De wereldbevolking groeit van 7 miljard nu naar 9 miljard in 2040. De productiegroei van voedsel loopt hierop flink achter. Uit onderzoek van de FAO in 2011 komt naar voren dat wereldwijd elk jaar 1,3 miljard ton voedsel verloren gaat, ruim een derde van de voedselproductie. Binnen de EU gooien we 20% van het totaal voor de EU inwoners geproduceerde voedsel weg, inclusief het onvermijdbare verlies. Dat komt neer op 173 kg per EU inwoner per jaar. Ongeveer de helft daarvan wordt weggegooid in de productieketen tot en met de supermarkt. Agri-food reststromen zijn te vinden bij de voedselindustrie, boeren, veilingen, supermarkten etc. Die worden momenteel laagwaardig verwerkt in diervoeder, compost, potgrond, vergisting etc. Hoogwaardig verwerken gebeurt zelden, bv via de Voedselbank of de Verspillingsfabriek (soepen etc.). Dit project heeft primair als doel om reststromen vanuit de food industrie hoogwaardig te verwaarden, met 3D food printing als primaire technologie. 3D food printing is in 2006 ontstaan en sinds 2016 in een stroomversnelling gekomen. (Michelin) chefs, chocolatiers, patissiers, fooddesigners en catering hebben deze nieuwe techniek nu omarmd. Vanuit de voedselindustrie is er ook veel belangstelling, met name voor industriële toepassing en voorgevulde cartridges. Daarmee kan het Nespresso businessmodel voor een doorbraak in 3Dfoodprinting zorgen, een goedkope 3Dprinter voor consumenten waarbij verdiend wordt aan de cartridges. Belangrijk dus om toepassingen te vinden die de mogelijkheden van 3D food printing voor verwaarding van reststromen volop benutten.
Our unilateral diet has resulted in a deficiency of specific elements/components needed for well-functioning of the human body. Especially the element magnesium is low in our processed food and results in neuronal and muscular malfunctioning, problems in bone heath/strength, and increased chances of diabetes, depression and cardiovascular diseases. Furthermore, it has also been recognized that magnesium plays an important role in cognitive functioning (impairment and enhancement), especially for people suffering from neurodegenerative diseases (Parkinson disease, Alzheimer, etc). Recently, it has been reported that magnesium addition positively effects sleep and calmness (anti-stress). In order to increase the bioavailability of magnesium cations, organic acids such as citrate, glycerophosphate and glycinate are often used as counterions. However, the magnesium supplements that are currently on the market still suffer from low bio-availability and often do not enter the brain significantly.The preparation of dual/multiple ligands of magnesium in which the organic acid not only functions as a carrier but also has synergistically/complementary biological effects is widely unexplored and needs further development. As a result, there is a strong need for dual/multiple magnesium supplements that are non-toxic, stable, prepared via an economically and ecologically attractive route, resulting in high bioavailability of magnesium in vivo, preferably positively influencing cognition/concentration
Due to societal developments, like the introduction of the ‘civil society’, policy stimulating longer living at home and the separation of housing and care, the housing situation of older citizens is a relevant and pressing issue for housing-, governance- and care organizations. The current situation of living with care already benefits from technological advancement. The wide application of technology especially in care homes brings the emergence of a new source of information that becomes invaluable in order to understand how the smart urban environment affects the health of older people. The goal of this proposal is to develop an approach for designing smart neighborhoods, in order to assist and engage older adults living there. This approach will be applied to a neighborhood in Aalst-Waalre which will be developed into a living lab. The research will involve: (1) Insight into social-spatial factors underlying a smart neighborhood; (2) Identifying governance and organizational context; (3) Identifying needs and preferences of the (future) inhabitant; (4) Matching needs & preferences to potential socio-techno-spatial solutions. A mixed methods approach fusing quantitative and qualitative methods towards understanding the impacts of smart environment will be investigated. After 12 months, employing several concepts of urban computing, such as pattern recognition and predictive modelling , using the focus groups from the different organizations as well as primary end-users, and exploring how physiological data can be embedded in data-driven strategies for the enhancement of active ageing in this neighborhood will result in design solutions and strategies for a more care-friendly neighborhood.