姓名: Sretko Popadic 职位: Project Lead 最高学历: Master 毕业院校及专业: MSc Chemical Engineer 个人/团队介绍: Sretko Popadic, MSc Chemical Engineer leads the project, overseeing all aspects of its execution, from initial concept to final product. His responsibilities encompass project management, ensuring timelines and milestones are met, as well as managing the financial and legal aspects, including budget control, contract negotiations, and intellectual property protection. As the patent owner for the core gel technology, Mr. Popadić possesses a deep understanding of the underlying science and engineering principles. He serves as the primary point of contact for external stakeholders, fostering open communication and transparent reporting. Critically, he is responsible for the technical direction of the project, focusing on the impact of different gel agent formulations on the speed and efficiency of fire suppression. He guides the optimization of the final prototype, ensuring it meets performance targets, safety standards, and user requirements. Mr. Popadić's role is crucial in maintaining the overall project vision, integrating the various technical, business, and legal components, and driving the project to successful completion. Sanja Popadic, MSc Chemical Engineer (Chemical Advisor, Marketing & Sales): A Licensed Chemical Advisor and Dangerous Goods Transportation Advisor, Ms. Popadić brings significant experience in production, sales, marketing, and product testing. Her responsibilities include developing technical documentation, quality system documents, and managing the product certification process. She is also responsible for go-to-market strategy, marketing activities, public relations, and business administration. Her expertise in chemical regulations and product safety is crucial for navigating the regulatory landscape. Prof. Dr. Vladimir Mladenovic (Software & Automation Lead): Dr. Mladenović, owner of several patents in automation, is an expert in artificial intelligence, remote control systems, machine learning, software architecture, and modern network technologies. He will coordinate all software development activities, sensor integration, prototype functionality and design, and prototype automation. His extensive experience in intellectual property protection will be invaluable throughout the project. Aleksandar Petric, MSc Chemical Engineer (Technical & Production Lead): Mr. Petric has vast experience in various types of production, including cables, metal constructions, paints, and coatings, as well as developing innovative products. He will oversee the technical, technological, and organizational aspects of prototype development and manage relationships with equipment and raw material suppliers. His experience with donor-funded projects and knowledge of associated procedures will ensure smooth project operation, reporting, and transparency.
锂离子电池火灾因其火势迅猛、扑灭难度大且易于复燃,对传统灭火方法提出了严峻挑战,尤其在个人电子设备及公共场所中,其安全隐患尤为突出,亟需一种高效、可靠的灭火与预防技术。
SAVEMA技术通过“火霸”(IGNISMASTER)便携式灭火器和“个人电子设备防护卫士”(PEDGuard)可移动防护装置,提供了即时干预与主动预防的双重策略。前者专为快速扑灭单个锂电池设备火灾设计,利用专利凝胶灭火剂实现迅速冷却与防复燃;后者则适用于人流量大的区域,通过持续监测、防火外壳及自动释放凝胶灭火剂,有效控制火灾升级。核心技术在于专利凝胶,其具备快速冷却、灭火、防复燃及抑制有毒烟雾的多重功效。
SAVEMA技术以其独特的专利凝胶灭火剂为核心,不仅解决了锂离子电池火灾扑灭难、易复燃的痛点,还实现了对有毒烟雾和有害颗粒的有效抑制,提升了环境安全性。相较于传统灭火方法,SAVEMA技术更加高效、环保,且通过便携式与可移动式两种设计,灵活适应不同应用场景,为锂离子电池火灾的防范与应对提供了全面、创新的解决方案。
新材料
The specially developed gel agent extinguishing lithium-ion battery fires by sticking to all surfaces (horizontal, vertical, slippery or smooth surfaces). It acts quickly, preventively, cools and prevents further spread of fire, heat transfer to adjacent batteries in the cell and adheres to the heat source. Because the gel tightly binds the water contained in the extinguishing agent, there is no sudden evaporation when applied to heated surfaces. Hot and toxic combustion gases are suppressed while soot particles are trapped. Due to its thermal nature, the gel can release its cooling effect on the battery over a long period of time and significantly reduce its temperature. Water in the form of a three-dimensional gel structure retains sufficient viscosity and fluidity to flow through standard firefighting equipment, effectively extinguishes fire without re-ignition, sticks to burning material, smothers fire and is proven to withstand temperatures up to 3,000°C. It breaks the fire triangle on two sides by suffocating and removing heat – cooling and preventing the contact with oxygen. PEDGuard is mobile containment housing for portable electronic devices powered by lithium-ion batteries, equipped with remote commands. The solution represents a synergy of our patented and empirically proven innovative gel technology, information and communication technology, and future machine. PEDGuard offers a significant competitive advantage over existing solutions by focusing on fire and explosion prevention. It is primarily designed to prevent fires and explosions, thanks to its advanced software solutions, mobility, integrated sensors, alarms, electronic components, gel-filled casing, and the cooling system for overheated Li-ion batteries. By preventing flames, fires, and explosions, it mitigates material damage, injuries, and panic in crowded or confined spaces. In cases where thermal runaway, smoke, and fire have already occurred, our solution extinguishes and cools the fire source, while added fillers encapsulate the fire, creating a barrier to oxygen. Integrated filters capture particles, smoke, and toxic fumes, preventing them from escaping the housing. It employs a three-dimensional structure to extinguish and cool the fire source while encapsulating it to block oxygen, thereby preventing re-ignition from cascading cell thermal runaway