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Bazı İç Mekân Bitkilerinin Fotosentez Hızı ve Karbon Tutma Kapasitelerinin Belirlenmesi

Year 2024, Volume: 10 Issue: 3, 162 - 173, 28.12.2024
https://doi.org/10.58626/menba.1549028

Abstract

Bu çalışma ile iç mekân bitkisi olarak kullanılabilen bazı bitki türlerinin, fotosentez hızı ve karbon tutma kapasitelerini belirlemek amaçlanmıştır. Farklı ışık koşullarında, bitkilerin fotosentez hızının ve tür bazında da toplam Karbon (C) depolama kapasitesinin ne düzeyde değiştiği belirlenmiş ve böylece sınırlı mekanlar olan iç ortamlarda hangi bitkilerin hava kalitesini artırmak amacıyla kullanımının daha uygun olduğu belirlenmeye çalışılmıştır. Çalışma sonuçları, Ficus elastica ‘tineke’ (alacalı kauçuk) ve Monstera deliciosa (devetabanı)’da sabah ve öğlen yapılan ölçümler arasında istatistiki olarak anlamlı düzeyde farklılık bulunmadığını ve bu türlerin difüz ışıkta dahi direk ışık koşullarındaki kadar fotosentez yapabildiğini göstermektedir. Dolayısıyla gölge koşullarındaki iç mekanlarda alacalı kauçuk ve devetabanı türlerinin kullanılması tavsiye edilmektedir. Çalışma sonucunda en yüksek ortalama değerler Ficus elastica (kauçuk) ve Ficus benjamina (Benjamin) türlerinde elde edilmiştir. Bu sonuç iç mekanlarda hava kalitesini artırmak amacıyla kullanımı en uygun türlerin bu türler olduğunu göstermektedir. Ayrıca türlerin boyutları ve yaprak yüzey alanları düşünüldüğünde de bu türlerin iç ortam hava kalitesine en fazla pozitif etkiyi yapan türler olduğu söylenebilir.

Ethical Statement

a) Yazarların katkıları 1. AÖP : Çalışmayı tasarladı ve verileri yorumladı. Laboratuar çalışmasını gerçekleştirdi ve makaleyi hazırladı. b) Çıkar çatışması Yazarlar çıkar çatışması olmadığını beyan ettiler. c) Hayvanların Refahına İlişkin Beyan Bu çalışma hayvanları kapsamamaktadır. İnsan Hakları Beyanı Bu çalışma insan katılımcıları kapsamamaktadır.

Project Number

KÜBAP-01/2022-09

Thanks

Bu çalışma, Kastamonu Üniversitesi Bilimsel Araştırma Projeleri Koordinatörlüğü tarafından KÜBAP-01/2022-09 proje numarası ile finansal olarak desteklenmiştir.

