1,734,323 research outputs found
Annual Report of the Electromagnetics Institute, Technical University of Denmark for the Academic Year 1974/75.
Annual Report of the Electromagnetics Institute, Technical University of Denmark for the Academic Year 1973/1974.
Danish results from the monitoring of pesticide residues in food
<p>This dataset contains the analytical results of pesticide residues measured in the food products analysed by the national competent authorities. Pesticide residues resulting from the use of plant protection products on crops that are used for food or feed production may pose a risk factor for public health. For this reason, a comprehensive legislative framework has been established in the European Union (EU), which defines rules for the approval of active substances used in plant protection products, the use of plant protection products and for pesticide residues in food. In order to ensure a high level of consumer protection, legal limits, so called “maximum residue levels” or briefly “MRLs”, are established in Regulation (EC) No 396/2005. EU-harmonised MRLs are set for all pesticides covering all types of food products. A default MRL of 0.01 mg/kg is applicable for pesticides not explicitly mentioned in the MRL legislation. Regulation (EC) No 396/2005 imposes on Member States the obligation to carry out controls to ensure that food placed on the market is compliant with the legal limits.</p>
<p>A sample is considered <strong>free of quantifiable residues</strong> if the analytes were not present in concentrations at or above the limit of quantification (LOQ). The LOQ is the smallest concentration of an analyte that can be quantified with the analytical method used to analyse the sample. It is commonly defined as the minimum concentration of the analyte in the test sample that can be determined with acceptable precision and accuracy.</p>
<p>If a sample is <strong>contains quantifiable residues</strong> but within the legally permitted limit (maximum residue level, MRL), it is described as a sample with quantified residue levels within the legal limits (below or at the MRL)</p>
<p>A sample is considered <strong>non-compliant</strong> with the legal limit (MRL), if the measured residue concentrations clearly exceed the legal limits, taking into account the measurement uncertainty. It is current practice that the uncertainty of the analytical measurement is taken into account before legal or administrative sanctions are imposed on food business operators for infringement of the MRL legislation.</p>
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<p><strong>REPORTING AUTHORITIES CONTRIBUTING TO EACH DATA COLLECTION:</strong></p>
<p>MOPER_2022 - National Food Institute - The Technical University of Denmark</p>
<p>MOPER_2021 - National Food Institute - The Technical University of Denmark</p>
<p>MOPER_2020 - National Food Institute - The Technical University of Denmark</p>
<p>MOPER_2019 - National Food Institute - The Technical University of Denmark</p>
<p>MOPER_2018 - National Food Institute - The Technical University of Denmark</p>
<p>MOPER_2017 - National Food Institute - The Technical University of Denmark</p>
<p>MOPER_2016 - National Food Institute - The Technical University of Denmark</p>
<p>MOPER_2015 - National Food Institute - The Technical University of Denmark</p>
<p>MOPER_2014 - National Food Institute - The Technical University of Denmark</p>
<p>MOPER_2013 - National Food Institute - The Technical University of Denmark</p>
<p>MOPER_2012 - National Food Institute - The Technical University of Denmark</p>
<p>MOPER_2011 - National Food Institute - The Technical University of Denmark</p>
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<p><strong>We are seeking feedback on our open data please complete the survey at the link below:<br>https://ec.europa.eu/eusurvey/runner/9344dfa0-f384-cb72-65f6-6c187a6d0f14</strong></p>DK; CSV; [email protected]
Association Euratom - DTU, Technical University of Denmark, Department of Physics - Annual Progress Report 2012
The programme of the Research Unit of the Fusion Association Euratom – DTU, Technical University of Denmark covers work in fusion plasma physics and in fusion technology. The fusion plasma physics research focuses on turbulence and transport, and its interaction with the plasma equilibrium and particles. The effort includes both first principles based modelling, and experimental observations of turbulence and of fast ion dynamics by collective Thomson scattering. Within fusion technology there are activities on fusion materials research (Tungsten and ODSFS). Other activities are system analysis, initiative to involve Danish industry in ITER contracts and public information. A summary is presented of the results obtained in the Research Unit during 201