reactions. Furthermore, the inclusion of remote commands allows operators to maintain a safe distance from the fire, facilitating rapid response and intervention to prevent fire spread. PEDGuard's automated functions, such as fire and smoke detection, temperature monitoring, sensors, and software solutions, enhance overall effectiveness and reliability, while enabling precise targeting to minimize collateral damage to surrounding objects and people. The housing is constructed from fire-resistant material capable of withstanding high temperatures generated by lithium battery fires. It is composed of thermally stable composite materials designed to absorb heat and prevent its transfer to surrounding surfaces. The size and shape of the housing are designed to accommodate any type of portable electronic device while retaining the ability to move swiftly in tight spaces. It includes its own drive, operated by remote commands, and an automatic opening mechanism triggered by sensors, facilitating the application of gel to the battery. It integrates sophisticated sensors, cameras, and alarms for detecting heat, gas, and smoke, which activate upon detecting any signs of impending fire. These components, along with advanced software solutions, enable two-way communication (enabling integration with already installed fire protection systems) and are linked to a remote management system to alert relevant personnel of potential danger. -Sustainability and Irreplaceability of Technology Advantages: Novel Gel Formulation: The core advantage lies in the unique gel formulation. Its specific properties (rapid cooling, adhesion to various surfaces, re-ignition prevention, non-toxicity, and environmental friendliness) are difficult to replicate. This provides a strong foundation for sustainable competitive advantage. Combined Approach: The combination of a portable extinguisher (IGNIS MASTER) and a proactive containment system (PEDGuard) offers a comprehensive solution unmatched by most competitors. This integrated approach enhances the overall value proposition. Patents: Patents on the gel formulation and key aspects of the delivery/containment systems provide legal protection against direct copying, enhancing irreplaceability. First-Mover Advantage: While the lithium-ion battery fire safety market is growing, we have a first-mover advantage with this specific gel-based approach, allowing us to establish brand recognition and market share. Potential Risks: Technology Achievability Risk: The core technology is proven, but scaling production may present unforeseen challenges. We are mitigating this by working with experienced manufacturers and conducting pilot production runs. Technology Reliability Risk: Extensive testing has demonstrated reliability, but long-term field performance needs continuous monitoring. We plan to implement quality control procedures and gather field data to address this. Intellectual Property Infringement Risk: While patents offer protection, there's always a risk of others developing similar solutions or challenging our patents. We are actively monitoring the competitive landscape and prepared to defend our IP. Application Feasibility Risk: The technology is applicable to a wide range of devices and environments. However, specific applications may require further customization or testing. We are addressing this by working with potential customers to understand their specific needs. Market Competition Risk: The lithium-ion battery fire safety market is attracting increasing attention. Competitors may develop alternative solutions. We are mitigating this risk by continuously innovating, focusing on our unique gel technology, and building strong brand recognition. Policy Risk: Changes in regulations or fire safety standards could impact the market. We are actively monitoring regulatory developments and engaging with relevant authorities. Team Risk: The success of the technology depends on the expertise of our team. We are building a strong and diverse team with the necessary skills and experience. We also have succession plans in place. Supply Chain Risk: Disruptions in the supply chain for key components could affect production. We are mitigating this by diversifying our suppliers and building strong relationships with key partners. Cost Risk: The cost of production and the pricing strategy will be critical for market adoption. We are conducting detailed cost analyses and developing a pricing strategy that is competitive yet reflects the value of our technology. Obsolescence Risk: While lithium-ion batteries are likely to remain dominant for the foreseeable future, future battery technologies could eventually replace them. We are continuously monitoring advancements in battery technology and exploring potential applications for our gel technology in other areas. Mitigation Strategies: We are actively mitigating these risks through: Rigorous testing and validation: Ensuring the reliability and effectiveness of our technology. Proactive IP protection: Securing and defending our patents. Strategic partnerships: Collaborating with experienced manufacturers, distributors, and other key stakeholders. Continuous innovation: Staying ahead of the competition by developing new and improved solutions. Market analysis and adaptation: Understanding market needs and adapting our strategy accordingly. Building a strong team: Attracting and retaining top talent. Developing robust supply chains: Ensuring access to key components. Careful cost management: Balancing cost and value to ensure market competitiveness. By addressing these risks proactively, we are enhancing the long-term sustainability and irreplaceability of our technology advantages.
