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Gübre Yönetimi İçin Android Aplikasyon Geliştirilmesi

Year 2024, Volume: 12 Issue: 2, 284 - 293, 27.12.2024
https://doi.org/10.33202/comuagri.1475135

Abstract

Gübre işletim planlaması özellikle toprak ve su kaynaklarının sürdürülebilir kullanımını sağlamak açısından oldukça önemlidir. Planlamanın temel amacı işletmede üretilen gübrede ve toprakta hali hazırda bulunan besin elementlerini bitkinin ihtiyaçlarını da dikkate alarak araziye uygun zamanda uygulamaktır. Bu amaçla Android tabanlı cep telefonları veya tabletlerde çalışacak bir mobil uygulama geliştirilmiştir. Bitkisel ve hayvansal üretimin yapıldığı örnek bir işletmede mısır ve domates bitkisi için 60 baş kapasiteli süt sığırı işletmesinde gübre işletim planlaması yapılmıştır. Hesaplamalar sonucu işletmede hayvanlar tarafından üretilen gübrenin maddi değerinin yaklaşık olarak 14000$ olduğu görülmüştür. Üretilen gübrenin en optimum faydayı sağlayacak şekilde değerlendirilmesi durumunda ilave bitki besin maddesi için harcanması gereken miktarın mısır için 7800$, domates için ise 27332$ olacağını göstermektedir. Sonuç olarak, geliştirilen uygulamanın sürdürülebilir bir tarımsal üretim amacıyla gübre işletim planlamasında kullanılabileceği tespit edilmiştir.

References

  • Aksu, S., Kızıl, Ü., 2015. Developing a town based soil database to assess the sensitive zones in nutrient management.International Journal of Environmental, Chemical, Ecological, Geological and Geophysical Engineering. 9–8: 818–823.
  • Aksu, S., Kızıl, Ü., Genç, L., Yıldız, A.M., 2017. Web and android applications for district level nutrient managementPlanning. Agronomy Research. 15(3): 622-628.
  • Catelo, M. .O., Dorado, M.A., Agbisit Jr, E., 2001. Living with livestock: dealing with pig waste in the Philippines (No.pb2001041). Economy and Environment Program for Southeast Asia (EEPSEA).
  • Hong, S., Hwang, Y., 2020. Design and implementation for iort based remote control robot using block-based programming.Issues in Information Systems. 21(4): 317-330.
  • Jiang, X., Chen, Z., Dharmasena, M., 2014. The role of animal manure in the contamination of fresh food. In M. Gänzle, & J. T.Hill (Eds.), Advances in microbial food safety. 2:312–350.
  • Khan, N., Ray, R. L., Sargani, G. R., Ihtisham, M., Khayyam, M., & Ismail, S., 2021. Current progress and future prospects ofagriculture technology: Gateway to sustainable agriculture. Sustainability. 13(9): 4883.
  • Kızıl, Ü., Lindley, J.A., 2001. Comparison of different techniques in the determination of animal manure characteristics. InASAE/CSAE North Central Sections Conference. Brookings, South Dakota September. Kızıl Ü., Aksu, S., Genc, L., 2016. Gübre yönetiminde besin bütçesi yöntemi için bir bilgisayar programının geliştirilmesi ve uygulama örneği. 13. Ulusal Kültürteknik Kongresi , Turkey, 2016
  • Klausner, S. D., 1997. Nutrient management: crop production and water quality. Ithaca, NY: Northeast Regional AgriculturalEngineering Service.
  • Kraham, S. J., 2017. Environmental impacts of industrial livestock production. International Farm Animal, Wildlife and FoodSafety Law. 3-40.
  • Leclerc, A., Laurent, A., 2017. Framework for estimating toxic releases from the application of manure on agricultural soil:National release inventories for heavy metals in 2000–2014. Science of the Total Environment. 590: 452-460.
  • Millner, P. D., 2009. Manure management. In The produce contamination problem, Academic Press. 79-104.
  • MWPS 18., 1993. Livestock waste facilities handbook. Midwest Plan Service, Iowa State University, Ames Iowa. Patton, E. W., Tissenbaum, M., Harunani, F., 2019. MIT app inventor: Objectives, design, and development. Computational thinking education. 31-49.
  • Pokress, S. C., Veiga, J. J. D., 2013. MIT App Inventor: Enabling personal mobile computing. arXiv preprint arXiv:1310.2830.
  • Ravindran, R., Hassan, S. S., Williams, G. A., & Jaiswal, A. K., 2018. A review on bioconversion of agro-industrial wastes to industrially important enzymes. Bioengineering: 5(4): 93.
  • Rehman, A., Jingdong, L., Khatoon, R., Hussain, I., Iqbal, M.S., 2016. Modern agricultural technology adoption its importance, role and usage for the improvement of agriculture. Life Science Journal. 14(2): 70-74.
  • Rotz, C. A., 2004. Management to reduce nitrogen losses in animal production. Journal of animal science. 82(13): E119-E137.
  • Singh, A., Rashid, M., 2017. Impact of animal waste on environment, its managemental strategies and treatment protocols to reduce environmental contamination. Vet. Sci. Res. J. 8: 1-12.

