Cleaner Production Practice Recommendations in the Agriculture Sector: Literature Review
Referanslar
Abbas, S., 2022. Global warming and export competitiveness of agriculture se¬ctor: evidence from heterogeneous econometric analysis of Pakistan. En¬vironmental Science and Pollution Research, 29(23):34325-34337. https:// doi.org/10.1007/s11356-022-18562-y
Abdel-Aziz, H.M.M., Hasaneen, M.N.A., Omer, A.M., 2016. Nano chito¬san-NPK fertilizer enhances the growth and productivity of wheat plants grown in sandy soil. Spanish J Agric Res 14: 1–9. http://dx.doi.org/10.5424/ sjar/2016141-8205.
Acosta-Silva, Y.D.J., Torres-Pacheco, I., Matsumoto, Y., Toledano-Ayala, M., So¬to-Zarazúa, G. M., Zelaya-Ángel, O., & Méndez-López, A., 2019. Applica¬tions of solar and wind renewable energy in agriculture: A review. Science Progress, 102(2):127-140. https://doi.org/10.1177/0036850419832696
Alkaya, E., Demirer, G.N., 2015. Sectoral assessment of the Turkish textile in¬dustry for the diffusion of sustainable production approach. The Journal of The Textile Institute, 106(11):1212-1225. https://www.tandfonline.com/ doi/pdf/10.1080/00405000.2014.985880
Athira, G., Bahurudeen, A., & Appari, S., 2019. Sustainable alternatives to car¬bon intensive paddy field burning in India: A framework for cleaner pro¬duction in agriculture, energy, and construction industries. Journal of clea¬ner production, 236, 117598. https://doi.org/10.1016/j.jclepro.2019.07.073
Bernardes, M. F. F., Pazin, M., Pereira, L. C., & Dorta, D. J., 2015. Impact of pesticides on environmental and human health. Toxicology studies-cells, drugs and environment, 195-233. https://dx.doi.org/10.5772/59710
Case, L., Mendicino, L., Thomas, D., 1995. Developing and maintain a pollution prevention program. In: Freeman, H.M. (Ed.), Industrial Pollution Preven¬tion Handbook. McGraw-Hill, New York, pp. 99e120.
CEBDS (Brazilian Business Council for Sustainable Development), 2003. Guia daprodução mais Limpaefaça você mesmo. http://www.pmaisl.com.br/ publicacoes/guia-da-pmaisl.pdf (accessed 16.01.12. by Lopes Silva et al., 2013).
CETESB (Company of Environmental Sanitation Technology of the Sao Paulo State), 2002. Manual para implementação de um programa de Prevenção à Poluição,fourthed.. http://www.cetesb.sp.gov.br/tecnologia/producao_lim-pa/documentos/manual_implem.pdf (accessed 16.01.12. by Lopes Silva et al., 2013).
Christensen, T., Pedersen, A. B., Nielsen, H. O., Mørkbak, M. R., Hasler, B., & Denver, S., 2011. Determinants of farmers’ willingness to participate in subsidy schemes for pesticide-free buffer zones—A choice experiment study. Ecological economics, 70(8): 1558-1564. https://doi.org/10.1016/j. ecolecon.2011.03.021
Environment Canada, 2009. Pollution Prevention Handbook. http://www. ec.gc.ca/planp2-p2plan/default.asp?lang¼En&n¼56875F44-1 (accessed 31.08.12. by Lopes Silva et al., 2013)
da Silva, P.C., de Oliveira, Neto, G.C., Correia, J.M.F., Tucci, H.N.P., 2021. Eva¬luation of economic, environmental and operational performance of the adoption of cleaner production: Survey in large textile industries. Jour¬nal of Cleaner Production, 278, 123855. https://doi.org/10.1016/j.jc¬lepro.2020.123855
de Oliveira Neto, G. C, Correia, J.M.F., Silva, P. C, de Oliveira Sanches, A.G., Lucato, W.C., 2019. Cleaner Production in the textile industry and its re¬lationship to sustainable development goals. Journal of cleaner producti¬on, 228:1514-1525. https://doi.org/10.1016/j.jclepro.2019.04.334
Dhawan, V., 2017. Water and agriculture in India. In Background paper for the South Asia expert panel during the Global Forum for Food and Agricul¬ture (Vol. 28).