References

  • Aricak, B., Canturk, U., Koc, I., Erdem, R., & Sevik, H. (2024). Shifts That May Appear in Climate Classifications in Bursa Due to Global Climate Change, Forestist. 74: 129-137. Doi:10.5152/ forestist.2024.23074
  • Cantürk, U., Koç, İ., Özel, H. B., & Şevik, H. (2024). Possible changes of Pinus nigra distribution regions in Türkiye with the impacts of global climate change. BioResources, 19(3), 6190- 6214. DOI:10.15376/biores.19.3.6190-6214
  • Canturk, U., Koç, İ., Ozel, H.B., & Sevik, H. (2024). Identification of proper species that can be used to monitor and decrease airborne Sb pollution. Environ Sci Pollut Res (2024). https://doi.org/10.1007/s11356-024-34939-7 Cetin, M., & Sevik, H. (2016). Indoor quality analysis of CO2 for Kastamonu University. In Conference of the International Journal of Arts & Sciences, 9,3: 71.
  • Çobanoglu, H., Canturk, U., Koc, I., Kulac, S., & Sevik, H. (2023). Climate Change Effect on Potential Distribution of Anatolian Chestnut (Castanea sativa Mill.) in the Upcoming Century in Türkiye, Forestist, 73(3): 247-256
  • Cobanoglu, H., Sevik, H., & Koç, İ. (2023). Do Annual Rings Really Reveal Cd, Ni, and Zn Pollution in the Air Related to Traffic Density? An Example of the Cedar Tree. Water, Air, & Soil Pollution, 234(2), 65.
  • Demir, T., Mutlu, E., Aydın, S., & Gültepe, N. (2021). Physicochemical water quality of Karabel, Çaltı, and Tohma brooks and blood biochemical parameters of Barbus plebejus fish: assessment of heavy metal concentrations for potential health risks. Environmental monitoring and assessment, 193: 1-15.
  • Dogan, S., Kilicoglu, C., Akinci, H., Sevik, H., & Cetin, M. (2023). Determining the suitable settlement areas in Alanya with GIS-based site selection analyses. Environmental science and pollution research, 30(11): 29180-29189.
  • EPA, 2024. https://www.epa.gov/indoor-air-quality-iaq/introduction-indoor-air-quality#vent, erişim. 12/09/2024
  • Erdem, R., Koç, İ., Çobanoğlu, H., & Şevik, H. (2024). Variation of magnesium, one of the macronutrients, in some trees based on organs and species. Forestist, 74(1): 84-93.
  • Erengezgin, Ç. (2008). Yeşil Çatılar, Enerji Raporu, 27.
  • Ertürk, N., Arıcak, B., Yiğit, N., & Sevik, H. (2024). Potential changes in the suitable distribution areas of fagus orientalis lipsky in kastamonu due to global climate change. Forestist, 74: 159-165. doi:10.5152/ forestist.2024.23024.
  • Ghoma, W. E. O., Sevik, H., & Isinkaralar, K. (2023). Comparison of the rate of certain trace metals accumulation in indoor plants for smoking and non-smoking areas. Environmental science and pollution research, 30(30): 75768-75776.
  • Ghoma, W.E.O., Sevik, H., & Isinkaralar, K. (2022). Using indoor plants as biomonitors for detection of toxic metals by tobacco smoke. Air Quality, Atmosphere & Health, 1-10.
  • Irga, P.J., Torpy, F.R., & Burchett, M.D. (2013). Can hydroculture be used to enhance the performance of indoor plants for the removal of air pollutants?, Atmospheric Environment, 77: 267-271.
  • Isinkaralar, K., Koc, I., Erdem, R., & Sevik, H. (2022). Atmospheric Cd, Cr, and Zn Deposition in Several Landscape Plants in Mersin, Türkiye. Water, Air, & Soil Pollution, 233(4): 1-10.
