D The Use Of Limited Land Through Hydroponics Technology for Ecogreen and Enhancing Entrepreneurship Motivastion to Improve the Family Economy Aisyiyah Cadres at PCM Jetis Yogyakarta
DOI:
https://doi.org/10.59247/jppmi.v3i10.205Keywords:
Hydroponic Installation, Hydroponic System, EntrepreneurAbstract
Technological developments in agriculture are increasing rapidly every year. One of the technologies that deserves to be disseminated is hydroponic technology [1]. This is because of the increasing scarcity of agricultural land as a result of the large number of industrial and service sectors, so conventional agricultural businesses are increasingly uncompetitive due to high land prices. Cultivation technology Agriculture with a hydroponic system is used as an alternative for people who have limited land or yard space so that it can be used as an adequate source of income. Entrepreneurship is one of the efforts of the pesantren to produce graduates who can have a personal independence. This community service program was carried out to meet support and encourage entrepreneurship that makes personal independence. The Community Service Program was carried out the hydroponic plant cultivation to support the independence Aisiyah Cadres Muhammadiyah Branch Jetis Yogyakarta This program was intended so that students can learn directly the Hydroponic cultivation system as a provision for self-development for students who have graduated. The dedication program consists of 2 sessions, the first is exposure and discussion with hydroponic materials, the second session consists of installing hydroponic installation, nursery training, planting seeds in the hydroponic system, wick system and nutrient film system.The Output of this program are the increased knowledge, understanding, and skills of Aisyiyah cadres related to the implementation of hydroponic technology packages and the emergence of interest and motivation to do the cultivation and production of vegetable crops hydroponically are growing. Cadres utilize limited land for farming by applying hydroponic technology according to standard operating procedures.
References
N. Uddin, H. Hermawan, T. M. Darajat, and S. Marwanto, “Internet-based temperature monitoring system for hydroponic,” IOP Conf. Ser. Earth Environ. Sci., vol. 922, no. 1, p. 012017, Nov. 2021.
J. H. King, B. Khadijah, and K. H. Ong, “Producing Black Pepper (Piper Nigrum L. cv. ‘Kuching’) Rootstock in a Deep-Water Culture Hydroponic System,” Borneo J. Resour. Sci. Technol., vol. 11, no. 2, pp. 88–97, Dec. 2021.
S. Bouadila, S. Baddadi, S. Skouri, and R. Ayed, “Assessing heating and cooling needs of hydroponic sheltered system in mediterranean climate: A case study sustainable fodder production,” Energy, vol. 261, p. 125274, Dec. 2022.
A. A. Ajeng, N. S. M. Rosli, R. Abdullah, J. S. Yaacob, N. C. Qi, and S. P. Loke, “Resource recovery from hydroponic wastewaters using microalgae-based biorefineries: A circular bioeconomy perspective,” J. Biotechnol., vol. 360, pp. 11–22, Dec. 2022.
J. Jung et al., “Functionality of Allium hookeri Leaves and Roots Grown in a Hydroponic Plant Factory Using Artificial Lights,” J. Korean Soc. Food Sci. Nutr., vol. 51, no. 12, pp. 1355–1363, Dec. 2022.
T.-I. Lee, Y. H. Hsieh, Y.-Y. Hsieh, and H.-Y. Chang, “Effects of greenhouse covering films on yields of lettuces and herbs grown in organic pipe hydroponics under sub-tropical climate zone,” Acta Hortic., no. 1356, pp. 255–262, Dec. 2022.
T. I. Lee, Y. H. Hsieh, and Y.-C. Fu, “Preliminary market research on a zero-acreage farming model – the home-scale organic hydroponic tent set,” Acta Hortic., no. 1356, pp. 51–58, Dec. 2022.
Z. F. Alam, Karen Avena, Lorenzo Sales, Denise Suemith, and Riane UY, “Growth performance of water spinach Ipomoea aquatica and freshwater prawn Macrobrachium rosenbergii grown in aquaponic and hydroponic units,” Indian J. Fish., vol. 69, no. 4, Dec. 2022.
V. Arcas-Pilz, G. Stringari, R. Gonzalez, G. Villalba, and X. Gabarrell Durany, “Preliminary results on N 2 O emission factor calculation in hydroponic struvite fertilization of lettuce production,” Acta Hortic., no. 1356, pp. 303–310, Dec. 2022.
W. Y. Wan Shaharuddin et al., “Students’ Knowledge in Science: An Evaluation via Hydroponic Kit,” Pertanika J. Soc. Sci. Humanit., vol. 30, no. 4, pp. 1767–1779, Nov. 2022.
L. Nardi et al., “Farming for Pharming: Novel Hydroponic Process in Contained Environment for Efficient Pharma-Grade Production of Saffron,” Molecules, vol. 27, no. 24, p. 8972, Dec. 2022.
M. Rajalakshmi, V. R. Manoj, and H. Manoj, “Comprehensive Review of Aquaponic, Hydroponic, and Recirculating Aquaculture Systems,” J. Exp. Biol. Agric. Sci., vol. 10, no. 6, pp. 1266–1289, Dec. 2022.
