Academic literature on the topic 'Greenhouse Environment'

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Journal articles on the topic "Greenhouse Environment"

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Papadopoulos, Athanasios P. "GREENHOUSE ENVIRONMENT OPTIMIZATION FOR SEEDLESS CUCUMBERS." HortScience 27, no. 6 (1992): 662c—662. http://dx.doi.org/10.21273/hortsci.27.6.662c.

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The greenhouse cover has previously been shown to have large effects upon the greenhouse environment, crop productivity and energy use. However, in most cases, because of inadequate treatment replication, the extent of these effects has been impossible to quantify with confidence. In the fall of 1987, a new greenhouse complex of 9 mini greenhouses (6.4m × 7.2m, each) was constructed at the Harrow Research Station on the principles of the 3×3 Latin Square experimental design and with glass, double polyethylene film and double acrylic panel greenhouse covers as the three levels of treatment in t
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Jeon, Yu-Jin, Joon Yong Kim, Kue-Seung Hwang, Woo-Jae Cho, Hak-Jin Kim, and Dae-Hyun Jung. "Machine Learning-Powered Forecasting of Climate Conditions in Smart Greenhouse Containing Netted Melons." Agronomy 14, no. 5 (2024): 1070. http://dx.doi.org/10.3390/agronomy14051070.

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The greenhouse environment plays a crucial role in providing favorable conditions for crop growth, significantly improving their quality and yield. Accurate prediction of greenhouse environmental factors is essential for their effective control. Although artificial intelligence technologies for predicting greenhouse environments have been researched recently, there are limitations in applying these to general greenhouse environments due to computing resources or issues with interpretability. Moreover, research on environmental prediction models specifically for melon greenhouses is also lackin
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Omer, Abdeen. "Cultivation of Organics in Controlled Environment Greenhouse." Nutrition and Food Processing 4, no. 4 (2021): 01–06. http://dx.doi.org/10.31579/2637-8914/056.

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A greenhouse is essentially an enclosed structure, which traps the short wavelength solar radiation and stores the long wavelength thermal radiation to create a favourable microclimate for higher productivity. The sun’s radiation incident on the greenhouse has two parts: direct radiation and an associated diffuse sky radiation. The diffuse part is not focused by the lenses and goes right through Frensel lenses onto the surface of the absorbers. This energy is absorbed and transformed into heat, which is then transported via the liquid medium in copper pipes to the water (heat) storage tanks or
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Bezari, Salah, Asma Adda, Salem Merabti, and Bahar Öztekin. "Artificial neural network model for microclimate performance of solar greenhouse with thermal storage." Thermal Science, no. 00 (2025): 101. https://doi.org/10.2298/tsci250213101b.

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Greenhouses are closed environments that allow growing plants out of season. Hence, indoor conditions of greenhouses are critically important and adjuste to support plant growth. Controlling the indoor environment is essential to maintain an ideal microclimate, which directly affects plant health and, consequently, their yields. By optimizing environmental conditions inside the greenhouse, it is possible to increase yields while reducing energy consumption, taking into account information from both indoor and outdoor environments, as internal parameters are influenced by the external environme
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P, Archana, Chaithanya N, Pavitra Viswanathan, Shalin M S, and Rajashekar J S. "IoT Technology for Monitoring and Control of Smart Greenhouses." IRO Journal on Sustainable Wireless Systems 6, no. 1 (2024): 17–27. http://dx.doi.org/10.36548/jsws.2024.1.002.

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A greenhouse is a covered structured area which protect the plants from extreme whether condition, providing a controlled environment for their growth and cultivation. The innovative Internet of Things (IoT) technology uses a series of sensors connected to a central computer to control the greenhouse environment. Greenhouse sensor systems include elements that monitor and control temperature, humidity, soil moisture, lighting, and external weather conditions. The research aims to design a greenhouse monitoring and control system based on the Internet of Things (IoT). In smart greenhouses, IoT
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Abdul, Qadeer. "Hydroponic agriculture in controlled environment: A review." International Journal of Biosciences (IJB) 16, no. 1 (2020): 407–16. https://doi.org/10.12692/ijb/16.1.407-416.