  • Key, K., Kulaç, Ş., Koç, İ., & Sevik, H. (2022). Determining the 180-year change of Cd, Fe, and Al concentrations in the air by using annual rings of Corylus colurna L. Water, Air, & Soil Pollution, 233(7): 244.
  • Kilicoglu, C., Cetin, M., Aricak, B., & Sevik, H. (2021). Integrating multicriteria decision-making analysis for a GIS-based settlement area in the district of Atakum, Samsun, Turkey. Theor Appl Climatol., 143: 379–388. https://doi.org/10.1007/s00704-020-03439-2
  • Koç, İ. (2021). Examination of gas exchange parameters of Abies balsamea (L) Mill. and Abies concolor saplings, grown under various water regime, exposed to extreme drought stress at the end of the growing season. Turkish journal of forest science, 5(2): 592-605.
  • Koç, İ. (2022). Comparison of the gas exchange parameters of two maple species (Acer negundo and Acer pseudoplatanus) seedlings under drought stress. Bartın Orman Fakültesi Dergisi, 24(1): 65-76.
  • Koç, İ., & Nzokou, P. (2022). Gas exchange parameters of 8-year-old Abies fraseri (Pursh) Poir. seedlings under different irrigation regimes. Turkish journal of agriculture-food science and technology, 10(12): 2421-2429.
  • Koç, İ., & Nzokou, P. (2023). Combined effects of water stress and fertilization on the morphology and gas exchange parameters of 3-year-old Abies fraseri (Pursh) Poir. Acta physiologiae plantarum, 45(3): 49.
  • Koç, İ., Nzokou, P., & Cregg, B. (2022). Biomass allocation and nutrient use efciency in response to water stress: insight from experimental manipulation of balsam fr, concolor fr and white pine transplants. New for 53: 915–933. https://doi.org/10.1007/s11056-021-09894-7
  • Kurz, M., Koelz, A., Gorges, J., Carmona, B. P., Brang, P., Vitasse, Y., ..., & Csillery, K. (2023). Tracing the origin of Oriental beech stands across Western Europe and reporting hybridization with European beech–Implications for assisted gene flow. Forest Ecology and Management, 531: 120801.
  • Lim, Y.W., Kim, H.H., Yang, J.Y., Kim, K.J., Lee, J.Y., & Shin, D.C. (2009). Improvement of Indoor Air Quality by Houseplants in New-built Apartment Building. Journal of the Japanese Society for Horticultural Science, 78(4): 456–462.
  • Moran, E., Lauder, J., Musser, C., Stathos, A., & Shu, M. (2017). The genetics of drought tolerance in conifers. New Phytol, 216: 1034–1048. https://doi.org/10.1111/nph.14774
  • Mutlu, E., Tokatlı, C., Islam, A. R. M. T., Islam, M. S., & Muhammad, S. (2023). Water quality assessment of Şehriban Stream (Kastamonu, Türkiye) from a multi-statistical perspective. International Journal of Environmental Analytical Chemistry, 1-17.
  • Ozel, H. B., Abo Aisha, A. E. S., Cetin, M., Sevik, H., & Zeren Cetin, I. (2021). The effects of increased exposure time to UV-B radiation on germination and seedling development of Anatolian black pine seeds. Environmental Monitoring and Assessment, 193(7): 388.
  • Özdikmenli, G., Yiğit, N., Özel, H. B., & Şevik, H. (2024). “Altitude-dependent Variations in Some Morphological and Anatomical Features of Anatolian Chestnut. BioResources, 19(3): 4635-4651.
  • Papinchak, H., Holcomb, E.J., Orendovici, B.T., & Decoteau, D.R. (2009). Effectiveness of houseplants in reducing the indoor air pollutant ozone. HortTechnology, 19 (2): 286-290.
