Alberta’s most important feed crop for beef production will benefit from warmer temperatures and increased humidity, and so will the beef industry, new University of Alberta research shows.

In an agro-hydrological model combining nine different climate change models and 18 future scenarios, watershed scientist Monireh Faramarzi and post-doctoral fellow Badrul Masud along with other collaborators looked ahead to 2064 to assess the water footprint related to barley and the beef industry.

Read more ...

Active components on buildings such as blinds whose design was copied from naturally occurring solutions — that is the subject of the research conducted by a team from the Technical University of Munich (TUM), the University of Freiburg, and the University of Stuttgart. The aim is to equip them with drive elements that can move without any electrical energy input. Serving as a model here are conifer pine cones, which utilize the varying swelling behaviors of their tissue to open when moist or close when dry.

Read more ...

The direct oxidation of methane—found in natural gas—into methanol at low temperatures has long been a holy grail. Now, researchers at Tufts have found a breakthrough way to accomplish the feat using a heterogeneous catalyst and cheap molecular oxygen, according to a paper published today in the journal Nature by a team led by Tufts University chemical engineers.

Read more ...

More Articles ...

Subcategories