With funding from ‘Kas als Energiebron’, ChrIP and suppliers, nine chrysanthemum crops have been carried out at the Delphy Improvement Centre in 2017 and 2018. These crops had the following targets: • A heat use up to 475 MJ/(m2.yr). • This heat must be extracted from harvesting heat (cooling) and the electricity for the heat pump. • A CO2-use of 25 kg/(m2.yr). • A yearly electricity usage for lighting of 121 kWh/(m2.yr). • 5% more production than professional growers. The most important means to achieve this objective are hybrid lighting, diffuse glass with 2 AR-coatings, an additional energy screen, air handling units, well pumps and a heat pump. The crops are run under the name ‘The Perfect Chrysanthemum’ (DPC). The realised use of heat,...
The use of lamps for improvement of CO2-assimilation of greenhouse crops has increased enormously du...
Earlier studies led to the design of an optimal greenhouse cover (Kempkes et al. 2015) with high lig...
“Gerbera: Growing in Balance” was a research project to support the reduction of energy and CO2 cons...
With funding from ‘Kas als Energiebron’, ChrIP and suppliers, four chrysanthemums crops have been ca...
Bij het project De Perfecte Chrysant worden energiebesparende maatregelen getest om hiermee tot een ...
Trials have demonstrated that that the heat use for Chrysanthemum can be considerably reduced if the...
The most relevant options that can decrease the heat demand on Chrysanthemum are calculated on their...
The insulation value of a Chrysanthemum greenhouse has been increased by creating a cavity in the bl...
Within a greenhouse equipped with diffuse glass, cooling from above the crop, LED interlighting, act...
The purpose of the Ventilation Jet (VJ) system at Dekker Chrysanten is to reduce the temperature of ...
The project Sustainable rose cultivation aimed to achieve a sustainable and energy efficient rose cu...
The effect of three different lighting systems was investigated on chrysanthemum, i.e. HPS, hybrid l...
Wageningen UR Greenhouse Horticulture and Delphy conducted an experiment with sweet pepper -cultivar...
Growing a perfect rose requires an integrated approach based on plant physiology, crop health and en...
Key words: Biocides, cut chrysanthemum, Chrysanthemum grandiflorum , CO <sub>2</sub> , crop photosyn...
The use of lamps for improvement of CO2-assimilation of greenhouse crops has increased enormously du...
Earlier studies led to the design of an optimal greenhouse cover (Kempkes et al. 2015) with high lig...
“Gerbera: Growing in Balance” was a research project to support the reduction of energy and CO2 cons...
With funding from ‘Kas als Energiebron’, ChrIP and suppliers, four chrysanthemums crops have been ca...
Bij het project De Perfecte Chrysant worden energiebesparende maatregelen getest om hiermee tot een ...
Trials have demonstrated that that the heat use for Chrysanthemum can be considerably reduced if the...
The most relevant options that can decrease the heat demand on Chrysanthemum are calculated on their...
The insulation value of a Chrysanthemum greenhouse has been increased by creating a cavity in the bl...
Within a greenhouse equipped with diffuse glass, cooling from above the crop, LED interlighting, act...
The purpose of the Ventilation Jet (VJ) system at Dekker Chrysanten is to reduce the temperature of ...
The project Sustainable rose cultivation aimed to achieve a sustainable and energy efficient rose cu...
The effect of three different lighting systems was investigated on chrysanthemum, i.e. HPS, hybrid l...
Wageningen UR Greenhouse Horticulture and Delphy conducted an experiment with sweet pepper -cultivar...
Growing a perfect rose requires an integrated approach based on plant physiology, crop health and en...
Key words: Biocides, cut chrysanthemum, Chrysanthemum grandiflorum , CO <sub>2</sub> , crop photosyn...
The use of lamps for improvement of CO2-assimilation of greenhouse crops has increased enormously du...
Earlier studies led to the design of an optimal greenhouse cover (Kempkes et al. 2015) with high lig...
“Gerbera: Growing in Balance” was a research project to support the reduction of energy and CO2 cons...