The startup has developed a sustainable synthesis process for decentralized ammonia production, utilizing only air, water, and green electricity at the point of use. This technology enables large farms and greenhouses to produce ammonia and nitrogen-based fertilizers on-site, reducing reliance on traditional supply chains and enhancing agricultural sustainability.
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Top 50 Chemical Manufacturing in Denmark
Discover the top 50 Chemical Manufacturing startups in Denmark. Browse funding data, key metrics, and company insights. Average funding: $16.4M.
Again utilizes a bioreactor to capture carbon dioxide emissions and ferment them into carbon-negative chemicals, providing a method to reduce greenhouse gas levels. This technology enables emitters to achieve carbon neutrality while supplying manufacturers with sustainable chemical alternatives.
Everfuel produces green hydrogen by electrolyzing water, enabling a clean energy source for mobility and industrial applications. The company aims to significantly reduce greenhouse gas emissions in hard-to-abate sectors, supplying up to 8 tons of green hydrogen daily to customers across Europe.
Dynelectro develops a proprietary solid oxide electrolysis (SOEC) technology that extends the lifespan of electrolyzers by over five times, enabling efficient production of green hydrogen from renewable energy sources. This approach addresses the high costs and intermittent power challenges associated with traditional hydrogen production methods, facilitating a transition to cleaner energy solutions.
ENZIDIA provides an advanced enzyme engineering platform that dramatically accelerates the discovery and optimization of biocatalysts for biomanufacturing. Utilizing proprietary high-throughput screening and massive data collection capabilities, the platform rapidly generates superior enzyme variants for industrial applications. This capability enables the creation of economically competitive bioprocesses essential for the global sustainability transition.
Orbis Medicines uses its n Gen platform to design and synthesize oral macrocyclic compounds (n Cycles) that can engage both intra‑ and extracellular protein targets. The high‑throughput, AI‑enhanced workflow generates up to 100,000 candidate molecules per design cycle and screens them for oral bioavailability and membrane permeability. This approach aims to replace injectable biologics with orally administered drugs, expanding treatment options for patients.
Chromologics utilizes a fungal fermentation platform to produce natural food colorants, specifically Natu.Red® for food and beverage applications and Sustainly.Red® for non-food industries like textiles and cosmetics. Their colorants offer superior stability and reliable sourcing, providing a sustainable alternative to artificial dyes while meeting the performance needs of various applications.
EvodiaBio utilizes biotechnological processes to create natural scent compounds for the food and beverage industries, replacing synthetic fragrances with sustainable alternatives. This approach meets the growing consumer demand for cleaner ingredients while enhancing the sensory appeal of products.
The startup manufactures a patented UV-light pasteurization system designed to inactivate microorganisms in liquid food products. This energy-efficient technology provides clients with a reliable method to ensure product safety and extend shelf life without the need for thermal processing.
MASH Makes utilizes a scalable pyrolysis and gasification platform to convert agricultural residues into biochar and biofuel, while generating carbon removal credits. This technology has the potential to remove one gigaton of carbon dioxide from the atmosphere by 2040, addressing climate change and enhancing soil health.
The startup develops mirrorless spectrometer technology that integrates sensitive detectors and advanced optics for quantitative analysis in consumer, industrial, and research applications. This technology enables professionals to obtain precise insights from their samples, enhancing data accuracy and operational efficiency.
Factbird provides an AI‑enabled manufacturing intelligence suite that unifies data capture, performance analytics, and workflow automation across the shop floor. Its plug‑and‑play edge devices and cloud platform deliver real‑time OEE, downtime, and utility monitoring, paperless quality and maintenance workflows, and AI‑driven visual insights to help manufacturers improve efficiency and drive continuous improvement.
21st Bio develops sustainable bio-based alternatives to replace traditional meals and materials, utilizing advanced fermentation processes and strain optimization for high product yield and stability. The company addresses the need for environmentally friendly solutions in food and material production, enabling businesses to reduce their ecological footprint while maintaining quality.
This startup manufactures climate technology products that utilize advanced carbon capture and energy efficiency systems to reduce greenhouse gas emissions. By providing measurable solutions, the company enables clients to meet their sustainability targets and contribute to global climate initiatives.
The startup develops microbial products that enable farmers to cultivate healthier crops while minimizing the reliance on pesticides, antibiotics, and synthetic fertilizers. By replacing harmful agrochemicals, the company promotes sustainable agricultural practices that reduce environmental emissions and enhance food safety.
Algiecel utilizes modular photobioreactor systems powered by renewable energy to convert CO2 and light into high-value microalgae biomass, rich in protein and omega-3, for applications in animal feed, human food, and cosmetics. The company addresses the need for sustainable, low-carbon natural ingredients while reducing the environmental impact of CO2 emissions from industrial sources.
