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The mediatisation and the development of start-up implemented in a fast growing environment is increasing from year to year. However, the term “scale-up” is still not well known and understood by everyone. It appears that the Walloon region has a low rate of scale-up which is unfortunate if the impact on employment, growth and knowledge that those firms bring in the region where they belong to is considered. According to the literature, an equity gap between the start-up stage and scale-up stage could explain the difficulty faced by entrepreneurs to cross the bridge. The main purpose of this dissertation is to understand if this equity gap represents the main reason of the weakness of scale-up in Wallonia or if there are other reasons explaining this phenomenon. The literature review gives to the lector the opportunity to have a better understanding of the subject and to know what are saying different authors on the subject. Two case studies about successful scale-up put the light on the different “growth pains” and challenges faced by entrepreneurs. It appears that those ones are various and not only financial as it may have been suggested. These case studies are followed by the results of various interviews of different actors present “on the ground”. These interviews highlight the previous challenges covered during the case studies and add new ones. They are mainly about the difficulty to adapt the company’s structure to the growth, the owner’s personality and the environment. In light of the above, it may be concluded that the equity gap is not the reason why we have so few scale-up in Wallonia. It may be one of the factor but certainly not the main reason. The results of this master thesis may be interesting for entrepreneurs that are running a fast growing business and that are willing to go to the next level.
Scale-up --- Equity Gap --- Forte croissance --- Wallonie --- Sciences économiques & de gestion > Finance
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In this study, I analyze the requirements for supporting organization for the scale-up companies to growth in Luxembourg. These companies, which already have a Business Model, are ideally positioned to create value, growth and jobs. I investigate the current situation in some European countries, the advice from the works of literature, and the Luxembourgish support structure. With the learning from the prosperous countries, the literature and with the interview of several actors of the Luxembourg ecosystem, I propose some recommendations to support the scale-up growth in Luxembourg.
SCALE-UP --- GROWTH --- Entrepreneurship --- LUXEMBOURG --- MESO-LEVEL --- INNOVATION --- Sciences économiques & de gestion > Stratégie & innovation
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The use of microalgae currently benefits from a growing interest in different fields. It is the reflection of an enormous potential for several commercial applications. As an innovative company, Prayon is considering diversifying its activities in the sector of microalgae as far as the opportunities are coherent with its own strategy. This project thesis conducted within Prayon consisted in the realisation of the first phase of the innovation process. The aim of the work was first to identify different activities in which Prayon could diversify. The choice was made taking into account the strategy of Prayon as well as the different openings that microalgae offer. The second part of the project aimed for the analyse and evaluation of these activities. In order to collect comprehensive information on the subject, desk and field research was conducted. The field research involved the interview of various experts. A multicriteria evaluation grid was established and the five activities were rated, allowing us to identify the most interesting choices for Prayon. From this evaluation it has emerged that the best activity for Prayon is the scaling up of the harvesting, filtration and extraction processes for companies active in the production of microalgae for food additives. The potential business model of this activity has been described in the Business Model Canvas.
biofertilizer --- biostimulant --- food additives --- innovation --- microalgae --- multicriteria evaluation grid --- scale-up --- wastewater treatment --- Sciences économiques & de gestion > Stratégie & innovation
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More and more people are looking at the society in a different way and are trying to give meaning to their way of living. New types of enterprises are emerging in our society and a lot of them take the form of cooperative. These kinds of organizations have different needs and perspectives than simply seeking profitability. This thesis aims at understanding these needs and perspectives, but also provide a solution to adapt the SOWECSOM's supply in this changing environment, in order to fit these expectations.
Social Enterprise --- Cooperative --- Dissemination --- Scale Up --- Support --- Change of scale --- Spin out --- Sciences économiques & de gestion > Economie sociale
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Le marché aérien a tendance à être caractérisé comme étant volatile. Cela signifie qu’il subit des changements constants. C’est pourquoi les entreprises actives dans ce secteur doivent se protéger contre ces changements. La réalisation de ce travail a pour but de vérifier la performance de l’entreprise face aux risques internes ou externes qu’elle peut rencontrer. Pour ce faire, nous avons défini les risques, que l’entreprise étudiée, pouvait rencontrer en fonction de ces caractéristiques. Nous avons donc analysé les différents points intervenants dans la mesure de performance et mis en place une méthode d’évaluation pour celle-ci. Nous avons également abordé les moyens que l’entreprise pourrait mettre en place pour mettre en place la gestion de risque quotidiennement. Pour terminer nous donnons de conseils sur l’utilisation d’outils que l’entreprise doit appliquer si elle veut améliorer d’autant plus sa performance et son scaling sur différents aspects internes ou externes.