  • Pennisi, S.V. & van Iersel, M.W. (2012). Quantification of carbon assimilation of plants in simulated and in situ interiorscapes. HortScience, 47(4): 468–476.
  • Seleiman, M.F., Al-Suhaibani, N., Ali, N., Akmal, M., Alotaibi, M., Refay, Y., Dindaroglu, T., Abdul-Wajid, H.H., Battaglia, M.L. (2021). Drought stress impacts on plants and diferent approaches to alleviate its adverse efects. Plants, 10(2): 259.
  • Şevik, H., Belkayalı, N., Sakıcı, Ç., Ayan, E., Şenöz, E., & Karakaş, H. (2015). Possibilities of Improving Indoor Air Quality in Classrooms Through Plants. Journal of Chemical, Biological and Physical Sciences, Section D, 5(2): 2115-2121.
  • Sevik, H., Çetin, M., Güney, K., & Belkayalı, N. (2017a). Difenbahya (Dieffenbachia amoena Gentil)’nın Sıcaklığa Bağlı Olarak İç Ortamdaki CO2 Miktarına Etkisi. Turkish Journal of Agriculture-Food Science and Technology, 5(8): 973-978.
  • Sevik, H., Cetin, M., Guney, K., & Belkayali, N. (2018). The Effect of Some Indoor Ornamental Plants on CO 2 Levels During the Day. Polish Journal of Environmental Studies, 27(2).
  • Sevik, H., Cetin, M., Kapucu, O., Aricak, B., & Canturk, U. (2017b). Effects of light on morphologic and stomatal characteristics of Turkish Fir needles (Abies nordmanniana subsp. bornmulleriana Mattf.). Fresenius Environmental Bulletin, 26 (11): 6579-6587
  • Sevik, H., Koç, İ., & Cobanoglu, H. (2024). Determination of Some Exotic Landscape Species As Biomonitors That Can Be Used for Monitoring and Reducing Pd Pollution in the Air. Water Air Soil Pollut., 235: 615. https://doi.org/10.1007/s11270-024-07429-2
  • Şevik, H., Yıldız, Y., & Özel, H.B. (2024). Phytoremediation and Long-term Metal Uptake Monitoring of Silver, Selenium, Antimony, and Thallium by Black Pine (Pinus nigra Arnold)”, BioResources, 19(3): 4824-4837.
  • Şen, G., Güngör, E., & Şevik, H. (2018). Defining the effects of urban expansion on land use/cover change: a case study in Kastamonu, Turkey. Environmental monitoring and assessment, 190: 1-13.
  • Torpy, F.R., Irga, P. J., & Burchett, M.D. (2014). Profiling indoor plants for the amelioration of high CO2 concentrations. Urban Forestry and Urban Greening, 13 (2): 227-233.
  • Torpy, F.R., Irga, P.J., Moldovan, D., Tarran, J., & Burchett, M.D. (2013). Characterisation and biostimulation of benzene biodegradation in the potting-mix of indoor plants. Journal of Applied Horticulture, 15(1): 10-15.
  • Wolverton, B.C., McDonald, R.C., & Mesick, H.H. (1985). Foliage plants for the indoor removal of carbon monoxide and nitrogen oxides. Journal of the Mississippi Academy of Sciences, 30: 1-8.
  • Wood, R.A., Burchett, M.D., Alquezar, R., Orwell, R., Tarran, J., & Torpy, F. (2006). The potted-plant microcosm substantially reduces indoor air VOC pollution: I. Office field-study, Water Air Soil Pollution, 175: 163-180.
  • Yang, D.S., Pennisi, S.V., Son, K.C., & Kays, S.J. (2009). Screening indoor plants for volatile organic pollutant removal efficiency. HortScience, 44(5): 1377-1381.
  • Zhu, J., Liang, Y., Zhu, Y., Hao, W., Lin, X., Wu, X., & Lou, A. (2012). The interactive effects of water and fertilizer on photosynthetic capacity and yield in tomato plants. Aust J Crop Sci, 6(2): 200–2009
Year 2024, Volume: 10 Issue: 3, 162 - 173, 28.12.2024
https://doi.org/10.58626/menba.1549028