V. Arcas-Pilz, M. Rufí-Salís, F. Parada, A. Petit-Boix, X. Gabarrell, and G. Villalba, “Recovered phosphorus for a more resilient urban agriculture: Assessment of the fertilizer potential of struvite in hydroponics,” Sci. Total Environ., vol. 799, p. 149424, Dec. 2021.
J. Jefferson de Sá, C. Medeiros Vicentini-Polette, M. R. Verruma-Bernardi, M. H. Fillet Spoto, and F. C. Sala, “Agronomic and sensory evaluation of lettuce in hydroponic system,” Biosci. J., vol. 37, p. e37074, Dec. 2021.
A. Hadinata and Mashoedah, “Internet of Things-based Hydroponic: Literature Review,” J. Phys. Conf. Ser., vol. 2111, no. 1, p. 012014, Nov. 2021.
A. K. Dewi, S. Rahayu, I. Dwimahyani, N. Khairunnisa, and E. Suryadi, “The combination of irradiation biofertilizer of rhizosphere microbes consortium inoculant (IMR) and inorganic fertilizer on the growth of kale in a floating raft hydroponic system,” IOP Conf. Ser. Earth Environ. Sci., vol. 924, no. 1, p. 012007, Nov. 2021.
M. K. Ravichandran and L. Philip, “Insight into the uptake, fate and toxic effects of pharmaceutical compounds in two wetland plant species through hydroponics studies,” Chem. Eng. J., vol. 426, p. 131078, Dec. 2021.
I. M. Sudantha, Suwardji, and N. L. P. N. Sriwarthini, “Agronomic response of kangkung plants typical of Lombok Island with a hydroponic system treated with Trichoderma bionutrients,” IOP Conf. Ser. Earth Environ. Sci., vol. 913, no. 1, p. 012020, Nov. 2021.
M. K. Hafizi Rahimi, M. H. Md Saad, A. H. Mad Juhari, M. K. Azhar Mat Sulaiman, and A. Hussain, “A Secure Cloud Enabled Indoor Hydroponic System Via ThingsSentral IoT Platform,” in 2020 IEEE 8th Conference on Systems, Process and Control (ICSPC), 2020, pp. 214–219.
T. M. Onggo, “The use of hydroponic-substrate husk-charcoal waste for asparagus seedling substrate,” Acta Hortic., no. 1301, pp. 133–138, Dec. 2020.
A. A. Laraswati et al., “Image Based-Phenotyping and Selection Index Based on Multivariate Analysis for Rice Hydroponic Screening under Drought Stress,” Plant Breed. Biotechnol., vol. 9, no. 4, pp. 272–286, Dec. 2021.
W. Wedashwara, A. H. Jatmika, A. Zubaidi, and I. W. A. Arimbawa, “Solar-powered IoT based smart hydroponic nutrition management system using FARM,” IOP Conf. Ser. Earth Environ. Sci., vol. 913, no. 1, p. 012010, Nov. 2021.
A. Miller, R. Adhikari, and K. Nemali, “Recycling Nutrient Solution Can Reduce Growth Due to Nutrient Deficiencies in Hydroponic Production,” Front. Plant Sci., vol. 11, Dec. 2020.
L. Y. de C. Leal, E. R. de Souza, J. A. Santos Júnior, and M. A. Dos Santos, “Comparison of soil and hydroponic cultivation systems for spinach irrigated with brackish water,” Sci. Hortic. (Amsterdam)., vol. 274, p. 109616, Dec. 2020.
A. Pacak, A. Jurga, P. Drąg, D. Pandelidis, and B. Kaźmierczak, “A Long-Term Analysis of the Possibility of Water Recovery for Hydroponic Lettuce Irrigation in Indoor Vertical Farm. Part 1: Water Recovery from Exhaust Air,” Appl. Sci., vol. 10, no. 24, p. 8907, Dec. 2020.
D. Jiménez-Arias et al., “Rejected brine recycling in hydroponic and thermo-solar evaporation systems for leisure and tourist facilities. Changing waste into raw material,” Desalination, vol. 496, p. 114443, Dec. 2020.
S. Suvunnaphom, K. Sananon, M. Saouy, and S. Kunyamee, “Effect of hydroponic and organic fertilizer on growth, safety, and storage quality of watercress ( Nasturtium officinale ),” Acta Hortic., no. 1298, pp. 419–426, Dec. 2020.
J. S. Suroso, E. R. Kaburuan, N. Angelica, W. Tanujaya, and F. Munandar, “Entrepreneur of Internet of Things (IoT) in Portable Hydroponic,” in 2020 8th International Conference on Orange Technology (ICOT), 2020, pp. 1–4.
M. Jans-Singh, K. Leeming, R. Choudhary, and M. Girolami, “Digital twin of an urban-integrated hydroponic farm,” Data-Centric Eng., vol. 1, p. e20, Dec. 2020.
P. Mishra, L. Jimmy, G. A. Ogunmola, T. V. Phu, A. Jayanthiladevi, and T. P. Latchoumi, “Hydroponics Cultivation Using Real Time Iot Measurement System,” J. Phys. Conf. Ser., vol. 1712, no. 1, p. 012040, Dec. 2020.
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