Research Article
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Evaluation of Pesticide Use in Greenhouse Tomato Production in the Context of Sustainability, Food Safety and Export Residue Notifications

Year 2025, Volume: 31 Issue: 1, 46 - 58, 14.01.2025

Abstract

The sustainability of agricultural production and access to healthy food are important issues in the agricultural sector. From a food safety perspective, pesticide residue problems are becoming an increasing concern for consumers worldwide. This study aims to evaluate pesticide use in greenhouse tomato production in terms of sustainability, food safety and export residue notifications. In this research, original data obtained from a face-to-face survey conducted with 115 greenhouse tomato farmers in Kumluca district of Antalya province was used. It was found that farmers on the surveyed farms used pesticides containing 57 different active ingredients. Various types of pesticides were used, including 12.9 kg/ha of insecticides, 10.9 kg/ha of nematicides, 8.8 kg/ha of fungicides, and 3.8 kg/ha of acaricides, resulting in a total of 36.5 kg/ha of pesticide use. The study revealed that 55.88% of the pesticides used by farmers were classified as hazardous according to the World Health Organization's (WHO) classification. The increasing number of pesticide residue notifications from European Union countries in recent years serves as a warning for Turkish farmers. Therefore, Türkiye needs to make more efforts to comply with international standards for the sustainability of tomato production and exports. As a result, in the research area, more efforts should be made to increase farmer training activities, tighten controls in greenhouse production, and strengthen safe food control mechanisms in order to reduce the use of pesticides for sustainable agriculture and safe food. In addition, greenhouse production support policies should be redesigned to encourage farmers to use biological control methods.

Supporting Institution

TÜBİTAK

Project Number

122N053

Thanks

This manuscript is derived from a master's thesis. The thesis work was supported by the PRIMA (Partnership for Research and Innovation in the Mediterranean Area) program under TÜBİTAK project number 122N053. I am very grateful to the Scientific and Technological Research Council of Turkey (TÜBİTAK) for their support.