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World’s population is rapidly increasing result in urbanization, decrease in land holdings, low crop productivity, polluting water, air and soil while food demand has increased. To feed increased population new innovate techniques are important for the protecting environment and produce more in a limited area. Today protected cultivation in greenhouses is one of the most intensive farming technique in the world. Mostly horticultural crops are grown under controlled environment in a greenhouse where the variables such as temperature, humidity, light, soil, water, fertilizers etc. are mani
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Wongwatcharapaiboon, Jitiporn, Fa Likitswat, Sudaporn Sudprasert, and Saffa B. Riffat. "Monitoring Experiment of Melon Greenhouse’s Environment in Tropical Climate." International Journal of Building, Urban, Interior and Landscape Technology (BUILT) 22, no. 2 (2024): 255397. https://doi.org/10.56261/built.v22.255397.

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Greenhouses in tropical climates are designed to control passively the environment, protecting plants from pest and extreme climate condition, which is increasingly important due to climate change. This research aims to monitor a melon greenhouse's environment in a tropical climate to understand light intensity, pollutants, and climate conditions. Indoor and outdoor conditions of melon greenhouse were real-time monitored by Vantage VUE model, DAVIS weather station, PM2.5 meter and noise meter. The findings examined that peak light intensities were recorded at 135,600 lux outdoors and 32,050 lu
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Ghibeche, Ismail, Ahmed Nourani, Toufik Tayeb Naas, Salah Eddine Benziouche, Martin Buchholz, and Reiner Buchholz. "A computational fluid dynamics (CFD) modeling in a new design of closed greenhouse." STUDIES IN ENGINEERING AND EXACT SCIENCES 5, no. 1 (2024): 649–66. http://dx.doi.org/10.54021/seesv5n1-037.

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Closed greenhouses are crucial buildings for agriculture in controlled environments because they offer the best growing conditions for crops and shield them from outside influences. Researchers can now better optimize design parameters for increased crop output and energy efficiency by simulating airflow and temperature distribution inside closed greenhouses with the use of computational fluid dynamics (CFD) modeling. We examine the temperature distribution and airflow patterns inside the greenhouse under various environmental conditions using CFD simulations. Our findings show that, in compar
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Nemali, Krishna. "History of Controlled Environment Horticulture: Greenhouses." HortScience 57, no. 2 (2022): 239–46. http://dx.doi.org/10.21273/hortsci16160-21.

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Modern greenhouses are intensive farming systems designed to achieve high efficiency and productivity. Plants are produced year-round in greenhouses by maintaining the environment at or near optimum levels regardless of extreme weather conditions. Many scientific discoveries and technological advancements that happened in the past two centuries paved the way for current state-of-the-art greenhouses. These include, but are not limited to, advancements in climate-specific structural designs and glazing materials, and temperature control, artificial lighting, and hydroponic production systems. Gr
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Yogita, Gogawale, Gupta Pooja, and Gokhale Aditi. "Automatic Irrigation and Green House Environment Controlling Robotic System." International Journal of Innovative Science and Research Technology 7, no. 6 (2022): 435–39. https://doi.org/10.5281/zenodo.6791770.

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Centuries ago the Romans have created the first greenhouses to develop the “modern lifestyle” and where irrespective of season we can have fresh vegetables. Seeking a solution to the unavailability of fresh vegetables in every season, they started to grow plants indoors and thus invented the first greenhouses. The last century has seen many technological advances that have been used to construct more efficient and cheaper greenhouses, which in turn has made them available to the ordinary gardeners. Because of the invention of large sheets of polyethylene, the greenhouse constructio
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Dissertations / Theses on the topic "Greenhouse Environment"

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Corfee, Morlot J. "California in the greenhouse : regional climate policies and the global environment." Thesis, University College London (University of London), 2009. http://discovery.ucl.ac.uk/16122/.

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This thesis explores how climate policy is developing at sub-national or “regional” scales of decision-making. It considers local-global connections on both the science and the politics of climate change by investigating four main research questions as they pertain to regional climate action: What triggers regional policy action on global climate change? What arguments and lines of evidence underlie the policy discourse? How do “winning” arguments gain salience? How does regional action make a difference to broader scale climate policy? The research is conducted through one in-depth case study
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Al-Arifi, Abraheem. "The influence of shading and evapotranspiration on a ventilated greenhouse environment /." The Ohio State University, 1999. http://rave.ohiolink.edu/etdc/view?acc_num=osu1488187763846064.

