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Bibliometric Analysis of Researches on Soil Organic Carbon and Soil Organic Carbon Stocks from 1970 to 2021

Yıl 2021, Sayı: 25, 517 - 524, 31.08.2021
https://doi.org/10.31590/ejosat.929666

Öz

Bibliometric analysis is widely used to analyze the processes of change in scientific studies around the world. In this context, bibliometric analysis; It is important in determining the trend of research. In this article, a bibliometric analysis of the performance and change processes of scientific research on soil organic carbon and soil organic carbon stocks between 1970 and 2021 was conducted, based on articles published in journals scanned in Web of Science. The sequestration of soil organic carbon in terrestrial ecosystems has a key role in ameliorating the negative effects of climate change, and this attracts the attention of scientists. The results of this study show that the articles on the subject are increasing day by day. Although the first study in this area was conducted in 1991, most of the research was done in 2020. It has been determined that the publication language of most of the articles is English. The most studies are in the category of soil sciences and the most publications related to the subject have been published in Geoderma journal. When evaluated on the basis of research area, the most research is in agriculture, followed by environmental sciences, earth sciences and forestry sciences. The USA and China are the two most active countries in studies, and the USA is the leader in soil organic carbon research. The most cited authors on the subject are Koegel-Knabner, Ingrid, Smith, Pete and Lal, Rattan. Current research focuses on agricultural sciences, earth sciences and ecology. climate change and food security issues have been discussed. It is thought that focusing on carbon budget, food safety and public health issues in the studies to be carried out will contribute to filling the gaps in the related field.

Kaynakça

  • Ai, M., Sun, Y., Yan, B., & Wei, Y. (2018). A Summary of the Impact of Land Degradation on Soil Carbon Sequestration. Paper presented at the IOP Conference Series: Materials Science and Engineering.
  • Analytics, C. (2021). Web of science platform: Web of science: Summary of coverage. Retrieved from http://clarivate.libguides.com/webofscienceplatform/coverage.
  • Bezak, N., Mikoš, M., Borrelli, P., Alewell, C., Alvarez, P., Anache, J. A. A., . . . Cerdà, A. (2021). Soil erosion modelling: A bibliometric analysis. Environmental Research, 111087.
  • Bocanegra-Valle, A. (2014). ‘English is my default academic language’: Voices from LSP scholars publishing in a multilingual journal. Journal of English for Academic Purposes, 13, 65-77.
  • Deluca, T. H., & Boisvenue, C. (2012). Boreal forest soil carbon: distribution, function and modelling. Forestry, 85(2), 161-184.
  • England, J. R., & Viscarra Rossel, R. A. (2018). Proximal sensing for soil carbon accounting. Soil, 4(2), 101-122.
  • Galloway, N., Numajiri, T., & Rees, N. (2020). The ‘internationalisation’, or ‘Englishisation’, of higher education in East Asia. Higher Education, 80(3), 395-414.
  • Gholizadeh, A., Rossel, R. A. V., Saberioon, M., Borůvka, L., Kratina, J., & Pavlů, L. (2021). National-scale spectroscopic assessment of soil organic carbon in forests of the Czech Republic. Geoderma, 385, 114832.
  • Hu, H., Dai, J., Jin, Y., & Liu, X. (2021). Bibliometric analysis on desertification restoration based on CiteSpace. Arabian Journal of Geosciences, 14(2), 1-10.
  • Jiang, Z., Yang, S., Ding, J., Sun, X., Chen, X., Liu, X., & Xu, J. (2021). Modeling Climate Change Effects on Rice Yield and Soil Carbon Under Variable Water and Nutrient Management. Sustainability, 13(2), 568.
  • Kamaşak, R., Sahan, K., & Rose, H. (2021). Academic language-related challenges at an English-medium university. Journal of English for Academic Purposes, 49, 100945.
  • Li, H., Wu, Y., Chen, J., Zhao, F., Wang, F., Sun, Y., . . . Qiu, L. (2021). Responses of soil organic carbon to climate change in the Qilian Mountains and its future projection. Journal of Hydrology, 596, 126110.
  • Liu, S., Lei, Y., Zhao, J., Yu, S., & Wang, L. (2020). Research on ecosystem services of water conservation and soil retention: a bibliometric analysis. Environmental Science and Pollution Research, 1-13.
  • Liu, Y., Wu, K., & Zhao, R. (2020). Bibliometric analysis of research on soil health from 1999 to 2018. Journal of Soils and Sediments, 20(3), 1513-1525.
  • Lu, X., & Liao, Y. (2017). Effect of tillage practices on net carbon flux and economic parameters from farmland on the Loess Plateau in China. Journal of Cleaner Production, 162, 1617-1624.
  • Macaro, E., Curle, S., Pun, J., An, J., & Dearden, J. (2018). A systematic review of English medium instruction in higher education. Language Teaching, 51(1), 36-76.
  • Moharana, P. C., Jena, R. K., Kumar, N., Singh, R. S., & Rao, S. S. (2021). Assessment of soil organic and inorganic carbon stock at different soil depths after conversion of desert into arable land in the hot arid regions of India. Carbon Management, 1-15.
  • Obersteiner, M., Bednar, J., Wagner, F., Gasser, T., Ciais, P., Forsell, N., . . . Janssens, I. A. (2018). How to spend a dwindling greenhouse gas budget. Nature Climate Change, 8(1), 7-10.
  • Pan, X., Lv, J., Dyck, M., & He, H. (2021). Bibliometric Analysis of Soil Nutrient Research between 1992 and 2020. Agriculture, 11(3), 223.
  • Putri, C. R., Soleh, S. M., Saregar, A., Anugrah, A., & Susilowati, N. E. (2021). Bibliometric analysis: Augmented reality-based physics laboratory with VOSviewer software. Paper presented at the Journal of Physics: Conference Series.
  • Rossel, R. V., Lee, J., Behrens, T., Luo, Z., Baldock, J., & Richards, A. (2019). Continental-scale soil carbon composition and vulnerability modulated by regional environmental controls. Nature geoscience, 12(7), 547-552.
  • Smith, P. (2008). Land use change and soil organic carbon dynamics. Nutrient Cycling in Agroecosystems, 81(2), 169-178. Sökmen, Y., & Nalçaci, A. (2020). A Bibliometric Analysis of the Articles about Values Education. International Journal of Curriculum and Instruction, 12(2), 720-735.
  • Zhang, H., Liu, X., Yi, J., Yang, X., Wu, T., He, Y., . . . Tian, P. (2020). Bibliometric Analysis of Research on Soil Water from 1934 to 2019. Water, 12(6), 1631.

