of lead (Pb) and cadmium (Cd) in wheat grown around Beyşehir-Isparta highway, Dünya Gıda, 1, 84-88.
  • [30] Özkan A. (2017) Heavy Metal Pollution in Agricultural Lands and Plants around Antakya–Cilvegözü Highway, Çukurova University Journal of the Faculty of Engineering and Architecture, 32(3), 9-18.
  • [31] Amusan A.A. Bada S.B. Salami A. (2003). Effect of traffic density on heavy metal content of soil and vegetation along roadside in Osun state, Nigeria, West African Journal of Applied Ecology, 4, 107-114.
  • [32] Jaradat Q, Masadeh A, Zaitoun M, Maitah B.M. (2005) Heavy metal contamination of soil, plant and air of scrapyard of discarded vehicle at Zarqa city, Jordan, Soil Sedimentation Contamination, 14, 449–462.
  • [33] Nanda, S., Abraham, A., (2013) Remediation of heavy metal contaminated soil, African Journal of Biotechnology, 12(21), 3099–3109.
  • [34] Rahul J. and Jain M.K. (2016) Effect of Heavy Metals on Some Selected Roadside Plants and its Morphological Study: A Review, American-Eurasian Journal of Agriculture and Environmental Science, 16(1), 146-158.
  • [35] FAO/WHO (2011) Joint FAO/WHO Food Standards Programme Codex Committee on Contaminants in Foods, 64-89.
  • [36] WHO, (1996) Permissible Limits of Heavy Metals in Soil and Plants; World Health Organization: Geneva. Switzerland.
  • [37] Sancho, D., DebaÂn, L., Campos, I., Pardo, R. and Vega, M. (2000) Determination of nickel and cobalt in refined beet sugar by adsorptive cathodic stripping voltammetry without sample pretreatment, Food Chemistry, 71, 139-145.
  • [38] Jiang, M., Wang, K., Wang, Y., Zhao, Q. and Wang, W. 2022 Technologies for the cobalt-contaminated soil remediation: A review, Science of the Total Environment, 813, 151908.
  • [39] Nagajyoti, P. C., Lee, K. D. and Sreekanth, T. V. M. (2010) Heavy metals, occurrence and toxicity for plants: a review, Environmental Chemistry Letters, 8(3), 199–216.
  • [40] Ahmed, S., Fatema-Tuj-Zohra Mahdi, M. M., Nurnabi, M., Alam, M. Z. and Choudhury, T. R. (2022) Health risk assessment for heavy metal accumulation in leafy vegetables grown on tannery effluent contaminated soil, Toxicology Reports, 9.
  • [41] Kumar, P., Dipti Kumar, S. and Singh, R. P. (2022) Severe contamination of carcinogenic heavy metals and metalloid in agroecosystems and their associated health risk assessment, Environmental Pollution, 301, 118953.
Toplam 40 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Enstrümantal Yöntemler, Gıda Mühendisliği
Bölüm Makaleler
Yazarlar

Mustafa Fatih Ertugay 0000-0002-0795-9631

Neşe Ertugay 0000-0003-2169-8324

Kemal Volkan Özdokur 0000-0002-9540-7203

Erken Görünüm Tarihi 26 Mart 2025
Yayımlanma Tarihi 28 Mart 2025
Gönderilme Tarihi 2 Ocak 2025
Kabul Tarihi 16 Mart 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 18 Sayı: 1

Kaynak Göster

APA Ertugay, M. F., Ertugay, N., & Özdokur, K. V. (2025). Assessment of Heavy Metal Contamination in Sugar Beet (Beta Vulgaris) Plant Along Erzincan–Erzurum Highway in Eastern Anatolia Region. Erzincan University Journal of Science and Technology, 18(1), 264-273. https://doi.org/10.18185/erzifbed.1609801