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Long description: Sie skalieren ein Start-up, haben aber nur eine dunkle Ahnung, wie man das am besten macht? Dann geht es Ihnen wie den meisten Führungskräften in Wachstumsunternehmen – auch die haben keine Zeit, unzählige Bücher und Blogs zu lesen, Hunderte Podcasts zu hören und das ganze Wissen dann auch noch für die Praxis zuzuschneiden. Darum haben Martin Schilling und Thomas Klugkist das übernommen: Ausgehend von 40 Jahren kombinierter Erfahrung beim Aufbau von Unternehmen, haben sie Interviews mit rund 100 führenden Scale-up-Experten aus weltweit erfolgreichen Technologieunternehmen geführt – darunter Airbnb, Pinterest, N26, Zalando, Salesforce, Wayfair, AWS, GetYourGuide, Klarna und Hubspot. Aus diesem konzentrierten Know-how entstand dieses Handbuch für Start-up-Teams und -Führungskräfte, (zukünftige) Gründer und Gründerinnen, Investoren und Investorinnen sowie Innovationsabteilungen großer Unternehmen. Dabei geht es nicht darum, ein kleines Unternehmen von Zero to One oder eine Einhornfirma an die Börse zu bringen. Der Builder's Guide zielt auf die kritische Scale-up-Phase in der Mitte – in der sich ein Piratenschiff zu einem Raumschiff transformiert. Das Buch umfasst 99 Praxismodule zu den Themen Nordstern, AAA-Team, funktionale Exzellenz und Wachstumskapital. Wer hier gezielt sucht, findet in wenigen Minuten, was er schon am nächsten Montag anders macht.Für jeden Unternehmensbereich:Exemplarische OrganigrammeZiele und Schlüsselergebnisse (OKRs)Werkzeuge, Benchmarks und WachstumsformelnVertiefende digitale Inhalte als Augmented-Reality: Videos, Templates u.a.Außerdem: Vorworte von Thomas Heilmann, Christian Miele, Kulraj Smagh, Klaus Hommels und Joel Kaczmarek.Mit der kostenlosen App smARt Haufe" wird Ihr Buch interaktiv:Augmented-Reality-App für Smartphones und Tablets (iOS und Android)App "smARt Haufe" kostenlos downloaden, Buchseiten mit dem Smartphone scannen und Zusatzfunktionen nutzenDigitale Zusatzinhalte: VideosStimmen aus der Start-up-Szene:"Der Builder's Guide wird für Gründer und Gründerinnen, die sich auf der Reise der schnellen Skalierung befinden, unverzichtbar sein. Die hier zusammengetragenen, sofort umsetzbaren Maßnahmen werden der nächsten Generation von Start-ups helfen, globale Ambitionen zu erfüllen und eine Praxis der ständigen Entdeckung zu etablieren, durch die sie heute und vor allem morgen an der Spitze des Feldes bleiben werden."Kulraj Smagh, CEO bei Ciklum"Der Builder's Guide überführt das bei erfolgreichen Gründern schlummernde Erfahrungswissen in ein Framework. Wo Software-Unternehmens-Gründungen Skaleneffekte wie nie zuvor ermöglichen, ist ein solches Instrumentarium ungemein wichtig geworden."Joël Kaczmarek, Geschäftsführer digital kompakt Biographical note: Martin Schilling Dr. Martin Schilling war COO des FinTechs N26, zuvor Berater bei McKinsey, gründete und skalierte mehrere erfolgreiche Ventures (darunter eine Stiftung in Argentinien, ein öffentliches Unternehmen in Saudi-Arabien, ein Startup in Berlin, das McKinsey-Tochterunternehmen Orphoz) und ist Autor und Keynote Speaker mit Fokus auf Tech-Startups und Scale-ups. Thomas Klugkist Dr. Thomas Klugkist ist erfahrener Medien-, Kommunikations- und Change-Manager sowie Berater (Klett-Gruppe, Kirch-Gruppe, KPN/ Planet Internet, Schott Music, N26), ehemaliger Geschäftsführer eines Gründerverbandes (JCI Germany) und Autor mehrerer erfolgreicher Bücher.
