11

“Nanocoloring in times of Coronavirus” by BIP-CO – a project granted by INNOWWIDE

Applied Nanoparticles SL (spin off of the Catalan Institute of Nanoscience and Nanotechnology -ICN2-, the Autonomous University of Barcelona -UAB- and the Catalan Institute of Research and Advanced Studies -ICREA-) and the Nanoscale Science and Technology Center –nanoCiTec– are developing the project “BIP-CO: Launching BioGAS + iron nanoparticles additive for biogas output optimization in Colombia“, which has received funding from the Research and Innovation Program Horizon 2020 of the European Union, through the INNOWWIDE project.

Confronted with the health emergency caused by COVID-19, and within the framework of the European Project “BIP-CO”, winner of a grant from the 1st INNOWWIDE VAP Call, Applied Nanoparticles SL and the Nanoscale Science and Technology Center –nanoCiTec- have developed materials to entertain, inform and educate the youngest and their families, at the intersection of the viral pandemic and the world of nanotechnology. An action to contribute to the collective effort against the pandemic and make #StayHome more bearable.

In the first Notebook, they try to answer questions and concerns about the Coronavirus, its symptoms and how to avoid them through a story created by the child psychologist Manuela Molina Cruz. The Notebook also aims to entertain them through a set of sheets for nanocoloring, painting and scribbling made up of images of inorganic nanoparticles extracted by Dr. Víctor Puntes (researcher at the Institut Català de Nanociència i Nanotecnologia -ICN2-, the Vall d’Hebron Institute of Research –VHIR- and the Institut Català de Recerca i Estudis Avançats -ICREA-) when observing with an electron microscope.

In the second Notebook, they present an introduction to Nanotechnology with different materials created by Dr. Edgar E. González (IP nanoCiTec and professor at the Pontificia Universidad Javeriana). The objective is to entertain through a set of sheets for nanocoloring, painting and scribbling made up of images of inorganic nanoparticles extracted by Dr. Víctor Puntes (researcher at the Institut Català de Nanociència i Nanotecnologia -ICN2-, the Vall d’Hebron Institute of Research –VHIR- and the Institut Català de Recerca i Estudis Avançats -ICREA-) when observing with an electron microscope.

The Notebooks can be freely downloaded at: https://www.nanocitec.org/nanocolorea/

deadline extended

INNOWWIDE Call 2: Deadline extended!

The INNOWWIDE team is aware of the shifted priorities for many European SMEs due to the the COVID-19 emergency.

Therefore, we have decided to extend the deadline of the currently open 2nd VAP Call in order to help applicants better prepare during this challenging period:

The INNOWWIDE 2nd Call for applications for Viability Assessment Projects (VAPs) is closing on April 7th at 20:00 GMT.

Don’t forget we are here to help you in this final rush! Please contacts us at info@innowwide.eu, in case you have any inquires.

Note: all the references to the previous deadline (March 31st) are still being updated throughout the website.

Stay Safe!
INNOWWIDE Team

IoT Microturbine: enabling off-grid IoT applications and data-driven management of gas networks in Peru (AMT)

Our Microturbine for energy harvesting in gas pipelines (AMT) is an innovative self-powered gas management system that simultaneously enables continuous remote monitoring and efficient pressure management of gas networks through data-driven decisions. The core of the technology is a novel patented, highly miniaturised microturbine (coin-sized), designed to be introduced into gas distribution pipelines, taking advantage of any existing pressure drop in the system to generate electricity in off-grid contexts (e.g. remote areas). It harvests the available energy for free, with no emissions or burning of fuel.
Our patented Microturbine has been designed to self-sufficiently and reliably power monitoring and control apparatus that help detect and reduce leaks in gas pipes and ultimately assure gas pipeline infrastructure functionality.

ARGO US

ARGO 1.0 is an innovative Multicamera Star Tracker targeting minisats. Its value proposition is the capability to guarantee high accuracy, robustness and flexibility, including a smart in-flight autocalibration of both camera model and camera relative attitude, with a price affordable for the SmallSats market. With respect to other star trackers, ARGO improves the attitude measurement accuracy, the admissible working conditions and the system robustness and autonomy, it simplifies hardware requirements and opens the way for gyroless and single sensor AOCS concepts.
The main ARGO innovation and advantages are here below summarized.
1. Maximum Sky Coverage. The cameras can be installed wherever on the vehicle it is more convenient for obtaining a good sky coverage, which are even very far away from each other.
2. High accuracy & Robustness over time. Since both camera calibration model parameters and camera relative attitude are measured and continuously updated on board, it does not hold anymore the requirement that the above parameters have to be strictly invariant and stable for the whole star tracker life.
3. Flexibility/ Easiness of installation. Only a camera – to be defined as Master Camera – will have to be mounted connected in rigid and time invariant way with the payload, the attitude of which one wants to measure. The attitude of each other cameras is measured with respect to Master Camera and continuously on board updated. Then, all the other cameras can be mounted without having to comply with any special rigidity and invariability constraints of their attitude with respect to the payload.

INNOPOWDER

At Innomaq21, we have developed a disruptive industrial technique to produce high performance metal powders specially designed for the specific parameters required for metal additive manufacturing (MAM) of high-end components for the transport industry. Our metal powders have superior physicochemical characteristics that enable the fabrication of high performant metal printed components with reduced weight and improved thermo-mechanical properties.

Biometric Digital Solution for a universal secure handwriting signature

The objective of the present VAP is to demonstrate the technical and commercial feasibility of a biometric signature solution to work as a signature and trust service for the verification of signed documents. The proposed solution will guarantee an optimized level of informatic security during the process. The main outcome to be achieve within the present project will be the deployment and assessment of a Viafirma Documents in Dominican Republic.