CysBio utilizes metabolic engineering and synthetic biology to develop bacterial cell factories that convert renewable feedstocks into commodity chemicals and novel materials. Their technology addresses the need for sustainable production of amino acids, functional polymer precursors, and biodegradable antifouling agents, enhancing the efficiency and environmental impact of chemical manufacturing.
LiqTech offers advanced silicon carbide (SiC) ceramic membrane filtration technology for purifying liquids and gases in demanding industrial applications. Their durable, chemically inert membranes handle harsh chemicals and high temperatures, reducing maintenance and operational costs in sectors like oil and gas, power generation, and chemical processing.
Octarine Bio operates a synthetic biology platform utilizing cell-factory engineering and precision fermentation to produce bio-based ingredients. The company develops sustainable alternatives for sectors like textiles, skincare, and health supplements. Their technology enables the commercial-scale production of nature-derived compounds with reduced environmental impact.
The startup develops a computational chemistry platform that utilizes data-driven algorithms and quantum chemistry to predict thermodynamic properties of biochemicals, such as solubility and phase equilibria. This technology provides scientists with a robust computing infrastructure for molecular dynamics simulations, facilitating the acceleration of experimental research.
Kvasir Technologies produces a carbon‑neutral, drop‑in biofuel made from non‑edible plant biomass and lignocellulosic waste that matches the chemical properties of conventional marine diesel on a 1:1 basis. The fuel can be blended or substituted in existing marine fuel supply chains without engine modifications, storage changes, or additional infrastructure, enabling a scalable pathway to decarbonize shipping and other high‑value fuel markets.
TetraKit Technologies has developed a click chemistry-based radiolabeling platform that enables the efficient labeling of cancer-targeting molecules with radionuclide pairs, specifically fluorine-18 and astatine-211, for theranostic applications. This platform addresses the need for a practical and universal solution in targeted radionuclide therapy, enhancing the production of radiopharmaceuticals for improved cancer diagnosis and treatment.
The startup produces high-concentration, preservative-free microalgae products designed to enhance rotifer production in hatcheries and improve green water tank environments. Their products provide a suitable biochemical composition for zooplankton and larvae feed, resulting in stable, high-density rotifer cultures with increased growth and fertility rates.
The startup develops a fermentation-based technology platform that produces sustainable oils for various applications, including food ingredients and aviation fuel, while mitigating deforestation. By utilizing this scalable production method, the company enables businesses to implement environmentally responsible practices and reduce reliance on traditional oil sources.
This startup manufactures biofertilizers by utilizing advanced technology to identify optimal plant-bacteria combinations tailored to specific soil types and high-protein crops. Their products enhance crop yields while reducing reliance on chemical fertilizers, promoting sustainable agricultural practices.
Danish Graphene specializes in functionalizing graphene to create customizable materials that enhance product performance across various applications. The company focuses on sustainable production methods, addressing the need for high-quality, environmentally friendly materials in advanced manufacturing.
The startup develops a sustainable dyeing technology for denim that eliminates hazardous chemicals, utilizing eco-friendly processes to enhance textile quality. This method provides textile businesses with a scalable and socially responsible alternative to traditional denim dyeing, protecting both the environment and workers' health.
POUL provides a turnkey automated material transport system for cleanroom environments, combining hygienic mobile robots with a GAMP5‑compliant logistics platform and full validation services. The solution offers 1,000 kg payload robots with low‑particle emission design, customizable forks, and cleanroom‑certified charging stations, integrated with ERP, WMS, and MES systems and supported by comprehensive documentation and certification.
SQALE is a biopharmaceutical company that utilizes quantum-enhanced optimization and a modular biomanufacturing platform to address the high costs and inefficiencies in the production of lifesaving biomolecules. Their approach enables scalable and decentralized manufacturing, improving the accessibility of treatments for cancers, neurological disorders, and infectious diseases.
The startup develops gas measurement equipment for electrochemical mass spectrometry, enabling real-time analysis of complex chemical reactions. This technology provides scientists and researchers with critical insights to optimize their research and development processes across various scientific fields.
Tailwind Biotech develops synthetic DNA design services utilizing artificial intelligence to enhance genetic engineering processes for biotechnology clients. The company designs optimized DNA sequences that maximize biologic manufacturing outputs while minimizing research and development costs. This approach delivers significantly improved gene expression and greater control over biomanufacturing outcomes.
Renasys provides plug-and-play filtration machinery to extract valuable, renewable resources from wastewater streams. This chemical-free technology integrates into existing facilities to instantly increase cleaning capacity and ensure regulatory compliance. The company offers a cost-effective 'water-as-a-service' model for municipal and industrial wastewater treatment.