Association Euratom - DTU, Technical University of Denmark, Department of Physics - Annual Progress Report 2013
The programme of the Research Unit of the Fusion Association Euratom – DTU, Technical University of Denmark covers work in fusion plasma physics and in fusion technology. The fusion plasma physics research focuses on turbulence and transport, and its interaction with the plasma equilibrium and particles. The effort includes both first principles based modelling, and experimental observations of turbulence and of fast ion dynamics by collective Thomsonscattering. Within fusion technology there are activities on fusion materials research (Tungsten and ODSFS). Other activities are system analysis, initiative to involve Danish industry in ITER contracts and public information. A summary is presented of the results obtained in the Research Unit during 2013
The Potential of the Technical University of Denmark in the Light of Sustainable Livable Cities
The Technical University of Denmark (DTU) has a long tradition for research and education in urban planning and sustainable urban development. An increasing societal focus on sustainability and urbanization in society supports this continuous focus on sustainable urban planning in technical educations. The focus on sustainable urban development includes understanding the role of civil engineering, water engineering, sustainable mobility and energy, and communities in developing future desirable solutions. However, beyond the challenges faced in each of the specific technical fields, there is a growing demand for integrated solutions. A proposal has been developed in the last couple of years to further develop DTU’s education in urban development and livable cities with an emphasis on integration and interdependencies in urban engineering. This paper describes core professional design niches which by themselves have an impact on urban development, including water in cities, climate adaptation, mobility planning, building, energy, and community designs. A number of challenges in developing an integrated approach in the technical education are discussed in the paper. The increasing focus on sustainability but also on global urbanization, compact cities, and smart cities supports new thinking in urban planning and design in technical education. The paper suggests a new initiative to further develop the sustainable urban planning research and education at DTU
Antimicrobial resistance monitoring results complementing the European Union Summary Report on Antimicrobial Resistance in zoonotic and indicator bacteria from humans, animals and food in 2021/2022 – Denmark
<p>This dataset contains AMR monitoring results in animals and food at the isolate level pursuant to Article 9 of Directive 2003/99/EC and to Annex, part B, of Commission implementing Decision (EU) 2020/1729. In addition, the dataset includes any other results from isolates than the ones mentioned in the Commission implementing Decision (EU) 2020/1729. The quantitative minimum inhibitory concentration (MIC) data from dilution methods, as well as the voluntary reporting of and Whole Genome Sequencing (WGS) data are included.</p>
<p>Reporting authorities contributing to 2022 AMR data collection: National Food Institute - The Technical University of Denmark</p><p><span>DK; xlsx; [email protected]</span></p>
5th NordicRAS Workshop on Recirculating Aquaculture Systems. Berlin, Germany, 7-8 October 2019:Book of Abstracts
Committee membersNordicRAS Network steering committee membersHelgi Thorarensen: Holar University College, IcelandJouni Vielma: Natural Resources Institute Finland, FinlandPer Bovbjerg Pedersen: Technical University of Denmark, DTU Aqua, DenmarkTorsten E.I. Wik: Chalmers University of Technology, SwedenOrganizing committee members for the NordicRAS WorkshopJohanne Dalsgaard: DTU Aqua, Technical University of Denmark, DenmarkGrete Solveig Byg: DTU Aqua, Technical University of Denmark, DenmarkLars-Flemming Pedersen: DTU Aqua, Technical University of Denmark, DenmarkPer Bovbjerg Pedersen:DTU Aqua, Technical University of Denmark, DenmarkCorrespondence:Johanne [email protected]
Association Euratom - DTU, Technical University of Denmark, Department of Physics - Annual Progress Report 2011