References

  • Abou-Arab A A K (1999). Behavior of pesticides in tomatoes during commercial and home preparation. Food chemistry 65(4):509-514. https://doi.org/10.1016/S0308-8146(98)00231-3
  • Alguacil J, Kauppinen T, Porta M, Partanen T, Malats N, Kogevinas M, Benavides F G, Obiols J, Bernal F, Rifa J & Carrato A (2000). Risk of pancreatic cancer and occupational exposures in Spain. Annals of Occupational Hygiene 44(5): 391-403. https://doi.org/10.1093/annhyg/44.5.391
  • Anonymous (2023). Plant Protection Products Department of the Ministry of Agriculture and Forestry. Retrieved June 9, 2023, https://bku.tarimorman.gov.tr/
  • Anonymous (2024). Supports Provided for Greenhouse Production. Retrieved June 18, 2024, https://www.tarimorman.gov.tr/Konular/Bitkisel-Uretim/Tarla-Ve-Bahce-Bitkileri/Ortu-Alti-Yetistiricilik
  • Bassil K L, Vakil C, Sanborn M, Cole D C, Kaur J S, & Kerr K J (2007). Cancer health effects of pesticides: Systematic review. Canadian Family Physician 53(10): 1704-1711
  • Bayramoğlu Z, Gündoğmuş E, & Tatlıdil F F (2010). The impact of EurepGAP requirements on farm income from greenhouse tomatoes in Turkey. African Journal of Agricultural Research 5(5): 348-355
  • Çanakcı M & Akıncı İ (2009). Agricultural practices and human labor utilization in greenhouse vegetable cultivation in Antalya province. Journal of Agricultural Machinery Science 5(2): 193-202 (In Turkish)
  • Ceylan R F, Özkan B, Sayın C & Akpınar M G (2020). Factors effecting profit efficiency of greenhouse producers in Antalya. International Conference Emerging New Word (ICENWE). July 26-28, India, 117-128
  • Demircan V, Turan A & Dalgıç A (2019). Labor use in greenhouse tomato production: a case study from Kumluca district of Antalya province, Turkey. Lucrări Ştiinţifice 62(2): 9-12
  • Dolapsakis G, Vlachonikolis I G, Varveris C & Tsatsakis A M (2001). Mammographic findings and occupational exposure to pesticides currently in use on crete. European Journal of Cancer, 37(12): 1531-1536. https://doi.org/10.1016/S0959-8049(01)00159-9
  • Engindeniz S, Yılmaz İ, Durmuşoğlu E, Yağmur B, Eltez R Z, Demirtaş B, Engindeniz D & Tatarhan A H (2010). Comparative input analysis of greenhouse vegetables. Ecology, 19(74): 122-130. https://doi.org/10.5053/ekoloji.2010.7415
  • European Commission (2024). The Common Agricultural Policy at A Glance. Retrieved June 18, 2024, https://agriculture.ec.europa.eu/common-agricultural-policy/cap-overview/cap-glance_en
  • Eyhorn F, Roner T & Specking H (2015). Reducing Pesticide Use and Risks-What Action is Needed. Swiss Intercooperation. September 1-30, Helvetas 1-32
  • FAO (2023). Tomatoes. Retrieved June 20, 2023, https://www.fao.org/land-water/databases-and-software/crop-information/tomato/en/
  • FAOSTAT (2020). Pesticides Indicators. Retrieved May 14, 2023, https://www.fao.org/faostat/en/#data/EP
  • Geiger F, Bengtsson J, Berendse F, Weisser W W, Emmerson M, Morales M B, Ceryngier P, Liira J, Tscharntke T, Winqvist C, Eggers S, Bommarco R, Part T, Retagnolle V, Plantegenest M, Clement L W, Dennis C, Palmer C, Onate J J, Guerrero I, Hawro V, Aavik T, Thies C, Flohre A, Hanke S, Fischer C, Goedhart P W, & Inchausti P. (2010). Persistent negative effects of pesticides on biodiversity and biological control potential on European farmland. Basic and Applied Ecology, 11(2): 97-105. https://doi.org/10.1016/j.baae.2009.12.001
  • Hepsağ F & Kizildeniz T (2021). Pesticide residues and health risk appraisal of tomato cultivated in greenhouse from the Mediterranean region of Turkey. Environmental Science and Pollution Research 28(18): 22551-22562
  • Infante-Rivard C, Labuda D, Krajinovic M & Sinnett D (1999). Risk of childhood leukemia associated with exposure to pesticides and with gene polymorphisms. Epidemiology 10(5): 481-487. https://www.jstor.org/stable/3703333