Investition --- Geschäftsmodell --- Business --- Wachstum --- Unternehmer --- Unternehmensgründung --- Gründer --- Finanzierung --- Profit --- Kapital --- Handbuch --- Börsengang --- Investor --- Start-up --- Entrepreneurship --- Leitfaden --- Investoren --- Wachstumsrate --- Startup --- Toolkit --- Scale-Up --- Entrepreneur --- unternehmensgründer --- Wachstumsstrategie --- Skalierung --- OKR --- Unicorn --- Einhornfirma --- scaleup --- Martin Schilling --- Thomas Klugkist --- Wachstumsphase --- Marktbewertung --- Unicorn Firma --- Scaling
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Due to its high consumption and unequal distribution of primary lithium resources such as minerals and brines, lithium, a key component in LIBs, is experiencing an economic and supply crisis. Thus, it has been added to the EU critical raw material list since 2020. And a target of 50% lithium recycling from LIBs is set by the end of 2027 in Directive 2006/66/EC. This research aims to develop an economical and environmentally friendly process for recycling lithium from the leachate after LIB recycling. It will benefit in meeting the EU lithium recycling target, industrial growth, sustainability in the lithium value chain, the circular economy, and industrial wastewater regulations. In the methodology, crystallization experiments were carried out by cooling the Li solution at 1 °C for 20 to 48 hours to remove Na impurities. Moreover, chemical precipitation experiments were conducted to precipitate Li2CO3. The pH of the solution was adjusted with NaOH and heated to the desired temperature, followed by the saturated sodium carbonate addition. The reaction time was 60 minutes to reach equilibrium. The slurry was filtered, and the wet precipitates were heated at 100 °C for 1 hour. Moreover, the same methodology was applied to the solution with chloride chemistry after ion exchange resin. From the results, crystallization removed 49.67% Na from the Li solution in 20 hours. In chemical precipitation, temperature, pH value, Li concentration, and CO3/Li+ ratio are observed to be influential parameters on recovery and grade. The Li recovery of 80.91% with 96.40% Li2CO3 purity was obtained at 95 °C, CO3/Li+ 1.075, and 10.45 g/L Li concentration after crystallization. The purity can be improved to 99.56% by repulping precipitates with hot water with minimal loss of Li recovery and less than 0.42% Na content. On the other hand, the solution after ion exchange resin obtained 80.44% recovery at 70 °C, CO3/Li+ 1.0, and 8.32 g/L Li with 99.40% purity without repulping and 0.26% Na. Thus, the solution with less Na impurity and chloride chemistry needs less temperature to precipitate lithium carbonate. Nevertheless, during the economic analysis, the ion exchange resin phase appeared costly. As the elution step gives lithium concentration of 0.9 g/L, it requires a substantial amount of energy to concentrate lithium. Conversely, the experimental outcomes after the crystallization phase revealed cost-effectiveness and fewer energy requirements across the entire process. Consequently, an economically viable flowsheet for the targeted recovery of lithium as lithium carbonate from the leaching solution after the LIB recycling is formulated and presents a potential industrial proposition.
Lithium-Ion Batteries --- Recycling --- Hydrometallurgy --- Chemical Precipitation --- Crystallization --- Ion Exchange Resin --- Lithium Carbonate --- Sodium Carbonate --- Economic Analysis and Scale-Up --- Ingénierie, informatique & technologie > Géologie, ingénierie du pétrole & des mines
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Process intensification aims for increasing efficiency and sustainability of (bio-)chemical production processes. This book presents strategies for improving fluid separation such as reactive distillation, reactive absorption and membrane assisted separations. The authors discuss computer simulation, model development, methodological approaches for synthesis and the design and scale-up of final industrial processes. Process intensification aims for increasing efficiency and sustainability of (bio-)chemical production processes. This book presents strategies for improving fluid separation such as reactive distillation, reactive absorption and membrane assisted separations. The authors discuss computer simulation, model development, methodological approaches for synthesis and the design and scale-up of the final industrial processes.