The technology underlying IGNIS MASTER and PEDGuard, focusing on the specialized gel extinguishing agent for lithium-ion battery fires and its delivery/containment systems, is currently in a late-stage development phase, nearing commercialization. Here's a breakdown of its maturity and industrialization level: Technology Level: The core technology, the gel agent itself, is mature. Formulation is finalized, and extensive testing has demonstrated its effectiveness against various lithium-ion battery fire scenarios, including thermal runaway. The gel's properties (adhesion, cooling capacity, re-ignition prevention, environmental impact) are well-characterized. The delivery systems (for IGNIS MASTER) and containment/deployment mechanisms (for PEDGuard) have also reached a high level of technical readiness, with functional prototypes and pilot production runs completed. Technological Process: The manufacturing process for the gel agent is established and scalable. Key components are readily available from established suppliers. The manufacturing processes for the hardware components of IGNIS MASTER and PEDGuard are also defined, leveraging standard manufacturing techniques. Quality control procedures are in place throughout the process. Supporting Resources: We have secured patents for the core gel technology and are pursuing patents for specific aspects of the delivery and containment systems. We have access to testing facilities and have conducted independent third-party validation of the technology's effectiveness. We are building relationships with potential manufacturers and distributors. We are actively seeking investment to scale up production and accelerate commercialization. Technology Life Cycle: The technology is currently in the "growth" stage of its lifecycle. Demand for effective lithium-ion battery fire solutions is increasing rapidly due to the proliferation of these batteries in various applications. We are positioning ourselves to capitalize on this growing market. Industrialization Level: While not yet in mass production, we have successfully completed pilot production runs of both IGNIS MASTER and PEDGuard. We are ready to scale up production once we secure necessary partnerships and funding. We have developed a detailed business plan outlining our commercialization strategy, including target markets, pricing, and distribution channels. Challenges to Industrialization: Key challenges include securing sufficient funding for large-scale production, establishing robust supply chains, and navigating regulatory approvals in different markets. We are actively addressing these challenges. Next Steps: Our immediate next steps are securing strategic partnerships with manufacturers and distributors, finalizing regulatory approvals, and launching a targeted marketing campaign. We aim to move to full-scale commercialization within the next [ timeframe - e.g., 12-18 months]. In summary, the core gel technology is mature and proven. The delivery and containment systems are in advanced stages of development. We are actively working to overcome the remaining industrialization challenges and bring these critical fire safety solutions to market.
知识产权情况: 集成电路设计,专有技术 成果权属: 独占 该技术潜在应用场景及目标客户: The technology behind IGNIS MASTER and PEDGuard, focusing on the specialized gel extinguishing agent and its delivery/containment systems, has a broad range of potential application scenarios and target customers, demonstrating a clear market demand. Potential Application Scenarios: Consumer Electronics: Fires in smartphones, laptops, tablets, cameras, and other portable devices. Electric Vehicles (EVs): Fires in EV batteries, both during charging and in the event of accidents. Energy Storage Systems (ESS): Fires in large-scale lithium-ion battery storage facilities. E-Mobility Devices: Fires in e-bikes, scooters, and other personal electric transportation. Power Tools: Fires in cordless power tools using lithium-ion batteries. Aviation: Fires in portable electronic devices carried by passengers or in aircraft systems. Public Transportation: Fires on buses, trains, and ships where lithium-ion batteries are used in devices or systems. Retail Environments: Fires in stores selling electronic devices or powered by lithium-ion batteries. Office Buildings: Fires in offices with numerous laptops, smartphones, and other devices. Data Centers: Fires in battery backup systems used in data centers. Manufacturing Facilities: Fires in production equipment powered by lithium-ion batteries. Recycling Facilities: Fires during the recycling of lithium-ion batteries. Emergency Services: Use by firefighters and first responders for rapid intervention in lithium-ion battery fires. Target Customers: Manufacturers of consumer electronics: Integrating the technology into their devices for enhanced safety. Electric vehicle manufacturers: Incorporating the technology into EV batteries and charging systems. Energy storage system providers: Implementing the technology in large-scale battery