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Starr, Sean Michael. "Microbial methane oxidation in the marine and estuarine environment." Thesis, University of Newcastle Upon Tyne, 1999. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.313378.

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Pennisi, Alba. "Introduction and development of intelligent systems for precision framing activities in greenhouse environment." Doctoral thesis, Università di Catania, 2012. http://hdl.handle.net/10761/1185.

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The main target of this research activity has been to develop an autonomous electrical vehicle able to perform precision farming tasks inside greenhouses. The vehicle can increase operations safety level for operators and quality of the chemicals distribution, allowing a lower environmental pollution and a better greenhouse product quality. Farmers thus obtain a return on their investment by using such a robot and technologies thanks to a waste reduction of phytosanitaries and fertilizers with a consequent cost lowering. Moreover, due to constant reduction of electronic parts cost, like compu
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Fitz-Rodriguez, Efren. "Decision Support Systems for Greenhouse Tomato Production." Diss., The University of Arizona, 2008. http://hdl.handle.net/10150/195798.

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The purpose of greenhouse crop systems is to generate a high quality product at high production rates, consistently, economically, efficiently and in a sustainable way. To achieve this level of productivity, accurate monitoring and control of some processes of the entire biophysical system must be implemented. In addition, the proper selection of actions at the strategic, tactical and operational management levels must be implemented.Greenhouse management relies largely on human expertise to adjust the appropriate optimum values for each of the production and environmental parameters, and most
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Devlin, Andrew John. "Structural effects of the built environment on vehicle greenhouse gas emissions : evidence from Vancouver, Canada." Thesis, University of British Columbia, 2010. http://hdl.handle.net/2429/17460.

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This thesis summarizes efforts to estimate fundamental relationships among built environment characteristics, activity patterns and vehicle use in order to assess their relative influences on vehicle GHG emission generation in Metro Vancouver, Canada. Activity-based structural equation models were specified in a cross-sectional study design using local travel survey data and highly detailed urban form data. Structural equation analysis permitted explicit modeling of the indirect effects between built environment variables and vehicle emissions as mediated through activity patterns and vehicle
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Garcia, Karla Patricia, and Karla Patricia Garcia. "Physiology of Flowering and Diurnal Net Photosynthetic Response in American Strawberry Cultivars under Controlled Environment." Thesis, The University of Arizona, 2016. http://hdl.handle.net/10150/621461.

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Strawberry production in the United States is almost entirely done in open-fields. Recently, interest in off-season strawberry production using controlled environment (CE) systems such as greenhouses and soilless cultivation has increased in the US. However, strawberry production in greenhouses is relatively new in North America and available information about greenhouse strawberry production is limited. Plant physiological responses to the environment must be well understood to maximize production using CE systems. In the present research, photoperiodic and photosynthetic responses of strawbe
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Melnik, Y., and T. Linnik. "Chemtrails impact on the environment and human brains." Thesis, Сумський державний університет, 2013. http://essuir.sumdu.edu.ua/handle/123456789/30866.

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Humans have undeniably affected the atmosphere and air quality of our planet. However, because most gasses are invisible to the human eye, it can be hard to physically see some of the changes we've brought about. Smog, exhaust from cars and trucks and smoke from chimneys and fires are a few of the visible signs, but one of the most intriguing visual manifestation of how we've changed the atmosphere are the jet trails left behind by airplanes. When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/30866
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Cantin, Danielle 1967. "Response of Pinus banksiana (Lamb.) families to a global change environment." Thesis, McGill University, 1994. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=68159.