  • Kan M (2002). Issues and Solution Suggestions in the Use of Agricultural Pesticides in Greenhouse Vegetable Cultivation in Kumluca District of Antalya Province. (Published Master's Thesis, Ankara University, Institute of Natural Sciences) (In Turkish)
  • Karaman S & Yılmaz İ (2007). Analysis of factors determining the use of Bombus bees for pollination in greenhouse tomato production. Tekirdağ Journal of Agricultural Faculty 4(1): 99-107 (In Turkish)
  • Kinuthia C W (2019). Determinants of pesticide use and uptake of alternative pest control methods among small scale tomato farmers in Nakuru County, Kenya (Doctoral dissertation, Egerton University).
  • Kumar N, Pathera A K, Saini P & Kumar M (2012). Harmful effects of pesticides on human health. Annals of Agri-Bio Research 17(2): 125-127
  • Kurek A (2007). Eurepgap–The principles of certification and their implementation in horticultural holdings. Acta Scientiarum Polonorum. Oeconomia, 6(3):85-94.
  • Maham S G, Rahimi A, Subramanian S & Smith D L (2020). The environmental impacts of organic greenhouse tomato production based on the nitrogen-fixing plant (Azolla). Journal of Cleaner Production, 245: 118679. https://doi.org/10.1016/j.jclepro.2019.118679
  • Mahmood I, Imadi S R, Shazadi K, Gul A & Hakeem K R (2016). Effects of pesticides on environment. Plant, soil and microbes, 1: 253-269. https://doi.org/10.1007/978-3-319-27455-3_13
  • Malgie W, Ori L & Ori H (2015). A study of pesticide usage and pesticide safety awareness among farmers in Commewijne in Suriname. Journal of Agricultural Technology, 11(3): 621-636.
  • Mason P G & Huber J T (2002). Biological Control Programmes in Canada, 1981–2000. CABI Publishing.
  • Metin F D (2020). Determination of Purchasing Power of Producers Engaged in Greenhouse Tomato Production in Antalya Province. (Published Master's Thesis, Akdeniz University, Institute of Natural Sciences) (In Turkish)
  • Nguetti J H, Imungi J K, Okoth M W, Wang’ombe J, Mbacham W F & Mitema S E (2018). Assessment of the knowledge and use of pesticides by the tomato farmers in Mwea Region, Kenya. African Journal of Agricultural Research, 13(8): 379-388.
  • OECD (2022). Education at a Glance. Retrieved May 22, 2023, https://doi.org/10.1787/3197152b-en
  • Ombeni J, Munyuli T & Makelele J (2021). Use of pesticides in tomato crop and its impact on the nutritional quality of vegetables and the health status of market gardeners in rural health zones of South Kivu Province, Eastern of the Democratic Republic of Congo. Academia Letters, 2.
  • Özkan B, Akçaöz H V, Karaman S & Tașcıoglu Y (2002). An economic assessment of pesticide use in greenhouse vegetable production in Antalya Province.
  • Özkan B, Hatırlı S A, Öztürk E & Aktaş A R (2008). Profitability Analysis of Greenhouse Tomato Production in Antalya Province. The Scientific And Technical Research Council Of Turkey. PROJECT NO: TOVAG-106 O 026. (In Turkish)
  • Özkan B, Hatırlı S, Öztürk E & Aktaş A (2011). Profitability analysis of greenhouse tomato production in Antalya province. Journal of Agricultural Sciences, 17(1): 34-42. https://doi.org/10.1501/Tarimbil_0000001154
  • Pérez-García A, Romero D & De Vicente A (2011). Plant protection and growth stimulation by microorganisms: biotechnological applications of bacilli in agriculture. Current opinion in biotechnology, 22(2): 187-193. https://doi.org/10.1016/j.copbio.2010.12.003
  • Pishgar-Komleh S H, Akram A, Keyhani A, Raei M, Elshout P M F, Huijbregts M A J & Van Zelm R (2017). Variability in the carbon footprint of open-field tomato production in Iran-A case study of Alborz and East-Azerbaijan provinces. Journal of cleaner production, 142: 1510-1517. https://doi.org/10.1016/j.jclepro.2016.11.154
  • RASFF Window (2023). European Commisssion. Retrieved January 2, 2024, https://webgate.ec.europa.eu/rasff-window/screen/list
