Displaying 301 - 310 of 358

Green Façade in Genova

The green wall was built as a pilot project in cooperation between the national government, the University of Genova and the Ecosystemic Research Group with the aim to assess urban air pollution. The wall is being monitored to understand which plant species are the most ideal for carbon sequestration in cities (2 and 3).

Water between the Lungegaard lakes

The urban development project between Little Lungegård Lake and Big Lungegård Lake (Store Lungegårdsvann) involves the creation of a canal between the two lakes as a means of runoff management, among other things. Water quality and flood protection are fundamental issues that are considered in this project as the city is expecting increased levels of precipitation due to climate change. The rest of the urban area will be transformed into an attractive modern city centre area with water as the most important element (Ref 1, 4).

Restoring Braid Burn

The Braid Burn is a highly urbanised watercourse that has been significantly modified to improve drainage. Prior to re-meandering of the Braid burn, it was constrained in a narrow, brick-lined channel with little character, offering a poor habitat and possessing low species diversity. The restoration work reintroduced diversity to allow natural morphological and ecological processes to take place (ref. 2). A new wetland habitat was created, along with a flood storage area. It was a small component of a wider flood alleviation scheme by the City of Edinburgh (ref. 1).

Monsanto green corridor

In 2012, the City of Lisbon has implemented a 2,5 km green corridor connecting Monsanto Forest Park ( 900ha) and the city centre through Eduardo VII Park. (1) It is a concept of continuous natural structure, consisting of a coordinated set of green spaces that intend to continuously bring the natural space to the interior of the city (ref.3)
This corridor is a fundamental part of the Ecological Structure, a matrix formed and articulated by systems: the Mobility System, the Water and Air Circulation System, the Fluvial-Estuarine Transition System and the Structural Ecological Units System.

Lisbon Biodiversity Route

Lisbon's Biodiversity Route is a pedestrian route of 14 km, marked according to the norms of the Portuguese Federation of Camping and Mountaineering. It connects the Forest Park of Monsanto to the Tejo river, which aims to contribute to raising the awareness of the value of the city's biodiversity (ref. 4). The position and dimension of these connected areas important in relation to the climate regulation, air quality and for the diversity of habitats that the city offers. The Biodiversity Route is a circular route, which can be done on foot or by bicycle where each species of fauna and flora that can be observed (Ref.1).

MOL: sustainable infrastructure

The petrol station is a result of a long-term project of MOL, called as the “The petrol station of the future”. The designers created a building with excellent thermal insulation, green walls, a green roof, solar panels, rainwater utilization and an alternative heating system. Even the interior of the building was created with as much environmentally friendly materials as possible. The building uses LED lighting only to save energy. These environmental efforts resulted in Energy savings of more than 50 percent, and the neutralization of 10 tons of CO2 gas emissions. (Reference 1)

Blackburn Meadows Wastewater Treatment Plant Upgrade

Blackburn Meadows Wastewater Treatment Plant (WWTP) has a mesophilic anaerobic digestion facility, which enables the recycled sludge to be used on neighbouring farmlands as manure. It also enables the generation of renewable energy using combined heat and power units. All the upgrade works were to improve the quality of effluent being discharged into the River Don (ref 3). Sheffield City Council and Yorkshire Water leased an unused part of the former sewage works, to turn into a nature reserve which provides habitat for migrating birds. A water meadow created on vacant land promotes ecological biodiversity and floodwater attenuation (Ref5). In 2013, the works handle a dry weather flow of more than 158,000 cu m of sewage per day, with the treated effluent pumped into the river. It is one of Yorkshire Water’s biggest assets, but with a projected dry weather flow set to hit 368,000 cu m per day by 2025, it is in need of an upgrade (ref 6). The project is fragmented into two phases as the 1st phase was completed in 2013 and the 2nd phase will be completed by 2021 (ref 3).

Sheffield University Green Roofs

The University of Sheffield has embraced green roof technology for its benefits to the built environment, and to support Sheffield City Council vision of Sheffield as the UK’s green roof capital. Most buildings the University feature intentionally vegetated green roofs and some existing buildings with suitable structures have been retrofitted with green roofs (ref 1). The first instrumented test plot for the green roof was installed on the Mappin Building roof. In 2009, Jessop West building and the Robert Hadfield – Green Roof Centre Demonstration Site are studied for replicating the model (ref 4).

Brackwede derelict area

On the derelict industrial plant in Brackwede, which was independent until 1973, a large leisure facility with an extensive range of leisure activities was planned. However, due to more recent findings, this direction was rejected and a natural green corridor was created with unique biotope areas that had developed over time from the abandoned bleaching ponds and meadows. The Luttertal is located in Bielefeld Quelle, south of the
The industrial plant in Brackwede was intentionally abandoned since 1973, due to the local municipality recently cancelled the project of the redevelopment of the area and kept it intact. Till now, a “natural green area developed with very interesting biotope areas, which had evolved over time” at the abandoned site.

Joining two parks with a green mass corridor

"The main idea of the project is to join the two parks at the end of the intervention (Pedion Areos and Lofos Likavitou) with a green mass that will flow all along the intervention, bringing back the greenery to an area that used to be a green zone in the outside of the old Athens walls.That green corridor is formed by: (1) the existing trees preserved; (2) the new trees added; (3) a continuous floor all along the project with a pattern that is an abstraction from olive tree branches; (4) The artificial activity/bioclimatic trees they create" (Ref 1).