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We examined how fast- and slow-growing families (based on height at 10 years) of Pinus banksiana Lamb. are affected by a climate altered by CO$ sb2$ during their first growing season. Our primary objective was to evaluate the possibility that genotypes performing best under present conditions may not necessarily do best under projected warmer climate. Seedlings were grown for six months in two climatic environments (350 $ mu$L/L CO$ sb2$ x present temperatures and 700 $ mu$L/L CO$ sb2$ x 4$ sp circ$C warmer temperatures) and with 100 ppm and 5 ppm nitrogen.<br>The CO$ sb2$T$ sp circ$ environme
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Chu, Thi Thu Ha. "State of the environment and natural resources in Vietnam." Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2015. http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-176875.

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Vietnam is considered as one of the countries having rich resources from forest and sea, with a high average annual rainfall. However, in view of IWRA, water volume per capita annually in Vietnam is lower than the standard for nations having water resources at average level. Vietnam was recognized by the World Wildlife Fund (WWF) as having three out of more than 200 biological zones of the world. Flora and fauna in Vietnam are very rich and abundant, but due to indiscriminate exploitation, along with weak management, biodiversity levels are significantly reduced. This is also one of the causes
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Books on the topic "Greenhouse Environment"

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N, Tiwari G. Greenhouse technology for controlled environment. Alpha Science, 2003.

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Environment, Alberta Alberta, and Alberta. Evaluation and Reporting Section., eds. Alberta Environment summary report on 2005 greenhouse gas emissions. Alberta Environment, 2007.

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International Symposium on Greenhouses, Environmental Controls and In-House Mechanization for Crop Production in the Tropics and Sub-Toropics (2004 Cameron Highlands, Pahang). Controlled environment production system for sustainable agricultural production: Proceedings of the International Symposium on Greenhouses, Environmental Controls and In-House Mechanization for Crop Production in the Tropics and Sub-Tropics : Cameron Highlands, Pahang, Malaysia, June 15-17, 2004. ISHS, 2006.

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Environment, Alberta Alberta. Alberta environment report on 2006 greenhouse gas emissions. Climate Change Policy Unit, 2007.

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Simpson, David. Control of a greenhouse environment using a microcontroller. The Author], 1994.

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Ltd, Focus Educational Software. Energy & environment. Focus Educational Software, 2007.

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International, Symposium on Protected Cultivation in Mild Winter Climates (8th 2006 Agadir Morocco). Proceedings of the VIIIth International Symposium on Protected Cultivation in Mild Winter Climates: Advances in soil and soilless cultivation under protected environment. ISHS, International Society for Horticultural Science, 2007.

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International Symposium on Plant Production in Closed Ecosystems (1996 Narita, Japan). International symposium on plant production in closed ecosystems: Automation, culture and environment : Narita, Japan, 26-29 August, 1996. Edited by Kozai T, Japanese Society of Environment Control in Biology., and International Society for Horticultural Science. Commission for Horticultural Engineering. ISHS, 1996.

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1949-, Kelly Mick, ed. Winds of change: Living in the global greenhouse. Headway, 1989.

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Electricity Supply Association of Australia. and National Institute of Economic and Industry Research (Australia), eds. Discussion paper: Policy instruments for responses to environment concerns. Electricity Supply Association of Australia, 1994.

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Book chapters on the topic "Greenhouse Environment"

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Yıldız, İlhami. "Greenhouse Environment." In Greenhouse Engineering. CRC Press, 2021. http://dx.doi.org/10.1201/9781315117072-4.

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Carolan, Michael S. "Greenhouse Gases." In Society and the Environment, 4th ed. Routledge, 2024. http://dx.doi.org/10.4324/9781003431657-3.

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André, Michel. "Greenhouse Gas Mitigation." In Energy and Environment. John Wiley & Sons, Inc., 2016. http://dx.doi.org/10.1002/9781119307761.part4.

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Morgan, Lynette. "Greenhouses and protected cropping structures." In Hydroponics and protected cultivation: a practical guide. CABI, 2021. http://dx.doi.org/10.1079/9781789244830.0002.

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Abstract This chapter focuses on greenhouses and protected cropping structures. Topics covered are glasshouses and plastic greenhouses, closed and semi-closed greenhouse structures, passive solar greenhouses, sustainable greenhouse design, cladding materials, screen houses, net houses, shade houses, rain covers and other structures, screen and shade nets, low tunnels and high tunnels, hot beds and cold frames greenhouses, floating mulches, row covers, cloche covers, direct covers and frost cloth, greenhouse site planning, windbreaks, outdoor hydroponic systems, and controlled-environment agric
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Morgan, Lynette. "Greenhouses and protected cropping structures." In Hydroponics and protected cultivation: a practical guide. CABI, 2021. http://dx.doi.org/10.1079/9781789244830.0011.