storage facilities. Airlines and aviation companies: Equipping aircraft with the technology for fire safety. Public transportation authorities: Deploying the technology on buses, trains, and ships. Retailers of electronic devices: Offering IGNIS MASTER to customers as a safety accessory. Office building management companies: Installing PEDGuard units in common areas. Data center operators: Protecting their battery backup systems with the technology. Manufacturing companies: Ensuring fire safety in their production facilities. Recycling companies: Preventing fires during the handling and recycling of lithium-ion batteries. Fire departments and emergency services: Utilizing IGNIS MASTER for rapid response to lithium-ion battery fires. Insurance companies: Offering discounts or incentives for customers using the technology. Market Demand: The market demand for lithium-ion battery fire safety solutions is rapidly increasing due to: Proliferation of lithium-ion batteries: The widespread use of these batteries in countless devices and applications. Growing awareness of fire risks: Increased public and industry awareness of the dangers of lithium-ion battery fires. Stricter safety regulations: Governments and regulatory bodies are increasingly focusing on battery safety. High cost of fire incidents: The significant financial and reputational damage caused by lithium-ion battery fires. The combination of a broad range of applications and a growing market demand indicates a strong potential for the success of IGNIS MASTER and PEDGuard. The technology addresses a critical need for effective and reliable lithium-ion battery fire safety solutions. 产品形态: 工业产品 产品描述: IGNIS MASTER and PEDGuard represent a combination of a readily available product (IGNIS MASTER) and a product in advanced stages of development, nearing commercialization (PEDGuard). IGNIS MASTER: This is a finished, marketable product. It's a portable fire extinguisher containing the specialized gel agent, designed for immediate use on individual devices experiencing a lithium-ion battery fire. Its design is focused on portability, ease of use, and effectiveness. The container is designed for easy handling and quick deployment in emergencies. The design is practical and functional, prioritizing the rapid delivery of the extinguishing agent. Creativity is evident in the specialized gel formulation, which is a unique solution to the challenges of lithium-ion battery fires. PEDGuard: This product is in the advanced stages of development. Functional prototypes have been built and tested, and pilot production runs have been completed. The design of PEDGuard is more complex, as it involves not just the gel agent but also a containment unit, sensors, automation, and remote control capabilities. The design emphasizes proactive fire prevention, containment, and safe remote intervention. Creativity is demonstrated in the integration of these different technologies into a single, mobile unit. The design considers factors like mobility, ease of placement in high-traffic areas, and integration with existing fire safety systems. The enclosure's design prioritizes fire resistance, containment, and the safe release of the extinguishing agent. The user interface for remote control and monitoring is also a key design element, ensuring ease of operation for authorized personnel. Designability and Creativity: IGNIS MASTER: The creativity lies primarily in the gel formulation and its application in a portable extinguisher format. The design is functional and user-friendly, prioritizing ease of use in emergencies. PEDGuard: This product showcases greater design complexity and creativity. The integration of sensors, automation, remote control, containment, and the gel extinguishing agent into a single mobile unit is a significant design challenge. The focus on proactive fire prevention and remote intervention highlights the innovative nature of the product. The design of the enclosure, including fire resistance, ventilation, and access mechanisms, also demonstrates considerable creativity. Product Status: IGNIS MASTER: Market-ready product. PEDGuard: Advanced prototype stage, nearing commercialization. Overall: Both IGNIS MASTER and PEDGuard demonstrate a strong focus on design and creativity. IGNIS MASTER prioritizes functionality and ease of use in a portable format, while PEDGuard showcases a more complex and innovative design integrating multiple technologies for proactive fire prevention and containment. Both products leverage the unique properties of the gel extinguishing agent, which is a key element of the overall innovation.
是否有空间落地需求:是 落地北京意愿:是
锂离子电池火灾因火势猛烈、难以扑灭且易复燃,带来了巨大挑战,传统灭火方法往往效果不佳。为此,“火霸”(IGNIS MASTER)和“个人电子设备防护卫士”(PEDGuard)提供了一套全面的解决方案,结合即时干预与主动预防。“火霸”是一款便携式灭火器,专为快速扑灭由单个锂离子电池设备(如智能手机、笔记本电脑等)引发的火灾而设计,其专利凝胶灭火剂能迅速冷却并防止复燃,适用于火灾发生或疑似发生的情况。“个人电子设备防护卫士”则是一种可移动防护装置,用于人流量大的区域,持续监测潜在危险,一旦检测到火灾或爆炸,其防火外壳能将事故控制在内部,并自动释放专利凝胶灭火剂,有效预防火灾升级,适用于购物中心、交通枢纽等场所。两者的核心技术——专利凝胶,不仅能快速冷却电池、扑灭火焰、防止复燃,还能抑制有毒烟雾和捕获有害颗粒,为环境安全提供双重保障。
