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Organik Materyal (Elma Posası) Uygulamasının Toprağın Bazı Verimlilik Özelliklerine Etkisi

Yıl 2009, Cilt: 22 Sayı: 2, 239 - 250, 01.12.2009

Öz

Bu araştırmada, organik materyal olarak meyve suyu fabrikası atıklarından olan elma posası (EP), killi tekstüre sahip toprağa uygulanmış, elma posasının toprağın bazı verimlilik özellikleri üzerine etkileri araştırılmıştır. Araştırmada, EP kuru ağırlık esasına göre (1000, 2000, 4000 kg/da) yaş olarak uygulanmış ve çalışma tesadüf parselleri deneme desenine göre 5 tekerrürlü saksı denemeleri şeklinde sera koşullarında yürütülmüştür. İki aşamadan oluşan araştırmada birinci aşama, uygulanan materyallerin ilk altı ayın sonundaki toprağın verimlilik özellikleri üzerine etkisini belirlemeyi kapsamaktadır. İkinci aşama ise ikinci altı aylık dönem ve 8 haftalık fasulye bitkisinin (Phaseolus vulgaris L.) yetiştirildiği periyodu kapsamaktadır. Elma posasının killi tekstüre sahip toprağın toplam N, P, K, Ca, Mg, Na, Fe, Zn, Mn ve Cu içeriği ile organik madde (OM), pH, EC parametreleri ve fasulye bitkisinin bitki besin maddesi kapsamı üzerine etkisi her iki dönemde değişik düzeylerde ve farklı yönde gerçekleşmiştir. Fasulye bitkisinin kuru madde verimine elma posasının etkisi önemli bulunmamıştır. Yapılan araştırma sonucunda, elma posası uygulamasıyla toprağın bazı verimlilik özelliklerinde özellikle toprağın OM, toplam N, P, Fe, Mn ve Cu içeriklerinde önemli artışların olduğu belirlenmiştir