Development of an Android Application for Manure Management

Year 2024, Volume: 12 Issue: 2, 284 - 293, 27.12.2024
https://doi.org/10.33202/comuagri.1475135

Abstract

Manure management planning is especially important to ensure the sustainable use of soil and water resources. The main purpose of planning is to apply the nutrients available in the manure produced in the operation and in the soil to the land at the appropriate time, taking into account the needs of the plant. For this purpose, a mobile application has been developed to run on Android-based mobile phones or tablets. In a case study where plant and animal production is carried out, management planning was made for corn and tomato plants in a dairy cattle enterprise with a capacity of 60 heads. As a result of the calculations, it was seen that the financial value of the manure produced by the animals in the operation was approximately $14000. It shows that if the manure produced is used to provide the most optimum benefit, the amount that needs to be spent on additional plant nutrients will be $7800 for corn and $27332 for tomato. As a result, it has been determined that the developed mobile application can be used in manure management planning for sustainable agricultural production.

References

  • Aksu, S., Kızıl, Ü., 2015. Developing a town based soil database to assess the sensitive zones in nutrient management.International Journal of Environmental, Chemical, Ecological, Geological and Geophysical Engineering. 9–8: 818–823.
  • Aksu, S., Kızıl, Ü., Genç, L., Yıldız, A.M., 2017. Web and android applications for district level nutrient managementPlanning. Agronomy Research. 15(3): 622-628.
  • Catelo, M. .O., Dorado, M.A., Agbisit Jr, E., 2001. Living with livestock: dealing with pig waste in the Philippines (No.pb2001041). Economy and Environment Program for Southeast Asia (EEPSEA).
  • Hong, S., Hwang, Y., 2020. Design and implementation for iort based remote control robot using block-based programming.Issues in Information Systems. 21(4): 317-330.
  • Jiang, X., Chen, Z., Dharmasena, M., 2014. The role of animal manure in the contamination of fresh food. In M. Gänzle, & J. T.Hill (Eds.), Advances in microbial food safety. 2:312–350.
  • Khan, N., Ray, R. L., Sargani, G. R., Ihtisham, M., Khayyam, M., & Ismail, S., 2021. Current progress and future prospects ofagriculture technology: Gateway to sustainable agriculture. Sustainability. 13(9): 4883.
  • Kızıl, Ü., Lindley, J.A., 2001. Comparison of different techniques in the determination of animal manure characteristics. InASAE/CSAE North Central Sections Conference. Brookings, South Dakota September. Kızıl Ü., Aksu, S., Genc, L., 2016. Gübre yönetiminde besin bütçesi yöntemi için bir bilgisayar programının geliştirilmesi ve uygulama örneği. 13. Ulusal Kültürteknik Kongresi , Turkey, 2016
  • Klausner, S. D., 1997. Nutrient management: crop production and water quality. Ithaca, NY: Northeast Regional AgriculturalEngineering Service.
  • Kraham, S. J., 2017. Environmental impacts of industrial livestock production. International Farm Animal, Wildlife and FoodSafety Law. 3-40.
  • Leclerc, A., Laurent, A., 2017. Framework for estimating toxic releases from the application of manure on agricultural soil:National release inventories for heavy metals in 2000–2014. Science of the Total Environment. 590: 452-460.
  • Millner, P. D., 2009. Manure management. In The produce contamination problem, Academic Press. 79-104.
  • MWPS 18., 1993. Livestock waste facilities handbook. Midwest Plan Service, Iowa State University, Ames Iowa. Patton, E. W., Tissenbaum, M., Harunani, F., 2019. MIT app inventor: Objectives, design, and development. Computational thinking education. 31-49.
  • Pokress, S. C., Veiga, J. J. D., 2013. MIT App Inventor: Enabling personal mobile computing. arXiv preprint arXiv:1310.2830.
  • Ravindran, R., Hassan, S. S., Williams, G. A., & Jaiswal, A. K., 2018. A review on bioconversion of agro-industrial wastes to industrially important enzymes. Bioengineering: 5(4): 93.
  • Rehman, A., Jingdong, L., Khatoon, R., Hussain, I., Iqbal, M.S., 2016. Modern agricultural technology adoption its importance, role and usage for the improvement of agriculture. Life Science Journal. 14(2): 70-74.
  • Rotz, C. A., 2004. Management to reduce nitrogen losses in animal production. Journal of animal science. 82(13): E119-E137.
  • Singh, A., Rashid, M., 2017. Impact of animal waste on environment, its managemental strategies and treatment protocols to reduce environmental contamination. Vet. Sci. Res. J. 8: 1-12.
There are 17 citations in total.

Details

Primary Language English
Subjects Zootechny (Other)
Journal Section Articles
Authors

Sude Mutlu This is me 0009-0001-8241-1406

Dilek Selçuk This is me 0009-0005-4039-4504

Özlen Tepeli This is me 0009-0008-8568-9666

Ünal Kızıl 0000-0002-8512-3899

Publication Date December 27, 2024
Submission Date April 29, 2024
Acceptance Date June 19, 2024
Published in Issue Year 2024 Volume: 12 Issue: 2

Cite

APA Mutlu, S., Selçuk, D., Tepeli, Ö., Kızıl, Ü. (2024). Development of an Android Application for Manure Management. COMU Journal of Agriculture Faculty, 12(2), 284-293. https://doi.org/10.33202/comuagri.1475135