Abstract

Project Number

KÜBAP-01/2022-09

References

  • Aricak, B., Canturk, U., Koc, I., Erdem, R., & Sevik, H. (2024). Shifts That May Appear in Climate Classifications in Bursa Due to Global Climate Change, Forestist. 74: 129-137. Doi:10.5152/ forestist.2024.23074
  • Cantürk, U., Koç, İ., Özel, H. B., & Şevik, H. (2024). Possible changes of Pinus nigra distribution regions in Türkiye with the impacts of global climate change. BioResources, 19(3), 6190- 6214. DOI:10.15376/biores.19.3.6190-6214
  • Canturk, U., Koç, İ., Ozel, H.B., & Sevik, H. (2024). Identification of proper species that can be used to monitor and decrease airborne Sb pollution. Environ Sci Pollut Res (2024). https://doi.org/10.1007/s11356-024-34939-7 Cetin, M., & Sevik, H. (2016). Indoor quality analysis of CO2 for Kastamonu University. In Conference of the International Journal of Arts & Sciences, 9,3: 71.
  • Çobanoglu, H., Canturk, U., Koc, I., Kulac, S., & Sevik, H. (2023). Climate Change Effect on Potential Distribution of Anatolian Chestnut (Castanea sativa Mill.) in the Upcoming Century in Türkiye, Forestist, 73(3): 247-256
  • Cobanoglu, H., Sevik, H., & Koç, İ. (2023). Do Annual Rings Really Reveal Cd, Ni, and Zn Pollution in the Air Related to Traffic Density? An Example of the Cedar Tree. Water, Air, & Soil Pollution, 234(2), 65.
  • Demir, T., Mutlu, E., Aydın, S., & Gültepe, N. (2021). Physicochemical water quality of Karabel, Çaltı, and Tohma brooks and blood biochemical parameters of Barbus plebejus fish: assessment of heavy metal concentrations for potential health risks. Environmental monitoring and assessment, 193: 1-15.
  • Dogan, S., Kilicoglu, C., Akinci, H., Sevik, H., & Cetin, M. (2023). Determining the suitable settlement areas in Alanya with GIS-based site selection analyses. Environmental science and pollution research, 30(11): 29180-29189.
  • EPA, 2024. https://www.epa.gov/indoor-air-quality-iaq/introduction-indoor-air-quality#vent, erişim. 12/09/2024
  • Erdem, R., Koç, İ., Çobanoğlu, H., & Şevik, H. (2024). Variation of magnesium, one of the macronutrients, in some trees based on organs and species. Forestist, 74(1): 84-93.
  • Erengezgin, Ç. (2008). Yeşil Çatılar, Enerji Raporu, 27.
  • Ertürk, N., Arıcak, B., Yiğit, N., & Sevik, H. (2024). Potential changes in the suitable distribution areas of fagus orientalis lipsky in kastamonu due to global climate change. Forestist, 74: 159-165. doi:10.5152/ forestist.2024.23024.
  • Ghoma, W. E. O., Sevik, H., & Isinkaralar, K. (2023). Comparison of the rate of certain trace metals accumulation in indoor plants for smoking and non-smoking areas. Environmental science and pollution research, 30(30): 75768-75776.
  • Ghoma, W.E.O., Sevik, H., & Isinkaralar, K. (2022). Using indoor plants as biomonitors for detection of toxic metals by tobacco smoke. Air Quality, Atmosphere & Health, 1-10.
  • Irga, P.J., Torpy, F.R., & Burchett, M.D. (2013). Can hydroculture be used to enhance the performance of indoor plants for the removal of air pollutants?, Atmospheric Environment, 77: 267-271.
  • Isinkaralar, K., Koc, I., Erdem, R., & Sevik, H. (2022). Atmospheric Cd, Cr, and Zn Deposition in Several Landscape Plants in Mersin, Türkiye. Water, Air, & Soil Pollution, 233(4): 1-10.
  • Key, K., Kulaç, Ş., Koç, İ., & Sevik, H. (2022). Determining the 180-year change of Cd, Fe, and Al concentrations in the air by using annual rings of Corylus colurna L. Water, Air, & Soil Pollution, 233(7): 244.
  • Kilicoglu, C., Cetin, M., Aricak, B., & Sevik, H. (2021). Integrating multicriteria decision-making analysis for a GIS-based settlement area in the district of Atakum, Samsun, Turkey. Theor Appl Climatol., 143: 379–388. https://doi.org/10.1007/s00704-020-03439-2
  • Koç, İ. (2021). Examination of gas exchange parameters of Abies balsamea (L) Mill. and Abies concolor saplings, grown under various water regime, exposed to extreme drought stress at the end of the growing season. Turkish journal of forest science, 5(2): 592-605.
  • Koç, İ. (2022). Comparison of the gas exchange parameters of two maple species (Acer negundo and Acer pseudoplatanus) seedlings under drought stress. Bartın Orman Fakültesi Dergisi, 24(1): 65-76.
  • Koç, İ., & Nzokou, P. (2022). Gas exchange parameters of 8-year-old Abies fraseri (Pursh) Poir. seedlings under different irrigation regimes. Turkish journal of agriculture-food science and technology, 10(12): 2421-2429.
  • Koç, İ., & Nzokou, P. (2023). Combined effects of water stress and fertilization on the morphology and gas exchange parameters of 3-year-old Abies fraseri (Pursh) Poir. Acta physiologiae plantarum, 45(3): 49.
  • Koç, İ., Nzokou, P., & Cregg, B. (2022). Biomass allocation and nutrient use efciency in response to water stress: insight from experimental manipulation of balsam fr, concolor fr and white pine transplants. New for 53: 915–933. https://doi.org/10.1007/s11056-021-09894-7