Kaynakça

  • Alagöz, Z., Yılmaz, E., Öktüren, F., 2006 Organik Materyal İlavesinin Bazı Fiziksel ve Kimyasal Toprak Özellikleri Üzerine Etkileri. Akdeniz Üniversitesi Ziraat Fakültesi Dergisi. Cilt: 19. Sayı: 2. Sayfa: 245-254.
  • Anonymous., 1978 Torf fur Gartenbau und Landwirtschaft (DIN 11542).
  • Askegaard, M. and Eriksen, J. 2002. Exchangeable Potassium in Soil as Indicator of Potassium Status in an Organic Crop Rotation on Loamy Sand. Soil Use and Management. 18 (2): 84-90.
  • Bañuleos, G.S., Sharmasarkar, S. and Pasakdee, S., 2004. Utilization of Biosolids as a Fertilizer for Canola. Compost Science & Utilization. 12(1): 61-68.
  • Başçetinçelik, A., Öztürk, H., Karaca, C., Kaçıra, M., Ekinci, K., Baban, A., Kaya, D., Barnes, I., Komiotti, N. ve Nieminen,, M. 2005. Türkiye’de Tarımsal Atıkların Değerlendirilmesi. Eğitim Programı Notları. pp: 15-25. Bursa.TÜRKlYE.
  • Bary, A.I., Cogger, C.G. and Myhre, E.A., 2004. Yard Trimmings as a Source for Crop Production. Compost Science & Utilization. 12(1): 11-17.
  • Barzegar, A.R., Yousefi, A. and Daryashenas, A., 2002. The Effect of Addition of Different Amounts and Types of Organic Materials on Soil Physical Properties and Yield of Wheat. Plant and Soil. 247: 295-301.
  • Baver, L.D., 1966. Soil Physics. Third Edition. John Wiley and Sons Inc. New York.
  • Black, C.A., 1965. Methods of Soil Analaysis. Part:2. Amer. Soc. Of Agronomy Inc., Publisher Madisson, Wisconsin, USA., 1372-1376.
  • Boşak, V. and Smeyanovich, A., 2003. Changes of Potassium and Phosphorus Content of Podzoluvisol in Long-Term Experiment on Fertilizer Application. Agronomy and Soil Science. 49 (1): 101-103
  • Bower, C.A. and Wilcox, L.L., 1965. Soluble Salt Methods of Soil Analysis, Part 2, Am. Soc. Agron. No: 9 Madison, Wilconsin USA, s: 933 940.
  • DIN, 1978. 11542. Torf für gartenbau and landwirtshaft
  • Dostal, J., 2002. Results of the Long-Term Organic Matter Balance Investigations in Usti Nad Orlici District and the Trends in the Whole Czech Republic. Agronomy and Soil Science. 48(2): 155-160.
  • Gosling, P and Shepherd, M., 2005. Long-Term Changes in Soil Fertility in Organic Arable Farming Systems in England, with Particular Reference to Phosphorus and Potassium. Agriculture, Ecosystems and Environment. 105: 425-432.
  • Hampton, O.M., Obreza, T.A. and Stoffella, P.J. 2000. Residual Effect of Municipal Solid Waste and Biosolid Compost on Snap Beans Production. Proceedings of the Conference Paper. Y2K Composting in the Southeast. October, 9-11. Charlottesville, Virginia.
  • Kacar, B., 1972. Bitki ve Toprağın Kimyasal Analizleri: II. Bitki Analizleri, Ankara Üniv. Ziraat Fakültesi Yayınları: 453, Uygulama Klavuzu:155.
  • Kacar, B. ve Kovancı, 1., 1982. Bitki, Toprak ve Gübrelerde Kimyasal Fosfor Analizleri ve Değerlendirilmesi. Ege Üniversitesi Ziraat Fakültesi Yayınları, No: 354.
  • Kacar, B., 1995. Toprak Analizleri. Bitki ve Toprağın Kimyasal Analizleri: III. Ankara Üniversitesi Ziraat Fakültesi Eğitim Araştırma ve Geliştirme Vakfı Yayınları, No: 3, ss 705, Ankara.
  • Lewandowski, A. and Zumwinkle, M., 1999. Assessing the Soil System. A Review of Soil Quality Literature. Minnesota Department of Agriculture Energy and Sustainable Agriculture Program. pp. 1-63.
  • Le Villio, M., Arruays, D., Deslais, W., Clergeot, D., Daroussin, J. and Le Bissonnais, Y., 2004. Interest of the Compost as a Source of Organic Matter to Restore and Maintain Physical Properties of French Soils. Symposium No: 57, Paper No. 1529. http://www.sfst.org.
  • Lloveras, J., Aran, M., Villar, P., Ballesta, A., Arcaya, A., Vilanova, X., Delgado, and I., Munoz, F., 2004. Effect of Swine Slurry on Alfalfa Production and on Tissue and Soil Nutrient Concentration. Agronomy Journal. 96: 986-991.
  • Madejon, E., Burgos, P., Lopez, L. and Cabbera, F., 2003. Agricultural Use of Three Organic Residues: Effect on Orange Production and on Properties of a Soil of The ‘Comarca Costa de Huelva’ (SW Spain). Nutrient Cycling in Agroecosystems. 65: 281-288.
  • Maheswaran, J., Meehan, B., Peverill, K. and Dziedzic, A. M., 2004. Potential for Agri Industry Wastes as Soil Ameliorants. http://www.javaram.com/upload/papers/.PDF
  • Millner, P.D., Sikora, L.J., Kaufman, D.D. and Simpson, M. E., 2004. Agricultural Uses of Biosolids and Other Recyclable Municipal Residues. http://www.ars.usda.gov/is/np/agbyproducts/agb ychap1.pdf
  • Moran, R.E. and Schupp, J.R., 2002. Apple-Pomace Compost and Pre-plant Monoammonium Phosphate for Improving the Growth of Newly Planted Apple Trees. Fruit Notes, Vol. 67.
  • Olsen, S.R and Sommers, E.L., 1982. Phosphorus Availability Indices. Phosphorus Soluble in Sodium Bicarbonate Methods of Soils Analaysis. Part 2. Chemical and Microbiological Properties. Editors: A. L. Page. R. H. Miller. D. R. Keeney, 404-430.
  • Pilanalı, N. and Kaplan, M., 2003. Investigation of Effects on Nutrient Uptake of Humic Acid Applications of Different Forms to Strawberry Plant. Journal of Plant Nutrition. 26 (4): 838 843.
  • Richards, L.A., 1954. Diagnosis and improvement of saline and alkali soils. USDA Handbook. 60. U.S. Gov. Print. Office, Washington, DC.
  • Tejada, M., Garcia, C., Gonzalez, J.L. and Hernandez, M.T., 2006. Organic Amendment Based on Fresh and Composted Beet Vinasse: Influence on Soil Properties and Wheat Yield. Soil Science Society of America Journal. 70: 900-908.
  • Tüzüner, A., 1990. Toprak ve Su Analiz Laboratuarları El Kitabı. T.C. Tarım Orman ve Köyişleri Bakanlığı Köy Hizmetleri Genel Müdürlüğü. sf : 21-27.
  • Vassilev, N. and Vassileva, M., 2003. Biotechnological Solubilization of Rock Phosphate on Media Containing Agro-Industrial Wastes. Applied Microbiology and Biotechnology. 61: 435-440
  • Vavoulidu, E., Dimirkou, A., Papadopoulos, P., Avramides, E.J. and Arapakis, D., 2004. A Comparative Study for the Control of Organic Agriculture in a Region of Greece. NAGREF Soil Science Institute of Athens. Symposium No: 57, Paper No.737. http://www.sfst.org/ Proceedings/17WCSS_CD/Abstracts/0737.pdf
  • Verma, T.S. and Bhagat, R.M., 1992. Impact of Rice Straw Management Practices on Yield, Nitrogen Uptake and Soil Porperties in a Wheat-Rice Rotation in Northern India. Fert. Res. 33: 97 106.
  • Walter, I., Martinez, F. and Cuevas, G., 2006. Plant and Soil Responses to the Application of Composted MSW in a Degraded, Semiarid Shrubland in Central Spain. Compost Science & Utilization. 14 (2): 147-154.

