This book fills an important gap in the sport governance literature by engaging in critical reflection on the concept of ‘good governance’. It examines the theoretical perspectives that lead to different conceptualisations of governance and, therefore, to different standards for institutional quality. It explores the different practical strategies that have been employed to achieve the implementation of good governance principles. The first part of the book aims to shed light on the complexity and nuances of good governance by examining theoretical perspectives including leadership, value, feminism, culture and systems. The second part of the book has a practical focus, concentrating on reform strategies, from compliance policies and codes of ethics to external reporting and integrity systems. Together, these studies shed important new light on how we define and understand governance, and on the limits and capabilities of different methods for inducing good governance. With higher ethical standards demanded in sport business and management than ever before, this book is important reading for all advanced students and researchers with an interest in sport governance and sport policy, and for all sport industry professionals looking to improve their professional practice.
Sport kan net als kunst, muziek en kleding ook worden gezien als een maatschappelijk verschijnsel dat inzicht geeft in de hedendaagse cultuur. Verborgen competitie belicht juist deze kant van de sport. Hierbij staan eenvoudige vragen centraal die velen interesseren, maar waaraan nog maar weinigen aandacht hebben besteed. Waarom behoort American football tot de populairste sporten van de Verenigde Staten, is China een tafeltennisbolwerk, Nederland een schaatsland en Nieuw-Zeeland een rugbynatie? Waarom wordt voetbal wereldwijd massaal beoefend en kent korfbal alleen in ons land een grote populariteit? Maarten van Bottenburg beschrijft de verspreiding en popularisering van ongeveer dertig sporten over de hele wereld in de afgelopen honderd jaar en biedt de lezer daarmee een mondiaal sportpanorama. Door het lezen van Verborgen competitie krijgt u meer inzicht in de mondialisering van de hedendaagse cultuur en in de wijze waarop mensen zich door hun sportvoorkeuren aan anderen binden of zich van hen onderscheiden.
The MSP Challenge uses game technology and role-play to support communication and learning for Marine/Maritime Spatial Planning. Since 2011, a role-playing game, a board game and a digital interactive simulation platform have been developed. The MSP Challenge editions have been used in workshops, conferences, education, as well as for real life stakeholder engagement. The authors give an overview of the development of the MSP Challenge and reflect on the value of the approach as an engaging and ‘fun’ tool for building mutual understanding and communicating MSP.
Wetenschappers gebruiken bioorthogonale klikreacties tussen trans-cyclooctenen (TCOs) en tetrazines (Tz) om geheel nieuwe geneesmiddelen te ontwikkelen waarmee heel gericht cruciale biologische doelmoleculen kunnen worden geraakt, zodat ziektes op een veel selectievere manier kunnen worden behandeld. Recentelijk heeft de Radboud Universiteit een nieuw TCO-derivaat ontwikkeld en geoctrooieerd dat beschikt over twee orthogonale handvatten, goede stabiliteit, een snelle klik-kinetiek en een biocompatibele “click-to-release” functionaliteit. Bovendien kan deze TCO in een efficiënte synthese met hoge zuiverheid geproduceerd worden in tegenstelling tot vergelijkbare gepubliceerde stoffen. Binnen dit KIEM project zullen ‘ready-to-use’ TCO-producten ontwikkeld worden, gebaseerd op dit nieuwe TCO-derivaat. Dit is belangrijk om de drempel te verlagen voor onderzoekers om deze nieuwe technologie te benutten in hun toepassingen en versnelt daarmee de ontwikkeling van “slimme” geneesmiddelen of materialen. De werkzaamheden in dit project zullen bestaan uit literatuuronderzoek, synthetisch ontwerp van TCO-derivaten, chemische synthese, onderzoek naar de eigenschappen van de stoffen en contact leggen met potentiele gebruikers. De beoogde projectresultaten zijn chemische methoden om geactiveerde TCOs te synthetiseren, 5–10 geactiveerde eindproducten, inzicht in de chemie van TCOs, inzicht in de kinetiek en stabiliteit van de nieuwe TCOs en nieuwe samenwerkingen. In dit project wordt samengewerkt tussen de Radboud Universiteit en het biotechnologiebedrijf Synvenio. Binnen de synthetisch organische chemie afdeling van de Radboud Universiteit is de eerdergenoemde nieuwe TCO ontwikkeld. Synvenio is een jong biotechnologiebedrijf dat bioactieve stoffen beschikbaar maakt voor biochemisch- en biomedische onderzoekers. Het team bestaat uit chemici met veel affiniteit met biochemie, waaronder een van de uitvinders van de nieuwe TCO.
