Fruit and Vegetable Waste Characteristics and Management Practices at Pasig Mega Market in Pasig City, Philippines
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Food and Agriculture Organization (FAO). World Food and Agriculture - Statistical Yearbook 2021. FAO. Date published 2021. Accessed date September 3, 2023. https://doi.org/10.4060/cb4477en
United Nations Environment Programme (UNEP). Food Waste Index Report 2021. UNEP. Date published March, 2021. Accessed date September 3, 2023. https://www.unep.org/resources/report/unep-food-waste-index-report-2021
FAO, IFAD, UNICEF, WFP & WHO. The State of Food Security and Nutrition in the World 2020. Transforming food systems for affordable healthy diets. FAO. Date published 2020. Accessed date September 3, 2023. https://doi.org/10.4060/ca9692en
Erkmen, O., & Bozoglu, F. Spoilage of vegetables and fruits. Food Microbiology: Principles into Practice. Wiley Online Library. 2016; NA:337–363. https://doi.org/10.1002/9781119237860.ch20
Agri Farming. Agriculture in Philippines-farming, major crops. AgriFarming. Updated May, 2021. Accessed April 7, 2023. https://www.agrifarming.in/agriculture-in-philippines-farming-major-crops
Food and Agriculture Organization (FAO). Fruit and vegetables – your dietary essentials. The International Year of Fruits and Vegetables, 2021, background paper. FAO. Date published 2020. Accessed date September 3, 2023. https://doi.org/10.4060/cb2395en
Bell, R. Reducing food waste has economic, environmental and Social Benefits. Michigan State University Extension. Date published March, 2012. Accessed date April 7, 2023. https://www.canr.msu.edu/news/reducing_food_waste_has_economic_environmental_and_social_benefits
Boiteau, J. M., & Pingali, P. Food loss of perishable produce from farm to retail: evidence from tomato supply chains in South India. The American Journal of Clinical Nutrition. 2022;115(6):1535–1548. https://doi.org/10.1093/ajcn/nqac039
Lebaka, V. R., Wee, Y.-J., Ye, W., & Korivi, M. (2021). Nutritional composition and bioactive compounds in three different parts of Mango Fruit. International Journal of Environmental Research and Public Health. 2021;18(2):741. https://doi.org/10.3390/ijerph18020741
Wahome, C. Saba fruit: Nutritional value and health benefits. WebMD. Date published July, 2022. Accessed date September 3, 2023. https://www.webmd.com/diet/health-benefits-of-saba-fruit#:~:text=Saba%20fruit%20has%20high%20levels,nutritional%20value%20when%20consumed%20raw
DA Agribusiness and Marketing Assistance Service - Surveillance, Monitoring and Enforcement Group. Bantay presyo retail price range of selected agri-fishery commodities of NCR markets. Department of Agriculture. Date published January, 2023. Accessed date September 3, 2023. https://www.da.gov.ph/wp-content/uploads/2023/01/Price-Monitoring-January-9-2023.pdf
Renee, J. The nutrients of pechay. Healthy Eating SF Gate. Updated December, 2018. Accessed date September 3, 2023. https://healthyeating.sfgate.com/nutrients-pechay-1538.html
Perez, I. L. NDRRMC: Typhoon Henry leaves over 2,400 affected individuals in Luzon. Inquirer. Date published September 2022. Accessed date September 3, 2023. https://newsinfo.inquirer.net/1659897/ndrrmc-typhoon-henry-leaves-over-2400-affected-individuals-in-luzon
Vicente, A. R., Manganaris, G. A., Darre, M., Ortiz, C. M., Sozzi, G. O., & Crisosto, C. H. Chapter 19- compositional determinants of fruit and vegetable quality and nutritional value. Postharvest Handling 4th ed. 2022: pp. 565–619. https://doi.org/10.1016/b978-0-12-822845-6.00019-1
Breazeale, B. Mechanical damage of fresh fruits and vegetables - food deterioration. Global Healthcare. Updated August, 2023. Accessed date September 3, 2023. https://www.globehealth.net/food-deterioration/mechanical-damage-of-fresh-fruits-and-vegetables.html
Erkmen, O., & Bozoglu, F. Spoilage of vegetables and fruits. Food Microbiology: Principles into Practice. Wiley Online Library. 2016; NA:337–363. https://doi.org/10.1002/9781119237860.ch20
Alegbeleye, O., Odeyemi, O. A., Strateva, M., & Stratev, D. Microbial spoilage of vegetables, fruits and cereals. Applied Food Research. 2022;2(1):100122. https://doi.org/10.1016/j.afres.2022.100122
Food and Agriculture Organization. The State of Food and Agriculture 2019. Moving forward on food loss and waste reduction. Date published 2019. Accessed date September 3, 2023. https://www.fao.org/3/ca6030en/ca6030en.pdf
de Sousa, C.P. The Impact of Food Manufacturing Practices on Food borne Diseases. Brazilian Archives of Biology and Technology. 2008;51:815–823. https://www.scielo.br/j/babt/a/VVgFpKTpHVkF6M4rHmH4tYr/?format=pdf〈=en
Burton-Hughes, L. Implementing a FIFO food storage system. High Speed Training Limited. Date published July, 2017. Accessed date September 3, 2023. https://www.highspeedtraining.co.uk/hub/fifo-food-storage/