Effect of Organic Material (Apple Pomace) Amendment on Some Fertility Properties of Soil

Yıl 2009, Cilt: 22 Sayı: 2, 239 - 250, 01.12.2009

Öz

In this research, as the organic material the effect of apple pomace (AP), which is juice industry waste, on some soil fertility properties of clayey textured soil were investigated. Apple pomace was applied to soil as a fresh material, (dry weight basis 1000, 2000 and 4000 kg/da), and pot experiments were carried out according to the completely randomized design with 5 replicates in greenhouse conditions. This study is consisted of two different stages. The first stage consists of 6 months incubation period (1st sample period). Second stage consists of other 6 months plus 8 weeks bean vegetation period (Phaseolus vulgaris L.) (2nd sample period).
The effects of AP on N, P, K, Ca, Mg, Na, Fe, Zn, Mn and Cu concentrations with total N and OM, pH, EC values and plant nutrients content in clayey textured soil were different level and way in both stages. The effect of AP on dry matter yield in the bean plant was not significant.
At the end of experiment, it is determined that some fertility properties of soil, especially OM, total N, P, Fe, Mn and Cu content of soil, improved by the amendment of apple pomace.

Kaynakça

  • Alagöz, Z., Yılmaz, E., Öktüren, F., 2006 Organik Materyal İlavesinin Bazı Fiziksel ve Kimyasal Toprak Özellikleri Üzerine Etkileri. Akdeniz Üniversitesi Ziraat Fakültesi Dergisi. Cilt: 19. Sayı: 2. Sayfa: 245-254.
  • Anonymous., 1978 Torf fur Gartenbau und Landwirtschaft (DIN 11542).
  • Askegaard, M. and Eriksen, J. 2002. Exchangeable Potassium in Soil as Indicator of Potassium Status in an Organic Crop Rotation on Loamy Sand. Soil Use and Management. 18 (2): 84-90.
  • Bañuleos, G.S., Sharmasarkar, S. and Pasakdee, S., 2004. Utilization of Biosolids as a Fertilizer for Canola. Compost Science & Utilization. 12(1): 61-68.
  • Başçetinçelik, A., Öztürk, H., Karaca, C., Kaçıra, M., Ekinci, K., Baban, A., Kaya, D., Barnes, I., Komiotti, N. ve Nieminen,, M. 2005. Türkiye’de Tarımsal Atıkların Değerlendirilmesi. Eğitim Programı Notları. pp: 15-25. Bursa.TÜRKlYE.
  • Bary, A.I., Cogger, C.G. and Myhre, E.A., 2004. Yard Trimmings as a Source for Crop Production. Compost Science & Utilization. 12(1): 11-17.
  • Barzegar, A.R., Yousefi, A. and Daryashenas, A., 2002. The Effect of Addition of Different Amounts and Types of Organic Materials on Soil Physical Properties and Yield of Wheat. Plant and Soil. 247: 295-301.
  • Baver, L.D., 1966. Soil Physics. Third Edition. John Wiley and Sons Inc. New York.
  • Black, C.A., 1965. Methods of Soil Analaysis. Part:2. Amer. Soc. Of Agronomy Inc., Publisher Madisson, Wisconsin, USA., 1372-1376.
  • Boşak, V. and Smeyanovich, A., 2003. Changes of Potassium and Phosphorus Content of Podzoluvisol in Long-Term Experiment on Fertilizer Application. Agronomy and Soil Science. 49 (1): 101-103
  • Bower, C.A. and Wilcox, L.L., 1965. Soluble Salt Methods of Soil Analysis, Part 2, Am. Soc. Agron. No: 9 Madison, Wilconsin USA, s: 933 940.
  • DIN, 1978. 11542. Torf für gartenbau and landwirtshaft
  • Dostal, J., 2002. Results of the Long-Term Organic Matter Balance Investigations in Usti Nad Orlici District and the Trends in the Whole Czech Republic. Agronomy and Soil Science. 48(2): 155-160.
  • Gosling, P and Shepherd, M., 2005. Long-Term Changes in Soil Fertility in Organic Arable Farming Systems in England, with Particular Reference to Phosphorus and Potassium. Agriculture, Ecosystems and Environment. 105: 425-432.
  • Hampton, O.M., Obreza, T.A. and Stoffella, P.J. 2000. Residual Effect of Municipal Solid Waste and Biosolid Compost on Snap Beans Production. Proceedings of the Conference Paper. Y2K Composting in the Southeast. October, 9-11. Charlottesville, Virginia.
  • Kacar, B., 1972. Bitki ve Toprağın Kimyasal Analizleri: II. Bitki Analizleri, Ankara Üniv. Ziraat Fakültesi Yayınları: 453, Uygulama Klavuzu:155.
