Author:
Gavhane Kishor P.,Hasan Murtaza,Singh Dhirendra Kumar,Kumar Soora Naresh,Sahoo Rabi Narayan,Alam Wasi
Abstract
AbstractThe indoor cultivation of lettuce in a vertical hydroponic system (VHS) under artificial lighting is an energy-intensive process incurring a high energy cost. This study determines the optimal daily light integral (DLI) as a function of photoperiod on the physiological, morphological, and nutritional parameters, as well as the resource use efficiency of iceberg lettuce (cv. Glendana) grown in an indoor VHS. Seedlings were grown in a photoperiod of 12 h, 16 h, and 20 h with a photosynthetic photon flux density (PPFD) of 200 µmol m−2 s−1 using white LED lights. The results obtained were compared with VHS without artificial lights inside the greenhouse. The DLI values for 12 h, 16 h, and 20 h were 8.64, 11.5, and 14.4 mol m−2 day−1, respectively. The shoot fresh weight at harvest increased from 275.5 to 393 g as the DLI increased from 8.64 to 11.5 mol m−2 day−1. DLI of 14.4 mol m−2 day−1 had a negative impact on fresh weight, dry weight, and leaf area. The transition from VHS without artificial lights to VHS with artificial lights resulted in a 60% increase in fresh weight. Significantly higher water use efficiency of 71 g FW/L and energy use efficiency of 206.31 g FW/kWh were observed under a DLI of 11.5 mol m−2 day−1. The study recommends an optimal DLI of 11.5 mol m−2 day−1 for iceberg lettuce grown in an indoor vertical hydroponic system.
Publisher
Springer Science and Business Media LLC
Reference80 articles.
1. Rikolto, R. U. Urban and Peri-Urban Agriculture Sourcebook—From Production to Food Systems (FAO, Berlin, 2022).
2. Dorling, D. World population prospects at the UN: Our numbers are not our problem? In The Struggle for Social Sustainability (ed. Deeming, C.) 129–154 (Policy Press, 2021).
3. United Nations Department of Economic and Social Affairs, Population Division. World Population Prospects 2022: Summary of Results. https://www.un.org/development/desa/pd/content/World-Population-Prospects-2022 (2022).
4. Rosenzweig, C. et al. Assessing agricultural risks of climate change in the 21st century in a global gridded crop model intercomparison. Proc. Natl. Acad. Sci. 111(9), 3268–3273. https://doi.org/10.1073/pnas.1222463110 (2014).
5. Maja, M. M. & Ayano, S. F. The impact of population growth on natural resources and farmers’ capacity to adapt to climate change in low-income countries. Earth Syst. Environ. 5(2), 271–283. https://doi.org/10.1007/s41748-021-00209-6 (2021).
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