Toprak Organik Karbonu ve Toprak Organik Karbon Stokları üzerine 1970-2021 Yılları Arasında Yapılan Araştırmaların Bibliyometrik Analizi

Yıl 2021, Sayı: 25, 517 - 524, 31.08.2021
https://doi.org/10.31590/ejosat.929666

Öz

Bibliyometrik analiz, dünyadaki bilimsel çalışmaların değişim süreçlerini analiz etmek için yaygın olarak kullanılmaktadır. Bu bağlamda bibliyometrik analiz; araştırmaların eğiliminin belirlenmesinde önemlidir. Bu makalede, Web of Science'ta taranan dergilerde yayınlanan makalelere dayanarak, 1970-2021 yılları arasında toprak organik karbonu ve toprak organik karbon stokları üzerine yapılan bilimsel araştırmaların performansının ve değişim süreçlerinin bibliyometrik analizi yapılmıştır. İklim değişikliğinin olumsuz etkilerinin iyileştirilmesinde kilit bir role sahip olan toprak organik karbonunun karasal ekosistemlerde tutulması bilim adamlarının dikkatini çekmektedir. Yapılan bu çalışmanın sonuçları konu ile ilgili yapılan makalelerin güne artmakta olduğunu göstermektedir. Bu alandaki ilk çalışma 1991 yılında yapılmış olsa da araştırmaların çoğu 2020 yılında yapılmıştır. Makalelerin büyük bölümünün yayın dilinin İngilizce olduğu ortaya çıkmıştır. En fazla çalışma toprak bilimleri kategorisinde olup konu ilgili en fazla yayın Geoderma dergisinde yayınlanmıştır. Araştırma alanı bazında değerlendirildiğinde en fazla araştırma tarım alanında olup bunu çevre bilimleri, yer bilimleri ve ormacılık bilimleri takip etmiştir. ABD ve Çin çalışmalarda en aktif olan iki ülke olup ABD toprak organik karbonu araştırmalarında lider konumdadır. Konu ile ilgili en çok alıntı yapılan yazarlar ise Koegel-Knabner,Ingrid, Smith, Pete ve Lal, Rattan olmuştur. Güncel araştırmalar tarım bilimleri, yerbilimleri ve ekoloji alanında yoğunlaşmıştır. Tarım bilimleri alanında yapılan çalışmalarda genellikle iklim değişikliği ve gıda güvenliği konuları ele alınmıştır. Yapılacak olan çalışmalarda karbon bütçesi, gıda güvenliği ve toplum sağlığı konuları üzerinde durulması ilgili alandaki boşlukların doldurmasına katkı sağlayacağı düşünülmektedir.

