

Biogenic raw materials have never been as popular as they are now. Efforts to tap renewable carbon resources are already underway, despite the fact that new oil drilling technologies are boosting fossil fuel stockpiles. In the medium term, industry will have to expand its raw materials base, and in the long term it may have to renew it completely. Industrial biotechnology is one of the key technologies in the transition.
https://biopro-v9-test-bio.xanium.io/en/articles/dossiers/industrial-biotechnology-a-challenging-change-to-the-raw-material-baseBiotechnology opens up numerous opportunities for the food industry. The targeted use of biotechnological methods can help reduce the quantity and number of unhealthy ingredients in foods as well as degrade allergenic substances. Genomic research and targeted breeding also greatly facilitate progress in agriculture. Food biotechnology therefore contributes significantly to saving resources, optimising harvest yields and producing better foods.
https://biopro-v9-test-bio.xanium.io/en/articles/dossiers/biotechnology-as-a-tool-for-the-production-of-foodScience constantly provides researchers with new challenges biologists and bioanalysts have to deal with and which come from sources as varied as the ever increasing number of resistant pathogenic bacterial strains or the famine conditions in Third-World countries. In the search for scientific truths bioanalysis is the development optimization and application of the entire range of analytical methods available. However we need to keep in mind…
https://biopro-v9-test-bio.xanium.io/en/articles/dossiers/bioanalysis-techniques-for-the-characterization-of-biological-materialWhile the use of biotechnological methods for the purification of water, soil and air has already been state of the art for quite a few years, the use of microorganisms for the recovery of metal and mineral raw materials from industrial and agricultural waste has also started to attract the interest of scientists. This dossier addresses this topic, explains what geobiotechnology and urban mining are all about.
https://biopro-v9-test-bio.xanium.io/en/articles/dossiers/microbial-raw-material-recyclingIndustrial or white biotechnology uses microorganisms and enzymes to produce goods for industry, including chemicals, plastics, food, agricultural and pharmaceutical products and energy carriers. Renewable raw materials and increasingly also waste from agriculture and forestry are used for the manufacture of industrial goods.
https://biopro-v9-test-bio.xanium.io/en/articles/dossiers/industrial-biotechnology-biological-resources-for-industrial-processesBiotechnology plays a part in many high-tech fabrics that have become an integral part of our everyday life. Whether it is products for the treatment of wounds, fabrics for marquees or for clothing, many materials have been developed or are produced using biotechnological techniques and processes. Many products marketed as “micro” or “nano” are inspired by nature.
https://biopro-v9-test-bio.xanium.io/en/articles/dossiers/innovative-textiles-made-possible-by-biotechnologyOn the one hand, a bioeconomy relies on renewable resources to meet society’s need for food, energy and industrial products. On the other, it emphasises the role of biogenic material flows. The bioeconomy model is expected to reduce our dependency on fossil fuels in the long term. In order to implement the shift to a biobased economy on the regional level, the Baden-Württemberg government launched the Bioeconomy Research Strategy in summer 2013.
https://biopro-v9-test-bio.xanium.io/en/articles/dossiers/bioeconomy-a-new-model-for-industry-and-the-economyProcesses that previously required pipetting analysis and production to be carried out manually are increasingly now controlled by automated systems. However this has not necessarily involved a complete reinvention of the wheel instead automation systems used in the plant construction and mechanical engineering sectors are being adapted and optimised for application in the life sciences.
https://biopro-v9-test-bio.xanium.io/en/articles/dossiers/biotechnology-goes-automatedSystems biology studies complex interactions within biological systems on the genome proteome and organelle level. Many techniques from the fields of systems theory and associated fields can be used to gain an understanding of the behaviour and biological mechanisms of cellular systems.
https://biopro-v9-test-bio.xanium.io/en/articles/dossiers/systems-biology-understanding-complex-biological-systemsWhat is nanobiotechnology what is the difference between nanotechnology and nanobiotechnology and where and what nanobiotechnological research is being carried out in Germany and more particularly in Baden-Württemberg and which applications is it aimed at?
https://biopro-v9-test-bio.xanium.io/en/articles/dossiers/nanobiotechnology