Architecture

New living wall uses recycled materials for better growing conditions

New living wall uses recycled materials for better growing conditions
Although designed by two professors, the living wall was built mainly by a team of students
Although designed by two professors, the living wall was built mainly by a team of students
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Each modular planter can be removed and replaced as needed
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Each modular planter can be removed and replaced as needed
Although designed by two professors, the living wall was built mainly by a team of students
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Although designed by two professors, the living wall was built mainly by a team of students
Assoc. Prof. Bruce Dvorak (left) and Assoc. Prof. Ahmed K. Ali
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Assoc. Prof. Bruce Dvorak (left) and Assoc. Prof. Ahmed K. Ali
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Plant-covered "living walls" are becoming increasingly popular, as they look nice, produce oxygen, and (when outdoors) help keep buildings cool. A relatively new one is claimed to be more plant-friendly, plus it's made of recycled materials.

Designed by Texas A&M University's associate professors Bruce Dvorak and Ahmed K. Ali, the 10-ft (3-m) tall wall is located between the three buildings that make up the institution's Langford Architecture Center. Although it was initially installed over an existing brick wall in 2018, it was recently replanted after an "unprecedented freeze" killed many of the plants last February.

Unlike most living walls, which house the plants in recessed pockets, this one utilizes approximately 300 diamond-shaped planters. These are made from folded scrap sheet metal (obtained from the automotive industry) and disposable matrix trays – the latter are plastic trays used to transport components in the production of printed circuit boards.

Assoc. Prof. Bruce Dvorak (left) and Assoc. Prof. Ahmed K. Ali
Assoc. Prof. Bruce Dvorak (left) and Assoc. Prof. Ahmed K. Ali

Each planter reportedly holds a greater amount of soil than the compartments in traditional living walls, providing more room for the plants' root systems. Additionally, because the planters protrude out from the wall, the plants can grow straight upward instead of at an unnatural angle.

What's more, the integrated drip irrigation system (which runs behind the wall) can be set to meet the watering needs of each individual plant. And if any plant requires more attention, its planter can be removed and replaced as needed. That said, because the wall is located in the arid environment of Texas, all of the plants chosen for it are drought-resistant.

Each modular planter can be removed and replaced as needed
Each modular planter can be removed and replaced as needed

Dvorak and Ali are now in the process of patenting their living wall system, and are seeking industry partners for commercial production. They even envision a larger version of the setup, which could be used for the vertical farming of crops in urban settings.

Source: Texas A&M University

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2 comments
2 comments
Treon Verdery
This looks needlessly arduous to maintain unless drones are used to do the watering and seed planting, if drones are used then it could look nice.
The Doubter
A complex solution to a simple problem, IMHO. And, in any case, nothing to patent in this!