Deploying global technological breakthroughs in building envelope defense, vacuum integrity, and localized thermodynamic protection.
Class A1 fireproof structural barriers optimized for Ethiopian skyscraper projects and commercial high-rises.
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Flexible thermal insulation designed for complex pipe configurations in Addis Ababa industrial zones.
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Ultra-low thermal conductivity core panels designed to improve energy ratings in commercial refrigeration.
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Critical biological and pharmaceutical thermal retention panels for Bole International Airport distribution.
Request Factory RatesEthiopia, recognized as one of the fastest-growing economies in East Africa, is undergoing a profound structural shift. The rapid expansion of cities like Addis Ababa, Dire Dawa, and Adama has triggered a high-density vertical construction boom. Additionally, national industrial initiatives, including the development of key industrial hubs such as the Hawassa, Bole Lemi, and Kilinto Industrial Parks, have increased safety requirements for industrial zones. Under the updated building regulations (including ES 3968 and national building proclamations), fire safety, energy conservation, and system-integrated thermal barriers are now key components of modern project planning.
Historically, structural projects in Africa relied on active fire fighting mechanisms, which are often prone to supply disruption and structural failure. The shift toward Passive Fire Protection (PFP)—incorporating nano-microporous thermal shieldings, fireproof elevator doors, and high-performance vacuum insulation panels (VIPs)—provides non-reliant safety systems. These materials prevent fire from breaching thermal boundaries, thereby preserving structural integrity, preventing building collapse, and providing escape pathways.
Globally, the insulation market is shifting from bulky, fiber-releasing traditional materials (such as mineral wool and glass fiber blankets) to thin, high-performance nano-insulation technologies. As cities around the world target carbon neutrality, the integration of Vacuum Insulation Panels (VIPs) with thermal conductivity values as low as 0.004 W/(m·K) has become a benchmark for green architectural facades. In high-temperature industries, customized microporous silica matrices are rapidly replacing traditional refractory brick linings, allowing for space optimization, weight reduction, and energy efficiency.
By leveraging Zerothermo Technology’s manufacturing capacity as a subsidiary of the CBVAC Group, local Ethiopian engineering projects can benefit from specialized industrial solutions. With our R&D bases in Beijing and Nanchong, Sichuan, we offer certified ASTM, ISO, and EN fire-resistant products that meet international standards, addressing the technical requirements of the African market.
Zerothermo Technology Co., Ltd., a subsidiary of the CBVAC Group, is a national high-tech enterprise headquartered in the Beijing Economic-Technological Development Area. Our state-of-the-art production base in Nanchong City, Sichuan Province, represents one of China's largest comprehensive production centers for vacuum technology and thermal barrier application products.
We specialized in the application of high-precision materials engineering, combining vacuum science with nano-scale thermal barriers to provide passive protection for architectural, energy storage, transport, and aerospace operations globally.
Specialized components beyond the ANSI/ASME/DIN standards, designed according to custom project blueprints.
Custom geometric configurations (square, oval, oversized) for tailored industrial piping systems.
Specialized sealing and pressure containment vessels matching micro-precision standards.
Our infrastructure guarantees steady supply and verified fire-safety metrics for projects in East Africa.
Engineered variations designed to resolve architectural, logistics, and automotive design limitations.
Custom sizing (5-15mm thickness) designed to prevent thermal runaway in modern EV buses and logistics vehicles across Addis Ababa.
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High-efficiency nano-microporous thermal blanket systems designed to retain thermal energy in commercial developments.
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Integrating world-class, ultra-thin microporous panels into modern high-speed elevator assemblies to meet Class A1 rating standards.
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Designed for damp, variable conditions in high-altitude logistics hubs, preventing moisture ingress and vacuum decay.
Get Factory QuoteModern structural systems require more than just thick barrier walls. Our roadmap highlights the integration of nanotechnology and high vacuum science to address fire safety concerns while lowering building energy consumption.
Combining fumed silica vacuum technology with flexible silica aerogels to construct fire barriers that handle mechanical stress without performance loss.
Phasing out chemical binders that produce VOCs during high-heat exposures, ensuring smoke and toxicity indexes remain at zero.
Optimizing panel thicknesses for high-rise buildings and logistical cold storages based on real-time solar profiles and structural loads in the East African Rift region.
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Contact Our Technical TeamDelivering targeted protection and energy savings across diverse local industries.
Preserving vaccines and biological materials at regional depots in Kilinto and Hawassa with high-performance VIP insulation boxes.
Maximizing usable floor space in commercial offices in Bole, Addis Ababa, using ultra-thin VIP wall panels that offer equivalent performance to thick insulation.
Insulating glass furnaces, kilns, and steam distribution piping in industrial zones near Adama and Mojo.
Thermal lining systems for high-altitude hotel developments and museums, providing energy efficiency and quiet environments.
Demonstrated performance in demanding operational environments.
Detailed technical specifications and deployment guidance for consulting engineers and logistics managers in East Africa.
Traditional mineral wool requires a thickness of 50-100mm to achieve high fire ratings, adding weight and limiting design options. Our Nano Microporous Insulated Panels achieve Class A1 non-combustibility and low thermal conductivity at a fraction of the thickness, allowing for lighter, durable fire doors that meet fire ratings.
Our fumed silica VIP cores are protected by multi-layer barrier films and PET outer coatings. Fumed silica is naturally hydrophobic, protecting the panel's internal structure and maintaining thermal performance even if the outer barrier is exposed to moisture.
No, because vacuum insulation panels rely on an internal vacuum core, they cannot be cut, drilled, or altered on-site. Every panel must be manufactured to specific dimensions based on the project design drawings, which we prefabricate at our Nanchong facility before shipping.
Under normal architectural envelope conditions, our vacuum insulation panels are designed to maintain high thermal performance for over 50 years. This durability is supported by our getter material systems, which absorb trace moisture and air molecules over time.
Our customized high-temperature battery blankets are designed to isolate thermal runaway events within individual battery modules. By using nano-porous structures, they block rapid heat transfer between cells, preventing fire propagation and protecting passengers.
We work directly with regional engineering, procurement, and construction (EPC) firms. You provide the required material specifications, dimensions, and quantities; our engineering team verifies the parameters, produces the components, and manages shipping to your project site.
Industrial trends and technological updates in vacuum insulation panels and fire safety engineering.
Analyzing fire resistance ratings and thermal safety dynamics in modern elevator shaft construction.
Meeting with global developers and regional buyers to showcase our latest vacuum technologies.
How nanotechnology is replacing older high-temperature refractory materials across heavy industries.
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Connect with our technical team for assistance with material parameters, custom dimensions, and logistics options.
Standard configurations and specialized barriers designed to meet strict commercial engineering specs.
Thermal runaway protection designed for electric public transport fleets in Ethiopia.
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Hybrid PU foam and VIP cores designed for vaccine and cold-chain shipping boxes.
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Designed for off-grid cold chain distribution in warm climates.
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High-efficiency glazed facade panels designed to lower HVAC energy loads in modern high-rises.
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Exterior envelope thermal barriers designed for modern, high-efficiency building designs.
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Enhanced structural core panels designed for high mechanical stress applications.
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Flexible pipe and reactor insulation wraps designed for heavy industrial processing plants.
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High-performance barrier cores designed to limit thermal transfer in commercial buildings.
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Specially shaped vacuum panels designed for complex spaces and industrial enclosures.
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Designed to reduce heat loss in residential and commercial solar water heaters.
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Modular insulation panel units designed for quick assembly in modern construction projects.
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High-barrier insulation panel designed to maintain a consistent vacuum environment.
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