  • Republic of Türkiye Ministry of Trade (2021). The Green Deal Action Plan. Retrieved June 5, 2023, https://ticaret.gov.tr/data/60f1200013b876eb28421b23/MUTABAKAT%20YE%C5%9E%C4%B0L.pdf
  • Sanga E E & Elia E F (2020). Socio-demographic determinants of access to climate change information among tomato growing farmers in Mvomero District, Tanzania. University of Dar es Salaam Library Journal 15(2): 121-136
  • Sayın B, Bayav A, Beşen T, Karamürsel D, Çelikyurt M A, Emre M, Kuzgun M, Yılmaz Ş G & Arslan S (2020). Determination of producers' perspectives on biological and biotechnical pest control practices and their environmental awareness. Kahramanmaraş Sütçü İmam University Journal of Agriculture and Nature 23(2): 453-466. https://doi.org.tr/10.18016/ksutarimdoga.vi.599085 (In Turkish)
  • Sezgin V (2022). How will Ukraine-Russia war affect Turkish trade? Journal of Abant Social Sciences 22(2): 546-557
  • Sharma A, Kumar V, Shahzad B, Tanveer M, Sidhu G P S, Handa N, Kohli S K, Yadav P, Bali A S, Parihar R D, Dar O I, Singh K, Jasrotia S, Bakshi P, Ramakrishnan M, Kumar S, Bhardwaj R & Thukral A K (2019). Worldwide pesticide usage and its impacts on ecosystem. SN Applied Sciences 1: 1-16
  • Szpilko D & Ejdys J (2022). European Green Deal–research directions. a systematic literature review. Ekonomia i Środowisko. 2.
  • Topuz E (2005). Some alternative methods to chemical pesticides in agricultural pest control. Derim 22(2): 53-59 (In Turkish)
  • TRADE MAP (2022). Foreign Trade. Retrieved April 28, 2023, https://www.trademap.org/ TÜİK (2021). Tomato Production Quantity. Retrieved March 24, 2022, https://biruni.tuik.gov.tr/medas/?locale=tr
  • UNDP (2022). Human Development Report. Retrieved May 22, 2023, https://hdr.undp.org/system/files/documents/global-report-document/hdr2021-22pdf_1.pdf
  • Van Driesche R & Bellows Jr T S (2012). Biological Control. Springer Science & Business Media. https://doi.org/10.1007/978-1-4613-1157-7
  • Varoğlu S T (2022). Agricultural Producers' Approaches to Sustainable Agriculture in Iğdır Province. (Published Doctoral Dissertation, Uludağ University, Institute of Natural Sciences) (In Turkish)
  • Wang A, Hussain S & Yan J (2024). Evaluating the interlinkage between pesticide residue regulation and agricultural green total factor productivity: empirical insights derived from the threshold effect model. Environment Development and Sustainability. https://doi.org/10.1007/s10668-024-04744-w
  • Wezel A, Casagrande M, Celette F, Vian J F, Ferrer A & Peigné J (2014). Agroecological practices for sustainable agriculture: A review. Agronomy for Sustainable Development 34: 1-20. https://doi.org/10.1007/s13593-013-0180-7
  • Wilson G (1989). Family food systems, preventive health and dietary change: a policy to increase the health divide. Journal of Social Policy 18(2): 167-185
  • Yılmaz H & Tanç Z A (2019). Biological control in pest management in Turkey: Comparison of the attributes of participant and non-participant greenhouse farmers in government-subsidized biological control practices. Future of Food: Journal on Food, Agriculture and Society 7(2): 1-8. https://doi.org/10.17170/kobra-20190709594
  • Yılmaz H (2014). An Analysis on Factors Influencing government supported Bumble bees use as pollinators by greenhouse producers' in The Mediterranean Coastal Region Of Turkey. Acta Scientiarum Polonorum Hortorum Cultus 13(6): 59-70
  • Yilmaz H (2015a) Farm level analysis of pesticide use in sweet cherry (Prunus avium L.) growing in west Mediterranean Region of Turkey. Acta Scientiarum Polonorum Hortorum Cultus 14(3): 115–129
  • Yilmaz H (2015b). Analysis in terms of environmental awareness of farmers’ decisions and attitudes in pesticide use: The case of Turkey. Bulg. Chem. Commun 47: 771–775
Year 2025, Volume: 31 Issue: 1, 46 - 58, 14.01.2025