  • Kacar, B. ve Kovancı, 1., 1982. Bitki, Toprak ve Gübrelerde Kimyasal Fosfor Analizleri ve Değerlendirilmesi. Ege Üniversitesi Ziraat Fakültesi Yayınları, No: 354.
  • Kacar, B., 1995. Toprak Analizleri. Bitki ve Toprağın Kimyasal Analizleri: III. Ankara Üniversitesi Ziraat Fakültesi Eğitim Araştırma ve Geliştirme Vakfı Yayınları, No: 3, ss 705, Ankara.
  • Lewandowski, A. and Zumwinkle, M., 1999. Assessing the Soil System. A Review of Soil Quality Literature. Minnesota Department of Agriculture Energy and Sustainable Agriculture Program. pp. 1-63.
  • Le Villio, M., Arruays, D., Deslais, W., Clergeot, D., Daroussin, J. and Le Bissonnais, Y., 2004. Interest of the Compost as a Source of Organic Matter to Restore and Maintain Physical Properties of French Soils. Symposium No: 57, Paper No. 1529. http://www.sfst.org.
  • Lloveras, J., Aran, M., Villar, P., Ballesta, A., Arcaya, A., Vilanova, X., Delgado, and I., Munoz, F., 2004. Effect of Swine Slurry on Alfalfa Production and on Tissue and Soil Nutrient Concentration. Agronomy Journal. 96: 986-991.
  • Madejon, E., Burgos, P., Lopez, L. and Cabbera, F., 2003. Agricultural Use of Three Organic Residues: Effect on Orange Production and on Properties of a Soil of The ‘Comarca Costa de Huelva’ (SW Spain). Nutrient Cycling in Agroecosystems. 65: 281-288.
  • Maheswaran, J., Meehan, B., Peverill, K. and Dziedzic, A. M., 2004. Potential for Agri Industry Wastes as Soil Ameliorants. http://www.javaram.com/upload/papers/.PDF
  • Millner, P.D., Sikora, L.J., Kaufman, D.D. and Simpson, M. E., 2004. Agricultural Uses of Biosolids and Other Recyclable Municipal Residues. http://www.ars.usda.gov/is/np/agbyproducts/agb ychap1.pdf
  • Moran, R.E. and Schupp, J.R., 2002. Apple-Pomace Compost and Pre-plant Monoammonium Phosphate for Improving the Growth of Newly Planted Apple Trees. Fruit Notes, Vol. 67.
  • Olsen, S.R and Sommers, E.L., 1982. Phosphorus Availability Indices. Phosphorus Soluble in Sodium Bicarbonate Methods of Soils Analaysis. Part 2. Chemical and Microbiological Properties. Editors: A. L. Page. R. H. Miller. D. R. Keeney, 404-430.
  • Pilanalı, N. and Kaplan, M., 2003. Investigation of Effects on Nutrient Uptake of Humic Acid Applications of Different Forms to Strawberry Plant. Journal of Plant Nutrition. 26 (4): 838 843.
  • Richards, L.A., 1954. Diagnosis and improvement of saline and alkali soils. USDA Handbook. 60. U.S. Gov. Print. Office, Washington, DC.
  • Tejada, M., Garcia, C., Gonzalez, J.L. and Hernandez, M.T., 2006. Organic Amendment Based on Fresh and Composted Beet Vinasse: Influence on Soil Properties and Wheat Yield. Soil Science Society of America Journal. 70: 900-908.
  • Tüzüner, A., 1990. Toprak ve Su Analiz Laboratuarları El Kitabı. T.C. Tarım Orman ve Köyişleri Bakanlığı Köy Hizmetleri Genel Müdürlüğü. sf : 21-27.
  • Vassilev, N. and Vassileva, M., 2003. Biotechnological Solubilization of Rock Phosphate on Media Containing Agro-Industrial Wastes. Applied Microbiology and Biotechnology. 61: 435-440
  • Vavoulidu, E., Dimirkou, A., Papadopoulos, P., Avramides, E.J. and Arapakis, D., 2004. A Comparative Study for the Control of Organic Agriculture in a Region of Greece. NAGREF Soil Science Institute of Athens. Symposium No: 57, Paper No.737. http://www.sfst.org/ Proceedings/17WCSS_CD/Abstracts/0737.pdf
  • Verma, T.S. and Bhagat, R.M., 1992. Impact of Rice Straw Management Practices on Yield, Nitrogen Uptake and Soil Porperties in a Wheat-Rice Rotation in Northern India. Fert. Res. 33: 97 106.
  • Walter, I., Martinez, F. and Cuevas, G., 2006. Plant and Soil Responses to the Application of Composted MSW in a Degraded, Semiarid Shrubland in Central Spain. Compost Science & Utilization. 14 (2): 147-154.
Toplam 34 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Ziraat Mühendisliği
Bölüm Makaleler
Yazarlar