Ortiz-Gonzalo, D., Ørtenblad, S. B., Larsen, M. N., Suebpongsang, P., & Bruun, T. B. Food loss and waste and the modernization of vegetable value chains in Thailand. Resources, Conservation and Recycling. 2021;174:105714. https://doi.org/10.1016/j.resconrec.2021.105714
Pinotti, L., Manoni, M., Fumagalli, F., Rovere, N., Luciano, A., Ottoboni, M., Ferrari, L., Cheli, F., & Djuragic, O. Reduce, reuse, recycle for Food Waste: A second life for fresh-cut leafy salad crops in animal diets. Animals. 2020;10(6):1082. https://doi.org/10.3390/ani10061082
Jiménez-Moreno, N., Esparza, I., Bimbela, F., Gandía, L. M., & Ancín-Azpilicueta, C. Valorization of selected fruit and vegetable wastes as bioactive compounds: Opportunities and challenges. Critical Reviews in Environmental Science and Technology. 2019;50(20):2061–2108. https://doi.org/10.1080/10643389.2019.1694819
Lau, K. Q., Sabran, M. R., & Shafie, S. R. Utilization of vegetable and fruit by-products as functional ingredient and food. Frontiers in Nutrition. 2021;8:661693. https://doi.org/10.3389/fnut.2021.661693
Seberini, A. Economic, social and environmental world impacts of food waste on society and Zero waste as a global approach to their elimination. SHS Web of Conferences. 2020;74:03010. https://doi.org/10.1051/shsconf/20207403010
Al-Dairi, M., Pathare, P. B., Al-Yahyai, R., & Opara, U. L. Mechanical damage of fresh produce in postharvest transportation: Current status and future prospects. Trends in Food Science & Technology. 2022;124:195–207. https://doi.org/10.1016/j.tifs.2022.04.018
Johnson, L. K., Bloom, J. D., Dunning, R. D., Gunter, C. C., Boyette, M. D., & Creamer, N. G. Farmer harvest decisions and vegetable loss in primary production. Agricultural Systems. 2019;176:102672. https://doi.org/10.1016/j.agsy.2019.102672
Schilder, A. Excessive rain promotes phytophthora diseases in raspberries and strawberries. Michigan State University Extension. Date published June, 2015. Accessed date September 3, 2023. https://www.canr.msu.edu/news/excessive_rain_promotes_phytophthora_diseases_in_raspberries_and_strawberri#:~:text=In%20a%20rainy%20year%2C%20there,plants%20or%20rotting%20of%20fruit.
do Nascimento Nunes, M. C. Impact of environmental conditions on fruit and vegetable quality. Stewart Postharvest Review. 2008;4(4):1–14. https://doi.org/10.2212/spr.2008.4.4
Food and Agriculture Organization (FAO). Rapid assessment of the impact of COVID-19 on food supply chains in the Philippines. FAO. Date published 2021. Accessed date September 3, 2023. https://doi.org/10.4060/cb2622en
Organisation for Economic Co-operation and Development (OECD). Covid-19 and the food and agriculture sector: Issues and policy responses. OECD. Date published April, 2020. Accessed date September 3, 2023. https://www.oecd.org/coronavirus/policy-responses/covid-19-and-the-food-and-agriculture-sector-issues-and-policy-responses-a23f764b/
United States Environmental Protection Agency (US EPA). Food Recovery Hierarchy. US EPA. Updated August, 2023. Accessed date September 3, 2023. https://www.epa.gov/sustainable-management-food/food-recovery-hierarchy
Huber-Humer, M., Scherhaufer, S., Obersteiner, G., & Unger, N. Selected Material Stocks and Flows: Food Waste. University of Natural Resources and Life Sciences BOKU Vienna. NA. Accessed date September 3, 2023. https://dev.cec4europe.eu/wp-content/uploads/2022/01/Chapter_3_8_Huber-Humer_et_al_food_waste.pdf
Augustin, M. A., Sanguansri, L., Fox, E. M., Cobiac, L., & Cole, M. B. Recovery of wasted fruit and vegetables for improving sustainable diets. Trends in Food Science & Technology. 2020;95:75–85. https://doi.org/10.1016/j.tifs.2019.11.010
Palaniveloo K., Amran M.A., Norhashim N.A., Mohamad-Fauzi N., Peng-Hui F., Hui-Wen L., Kai-Lin Y., Jiale L., Chian-Yee M.G., Jing-Yi L., et al. Food Waste Composting and Microbial Community Structure Profiling. Processes. 2020;8(6):723. https://doi.org/10.3390/pr8060723
Abodunde C.A., and Akin-Osanaiye B.C. Conversion of orange and pineapple fruit peel wase into single cell protein using saccharomyces cerevisiae. International Journal on Food, Agriculture and Natural Resources, vol. 4, no. 3, pp. 14-20, May 2023.
Das U., and Ray S. The valorization of the functional potential of tomato processed waste. International Journal on Food, Agriculture and Natural Resources, vol. 3, no. 2, pp. 30-36, June 2022.
Development Academy of the Philippines (DAP). Utilization/conversion of market waste into new products. Development Academy of the Philippines. Date published April, 2021. Accessed date September 3, 2023. https://coe-psp.dap.edu.ph/compendium-innovation/utilization-conversion-of-market-waste-into-new-products-recycling-of-market-biodegradable-waste-basura-na-napakinabanagan-p
DOI: https://doi.org/10.46676/ij-fanres.v5i1.233
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