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ECONOMICS OF GREENHOUSE PRODUCTION IN ALASKA

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ECONOMICS OF GREENHOUSE PRODUCTION IN ALASKA ( economics-greenhouse-production-in-alaska )

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Future studies could also analyze the cash flows in and out of the enterprise for a fixed interval of time. Another focus could be to specify the heating and lighting requirements for winter operation. Construction costs for the heating and lighting system could be allocated seasonally to determine if it is economically beneficial to have a year-round greenhouse in Interior Alaska, or whether operating for three seasons with no production during the mid-winter months would be more economical. Future studies could also improve the model in terms of bench space. For example, in order to make maximum use of available space, the planting system described above can theoretically be optimized as follows: Day 1 - Day 7: Day 7 - Day 15: Day 15 - Day 30: The seedlings stay in the rock wool sheets. The plants are moved into the hydroponic trays and would be spaced 1 inch apart. The plants are moved a second time into trays with 8 inch separation between holes. A higher production would be possible with this 3-phase growing cycle, but it would also result in higher labor cost. An analysis of the economical feasibility would be necessary and could be part of future studies. Besides a supply of fresh lettuce to the local community, the modeled greenhouse with its assumptions would generate a positive return and create two skilled full time jobs. When considering a project in a rural area, these aspects can be very important. From a research perspective, the University of Fairbanks and rural Alaskan communities will also benefit from a greenhouse project. The greenhouse could benefit local K-12 education systems by including the facility in school curricula and involving students of FFA chapters3. 3 formerly known as Future Farmers of America 12

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