E. Yılmaz Bu kişi benim

Z. Alagöz Bu kişi benim

Yayımlanma Tarihi 1 Aralık 2009
Yayımlandığı Sayı Yıl 2009 Cilt: 22 Sayı: 2

Kaynak Göster

APA Yılmaz, E., & Alagöz, Z. (2009). Organik Materyal (Elma Posası) Uygulamasının Toprağın Bazı Verimlilik Özelliklerine Etkisi. Akdeniz University Journal of the Faculty of Agriculture, 22(2), 239-250.
AMA Yılmaz E, Alagöz Z. Organik Materyal (Elma Posası) Uygulamasının Toprağın Bazı Verimlilik Özelliklerine Etkisi. Akdeniz University Journal of the Faculty of Agriculture. Aralık 2009;22(2):239-250.
Chicago Yılmaz, E., ve Z. Alagöz. “Organik Materyal (Elma Posası) Uygulamasının Toprağın Bazı Verimlilik Özelliklerine Etkisi”. Akdeniz University Journal of the Faculty of Agriculture 22, sy. 2 (Aralık 2009): 239-50.
EndNote Yılmaz E, Alagöz Z (01 Aralık 2009) Organik Materyal (Elma Posası) Uygulamasının Toprağın Bazı Verimlilik Özelliklerine Etkisi. Akdeniz University Journal of the Faculty of Agriculture 22 2 239–250.
IEEE E. Yılmaz ve Z. Alagöz, “Organik Materyal (Elma Posası) Uygulamasının Toprağın Bazı Verimlilik Özelliklerine Etkisi”, Akdeniz University Journal of the Faculty of Agriculture, c. 22, sy. 2, ss. 239–250, 2009.
ISNAD Yılmaz, E. - Alagöz, Z. “Organik Materyal (Elma Posası) Uygulamasının Toprağın Bazı Verimlilik Özelliklerine Etkisi”. Akdeniz University Journal of the Faculty of Agriculture 22/2 (Aralık 2009), 239-250.
JAMA Yılmaz E, Alagöz Z. Organik Materyal (Elma Posası) Uygulamasının Toprağın Bazı Verimlilik Özelliklerine Etkisi. Akdeniz University Journal of the Faculty of Agriculture. 2009;22:239–250.
MLA Yılmaz, E. ve Z. Alagöz. “Organik Materyal (Elma Posası) Uygulamasının Toprağın Bazı Verimlilik Özelliklerine Etkisi”. Akdeniz University Journal of the Faculty of Agriculture, c. 22, sy. 2, 2009, ss. 239-50.
Vancouver Yılmaz E, Alagöz Z. Organik Materyal (Elma Posası) Uygulamasının Toprağın Bazı Verimlilik Özelliklerine Etkisi. Akdeniz University Journal of the Faculty of Agriculture. 2009;22(2):239-50.