Chemical process control. --- Separation (Technology) --- Salvage (Waste, etc.) --- Membranes (Technology) --- Chemistry, Technical. --- Chemical technology --- Industrial chemistry --- Technical chemistry --- Chemistry --- Technology --- Chemical engineering --- Artificial membranes --- Conversion of waste products --- Industrial salvage --- Recovery of waste products --- Solid waste management --- Utilization of waste products --- Waste management --- Waste reclamation --- Waste products --- Recycling (Waste, etc.) --- Refuse and refuse disposal --- Analytical chemistry --- Chemistry, Technical --- Process control --- Chemical separations --- Separation processes --- Separation science --- Separation technologies --- Separations, Chemical --- Fluid separation. --- Process Intensification. --- Scale-Up. --- Sustainable Production Processes.
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Since the first works introducing the aluminum intercalated clay family in the early 1970s, interest in the synthesis of Pillared InterLayered Clays (PILC) has increased tremendously, especially research into their properties and energetic and environmental applications. After our comprehensive reviews and book on the synthesis and catalytic applications of these materials, new references have appeared in the literature and the interest in this field is continuously increasing. The aim of this Special Issue is to collect the recent advances developed considering this family of solids.
Technology: general issues --- clays --- Al-PILC --- pillared clays --- scale up --- pillaring solution --- Keggin ion --- reutilization --- Keggin polycation --- concentrated media --- microwave radiation --- pillared montmorillonite --- AlNi-PILC --- Pd-Ce --- catalytic combustion --- benzene --- TPD/TPSR --- ZnO-TiO2/delaminated montmorillonite --- heterostructures --- Ag-coating --- solar photocatalytic activity --- water purification --- cadmium --- chitosan --- modification --- 13X molecular sieve --- removal --- dye remediation --- adsorption --- azo dye --- wastewater --- pillared porous phosphate heterostructures --- isotherm --- sericite --- thermal modification --- acid activation --- sodium modification --- montmorillonite/hydrotalcite composite --- montmorillonite/titania composite --- organoclay --- inverse micelle --- Mn-Al mixed oxide --- combustion catalysts --- ciprofloxacin --- smectite --- pillared clay --- keggin-like mixed Al/Fe polyoxocation --- mineralogical composition --- catalytic wet peroxide oxidation --- mesosilica --- methyl orange --- palygorskite
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A rapid growth in various industries and domestic activities is resulting in a huge amount of wastewater. Various types of wastewaters, such as textile, municipal, dairy, pharmaceutical, swine, and aquaculture, etc., are produced regularly by respective industries. These wastewaters are rich in nutrient content and promote eutrophication in the ecosystem and pose a threat to flora and fauna. According to an estimate, eutrophication causes losses of almost 2 billion US dollars annually, affecting real estate and fishing activities. Treatment of wastewater is a costly process and recently wastewater treatment with simultaneous energy production has received more attention. Microorganisms can be used to recover nutrients from wastewater and produce bioenergy (biodiesel, biohydrogen, bioelectricity, methane, etc.). A better understanding of the composition of various types of wastewaters and the development of technologies like anaerobic digestion (AD), microbial fuel cell (MFC), and microbial electrolysis cell (MEC) can help to make wastewater-based biorefinery a reality. To provide an overall overview to students, teachers, and researchers on wastewater to bioenergy technology ten chapters are included in this book.
Environmental science, engineering & technology --- effluent --- anaerobic digestion --- incineration --- Co-pyrolysis --- syngas --- biodiesel --- biofuel --- biogas --- MEC --- bio-hydrogen --- manure --- digestion --- cybersecurity --- cybercrime --- legislation --- policy --- systems thinking --- water --- DEA --- regional difference --- energy utilization efficiency --- carbon emission --- cost --- database --- treatment --- wastewater --- Web of Science --- biogas digestion --- hydrogen sulfide --- ferric oxide --- waterworks sludge --- biofilm --- lattice Boltzmann method --- cellular automata --- individual-based model --- chitin --- electricity generation --- halotolerant --- microbial fuel cell --- seafood processing --- microbial electrolysis cells --- chronological development --- wastewater to hydrogen --- scale-up --- life-cycle assessment --- MEC commercialization --- microalgae --- wastewater treatment --- nutrient removal --- n/a
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