  • Kurz, M., Koelz, A., Gorges, J., Carmona, B. P., Brang, P., Vitasse, Y., ..., & Csillery, K. (2023). Tracing the origin of Oriental beech stands across Western Europe and reporting hybridization with European beech–Implications for assisted gene flow. Forest Ecology and Management, 531: 120801.
  • Lim, Y.W., Kim, H.H., Yang, J.Y., Kim, K.J., Lee, J.Y., & Shin, D.C. (2009). Improvement of Indoor Air Quality by Houseplants in New-built Apartment Building. Journal of the Japanese Society for Horticultural Science, 78(4): 456–462.
  • Moran, E., Lauder, J., Musser, C., Stathos, A., & Shu, M. (2017). The genetics of drought tolerance in conifers. New Phytol, 216: 1034–1048. https://doi.org/10.1111/nph.14774
  • Mutlu, E., Tokatlı, C., Islam, A. R. M. T., Islam, M. S., & Muhammad, S. (2023). Water quality assessment of Şehriban Stream (Kastamonu, Türkiye) from a multi-statistical perspective. International Journal of Environmental Analytical Chemistry, 1-17.
  • Ozel, H. B., Abo Aisha, A. E. S., Cetin, M., Sevik, H., & Zeren Cetin, I. (2021). The effects of increased exposure time to UV-B radiation on germination and seedling development of Anatolian black pine seeds. Environmental Monitoring and Assessment, 193(7): 388.
  • Özdikmenli, G., Yiğit, N., Özel, H. B., & Şevik, H. (2024). “Altitude-dependent Variations in Some Morphological and Anatomical Features of Anatolian Chestnut. BioResources, 19(3): 4635-4651.
  • Papinchak, H., Holcomb, E.J., Orendovici, B.T., & Decoteau, D.R. (2009). Effectiveness of houseplants in reducing the indoor air pollutant ozone. HortTechnology, 19 (2): 286-290.
  • Pennisi, S.V. & van Iersel, M.W. (2012). Quantification of carbon assimilation of plants in simulated and in situ interiorscapes. HortScience, 47(4): 468–476.
  • Seleiman, M.F., Al-Suhaibani, N., Ali, N., Akmal, M., Alotaibi, M., Refay, Y., Dindaroglu, T., Abdul-Wajid, H.H., Battaglia, M.L. (2021). Drought stress impacts on plants and diferent approaches to alleviate its adverse efects. Plants, 10(2): 259.
  • Şevik, H., Belkayalı, N., Sakıcı, Ç., Ayan, E., Şenöz, E., & Karakaş, H. (2015). Possibilities of Improving Indoor Air Quality in Classrooms Through Plants. Journal of Chemical, Biological and Physical Sciences, Section D, 5(2): 2115-2121.
  • Sevik, H., Çetin, M., Güney, K., & Belkayalı, N. (2017a). Difenbahya (Dieffenbachia amoena Gentil)’nın Sıcaklığa Bağlı Olarak İç Ortamdaki CO2 Miktarına Etkisi. Turkish Journal of Agriculture-Food Science and Technology, 5(8): 973-978.
  • Sevik, H., Cetin, M., Guney, K., & Belkayali, N. (2018). The Effect of Some Indoor Ornamental Plants on CO 2 Levels During the Day. Polish Journal of Environmental Studies, 27(2).
  • Sevik, H., Cetin, M., Kapucu, O., Aricak, B., & Canturk, U. (2017b). Effects of light on morphologic and stomatal characteristics of Turkish Fir needles (Abies nordmanniana subsp. bornmulleriana Mattf.). Fresenius Environmental Bulletin, 26 (11): 6579-6587
  • Sevik, H., Koç, İ., & Cobanoglu, H. (2024). Determination of Some Exotic Landscape Species As Biomonitors That Can Be Used for Monitoring and Reducing Pd Pollution in the Air. Water Air Soil Pollut., 235: 615. https://doi.org/10.1007/s11270-024-07429-2
  • Şevik, H., Yıldız, Y., & Özel, H.B. (2024). Phytoremediation and Long-term Metal Uptake Monitoring of Silver, Selenium, Antimony, and Thallium by Black Pine (Pinus nigra Arnold)”, BioResources, 19(3): 4824-4837.
  • Şen, G., Güngör, E., & Şevik, H. (2018). Defining the effects of urban expansion on land use/cover change: a case study in Kastamonu, Turkey. Environmental monitoring and assessment, 190: 1-13.
  • Torpy, F.R., Irga, P. J., & Burchett, M.D. (2014). Profiling indoor plants for the amelioration of high CO2 concentrations. Urban Forestry and Urban Greening, 13 (2): 227-233.
  • Torpy, F.R., Irga, P.J., Moldovan, D., Tarran, J., & Burchett, M.D. (2013). Characterisation and biostimulation of benzene biodegradation in the potting-mix of indoor plants. Journal of Applied Horticulture, 15(1): 10-15.
  • Wolverton, B.C., McDonald, R.C., & Mesick, H.H. (1985). Foliage plants for the indoor removal of carbon monoxide and nitrogen oxides. Journal of the Mississippi Academy of Sciences, 30: 1-8.
  • Wood, R.A., Burchett, M.D., Alquezar, R., Orwell, R., Tarran, J., & Torpy, F. (2006). The potted-plant microcosm substantially reduces indoor air VOC pollution: I. Office field-study, Water Air Soil Pollution, 175: 163-180.
  • Yang, D.S., Pennisi, S.V., Son, K.C., & Kays, S.J. (2009). Screening indoor plants for volatile organic pollutant removal efficiency. HortScience, 44(5): 1377-1381.
  • Zhu, J., Liang, Y., Zhu, Y., Hao, W., Lin, X., Wu, X., & Lou, A. (2012). The interactive effects of water and fertilizer on photosynthetic capacity and yield in tomato plants. Aust J Crop Sci, 6(2): 200–2009
There are 44 citations in total.