Kaynakça

  • Ai, M., Sun, Y., Yan, B., & Wei, Y. (2018). A Summary of the Impact of Land Degradation on Soil Carbon Sequestration. Paper presented at the IOP Conference Series: Materials Science and Engineering.
  • Analytics, C. (2021). Web of science platform: Web of science: Summary of coverage. Retrieved from http://clarivate.libguides.com/webofscienceplatform/coverage.
  • Bezak, N., Mikoš, M., Borrelli, P., Alewell, C., Alvarez, P., Anache, J. A. A., . . . Cerdà, A. (2021). Soil erosion modelling: A bibliometric analysis. Environmental Research, 111087.
  • Bocanegra-Valle, A. (2014). ‘English is my default academic language’: Voices from LSP scholars publishing in a multilingual journal. Journal of English for Academic Purposes, 13, 65-77.
  • Deluca, T. H., & Boisvenue, C. (2012). Boreal forest soil carbon: distribution, function and modelling. Forestry, 85(2), 161-184.
  • England, J. R., & Viscarra Rossel, R. A. (2018). Proximal sensing for soil carbon accounting. Soil, 4(2), 101-122.
  • Galloway, N., Numajiri, T., & Rees, N. (2020). The ‘internationalisation’, or ‘Englishisation’, of higher education in East Asia. Higher Education, 80(3), 395-414.
  • Gholizadeh, A., Rossel, R. A. V., Saberioon, M., Borůvka, L., Kratina, J., & Pavlů, L. (2021). National-scale spectroscopic assessment of soil organic carbon in forests of the Czech Republic. Geoderma, 385, 114832.
  • Hu, H., Dai, J., Jin, Y., & Liu, X. (2021). Bibliometric analysis on desertification restoration based on CiteSpace. Arabian Journal of Geosciences, 14(2), 1-10.
  • Jiang, Z., Yang, S., Ding, J., Sun, X., Chen, X., Liu, X., & Xu, J. (2021). Modeling Climate Change Effects on Rice Yield and Soil Carbon Under Variable Water and Nutrient Management. Sustainability, 13(2), 568.
  • Kamaşak, R., Sahan, K., & Rose, H. (2021). Academic language-related challenges at an English-medium university. Journal of English for Academic Purposes, 49, 100945.
  • Li, H., Wu, Y., Chen, J., Zhao, F., Wang, F., Sun, Y., . . . Qiu, L. (2021). Responses of soil organic carbon to climate change in the Qilian Mountains and its future projection. Journal of Hydrology, 596, 126110.
  • Liu, S., Lei, Y., Zhao, J., Yu, S., & Wang, L. (2020). Research on ecosystem services of water conservation and soil retention: a bibliometric analysis. Environmental Science and Pollution Research, 1-13.
  • Liu, Y., Wu, K., & Zhao, R. (2020). Bibliometric analysis of research on soil health from 1999 to 2018. Journal of Soils and Sediments, 20(3), 1513-1525.
  • Lu, X., & Liao, Y. (2017). Effect of tillage practices on net carbon flux and economic parameters from farmland on the Loess Plateau in China. Journal of Cleaner Production, 162, 1617-1624.
  • Macaro, E., Curle, S., Pun, J., An, J., & Dearden, J. (2018). A systematic review of English medium instruction in higher education. Language Teaching, 51(1), 36-76.
  • Moharana, P. C., Jena, R. K., Kumar, N., Singh, R. S., & Rao, S. S. (2021). Assessment of soil organic and inorganic carbon stock at different soil depths after conversion of desert into arable land in the hot arid regions of India. Carbon Management, 1-15.
  • Obersteiner, M., Bednar, J., Wagner, F., Gasser, T., Ciais, P., Forsell, N., . . . Janssens, I. A. (2018). How to spend a dwindling greenhouse gas budget. Nature Climate Change, 8(1), 7-10.
  • Pan, X., Lv, J., Dyck, M., & He, H. (2021). Bibliometric Analysis of Soil Nutrient Research between 1992 and 2020. Agriculture, 11(3), 223.
  • Putri, C. R., Soleh, S. M., Saregar, A., Anugrah, A., & Susilowati, N. E. (2021). Bibliometric analysis: Augmented reality-based physics laboratory with VOSviewer software. Paper presented at the Journal of Physics: Conference Series.
  • Rossel, R. V., Lee, J., Behrens, T., Luo, Z., Baldock, J., & Richards, A. (2019). Continental-scale soil carbon composition and vulnerability modulated by regional environmental controls. Nature geoscience, 12(7), 547-552.
  • Smith, P. (2008). Land use change and soil organic carbon dynamics. Nutrient Cycling in Agroecosystems, 81(2), 169-178. Sökmen, Y., & Nalçaci, A. (2020). A Bibliometric Analysis of the Articles about Values Education. International Journal of Curriculum and Instruction, 12(2), 720-735.
  • Zhang, H., Liu, X., Yi, J., Yang, X., Wu, T., He, Y., . . . Tian, P. (2020). Bibliometric Analysis of Research on Soil Water from 1934 to 2019. Water, 12(6), 1631.
Toplam 23 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Mühendislik
Bölüm Makaleler
Yazarlar

Emre Çomaklı 0000-0001-8477-7076

Yayımlanma Tarihi 31 Ağustos 2021
Yayımlandığı Sayı Yıl 2021 Sayı: 25

Kaynak Göster

APA Çomaklı, E. (2021). Toprak Organik Karbonu ve Toprak Organik Karbon Stokları üzerine 1970-2021 Yılları Arasında Yapılan Araştırmaların Bibliyometrik Analizi. Avrupa Bilim Ve Teknoloji Dergisi(25), 517-524. https://doi.org/10.31590/ejosat.929666