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Abstract This chapter focuses on greenhouses and protected cropping structures. Topics covered are glasshouses and plastic greenhouses, closed and semi-closed greenhouse structures, passive solar greenhouses, sustainable greenhouse design, cladding materials, screen houses, net houses, shade houses, rain covers and other structures, screen and shade nets, low tunnels and high tunnels, hot beds and cold frames greenhouses, floating mulches, row covers, cloche covers, direct covers and frost cloth, greenhouse site planning, windbreaks, outdoor hydroponic systems, and controlled-environment agric
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Shurpali, Narasinha, A. K. Agarwal, and V. K. Srivastava. "Introduction to Greenhouse Gas Emissions." In Energy, Environment, and Sustainability. Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-13-3272-2_1.

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Kellogg, W. W. "Mankind’s Greenhouse Effect: Is It Already Here?" In The Global Environment. Springer Berlin Heidelberg, 1991. http://dx.doi.org/10.1007/978-3-662-01085-3_11.

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Albright, L. D. "Greenhouse Thermal Environment and Light Control." In Plant Production in Closed Ecosystems. Springer Netherlands, 1997. http://dx.doi.org/10.1007/978-94-015-8889-8_3.

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Postolache, Octavian, José Miguel Pereira, Pedro Silva Girão, and António Almeida Monteiro. "Greenhouse Environment: Air and Water Monitoring." In Lecture Notes in Electrical Engineering. Springer Berlin Heidelberg, 2012. http://dx.doi.org/10.1007/978-3-642-27638-5_5.

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Morgan, Lynette. "The greenhouse environment and energy use." In Hydroponics and protected cultivation: a practical guide. CABI, 2021. http://dx.doi.org/10.1079/9781789244830.0003.

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Abstract This chapter discusses the greenhouse environment and its energy use. Its heating, cooling, shading, ventilation and air movement, humidity, carbon dioxide enrichment, automation, energy use and conservation in protected cropping, renewable energy sources for protected cropping such as geothermal energy, solar energy, passive solar energy, wind-generated energy, biomass and biofuels are also discussed.
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Conference papers on the topic "Greenhouse Environment"

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Biswas, Ritam, Aman Pandey, and Suganiya Murugan. "Greenhouse Environment Monitoring Using Raspberry Pi." In 2025 International Conference on Visual Analytics and Data Visualization (ICVADV). IEEE, 2025. https://doi.org/10.1109/icvadv63329.2025.10961617.

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Rahul, S. G., R. Rajkumar, Rudrakonda Sai Kumar Abburi, B. Trivikram Reddy, Ch Raja, and K. Pavan Teja. "Condition Monitoring of Greenhouse Farming for Controlled Environment." In 2024 3rd International Conference for Advancement in Technology (ICONAT). IEEE, 2024. https://doi.org/10.1109/iconat61936.2024.10775257.

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Jiang, Feng, Qing Wang, Meiqi Lu, Wenshuai Wang, Yaoming Luo, and Chengcheng Yu. "Design and implementation of greenhouse environment monitoring system." In 2025 IEEE 8th Information Technology and Mechatronics Engineering Conference (ITOEC). IEEE, 2025. https://doi.org/10.1109/itoec63606.2025.10968202.

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Li, Xinyu, and Xiangchen Lai. "Design of Intelligent Greenhouse Environment Monitoring and Control System." In 2024 4th Asia-Pacific Conference on Communications Technology and Computer Science (ACCTCS). IEEE, 2024. http://dx.doi.org/10.1109/acctcs61748.2024.00014.

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Kafi, Abdellah, Antonio Sanfilippo, Raka Jovanovic, and Sa'd Shannak. "A Predictive Greenhouse Digital Twin for Controlled Environment Agriculture." In 27th International Conference on Enterprise Information Systems. SCITEPRESS - Science and Technology Publications, 2025. https://doi.org/10.5220/0013479900003929.