Abstract

Project Number

122N053

References

  • Abou-Arab A A K (1999). Behavior of pesticides in tomatoes during commercial and home preparation. Food chemistry 65(4):509-514. https://doi.org/10.1016/S0308-8146(98)00231-3
  • Alguacil J, Kauppinen T, Porta M, Partanen T, Malats N, Kogevinas M, Benavides F G, Obiols J, Bernal F, Rifa J & Carrato A (2000). Risk of pancreatic cancer and occupational exposures in Spain. Annals of Occupational Hygiene 44(5): 391-403. https://doi.org/10.1093/annhyg/44.5.391
  • Anonymous (2023). Plant Protection Products Department of the Ministry of Agriculture and Forestry. Retrieved June 9, 2023, https://bku.tarimorman.gov.tr/
  • Anonymous (2024). Supports Provided for Greenhouse Production. Retrieved June 18, 2024, https://www.tarimorman.gov.tr/Konular/Bitkisel-Uretim/Tarla-Ve-Bahce-Bitkileri/Ortu-Alti-Yetistiricilik
  • Bassil K L, Vakil C, Sanborn M, Cole D C, Kaur J S, & Kerr K J (2007). Cancer health effects of pesticides: Systematic review. Canadian Family Physician 53(10): 1704-1711
  • Bayramoğlu Z, Gündoğmuş E, & Tatlıdil F F (2010). The impact of EurepGAP requirements on farm income from greenhouse tomatoes in Turkey. African Journal of Agricultural Research 5(5): 348-355
  • Çanakcı M & Akıncı İ (2009). Agricultural practices and human labor utilization in greenhouse vegetable cultivation in Antalya province. Journal of Agricultural Machinery Science 5(2): 193-202 (In Turkish)
  • Ceylan R F, Özkan B, Sayın C & Akpınar M G (2020). Factors effecting profit efficiency of greenhouse producers in Antalya. International Conference Emerging New Word (ICENWE). July 26-28, India, 117-128
  • Demircan V, Turan A & Dalgıç A (2019). Labor use in greenhouse tomato production: a case study from Kumluca district of Antalya province, Turkey. Lucrări Ştiinţifice 62(2): 9-12
  • Dolapsakis G, Vlachonikolis I G, Varveris C & Tsatsakis A M (2001). Mammographic findings and occupational exposure to pesticides currently in use on crete. European Journal of Cancer, 37(12): 1531-1536. https://doi.org/10.1016/S0959-8049(01)00159-9
  • Engindeniz S, Yılmaz İ, Durmuşoğlu E, Yağmur B, Eltez R Z, Demirtaş B, Engindeniz D & Tatarhan A H (2010). Comparative input analysis of greenhouse vegetables. Ecology, 19(74): 122-130. https://doi.org/10.5053/ekoloji.2010.7415
  • European Commission (2024). The Common Agricultural Policy at A Glance. Retrieved June 18, 2024, https://agriculture.ec.europa.eu/common-agricultural-policy/cap-overview/cap-glance_en
  • Eyhorn F, Roner T & Specking H (2015). Reducing Pesticide Use and Risks-What Action is Needed. Swiss Intercooperation. September 1-30, Helvetas 1-32
  • FAO (2023). Tomatoes. Retrieved June 20, 2023, https://www.fao.org/land-water/databases-and-software/crop-information/tomato/en/
  • FAOSTAT (2020). Pesticides Indicators. Retrieved May 14, 2023, https://www.fao.org/faostat/en/#data/EP
  • Geiger F, Bengtsson J, Berendse F, Weisser W W, Emmerson M, Morales M B, Ceryngier P, Liira J, Tscharntke T, Winqvist C, Eggers S, Bommarco R, Part T, Retagnolle V, Plantegenest M, Clement L W, Dennis C, Palmer C, Onate J J, Guerrero I, Hawro V, Aavik T, Thies C, Flohre A, Hanke S, Fischer C, Goedhart P W, & Inchausti P. (2010). Persistent negative effects of pesticides on biodiversity and biological control potential on European farmland. Basic and Applied Ecology, 11(2): 97-105. https://doi.org/10.1016/j.baae.2009.12.001
  • Hepsağ F & Kizildeniz T (2021). Pesticide residues and health risk appraisal of tomato cultivated in greenhouse from the Mediterranean region of Turkey. Environmental Science and Pollution Research 28(18): 22551-22562
  • Infante-Rivard C, Labuda D, Krajinovic M & Sinnett D (1999). Risk of childhood leukemia associated with exposure to pesticides and with gene polymorphisms. Epidemiology 10(5): 481-487. https://www.jstor.org/stable/3703333
  • Kan M (2002). Issues and Solution Suggestions in the Use of Agricultural Pesticides in Greenhouse Vegetable Cultivation in Kumluca District of Antalya Province. (Published Master's Thesis, Ankara University, Institute of Natural Sciences) (In Turkish)
