Rooftop Garden Advantages
The first option for rooftop gardening is container gardening . A less formal, highly flexible, cheaper form of roof gardening which is commonly seen in cities worldwide. Still a great way to be a "green gardener" in the growing world of "green gardens."
In rooftop container gardening, few to no modifications are made to the existing roof structure; containers – anything from plastic swimming pools to recycled-wood planters – are placed on a rooftop and filled with the desired soil type and plants.
One problem you might face here, is the soil in rooftop containers might thaw on a warm winter day. Furthermore, roof container gardens dry out quickly and often require daily watering unless a mulch cover such as straw, wood chips, or even a sub-soil layer of newspapers and compost is used to slow down evaporation.
Also with a rooftop garden, the container material must be carefully considered in places with extreme climates. For example: Concrete containers would crack in cold winter temperatures.
A great option to explore as an addition to "green houses", is a green roof. Many are including this as an option when drafting their "green designs" for their home.
This is the second type of a rooftop garden. The rooftop actually becomes the planting medium. What a way to practice Green Gardening!
In the early 1960’s, green roof technology was developed in Switzerland and enhanced in many countries...particularly Germany.
In the 1970’s, a significant amount of technical research was carried out on root repelling agents, waterproof membranes, drainage, and lightweight growing media and plants.
By the year 1996, 10 million square meters of roofs in Germany had been covered with gardens.
In European countries such as France, Germany and Austria, green roofs are viewed as an effective strategy for increasing green space in cities, reducing storm water runoff, and achieving other environmental benefits.
A green roof involves more intensive investments (up to two times the cost of a normal roof), but comes with its own set of advantages.
Those include: greater storm-water retention, building insulation, and the formation of patchwork urban ecosystems. The latter works to reverse the fragmentation of ecosystems that follows urbanization. It does so by offering temporary habitats to fauna, such as birds and butterflies during their long migrations.
Green roofs are constructed using a special root and water-proof membrane for the base layer, then a root barrier, a retention/drainage layer, plus the soil layer, and finally the plants.
With a modular green roof system, roof infrastructure access and maintenance has become much easier as parts of the roof can be moved independently.
Alpine plants or desert succulents are often used for green roofs, as they can withstand harsh rooftop conditions like wind, erosion, and extreme temperature.
Native plants are also used for rooftop garden plantings, though all of them are not conducive for roof top conditions. Herbs are commonly grown as well since they need minimal soil depth.
The third rooftop garden possibility is rooftop hydroponics . This is where plants are grown in a soil-less medium (peat, sand, gravel, old rubber tires, rockwool, perlite or vermiculite) and fed a special nutrient solution.
Rooftop hydroponics can be the lightest of the three rooftop garden options, and may offer the possibility for faster plant growth (up to two to four times) and increased productivity.
The purest form of hydroponics is water culture, in which a plant’s crown is supported by a thin layer of substrate, while its roots are immersed in a nutrient solution.
Hydroponic systems can be divided generally into two groups – passive and active systems.
Passive systems are the most simple, and the cheapest, requiring only a container with drainage, a tray that holds liquid, and a growing medium. Plants are hand watered with the nutrient solution and soak up the solution via capillary action.
Active systems include “ebb and flow” or “flood and drain,” in which a pump regularly floods the plant tray with nutrient solution, which then drains back into a holding tank.
Various other systems require different growing media and methods of irrigation, but all need to be monitored for pH and nutrient solution strength, since plants have different nutrient requirements during different stages of their growth.
Commercial systems can cost from $100 to several thousand dollars.
Hydroponics can be practiced anywhere, even indoors, with the help of artificial lighting, and no digging or weeding is generally required. Growing conditions are highly controlled, so plants can be provided with the best possible conditions, resulting in better quality, disease-resistant plants with higher yields – commercial tomato growers have reported yields up to 40 times higher per hectare than soil-grown plants.
Almost any kind of plant can be grown hydroponically – tomatoes, peppers, rhubarb, cucumbers, squash, snow peas, beans, spinach, lettuce, strawberries, chard, and broccoli are just some examples.
Another technology spin off of hydroponics is aeroponics, where a hydroponic nutrient solution is sprayed onto plant roots dangling in light-proof boxes.
It allows temperate-climate fresh vegetables to be produced economically in tropical and sub-tropical climates.
Aquaponics, on the other hand is the combination of aquaculture and hydroponics. It is the symbiotic cultivation of plants and aquatic animals in a recirculating environment.
Nutrient rich fish water is pumped from the fish tank into gravel beds, where plants growing in the gravel extract the nutrients from the water. The water then drains back into the fish tank cleaned of excess nutrients and freshly oxygenated.
Aquaponic systems do not discharge or exchange water. The systems rely on the natural relationship between the aquatic animals and the plants to maintain the environment. Water is only added to replace water loss from absorption by the plants or evaporation into the air.
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A Rooftop Garden....just another eye-opening way to Container Garden in an unexpected way.