EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.)

Yıl: 2017 Cilt: 5 Sayı: 1 Sayfa Aralığı: 29 - 34 Metin Dili: Türkçe İndeks Tarihi: 29-07-2022

EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.)

Öz:
Bu çalışmada farklı vermikompost dozlarının [0 % (VC1), 3 % (VC2), 5 % (VC3), 7 % (VC4)], salatalık (Cucumis sativus L.) bitkisindeki metal konsantrasyonlarına etkisi araştırılmıştır. Vermikompost dozu artışına bağlı olarak salatalıklardaki Cr, Co, Cd, Ni ve Pb konsantrasyonlarında düşüş tespit edilmiştir. Kontrol uygulamasındaki VC1 Cr 65.94 mg/kg olarak tespit edilmiş, ancak %7 (VC4) vermikompost uygulanan salatalıkta bu miktar 20.58 mg/kg'a düşmüştür. VC1-VC4 uygulamalarına tabi tutulan salatalık bitkilerinde Co, Cd, Ni ve Pb miktarları sırasıyla 7.66-2.09, 1.05-0.71, 47.93- 14.57 ve 15.68- 5.01 mg/kg olarak değişmiştir. Elde edilen sonuçlar, vermikompost, bitki kalitesini korumak ve bitkideki ağır metal miktarını düşürmek amacı güden gübreleme programlarında kullanılabileceğini göstermektedir. Diğer yandan ise, vermikompostun aynı zamanda toprak verimliliğini sürdürebilmek için de kullanılması mümkündür
Anahtar Kelime:

Konular: Biyoloji

EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.)

Öz:
In this study, the effects of the increasing doses of vermicompost implementation [0 % (VC1), 3 % (VC2), 5 % (VC3), 7 % (VC4)] on some heavy metal contents of cucumber (Cucumis sativus L.) have been investigated. With the increasing doses of vermicompost implementation, Cr, Co, Cd, Ni and Pb contents of cucumber decreased. While the Cr content of cucumber is 65.94 mg/kg with the implementation of VC1 (control) dose, it decreases to 20.58 mg/kg with VC4 dose. The plant’s Co, Cd, Ni and Pb contents decreases with the increasing doses of vermicompost implementation, as well, VC1-VC4 doses of vermicompost are determined for Co, Cd, Ni and also Pb as 7.66-2.09, 1.05-0.71, 47.93- 14.57 and also 15.68- 5.01 mg/kg respectively. These results revealed that vermicompost can be used as a fertilization program to protect the plant’s quality and to eliminate its heavy metal contents. On the other hand, the use of organic fertilizers such as vermicompost should be extended for the maintenance of soil productivity
Anahtar Kelime:

Konular: Biyoloji
Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • Adediran A.J., Taiwo B.L., Akande O.M., Sobule A.R., Idowu J.O., 2004. Application of organic and inorganic fertilizer for sustainable maize and cowpea yields in Nigeria, J. Plant Nutr., 27: 1163–1181.
  • Adiloğlu S., Adiloğlu, A., Acikgoz, F.E. Yeniaras T., Solmaz Y., 2016a. Phytoremediation of Cadmium (Cd) from Agricultural Soils Using Dock (Rumex patientia L.) Plant. Analytical Letters. DOI:10.1080/00032719.2015.1075132. 49 (4): 601-606.
  • Adiloğlu A., Eryilmaz Açıgöz F., Adiloğlu S., Solmaz Y., 2015. Akuakültür Atığı ve Solucan Gübresi Uygulamalarının Salata (Lactuca sativa L. var. crispa) Bitkisinin Verim, Bazı Bitki Besin Elementi İçeriği ile Bazı Agronomik Özellikleri Üzerine Etkisi. Namık Kemal Üniversitesi Araştırma Projesi No: 00.24.AR.15.11
  • Adiloğlu S., Sağlam M.T., 2015. Tekirdağ İlinde Karayolu Kıyısındaki Toprakların Organik Madde Miktarları. KSÜ Doğa Bilimleri Dergisi, pp. 49–60.
  • Adiloğlu, S., 2016. Phytoremediation of Cobalt (Co) From Agricultural Soils Using Canola (Brassica napus L.) Plant. Removal of Cobalt (Co) from the Agricultural Soils with Canola (Brassica napus L.) Using Phytoremediation Method. Polish Journal of Environmental Studies, Vol. 25 (6): 2251-2254.
  • Adiloğlu S., Sağlam M.T., Adiloğlu A., Süme A., 2016. Removal of Nickel (Ni) from Agricultural Field Soils by Phytoremediation using Canola (Brassica napus L.). 2nd International Conference on Recycling and Reuse. İstanbul, 4-6 June 2014. Desalination and Water Treatment. Vol: 57 (6): 2383-2388.
  • Adiloğlu S., Sağlam M.T., Süme A., 2015a. Chrome (Cr) Pollution in Agricultural Areas Improvement by Phytoremediation Method with Canola (Brassica napus L.) Plant Growing. Journal of Essential Oil Bearing Plants. Vol: 18 (5): 1180-1186.
  • Arisha H.M.E., Gad A.A., Younes S.E., 2003. Response of some pepper cultivars to organic and mineral nitrogen fertilizer under sandy soil conditions, Zagazig J. Agric. Res., 30: 1875– 1899.
  • Badr L.A.A., Fekry W.A., 1998. Effect of intercropping and doses of fertilization on growth and productivity of taro and cucumber plants. Vegetative growth and chemical constituents of foliage, Zagazig J.Agric. Res., 25: 1087–101.
  • Bellitürk K., 2016. Sürdürülebilir Tarımsal Üretimde Katı Atık Yönetimi İçin Vermikompost Teknolojisi. (7. Ulusal Bitki Besleme ve Gübre Kongresi, 12-15 Ekim 2016) Çukurova Tarım ve Gıda Bilimleri Dergisi, 31 (3): 1-5 (Özel Sayı), Adana.
  • Bellitürk K., Shrestha P., Görres J.H., 2015. The Importance of Phytoremediation of Heavy Metal Contaminated Soil Using Vermicompost for Sustainable Agriculture. Rice Journal 3:2, 6: e114, doi: 10.4172/2375-4338.1000e114
  • Chaudhuri P.S., Paul T.K., Dey A., Datta M, Dey S.K. 2016. Effects of rubber leaf litter vermicompost on earthworm population and yield of pineapple (Ananas comosus L.) in West Tripura, India. International Journal of Recycling of Organic Waste in Agriculture, 5: 93–103.
  • Dauda S.N., Ajayi F.A., Ndor E., 2008. Growth and yield of water melon (Citrullus lanatus L.) as affected by poultry manure application, J. Agric. Soc. Sci., 4: 121-124.
  • FAO (1990). Micronutrient Assesment at the Country Level: An International Study, FAO Soils Bulletin 63, Rome.
  • Greweling T., Peech M., 1960. Chemical Soil Tests, Cornell Univ. Agric. Exp. Stn. Bull. No: 960, USA.
  • Güneş A., Alpaslan M., İnal A., 2010. Bitki Besleme ve Gübreleme, A.Ü. Ziraat Fak. Yayınları, Yayın No:1581, Ankara.
  • Sağlam M.T., 2012. Toprak ve Suyun Kimyasal Analiz Yöntemleri, Namık Kemal Üniversitesi, Yayın No: 2, Tekirdağ.
  • Düzgüneş O., Kavuncu O., Kesici T., Gürbüz F., 1987. Araştırma ve deneme metodları. A.Ü. Ziraat Fakültesi Yayınları, No: 1021, Ankara.
  • Haghighi M., Barzegar R.M, Jaime A., Silva T., 2016. The effect of municipal solid waste compost, peat, perlite and vermicompost on tomato (Lycopersicum esculentum L.) growth and yield in a hydroponic system. International Journal of Recycling of Organic Waste in Agriculture, 5: 231–242.
  • Hu W., Huang B., Tian K., Holm P.E., Zhang Y., 2017. Heavy metals in intensive greenhouse vegetable production systems along Yellow Sea of China: Levels, transfer and health risk. Chemosphere, 167: 82- 90.
  • Kacar B., 2009. Toprak Analizleri (Genişletilmiş 2. Baskı). Ankara. Nobel Yayın Dağıtım Ltd. Şti, s: 209-269.
  • Li F., Shi W., Jin Z., Wu H., Sheng G.D., 2017. Excessive uptake of heavy metals by greenhouse vegetables. Journal of Geochemical Exploration, 173: 76- 84.
  • Lindsay W.I., Norwell W.A., 1969. Development of DTPA Micronutrient Soil Test, Soil Sci. Am. Proc. 35: 600-602.
  • Naeem M., Iqbal J., Bakhsh M.A.A., 2006. Comparative study of inorganic fertilizers and organic manures on yield and yield components of mungbean (Vigna radiat L.), J. Agric. Soc. Sci., 2: 227–229.
  • Stewart M.W., Dibb W.D., Johnston E.A., Smyth J.T., 2005. The contribution of commercial fertilizer, Nutrients to Food Production. Agron. J., 97: 1–6.
  • TOVEP, 1991. Türkiye Toprakları Verimlilik Envanteri, TC Tarım Orman ve Köy İşleri Bakanlığı Yayınları, Köy Hizmetleri Genel Müdürlüğü, Ankara.
  • Yourtchi M.S., Hadi M.H.S., Darzi M.T., 2013. Effect of nitrogen fertilizer and vermicompost on vegetative growth, yield and NPK uptake by tuber of potato (Agriacv.). Int. J. Agric. Crop Sci. 5 (18): 2033-2040.
APA ADİLOĞLU S (2017). EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.). , 29 - 34.
Chicago ADİLOĞLU Sevinç EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.). (2017): 29 - 34.
MLA ADİLOĞLU Sevinç EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.). , 2017, ss.29 - 34.
AMA ADİLOĞLU S EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.). . 2017; 29 - 34.
Vancouver ADİLOĞLU S EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.). . 2017; 29 - 34.
IEEE ADİLOĞLU S "EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.)." , ss.29 - 34, 2017.
ISNAD ADİLOĞLU, Sevinç. "EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.)". (2017), 29-34.
APA ADİLOĞLU S (2017). EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.). Eurasian Journal of Forest Science, 5(1), 29 - 34.
Chicago ADİLOĞLU Sevinç EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.). Eurasian Journal of Forest Science 5, no.1 (2017): 29 - 34.
MLA ADİLOĞLU Sevinç EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.). Eurasian Journal of Forest Science, vol.5, no.1, 2017, ss.29 - 34.
AMA ADİLOĞLU S EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.). Eurasian Journal of Forest Science. 2017; 5(1): 29 - 34.
Vancouver ADİLOĞLU S EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.). Eurasian Journal of Forest Science. 2017; 5(1): 29 - 34.
IEEE ADİLOĞLU S "EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.)." Eurasian Journal of Forest Science, 5, ss.29 - 34, 2017.
ISNAD ADİLOĞLU, Sevinç. "EFFECT OF THE VARIOUS DOSES OF VERMICOMPOST IMPLEMENTATION ON SOME HEAVY METAL CONTENTS (Cr, Co, Cd, Ni, Pb) OF CUCUMBER (Cucumis sativus L.)". Eurasian Journal of Forest Science 5/1 (2017), 29-34.