  • Karaman S & Yılmaz İ (2007). Analysis of factors determining the use of Bombus bees for pollination in greenhouse tomato production. Tekirdağ Journal of Agricultural Faculty 4(1): 99-107 (In Turkish)
  • Kinuthia C W (2019). Determinants of pesticide use and uptake of alternative pest control methods among small scale tomato farmers in Nakuru County, Kenya (Doctoral dissertation, Egerton University).
  • Kumar N, Pathera A K, Saini P & Kumar M (2012). Harmful effects of pesticides on human health. Annals of Agri-Bio Research 17(2): 125-127
  • Kurek A (2007). Eurepgap–The principles of certification and their implementation in horticultural holdings. Acta Scientiarum Polonorum. Oeconomia, 6(3):85-94.
  • Maham S G, Rahimi A, Subramanian S & Smith D L (2020). The environmental impacts of organic greenhouse tomato production based on the nitrogen-fixing plant (Azolla). Journal of Cleaner Production, 245: 118679. https://doi.org/10.1016/j.jclepro.2019.118679
  • Mahmood I, Imadi S R, Shazadi K, Gul A & Hakeem K R (2016). Effects of pesticides on environment. Plant, soil and microbes, 1: 253-269. https://doi.org/10.1007/978-3-319-27455-3_13
  • Malgie W, Ori L & Ori H (2015). A study of pesticide usage and pesticide safety awareness among farmers in Commewijne in Suriname. Journal of Agricultural Technology, 11(3): 621-636.
  • Mason P G & Huber J T (2002). Biological Control Programmes in Canada, 1981–2000. CABI Publishing.
  • Metin F D (2020). Determination of Purchasing Power of Producers Engaged in Greenhouse Tomato Production in Antalya Province. (Published Master's Thesis, Akdeniz University, Institute of Natural Sciences) (In Turkish)
  • Nguetti J H, Imungi J K, Okoth M W, Wang’ombe J, Mbacham W F & Mitema S E (2018). Assessment of the knowledge and use of pesticides by the tomato farmers in Mwea Region, Kenya. African Journal of Agricultural Research, 13(8): 379-388.
  • OECD (2022). Education at a Glance. Retrieved May 22, 2023, https://doi.org/10.1787/3197152b-en
  • Ombeni J, Munyuli T & Makelele J (2021). Use of pesticides in tomato crop and its impact on the nutritional quality of vegetables and the health status of market gardeners in rural health zones of South Kivu Province, Eastern of the Democratic Republic of Congo. Academia Letters, 2.
  • Özkan B, Akçaöz H V, Karaman S & Tașcıoglu Y (2002). An economic assessment of pesticide use in greenhouse vegetable production in Antalya Province.
  • Özkan B, Hatırlı S A, Öztürk E & Aktaş A R (2008). Profitability Analysis of Greenhouse Tomato Production in Antalya Province. The Scientific And Technical Research Council Of Turkey. PROJECT NO: TOVAG-106 O 026. (In Turkish)
  • Özkan B, Hatırlı S, Öztürk E & Aktaş A (2011). Profitability analysis of greenhouse tomato production in Antalya province. Journal of Agricultural Sciences, 17(1): 34-42. https://doi.org/10.1501/Tarimbil_0000001154
  • Pérez-García A, Romero D & De Vicente A (2011). Plant protection and growth stimulation by microorganisms: biotechnological applications of bacilli in agriculture. Current opinion in biotechnology, 22(2): 187-193. https://doi.org/10.1016/j.copbio.2010.12.003
  • Pishgar-Komleh S H, Akram A, Keyhani A, Raei M, Elshout P M F, Huijbregts M A J & Van Zelm R (2017). Variability in the carbon footprint of open-field tomato production in Iran-A case study of Alborz and East-Azerbaijan provinces. Journal of cleaner production, 142: 1510-1517. https://doi.org/10.1016/j.jclepro.2016.11.154
  • RASFF Window (2023). European Commisssion. Retrieved January 2, 2024, https://webgate.ec.europa.eu/rasff-window/screen/list
  • Republic of Türkiye Ministry of Trade (2021). The Green Deal Action Plan. Retrieved June 5, 2023, https://ticaret.gov.tr/data/60f1200013b876eb28421b23/MUTABAKAT%20YE%C5%9E%C4%B0L.pdf
  • Sanga E E & Elia E F (2020). Socio-demographic determinants of access to climate change information among tomato growing farmers in Mvomero District, Tanzania. University of Dar es Salaam Library Journal 15(2): 121-136