Diamond, J., 2018. Tüfek, Mikrop ve Çelik. ISBN:978-605-299-457-3
Fan, X., Zhang, W., Chen, W., & Chen, B., 2020. Land–water–energy nexus in agricultural management for greenhouse gas mitigation. Applied Ener¬gy, 265, 114796. https://doi.org/10.1016/j.apenergy.2020.114796
Garcia, D. J., Lovett, B. M.,You, F., 2019. Considering agricultural wastes and ecosystem services in Food-Energy-Water-Waste Nexus system de¬sign. Journal of cleaner production, 228, 941-955. https://doi.org/10.1016/j. jclepro.2019.04.314.
Giroto, A. S., Guimarães, G. G. F., Foschini, M., & Ribeiro, C., 2017. Role of slow-release nanocomposite fertilizers on nitrogen and phosphate availabi¬lity in soil. Sci Rep 7: 46032. http://dx.doi.org/10.1038/srep46032
Godfray, H. C. J., Beddington, J. R., Crute, I. R., Haddad, L., Lawrence, D., Muir, J. F., ... & Toulmin, C., 2010. Food security: the challenge of feeding 9 billion people. science, 327(5967):812-818. DOI: 10.1126/science.1185383
Gray, N. F., 1994. Drinking water quality: problems and solutions. John Wiley & Sons. ISBN:9780471948179. Chichester / UK.
Gu, D., Andreev, K., & Dupre, M. E., 2021. Major trends in population growth around the world. China CDC weekly, 3(28):604. doi: 10.46234/ccd¬cw2021.160
Hussain, T., Wahab, A., 2018. A Critical Review Of The Current Water Conser¬vation Practices In Textile Wet Processing. Journal Of Cleaner Producti¬on, 198: 806-819. https://doi.org/10.1016/j.jclepro.2018.07.051
Ikram, M., Ferasso, M., Sroufe, R., & Zhang, Q., 2021. Assessing green tech¬nology indicators for cleaner production and sustainable investments in a developing country context. Journal of Cleaner Production, 322, 129090. https://doi.org/10.1016/j.jclepro.2021.129090
Karamian, F., Mirakzadeh, A. A., & Azari, A., 2021. The water-energy-food nexus in farming: Managerial insights for a more efficient consumption of agricultural inputs. Sustainable Production and Consumption, 27: 1357- 1371. https://doi.org/10.1016/j.spc.2021.03.008
Khan, Z., 2008. Cleaner production: an economical option for ISO certification in developing countries. Journal of cleaner production, 16(1): 22-27. htt¬ps://doi.org/10.1016/j.jclepro.2006.06.007
Kislev, M. E., Weiss, E., & Hartmann, A., 2004. Impetus for sowing and the be¬ginning of agriculture: ground collecting of wild cereals. Proceedings of the National Academy of Sciences, 101(9): 2692-2695. https://doi.org/10.1073/ pnas.0308739101
Kopittke, P. M., Lombi, E., Wang, P., Schjoerring, J. K., & Husted, S., 2019. Nano¬materials as fertilizers for improving plant mineral nutrition and environ¬mental outcomes. Environmental Science: Nano, 6(12): 3513-3524. https:// doi.org/10.1039/C9EN00971J
Lateef, A., Nazir, R., Jamil, N., Alam, S., Shah, R., Khan, M. N., & Saleem, M., 2019. Synthesis and characterization of environmental friendly corncob biochar based nano-composite–A potential slow release nano-fertilizer for sustainable agriculture. Environmental Nanotechnology, Monitoring & Management, 11, 100212. https://doi.org/10.1016/j.enmm.2019.100212
Mikulčić, H., Baleta, J., & Klemeš, J. J., 2022. Cleaner technologies for sustainab¬le development. Cleaner Engineering and Technology, 7, 100445. https:// doi.org/10.1016/j.clet.2022.100445
Mwalupaso, G. E., Korotoumou, M., Eshetie, A. M., Alavo, J. P. E., & Tian, X., 2019. Recuperating dynamism in agriculture through adoption of susta¬inable agricultural technology-Implications for cleaner production. Jour¬nal of Cleaner Production, 232: 639-647. https://doi.org/10.1016/j.jc¬lepro.2019.05.366
Nunes, J. R. R., da Silva, J. E. A. R., da Silva Moris, V. A., & Giannetti, B. F., 2019. Cleaner Production in small companies: Proposal of a management methodology. Journal of Cleaner Production, 218:357-366. https://doi.or-g/10.1016/j.jclepro.2019.01.219
Nyasimi, M., Amwata, D., Hove, L., Kinyangi, J., & Wamukoya, G., 2014. Evi¬dence of impact: climate-smart agriculture in Africa. CCAFS Working Pa¬per No. 86. Copenhagen, Denmark: CGIAR Research Program on Climate Change. Agriculture and Food Security (CCAFS).