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Dyachok, Vasyl, Viktoria Kochubei, Serhiy Huhlych, and Solomiia Mandryk. "Using Biomass of Microalgae as a Potential Biofuel." In 8th International Congress "Environment Protection. Energy Saving. Sustainable Environmental Management". Trans Tech Publications Ltd, 2025. https://doi.org/10.4028/p-96pqmz.

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The results of the study of the calorific value of the fuel obtained from the biomass of microalgae Chlorella vulgaris, obtained as a result of the absorption of greenhouse gases, by the method of complex thermogravimetric and differential thermal analyzes are presented. The calorific value of fuel samples obtained from biomass grown by absorbing pure carbon dioxide and biomass grown by absorbing a mixture of carbon dioxide, sulfur dioxide, and nitrogen oxides was determined. Combustion of fuel samples obtained as a result of absorption of greenhouse gases is accompanied by a higher exothermic
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Mahmood, Farhat, Sarah Namany, and Rajesh Govindan. "Data-Driven Reinforcement Learning for Greenhouse Temperature Control." In The 35th European Symposium on Computer Aided Process Engineering. PSE Press, 2025. https://doi.org/10.69997/sct.189272.

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Efficient temperature control in greenhouses is essential for optimal plant growth, especially in arid regions where the harsh environment poses significant challenges to maintaining a stable microclimate. Maintaining the optimum temperature range directly influences healthy plant development and overall agricultural productivity, impacting crop yields and financial outcomes. However, the greenhouse in the present case study fails to maintain the optimum temperature as it operates based on predefined settings, limiting its ability to adapt to dynamic climate conditions. To maintain an ideal te
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Zafrane, Mohammed Amine, Houari Aoued, and Adda Adel Belherazem. "A Smart Farming Solution for Greenhouse Environment Control Using PIC16F877." In 2024 4th International Conference on Embedded & Distributed Systems (EDiS). IEEE, 2024. https://doi.org/10.1109/edis63605.2024.10783194.

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Zhang, Tian Heng, Yong zheng, Qiwu zhou, and Yangyang WANG. "Design of greenhouse remote environment monitoring system based on WSN." In Eleventh International Symposium on Precision Mechanical Measurements, edited by Liandong Yu, Lianqing Zhu, Zai Luo, and Haojie Xia. SPIE, 2024. http://dx.doi.org/10.1117/12.3032478.

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Alwan, Wajid D., Alaa J. Mousa, Alaa H. Omran, and Laith Ali Abdul-Rahaim. "Real Time Automatization of Greenhouse Environment Based on Cloud Computing." In 2024 3rd International Conference on Advances in Engineering Science and Technology (AEST). IEEE, 2024. https://doi.org/10.1109/aest63017.2024.10959764.

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Reports on the topic "Greenhouse Environment"

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Seginer, Ido, James Jones, Per-Olof Gutman, and Eduardo Vallejos. Optimal Environmental Control for Indeterminate Greenhouse Crops. United States Department of Agriculture, 1997. http://dx.doi.org/10.32747/1997.7613034.bard.

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Increased world competition, as well as increased concern for the environment, drive all manufacturing systems, including greenhouses, towards high-precision operation. Optimal control is an important tool to achieve this goal, since it finds the best compromise between conflicting demands, such as higher profits and environmental concerns. The report, which is a collection of papers, each with its own abstract, outlines an approach for optimal, model-based control of the greenhouse environment. A reliable crop model is essential for this approach and a significant portion of the effort went i
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Qureshi, Z., M. King, and S. Nayak. Quantifying impact in the environment sector: a greenhouse gas emissions monitoring study. National Physical Laboratory, 2023. http://dx.doi.org/10.47120/npl.iea14.

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Bermingham, Rowena. Environment and COVID-19: What are experts concerned about? Parliamentary Office of Science and Technology, 2020. http://dx.doi.org/10.58248/hs15.