  • Sayın B, Bayav A, Beşen T, Karamürsel D, Çelikyurt M A, Emre M, Kuzgun M, Yılmaz Ş G & Arslan S (2020). Determination of producers' perspectives on biological and biotechnical pest control practices and their environmental awareness. Kahramanmaraş Sütçü İmam University Journal of Agriculture and Nature 23(2): 453-466. https://doi.org.tr/10.18016/ksutarimdoga.vi.599085 (In Turkish)
  • Sezgin V (2022). How will Ukraine-Russia war affect Turkish trade? Journal of Abant Social Sciences 22(2): 546-557
  • Sharma A, Kumar V, Shahzad B, Tanveer M, Sidhu G P S, Handa N, Kohli S K, Yadav P, Bali A S, Parihar R D, Dar O I, Singh K, Jasrotia S, Bakshi P, Ramakrishnan M, Kumar S, Bhardwaj R & Thukral A K (2019). Worldwide pesticide usage and its impacts on ecosystem. SN Applied Sciences 1: 1-16
  • Szpilko D & Ejdys J (2022). European Green Deal–research directions. a systematic literature review. Ekonomia i Środowisko. 2.
  • Topuz E (2005). Some alternative methods to chemical pesticides in agricultural pest control. Derim 22(2): 53-59 (In Turkish)
  • TRADE MAP (2022). Foreign Trade. Retrieved April 28, 2023, https://www.trademap.org/ TÜİK (2021). Tomato Production Quantity. Retrieved March 24, 2022, https://biruni.tuik.gov.tr/medas/?locale=tr
  • UNDP (2022). Human Development Report. Retrieved May 22, 2023, https://hdr.undp.org/system/files/documents/global-report-document/hdr2021-22pdf_1.pdf
  • Van Driesche R & Bellows Jr T S (2012). Biological Control. Springer Science & Business Media. https://doi.org/10.1007/978-1-4613-1157-7
  • Varoğlu S T (2022). Agricultural Producers' Approaches to Sustainable Agriculture in Iğdır Province. (Published Doctoral Dissertation, Uludağ University, Institute of Natural Sciences) (In Turkish)
  • Wang A, Hussain S & Yan J (2024). Evaluating the interlinkage between pesticide residue regulation and agricultural green total factor productivity: empirical insights derived from the threshold effect model. Environment Development and Sustainability. https://doi.org/10.1007/s10668-024-04744-w
  • Wezel A, Casagrande M, Celette F, Vian J F, Ferrer A & Peigné J (2014). Agroecological practices for sustainable agriculture: A review. Agronomy for Sustainable Development 34: 1-20. https://doi.org/10.1007/s13593-013-0180-7
  • Wilson G (1989). Family food systems, preventive health and dietary change: a policy to increase the health divide. Journal of Social Policy 18(2): 167-185
  • Yılmaz H & Tanç Z A (2019). Biological control in pest management in Turkey: Comparison of the attributes of participant and non-participant greenhouse farmers in government-subsidized biological control practices. Future of Food: Journal on Food, Agriculture and Society 7(2): 1-8. https://doi.org/10.17170/kobra-20190709594
  • Yılmaz H (2014). An Analysis on Factors Influencing government supported Bumble bees use as pollinators by greenhouse producers' in The Mediterranean Coastal Region Of Turkey. Acta Scientiarum Polonorum Hortorum Cultus 13(6): 59-70
  • Yilmaz H (2015a) Farm level analysis of pesticide use in sweet cherry (Prunus avium L.) growing in west Mediterranean Region of Turkey. Acta Scientiarum Polonorum Hortorum Cultus 14(3): 115–129
  • Yilmaz H (2015b). Analysis in terms of environmental awareness of farmers’ decisions and attitudes in pesticide use: The case of Turkey. Bulg. Chem. Commun 47: 771–775
There are 55 citations in total.

Details

Primary Language English
Subjects Agricultural Economics (Other)
Journal Section Makaleler
Authors

Merve Mürüvvet Dağ 0000-0003-0809-4761

Hasan Yılmaz 0000-0002-0487-8449

Project Number 122N053
Publication Date January 14, 2025
Submission Date April 16, 2024
Acceptance Date July 29, 2024
Published in Issue Year 2025 Volume: 31 Issue: 1

Cite

APA Dağ, M. M., & Yılmaz, H. (2025). Evaluation of Pesticide Use in Greenhouse Tomato Production in the Context of Sustainability, Food Safety and Export Residue Notifications. Journal of Agricultural Sciences, 31(1), 46-58. https://doi.org/10.15832/ankutbd.1469332

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