Details

Primary Language Turkish
Subjects Ecology (Other)
Journal Section Araştırmalar
Authors

Ayşe Öztürk Pulatoğlu 0000-0002-7673-8170

Project Number KÜBAP-01/2022-09
Publication Date December 28, 2024
Submission Date September 12, 2024
Acceptance Date December 2, 2024
Published in Issue Year 2024 Volume: 10 Issue: 3

Cite

APA Öztürk Pulatoğlu, A. (2024). Bazı İç Mekân Bitkilerinin Fotosentez Hızı ve Karbon Tutma Kapasitelerinin Belirlenmesi. Menba Kastamonu Üniversitesi Su Ürünleri Fakültesi Dergisi, 10(3), 162-173. https://doi.org/10.58626/menba.1549028
AMA Öztürk Pulatoğlu A. Bazı İç Mekân Bitkilerinin Fotosentez Hızı ve Karbon Tutma Kapasitelerinin Belirlenmesi. Menba Kastamonu Üniversitesi Su Ürünleri Fakültesi Dergisi. December 2024;10(3):162-173. doi:10.58626/menba.1549028
Chicago Öztürk Pulatoğlu, Ayşe. “Bazı İç Mekân Bitkilerinin Fotosentez Hızı Ve Karbon Tutma Kapasitelerinin Belirlenmesi”. Menba Kastamonu Üniversitesi Su Ürünleri Fakültesi Dergisi 10, no. 3 (December 2024): 162-73. https://doi.org/10.58626/menba.1549028.
EndNote Öztürk Pulatoğlu A (December 1, 2024) Bazı İç Mekân Bitkilerinin Fotosentez Hızı ve Karbon Tutma Kapasitelerinin Belirlenmesi. Menba Kastamonu Üniversitesi Su Ürünleri Fakültesi Dergisi 10 3 162–173.
IEEE A. Öztürk Pulatoğlu, “Bazı İç Mekân Bitkilerinin Fotosentez Hızı ve Karbon Tutma Kapasitelerinin Belirlenmesi”, Menba Kastamonu Üniversitesi Su Ürünleri Fakültesi Dergisi, vol. 10, no. 3, pp. 162–173, 2024, doi: 10.58626/menba.1549028.
ISNAD Öztürk Pulatoğlu, Ayşe. “Bazı İç Mekân Bitkilerinin Fotosentez Hızı Ve Karbon Tutma Kapasitelerinin Belirlenmesi”. Menba Kastamonu Üniversitesi Su Ürünleri Fakültesi Dergisi 10/3 (December 2024), 162-173. https://doi.org/10.58626/menba.1549028.
JAMA Öztürk Pulatoğlu A. Bazı İç Mekân Bitkilerinin Fotosentez Hızı ve Karbon Tutma Kapasitelerinin Belirlenmesi. Menba Kastamonu Üniversitesi Su Ürünleri Fakültesi Dergisi. 2024;10:162–173.
MLA Öztürk Pulatoğlu, Ayşe. “Bazı İç Mekân Bitkilerinin Fotosentez Hızı Ve Karbon Tutma Kapasitelerinin Belirlenmesi”. Menba Kastamonu Üniversitesi Su Ürünleri Fakültesi Dergisi, vol. 10, no. 3, 2024, pp. 162-73, doi:10.58626/menba.1549028.
Vancouver Öztürk Pulatoğlu A. Bazı İç Mekân Bitkilerinin Fotosentez Hızı ve Karbon Tutma Kapasitelerinin Belirlenmesi. Menba Kastamonu Üniversitesi Su Ürünleri Fakültesi Dergisi. 2024;10(3):162-73.