The programme of the Research Unit of the Fusion Association Euratom – DTU, Technical University of Denmark (until 31-12- 2011: Association Euratom – Risø DTU) covers work in fusion plasma physics and in fusion technology. The fusion plasma physics research focuses on turbulence and transport, and its interaction with the plasma equilibrium and particles. The effort includes both first principles based modelling, and experimental observations of turbulence and of fast ion dynamics by collective Thomson scattering. Within fusion technology there are activities related to development of high temperature superconductors. Other activities are system analysis, initiative to involve Danish industry in ITER contracts and public information. A summary is presented of the results obtained in the Research Unit during 2011
Results from the monitoring of veterinary medicinal product residues and other substances in live animals and animal products - Denmark
<p>This dataset contains the monitoring results of veterinary medicinal product residues and other substances measured in live animals and animal products analysed by the national competent authority of Denmark. The presence of unauthorised substances, residues of veterinary medicinal products or chemical contaminants in food may pose a risk factor for public health.</p>
<p>For this reason and in order to ensure a high level of consumer protection, a comprehensive legislative framework has been established in the European Union (EU) which defines maximum limits permitted in food and monitoring programmes for the control of the presence of these substances in the food chain. Regulation (EU) No 37/2010 establishes maximum limits for residues of veterinary medicinal products in food-producing animals and animal products. Maximum residue levels for pesticides in or on food and feed of plant and animal origin are laid down in Regulation (EC) No 396/2005. Commission Regulation (EC) 1881/2006 lays down the maximum limits for the presence of certain contaminants in animal products. Council Directive 96/23/EC lays down measures to monitor certain substances and residues thereof, mainly veterinary medicinal products, in live animals and animal products. Additionally, Commission Decision 97/747/EC lays down levels and frequencies of sampling for certain animal products.</p>
<p>The dataset contains the results of laboratory tests from samples taken from bovines, pigs, sheep, goats, horses, poultry, rabbits, farmed game, wild game aquaculture, milk, eggs and honey.</p>
<p>Targeted samples are taken with the aim of detecting illegal treatment or controlling compliance with the maximum levels laid down in the relevant legislation. This means that, in their national plans Member States target the groups of animals (species, gender, age) where the probability of finding residues is the highest.</p>
<p>Suspect samples are taken as a consequence of i) non-compliant results on samples taken in accordance with the monitoring plan, ii) possession or presence of prohibited substances at any point during manufacture, storage, distribution or sale through the food and feed production chain, or iii) suspicion or evidence of illegal treatment or non-compliance with the withdrawal period for an authorised medicinal veterinary product.</p>
<p>Residues of pharmacologically active substances mean active substances, excipients or degradation products and their metabolites, which remain in food.</p>
<p>Unauthorised substances or products mean substances or products prohibited under European Union legislation.</p>
<p>Non-compliant sample is a sample that has been analysed for the presence of one or more substances and failed to comply with the legal provisions for at least one substance. Thus, a sample can be non-compliant for one or more substances.</p>
<p>Disclaimer: The 2022 results might be affected by minor coding errors that were not identified during the submission and validation phase. Additional details can be found in the supporting file published along with the <u><a href="https://eur03.safelinks.protection.outlook.com/?url=https%3A%2F%2Fwww.efsa.europa.eu%2Fen%2Fsupporting%2Fpub%2Fen-8669&data=05%7C02%7CStefania.SALVATORE%40efsa.europa.eu%7C9a182d9099de4013869b08dc78acadcb%7C406a174be31548bdaa0acdaddc44250b%7C0%7C0%7C638517930243914401%7CUnknown%7CTWFpbGZsb3d8eyJWIjoiMC4wLjAwMDAiLCJQIjoiV2luMzIiLCJBTiI6Ik1haWwiLCJXVCI6Mn0%3D%7C0%7C%7C%7C&sdata=hfkOzrR3TuexouuwAloXFfnNu5j%2FEtYGUK0W3mRSwKg%3D&reserved=0">2022 VMPR Annual Report</a></u>.</p>
<p><strong>REPORTING AUTHORITIES CONTRIBUTING TO EACH DATA COLLECTION:</strong></p>
<p>VMPR_2022 – National Food Institute - Technical University of Denmark</p>
<p>VMPR_2021 – National Food Institute - Technical University of Denmark</p>
<p>VMPR_2020 – National Food Institute - Technical University of Denmark</p>
<p>VMPR_2019 – National Food Institute - Technical University of Denmark</p>
<p>VMPR_2018 – National Food Institute - Technical University of Denmark</p>
<p>VMPR_2017 – National Food Institute - Technical University of Denmark</p>EU; CSV; [email protected]
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