University of Gothenburg, Naturvetenskap Life Information about the building’s architecture, its uses and users
Naturvetenskap Life: Natrium building Natrium, the University of Gothenburg’s new building at Campus Medicinareberget in Gothenburg, brings research and education faculties within the field of Life Sciences together under one roof. This makes it possible to take advantage of opportunities for collaboration, synergistic effects and exchange of ideas in the best possible way. What differentiates Natrium from other research buildings is that it brings together several functions in one and the same building. Here, everything from research and education to collaborative spaces and restaurants are accommodated, which ensures that visitors find a warm welcome, and are tempted to linger to explore all that is on offer. Natrium will be designed in a flexible and adaptable way in order to meet the requirements which the building might face during its intended life span of at least 50 years. This is a building to inspire creativity, inspiration and innovation, and house high-level research – today, tomorrow and well into the future. The departments of chemistry and molecular biology, biology and environmental science, marine science and the faculty offices will all sit together in the new building. The project comprises approx. 32 000 m² of new building and 2 000 m² of renovation of the existing Medicinarelängan, accommodating educational facilities, advanced laboratory environments and offices for around 600 staff and 3 000 students. Natrium will have a new main entrance via Medicinarelängan, a spacious weather-protected hall equipped with stairs and elevator. This creates an accessible entrance in a central location at Medicinareberget. Medicinarestråket –the street through the campus area– shall be opened for vehicular traffic. Accessible parking spaces will be created in connection with the new main entrance. The link building that connects the existing Medicinarelängan with Natrium will get an even larger entrance, well located in close proximity to the parking spaces for 480 bicycles planned to the southeast. The terraced area between the two buildings is directly adjacent to the restaurant and features seating and planting.
Description of the surrounding area The area of Medicinareberget is centrally situated in Gothenburg, between Linnéplatsen, Annedal and the area of Sahlgrenska hospital. Through building Natrium, the southern part of Medicinareberget increases in density, with the aim of creating a coherent campus, a vision presented by Akademiska Hus and the University of Gothenburg’s Campus Plan Medicinareberget 2017-2040: “Campus Medicinareberget is a sustainable, attractive and vital campus environment within Gothenburg, a city of knowledge. A cluster for education and research within the natural sciences and medicine, with closely connected activity.”
Parts of the Medicinareberget area were built in the 1940s and it has since increased in density. One of the area’s most architecturally interesting buildings is Medicinarelängan, which was designed by Klas Anshelm 1958-1968. Anshelm's architecture is characterised by a strict design language, implemented through the use of yellow brick as a façade material, and a varied typology of buildings in laminate structure that are connected by a continuous low-rise building. The Campus Plan Medicinareberget is based on the area's existing infrastructure and buildings. Rather than adding new "annual rings" outside the current buildings, the plan concentrates the activities in the core of the campus area, which is supplemented with new additions. The current main road for vehicular traffic, Medicinaregatan, serves as an outer border, but is also a border zone where the university meets the surroundings and the city. The Campus Plan also aims to strengthen the connections to Sahlgrenska hospital.
The building’s architecture In a text written specifically for this Open Call, Kanonzi architects describe the new Natrium building: “With Natrium, we want to show respect for the existing buildings up on the hill. At the same time, the architecture should contribute with something new. At street level, material choices reference the surrounding buildings. The ground floor is finished in brick of light-yellow tones and has a relief pattern which gives variation and movement to the façade. The rest of the façade is a hybrid façade with an exterior surface featuring an interplay of materials: clear glass, screen printed glass and bronze-coloured aluminium. The building’s rounded corner breaks with the continuity of the area’s otherwise box-like architectural expressions, giving the new building a softer impression of its own. A large atrium in the middle of the building forms the heart of Natrium; a creative, social core at the centre of the building’s mass. The atrium plays an important role architecturally, spatially and socially, facilitating orientation and should be a place where students, researchers and visitors can meet within the building. Different types of meeting rooms and more informal meeting spaces are connected to the atrium, which contribute to making Natrium an open, creative environment for research and education. In the atrium’s extension we find the restaurant which is placed within the existing building and together with the new main entrance, link the building together with the existing campus street. The building’s fixed elements (stairs, lifts and installation shaft) are placed in order to give the rest of the exterior the potential for change. Along the façade there is a continuous area for offices, while the lab areas are placed more centrally in the building, around the atrium and close to the installation shaft. It is a short distance between lab areas and the office spaces. The office space can be designed as cubicle offices, an open plan office or as a combination of both. Operational and installation facilities are located are located together in close proximity to the technical areas on level 1 and level 7.”
Exterior view showing the south corner of the building. In the foreground you can see the roof of the existing Medicinarelängan building and in the background the hill can be seen.
Exterior view southeast faรงade.
Section view of the building.
Atrium, section view.
Atrium, visualisation.
Interior visualisation, link building with the bike entrance to the left and the main entrance straight ahead.
Interior visualisation, Atrium's main stairwell and elevators. (Illustrations: RĂ…format and Kanozi architects)
Description of the building’s uses and users (Description by Gothenburg University)
Department of Biological and Environmental Sciences The department has research activities that extend from mountain ecosystems, to forests, land and waterways, all the way to the sea. Those within the department work with biological structures on all levels from genes and cells, to individuals and populations, to communities and ecosystems. The researchers' expertise in the fields of ecology, evolution, physiology and systematics is integrated in order to understand natural and human-made environmental changes and thus work to solve important problems in basic as well as applied research. The main research areas are evolutionary biology and systematics, physiology and cell biology, environmental science, conservation and ecology.
Department of Chemistry and Molecular Biology The research conducted within the department covers a wide area, ranging from atomic and molecular scales to cells to whole organisms. Many of the phenomena studied illustrate the chemical and biological interactions between molecules in our natural environment and in living systems. The major research areas include structural biology, organic and medicinal chemistry, microbiology, analytical chemistry, developmental biology, cell biology, physical chemistry and environmental science. Approximately 70% of the department’s research can be referred to as Life Sciences, with the remainder divided equally between basic chemistry and environmental science.
Department of Marine Sciences The department brings together research areas in oceanography, marine geology, chemistry and biology. The research takes place both within individual subjects and in major interdisciplinary projects. There are several nationally unique research areas where the flagship is a state-of-the-art infrastructure for marine research and education. The department conducts research mainly in the coastal waters of the Kattegat / Skagerrak, large lakes, and in the Baltic Sea, but also in the other European coastal seas, as well as in the northern and southern polar seas. Research areas include: marine evolutionary biology, primary production, biogeochemical cycles, chemical signals in the sea, polar research, climate change and the marine environment, coastal zone management, underwater cultural heritage, sustainable mariculture, and others.