Pojasek, R. B., 2002. Merging pollution prevention into quality. Environmental Quality Management, 11(3):85-85. https://doi.org/10.1002/tqem.10032
Rahman, M. H., Haque, K. S., & Khan, M. Z. H., 2021. A review on applicati¬on of controlled released fertilizers influencing the sustainable agricultural production: A Cleaner production process. Environmental Technology & Innovation, 23, 101697. https://doi.org/10.1016/j.eti.2021.101697
Rütting, T., Aronsson, H., & Delin, S., 2018. Efficient use of nitrogen in agri¬culture. Nutrient cycling in Agroecosystems, 110(1), 1-5. https://doi. org/10.1007/s10705-017-9900-8
Shen, T.T., 1995. Industrial Pollution Prevention. Springer, Berlin. DOI: 10.1007/978-3-662-03110-0_2
Silva, D. A. L., Delai, I., de Castro, M. A. S., & Ometto, A. R., 2013. Quality tools applied to Cleaner Production programs: a first approach toward a new methodology. Journal of Cleaner Production, 47: 174-187. https://doi. org/10.1016/j.jclepro.2012.10.026.
Singh, A., 2018. Managing the environmental problems of irrigated agriculture through the appraisal of groundwater recharge. Ecological indicators, 92: 388-393. https://doi.org/10.1016/j.ecolind.2017.11.065.
Singh, R. B., Shastun, S., Chibisov, S., Itharat, A., De Meester, F., Wilson, D. W., & Halabi, G., 2016. Functional food security and the heart. Jour¬nal of Cardiology and Therapy, 4(1):599-607. doi: 10.17554/j.issn.2309- 6861.2017.04.125.
Skaf, L., Buonocore, E., Dumontet, S., Capone, R., & Franzese, P. P., 2019. Food security and sustainable agriculture in Lebanon: An environmental ac¬counting framework. Journal of cleaner production, 209:1025-1032. htt¬ps://doi.org/10.1016/j.jclepro.2018.10.301.
Soares, W. L., & de Souza Porto, M. F., 2009. Estimating the social cost of pes¬ticide use: an assessment from acute poisoning in Brazil. Ecological Eco¬nomics, 68(10):2721-2728. https://doi.org/10.1016/j.ecolecon.2009.05.008.
Stone, L., 2000. When case studies are not enough: the influence of corporate culture and employee attitudes on the success of cleaner production initia¬tives. Journal of Cleaner Production, 8(5):353-359. https://doi.org/10.1016/ S0959-6526(00)00037-8.
Styger, E., Uphoff, N., 2016. The System of Rice Intensification (SRI): Revisiting agronomy for a changing climate. CSA Practice Brief. https://hdl.handle. net/10568/77040.
Styger, E., Aboubacrine, G., Attaher, M. A., & Uphoff, N., 2011. The system of rice intensification as a sustainable agricultural innovation: introducing, adapting and scaling up a system of rice intensification practices in the Timbuktu region of Mali. International Journal of Agricultural Sustainabi¬lity, 9(1): 67-75. https://doi.org/10.3763/ijas.2010.0549.
Sutton, M. A., Oenema, O., Erisman, J. W., Leip, A., van Grinsven, H., & Wi¬niwarter, W., 2011. Too much of a good thing. Nature, 472(7342): 159-161. https://doi.org/10.1038/472159a
Tan, S., S., 2019. Kırsal yoksulluk ve sübvansiyonlar: tarımsal girdi sübvansi¬yonları açısından bir değerlendirme. Cataloging-In-Publication Data, 727.