Alléo Energy utilizes a proprietary biomass reforming process to convert cellulosic waste into high-yield green hydrogen. This energy-efficient method achieves a carbon-negative footprint by sequestering stable biochar as a valuable co-product. The resulting biochar offers sustainable applications in steelmaking, battery technology, and soil amelioration.
CemGreen develops proprietary processes to optimize the properties of supplementary cementitious materials (SCMs) from clay-rich raw materials, enhancing their performance for the cement and concrete industries. By transforming low-value waste into valuable SCMs, the company reduces production costs, energy consumption, and CO2 emissions while securing the supply chain for these materials.
The startup develops a smart laboratory device that integrates patented sensor technology with existing fermentation equipment to enhance research capabilities in biotechnology and pharmaceuticals. This device optimizes the fermentation process, enabling companies to efficiently develop micro-organisms for production.
BioPower produces a bio-based hard carbon anode material for sodium-ion batteries derived from upcycled agricultural waste. This sustainable anode offers a 30% lower carbon footprint and a secure European supply chain, enabling high-performance energy storage solutions.
The startup produces assays and test kits for drug screening, pathogen detection, and cancer research, utilizing proprietary DNA-modifying enzymes that enable laboratories to leverage existing instruments without the need for staff retraining. This approach reduces operational costs and enhances efficiency in research settings by streamlining testing processes.
The startup develops orally administered small molecules for the treatment of retinal vascular diseases, specifically targeting diabetic retinopathy and age-related macular degeneration. By focusing on de-risked and scientifically validated therapies, the company aims to provide safer and more accessible treatment options for patients suffering from these conditions.
Nordic Salt Cycle utilizes a molten salt process to recover critical and strategic minerals, providing a low-cost and scalable solution for mineral recycling. This technology addresses Europe's reliance on imported minerals by enhancing local supply security and supporting the transition to a mineral-based economy.
This biotechnology company develops a bio-resin system that binds natural fibers such as flax, hemp, and jute to create durable, fully biodegradable biocomposites. By providing a sustainable alternative to traditional crude-oil resins, the company enables industries to produce environmentally friendly products without compromising on strength or performance.
The startup provides a robotic arm integrated with balances and sensors to automate the calibration of handheld pipettes, transforming a labor-intensive process into a routine task. This technology generates precise performance data, enhancing pipette management and reducing risks associated with manual calibration.
The startup offers an artificial intelligence-based industrial automation platform that utilizes sensors for real-time monitoring and analysis of machinery performance. By predicting maintenance needs and detecting faults, the platform helps businesses minimize downtime and optimize production efficiency.
This startup manufactures biodegradable plastics and packaging materials from food production side-streams, effectively utilizing waste to create sustainable packaging solutions. By transforming industrial food waste into high-quality raw materials, the company helps packaging firms reduce their environmental impact and promote regenerative practices.
The startup has developed an AI-driven drug discovery platform that utilizes machine learning algorithms to predict compound-protein binding probabilities. This technology reduces the incidence of false positives in drug screening, enabling pharmaceutical companies to accelerate the discovery process while minimizing costs and resource expenditure.
This startup develops automatic robotic tools that facilitate seamless tool changes for collaborative robots, enhancing their adaptability for various tasks. By providing an affordable solution, the company increases production efficiency and profitability for clients in manufacturing environments.
Ambient Carbon develops the Methane Eradication Photochemical System (MEPS) to eliminate low-concentration methane emissions. This technology utilizes a gas-phase photochemical process combining chlorine and UV light within a reaction chamber for effective methane destruction. The system supports sustainability goals across agriculture, wastewater treatment, and biogas production sectors.
BiOrigin provides integrated bioprocess solutions to optimize fermentation and cell culture for biopharmaceutical companies. Their proprietary technologies and expert consultation streamline upstream biomanufacturing, improving volumetric productivity and enabling scalable, high-quality biologics production.
This startup manufactures recycled plastic sheets from post-consumer waste, including items like fishing nets and shampoo bottles, using advanced extrusion techniques. Their products enable industries to create sustainable end products, reducing reliance on virgin materials and minimizing plastic waste in landfills.
Clean Matter utilizes its patented Power-to-P technology to recover phosphorus from biowaste through an electrodialysis process powered entirely by renewable energy. This approach addresses the scarcity of phosphorus in fertilizers while providing a climate-friendly alternative to imported sources.
The startup develops modular waste recovery technology that converts industrial waste streams into reusable resources such as water, metals, and chemicals. This platform enables industries to minimize waste disposal costs and enhance resource efficiency while promoting sustainable practices in the circular economy.