
NMP 015 Diaphragm Gas Pump
Flow Rate (max.): 1.6 l/min Pressure (max.): 0.9 bar (rel.) Vacuum (max.): 400 mbar (abs.) KNF diaphragm gas pumps transfer or compress gases and vapors and generate a vacuum without contaminating the media. Different options are available for application-specific requirements related to size, motor type, control, voltage, chemical resistance, safety, vibration, noise, and temperature resistance. All pump types offer oil-free operation.

NMP 03 Diaphragm Gas Pump
Flow Rate (max.): 0.33 l/min Pressure (max.): 0.33 bar (rel.) Vacuum (max.): 600 mbar (abs.) KNF diaphragm gas pumps transfer or compress gases and vapors and generate vacuum without contaminating the media. They are available with options for application requirements related to size, motor, control, voltage, chemical resistance, safety, vibration, noise and temperature resistance. All pump types offer oil-free operation.

NMP 820 Diaphragm Gas Pump
Flow Rate (max.): 2.1 l/min Pressure (max.): 1.2 bar (rel.) Vacuum (max.): 330 mbar (abs.) KNF diaphragm gas pumps transfer or compress gases and vapors and generate a vacuum without contaminating the media. Different options are available for application-specific requirements related to size, motor type, control, voltage, chemical resistance, safety, vibration, noise, and temperature resistance. All pump types offer oil-free operation.

NMP 830 HP Diaphragm Gas Pump
Flow Rate (max.): 5 l/min Pressure (max.): 3 bar (rel.) Vacuum (max.): 230 mbar (abs.) KNF diaphragm gas-sampling pumps are extremely compact with patented technology that guarantees high performance.

NMP 850 Diaphragm Gas Pump
Flow Rate (max.): 4.5 l/min Pressure (max.): 2.5 bar (rel.) Vacuum (max.): 230 mbar (abs.) KNF diaphragm gas pumps transfer or compress gases and vapors and generate vacuum without contaminating the media. They are available with options for application requirements related to size, motor, control, voltage, chemical resistance, safety, vibration, noise and temperature resistance. All pump types offer oil-free operation.

NMS 020 Diaphragm Gas Pump
Flow Rate (max.): 1.7 l/min Pressure (max.): 0.5 bar (rel.) Vacuum (max.): 500 mbar (abs.) KNF diaphragm gas pumps transfer or compress gases and vapors and generate a vacuum without contaminating the media. Different options are available for application-specific requirements related to size, motor type, control, voltage, chemical resistance, safety, vibration, noise, and temperature resistance. All pump types offer oil-free operation.

Non spill stainless steel coupling MCB
MCB quick couplings, designed with non-spill flat faces, effectively prevent the entry of air or contaminants into the circuits, enhancing both operator safety and system integrity. Their compact design is ideal for integration in confined spaces, while the ergonomic automatic locking mechanism streamlines connections, making them suitable for use in diverse industries including chemical, pharmaceutical, electronics, and more.

Non-Destructive Testing (NDT) Inspection Services
Non-destructive testing (NDT) plays a crucial role in ensuring that your plant and equipment, from pressure vessels through to lifting jibs or structures, are safe and that underlying defects are identified. This can be the difference in protecting the health of your employees or minimising the threat of costly losses in production – so it’s vital you have confidence in those conducting your NDT testing. With extensive experience and nationwide coverage, you can trust our non-destructive testing (NDT) experts to deliver the least obtrusive and most cost-effective solutions for your equipment. Whether it is a visual inspection, or ultrasonics on a large-scale boiler, we can accommodate a huge range of equipment to confirm the health and safety of your employees, and minimise the threat of costly losses in production.

Non-Pyrophoric Organolithiums
Non-Pyrophoric Organolithiums: Easy to handle. Minimal risks. Traditional organolithiums in hydrocarbon solvents pose significant fire and handling risks. Our breakthrough formulations use an innovative poly-α-olefin (PAO) solvent that eliminates pyrophoricity—validated by EPA's SW-846 Test Method 1050. These reagents are bench-stable for safer handling, offer extended shelf life versus conventional formulations, and maintain full reactivity across C–H lithiation, nucleophilic substitutions, SNAr, additions, and halogen exchange reactions. Compatible with KOtBu, TMEDA, and other common additives.

Non-spill coupling TCB
The TCB dry disconnect couplings provide efficient high flow rates and facilitate clean, spill-free connections for various media, including hazardous or degreasing fluids. Their ergonomic and secure design, alongside intuitive handling, ensures easy and reliable operation.

NORIT Activated Carbon for Biogas & Renewable Natural Gas (RNG) Treatment
Biogas and Renewable Natural Gas (RNG) produced from landfills and anaerobic digestion are growing in importance as a sustainable, eco-friendly source of energy for direct use, power generation, pipeline injection and vehicle fuel. Biogas purification is essential for its monetization. NORIT® activated carbon is the premier choice of engineering firms, plant owners, and operators to remove unwanted impurities to meet pipeline specifications and ensure the protection of process equipment including membranes, compressors, engines and turbines, pipelines and fuel cells. NORIT's DARCO BG1 is a leading solution for removing hydrogen sulfide (H₂S) from vapor phase gas streams, ensuring cleaner and safer biogas and renewable natural gas (RNG). This non-impregnated, lignite-based, granular, steam activated carbon is designed for high sulfur loading, effectively reducing H₂S to elemental sulfur and removing mercaptans and siloxanes. Its extensive surface area and pore structure make it highly efficient. DARCO BG1 is safe, non-exothermic, and easy to change out, making it a reliable choice for various applications.