Tarafder, C., Daizy, M., Alam, M. M., Ali, M. R., Islam, M. J., Islam, R., ... & Khan, M. Z. H., 2020. Formulation of a hybrid nanofertilizer for slow and sustainable release of micronutrients. ACS omega, 5(37): 23960-23966. ht-tps://doi.org/10.1021/acsomega.0c03233
Thakur, A. K., Uphoff, N. T., & Stoop, W. A., 2016. Scientific Underpinnings of the System of Rice Intensification (SRI): What is known so far?. Advances in agronomy, 135: 147-179. https://doi.org/10.1016/bs.agron.2015.09.004.
Tian, H., Lu, C., Ciais, P., Michalak, A. M., Canadell, J. G., Saikawa, E., ... & Wof¬ sy, S. C., 2016. The terrestrial biosphere as a net source of greenhouse gases to the atmosphere. Nature, 531(7593):225-228. https://doi.org/10.1038/ nature16946.
Tripathi, A. D., Mishra, R., Maurya, K. K., Singh, R. B., & Wilson, D. W., 2019. Estimates for world population and global food availability for global he¬alth. In The role of functional food security in global health (pp. 3-24). Academic Press. https://doi.org/10.1016/B978-0-12-813148-0.00001-3.
Tudi, M., Daniel Ruan, H., Wang, L., Lyu, J., Sadler, R., Connell, D., ... & Phung, D. T., 2021. Agriculture development, pesticide application and its impact on the environment. International journal of environmental research and public health, 18(3): 1112. https://doi.org/10.3390/ijerph18031112
UNEP, 2015. The United Nations Environment Programme And The 2030 Agenda. Global Action For People And The Planet. 8. https://wedocs.unep. org/20.500.11822/9851
UNEP DTIE (United Nations Environmental Programme, Division of Tech¬nology, Industry and Environment), 1996. Cleaner Production Resource Training Package, first ed. United Nations Publication, Paris.
UNEP/UNIDO, 2017. UNEP/UNIDO Guidance Manual Guidance Manual: How to Establish and Operate Cleaner Production Centres. https://open. unido.org/api/documents/4802268/download/Guidance%20Manual%20 -%20How%20to%20Establish%20and%20Operate%20Cleaner%20Produ¬ction%20Centres (accessed 03.10.2022).
UNIDO (United Nations industrial development organization), 2002. Manual on the Development of Cleaner Production Policiese Approaches and Ins¬truments. Guidelines for National Cleaner Production Centres and Prog¬rammes. http://www.unido.org/fileadmin/import/9750_0256406e.pdf (ac-cessed 03.10.2022)
Uphoff, N., Kassam, A., & Harwood, R., 2011. SRI as a methodology for raising crop and water productivity: productive adaptations in rice agronomy and irrigation water management. Paddy and Water Environment, 9(1): 3-11. https://doi.org/10.1007/s10333-010-0224-4.
USEPA (United States Environmental Protection Agency), 1998. Principles of Pollution Prevention and Cleaner Production: An International Tra¬ining Course (Participant’s Manual). http://recp.ge/wp-content/uploa¬ds/2015/12/POLLUTION-PREVENTION-AND-CLEANER-PRODUC¬TION-EPA.pdf (accessed 03.10.2022).
Wang, B., Zhang, S., Guo, L., Klemeš, J. J., & Varbanov, P. S., 2022. Graphi¬cal approaches for cleaner production and sustainability in process sys¬tems. Journal of Cleaner Production, 132790. https://doi.org/10.1016/j. jclepro.2022.132790.
Wang, H., Liu, C., & Zhang, L., 2002. Water-saving agriculture in China: An Overview. https://doi.org/10.1016/S0065-2113(02)75004-9.
Xin, X., Judy, J. D., Sumerlin, B. B., & He, Z., 2020. Nano-enabled agriculture: from nanoparticles to smart nanodelivery systems. Environmental Che¬ mistry, 17(6):413-425. https://doi.org/10.1071/EN19254.
Zhang, L., Li, X., Yu, J., & Yao, X., 2018. Toward cleaner production: what drives farmers to adopt eco-friendly agricultural production?. Journal of cleaner production, 184:550-558. https://doi.org/10.1016/j.jclepro.2018.02.272.
Zhang, T., Yang, Y., Ni, J., & Xie, D., 2019. Adoption behavior of cleaner pro¬duction techniques to control agricultural non-point source pollution: A case study in the Three Gorges Reservoir Area. Journal of cleaner producti¬on, 223:897-906. https://doi.org/10.1016/j.jclepro.2019.03.194.