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This report outlines environment concerns. Greenhouse gas emissions seem to be falling during the outbreak. While experts note an opportunity to continue this reduction through policy-making, experts are concerned that the need to reinvigorate the economy will override environmental considerations. Access to green space has been important in supporting people's well-being. Experts note that access to green space is limited in some urban areas. They have similar concerns for the equality of access to active travel such as cycling.
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Seginer, Ido, Louis D. Albright, and Robert W. Langhans. On-line Fault Detection and Diagnosis for Greenhouse Environmental Control. United States Department of Agriculture, 2001. http://dx.doi.org/10.32747/2001.7575271.bard.

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Background Early detection and identification of faulty greenhouse operation is essential, if losses are to be minimized by taking immediate corrective actions. Automatic detection and identification would also free the greenhouse manager to tend to his other business. Original objectives The general objective was to develop a method, or methods, for the detection, identification and accommodation of faults in the greenhouse. More specific objectives were as follows: 1. Develop accurate systems models, which will enable the detection of small deviations from normal behavior (of sensors, contro
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Porter, C. D., A. Brown, R. T. Dunphy, and L. Vimmerstedt. Transportation Energy Futures Series. Effects of the Built Environment on Transportation. Energy Use, Greenhouse Gas Emissions, and Other Factors. Office of Scientific and Technical Information (OSTI), 2013. http://dx.doi.org/10.2172/1219931.

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Porter, Christopher D., Austin Brown, R. T. Dunphy, and Laura Vimmerstedt. Transportation Energy Futures Series: Effects of the Built Environment on Transportation: Energy Use, Greenhouse Gas Emissions, and Other Factors. Office of Scientific and Technical Information (OSTI), 2013. http://dx.doi.org/10.2172/1069163.

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Bhowmick, Shuvasish, ed. Biodigesters and Green Productivity: A Sustainable Approach to Clean Cooking. Asian Productivity Organization, 2023. http://dx.doi.org/10.61145/ehmt9812.

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Cooking with traditional fuels releases pollutants into the environment and impacts human health. To promote sustainability and reduce greenhouse gas emissions, Shuvasish Bhowmick introduces the utilization of biogas in biodigesters as a fuel source. Its production, uses, and benefits as an environmentally friendly option with few adverse effects on human health and climate are discussed in this P-Insights report.
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Dixon, John A. Enhanced Cost Benefit Analysis of IDB Waste Water Treatment Projects with Special Consideration to Environmental Impacts: Lessons Learned from a Review of Four Projects. Inter-American Development Bank, 2012. http://dx.doi.org/10.18235/0006941.

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Development projects have a wider set of impacts than just direct project outputs. A hydropower dam, for example, produces electricity but also disrupts river flows and may affect biodiversity and the general aquatic environment. A new port development may affect coastal resources such as mangroves and coral reefs. Coal-fired power plants affect both the local and the global environments through emissions of ash and dust (affecting mostly the local environment) as well as greenhouse gases (affecting the global environment). Sewage and sanitation projects provide new services to consumers but a
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Suding, Paul Hugo. Chemical Plants GHG Emissions: Reconciling the Financing of Chemical Plants with Climate Change Objectives. Inter-American Development Bank, 2013. http://dx.doi.org/10.18235/0009153.

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This technical note presents orientation for project teams and clients on how to reconcile the financing of chemical plants with climate change objectives. In lieu of minimum performance criteria, it provides quantitative benchmarks by which to prioritize levels of attention. It also provides guidance on assessing and encouraging the reduction of projects' greenhouse gas emissions in accordance with the best available appropriate technologies. The present document in form of a technical note, therefore, conveys an approach to financing chemical plants in a manner consistent with the IDB's comm
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Berniell, Inés, Mariana Marchionni, Julián Pedrazzi, and Mariana Viollaz. Women Political Leaders as Agents of Environmental Change. Inter-American Development Bank, 2025. https://doi.org/10.18235/0013521.

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This paper explores how female political leaders impact environmental outcomes and climate change policy actions using data from mixed-gender mayoral races in Brazil. We rely on a Regression Discontinuity design that compares municipalities where women narrowly won the election with those where men narrowly won. This strategy allows us to identify the causal effect of a woman winning the mayoral election. We find that, compared to male mayors, female mayors significantly reduce greenhouse gas emissions and deforestation in the municipalities with Amazon biome. Specifically, when a woman wins t
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