NORIT Activated Carbon for Chemicals & Catalysts
NORIT® activated carbons play multiple roles in the chemical industry. Our products are used to purify a vast array of chemicals & oleochemicals, and are also used as catalyst support and even as catalytic substance itself. In the chemical industry, NORIT® activated carbons find widespread use to purify numerous products, ranging from bulk to fine chemicals (e.g. hydrochloric and phosphoric acid, methionine, pentaerythritol, tartaric acid). They are also used in the recycling of chemicals (e.g. metal plating baths and dry cleaning solvents). Our products effectively remove: Feedstock impurities Synthesis byproducts Residues from extractants, catalysts, etc. Impurities collected during use More than 50 NORIT activated carbon grades are used for purification of chemicals. We supply: Powdered, granular, and extruded grades Different pore structures to best fit the impurity molecules Hydrophobic and hydrophilic surfaces to optimize the affinity for impurities Standard and high purity grades A wide choice of particle size distributions for optimized handling (pressure drop, filtration) NORIT® activated carbons can also be used as a catalyst support. These are used by leading catalyst manufacturers to produce noble metal and other heterogeneous catalysts. These catalysts then find use in a range of processes, from fine chemical / pharma synthesis, to vinyl chloride monomer production and mercaptan oxidation. Leading oleochemical industries globally use NORIT® activated carbons to purify glycerin, fatty acids and esters, alcohols, and other derivatives, including medium chain triglycerides. Our purification products effectively remove: Plant pigments MONG PAH Color precursors/ heat instability causing compounds Reducing substances Odors Contact us to discuss how we can meet your needs in the chemical, catalysis, and oleochemical industries

NORIT Activated Carbon for Oil & Gas Industry
With its high adsorption capacity for a wide array of molecules ranging from odorous compounds to dark color bodies, properly selected activated carbon is an excellent choice for the purification of raw materials, intermediates and end products for the oil and gas industry. Removing unwanted contaminants such as mercury, colors, odors, and sulfur components allows for the consistent production of high quality natural gas, oil and petrochemical products. Whether cleaning gas scrubber liquids (AGRU) to increase their longevity, decolorizing field condensates, or providing catalyst support for hydrocarbon sweetening, our activated carbons play a critical role. Here are some of the primary applications where NORIT provides essential assistance for the oil and gas industry: Acid gas removal units Mercury removal Hydrocarbon sweetening Liquid hydrocarbon purification Vapor recovery Wastewater Treatment Steam Condensates We are a pioneer in innovative activated carbon applications. Since we began producing activated carbon more than 100 years ago, we have expanded our product range to keep up with ever-changing demands. Offering the broadest product portfolio in the industry, we have the capability to produce activated carbon from a variety of raw materials in ISO 9001-certified plants across the globe.In addition to offering high quality activated carbon products for more than thirty applications in the oil and gas industry, we also provide a comprehensive service offering, including: Review of your anticipated activated carbon needs On-site carbon application training Basic design calculations Samples for testing and analysis Speak to a member of our team to find our more.

NORIT Activated Carbon for Pharmaceutical Applications
NORIT® activated carbons have been used by the global pharma industry for decades to purify APIs, nutraceuticals, and intermediates. Our products provide high adsorption capacity for removing impurities such as side products, odors, discolorations, proteins, and metals from catalyst residues. The pharmaceutical production process requires absolute purity and traceability to ensure the highest quality end products. Our highly controlled manufacturing processes bring activated carbons with purity, consistency, traceability, and auditability. NORIT activated carbons purify: API's (antibiotics, painkillers, steroids, ...) Vitamins Intermediates Diagnostic agents Enzymes And they remove these impurities: Synthesis byproducts Discolorations and pigments Cell residues, oligopeptides, proteins Odor compounds Impurities from feedstocks Metal-containing residues from catalysts We’ve developed a method by which you can choose easily the optimal activated carbon grade for your specific process. Speak to a member of our team, we’re happy to work with you and provide dedicated advice.

NORIT Activated Carbon for Water Treatment
Water is a precious natural resource and is vital to our lives. People require clean water to drink as a basic need, and many industries use highly purified water in their production processes. Water treatment is a process to reduce or remove the undesirable characteristics of water, so it is fit for its purpose of use. Activated carbon has proven effectiveness in water treatment to adsorb organic contaminants to meet stringent water quality requirements and legislations. NORIT offers a wide range of activated carbon grades in water treatment applications along with strong technical support and reactivation services. Potable water is purified to remove harmful organic contaminants and improve its taste and odor Beverage water is made ‘sparkling’ clean with NORIT Activated Carbons Industrial process water is treated to extremely high purity in various industries Steam condensate is purified to be reused in high pressure steam boilers in refineries and power plants Wastewater is treated to meet regulations for safe discharge into the environment, or for reuse NORIT offers both powdered activated carbon (PAC) and granular activated carbon (GAC) as water treatment solutions. NORIT has recently validated that its thermal reactivation process is capable of consistently achieving 99.98% destruction of PFAS compounds in spent granular activated carbon (GAC) from municipal water treatment applications.
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