Micro and macro algae are a rich source of lipids, proteins and carbohydrates, but also of secondary metabolites like phytosterols. Phytosterols have important health effects such as prevention of cardiovascular diseases. Global phytosterol market size was estimated at USD 709.7 million in 2019 and is expected to grow with a CAGR of 8.7% until 2027. Growing adoption of healthy lifestyle has bolstered demand for nutraceutical products. This is expected to be a major factor driving demand for phytosterols. Residues from algae are found in algae farming and processing, are found as beachings and are pruning residues from underwater Giant Kelp forests. Large amounts of brown seaweed beaches in the province of Zeeland and are discarded as waste. Pruning residues from Giant Kelp Forests harvests for the Namibian coast provide large amounts of biomass. ALGOL project considers all these biomass residues as raw material for added value creation. The ALGOL feasibility project will develop and evaluate green technologies for phytosterol extraction from algae biomass in a biocascading approach. Fucosterol is chosen because of its high added value, whereas lipids, protein and carbohydrates are lower in value and will hence be evaluated in follow-up projects. ALGOL will develop subcritical water, supercritical CO2 with modifiers and ethanol extraction technologies and compare these with conventional petroleum-based extractions and asses its technical, economic and environmental feasibility. Prototype nutraceutical/cosmeceutical products will be developed to demonstrate possible applications with fucosterol. A network of Dutch and African partners will supply micro and macro algae biomass, evaluate developed technologies and will prototype products with it, which are relevant to their own business interests. ALGOL project will create added value by taking a biocascading approach where first high-interest components are processed into high added value products as nutraceutical or cosmeceutical.
Chemical preservation is an important process that prevents foods, personal care products, woods and household products, such as paints and coatings, from undesirable change or decomposition by microbial growth. To date, many different chemical preservatives are commercially available, but they are also associated with health threats and severe negative environmental impact. The demand for novel, safe, and green chemical preservatives is growing, and this process is further accelerated by the European Green Deal. It is expected that by the year of 2050 (or even as soon as 2035), all preservatives that do not meet the ‘safe-by-design’ and ‘biodegradability’ criteria are banned from production and use. To meet these European goals, there is a large need for the development of green, circular, and bio-degradable antimicrobial compounds that can serve as alternatives for the currently available biocidals/ preservatives. Anthocyanins, derived from fruits and flowers, meet these sustainability goals. Furthermore, preliminary research at the Hanze University of Applied Science has confirmed the antimicrobial efficacy of rose and tulip anthocyanin extracts against an array of microbial species. Therefore, these molecules have the potential to serve as novel, sustainable chemical preservatives. In the current project we develop a strategy consisting of fractionation and state-of-the-art characterization methods of individual anthocyanins and subsequent in vitro screening to identify anthocyanin-molecules with potent antimicrobial efficacy for application in paints, coatings and other products. To our knowledge this is the first attempt that combines in-depth chemical characterization of individual anthocyanins in relation to their antimicrobial efficacy. Once developed, this strategy will allow us to single out anthocyanin molecules with antimicrobial properties and give us insight in structure-activity relations of individual anthocyanins. Our approach is the first step towards the development of anthocyanin molecules as novel, circular and biodegradable non-toxic plant-based preservatives.