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  • Why All NEW AIR PAPR Units Choose RILSA NB1024 for Certification?
    Why All NEW AIR PAPR Units Choose RILSA NB1024 for Certification?
    Jun 25, 2026
    As EU PPE regulations keep tightening and the updated EN12941:2023 & EN12942:2023 standards come into full force, the compliance threshold for powered air-purifying respirators (PAPR) exported to Europe has risen significantly. There are countless notified bodies across the EU with huge gaps in certification validity and testing capacity. Many manufacturers frequently face troubles including questioned certificates, suspended annual surveillance and customs detention.   As a professional manufacturer of papr air purifier protection equipment, NEW AIR sends our full product range to RILSA (Notified Body NB1024, Czech Republic) for certification consistently, without switching to other certification bodies. Our overseas customers also widely recognize CE certificates issued by NB1024. This consistent choice stems from five irreplaceable core strengths listed below. 1. Comprehensive Specialized RPD Qualifications to Prevent Certificate Invalidation   Registered in the EU NANDO database, RILSA NB1024 holds full official authorization for respiratory protective devices (RPD) under Regulation (EU) 2016/425. It is fully accredited to issue certificates against both core PAPR standards EN12941 and EN12942, with no risk of out-of-scope certification. RILSA runs its own ISO 17025 accredited laboratory No.1040. All mandatory tests for best papr respirator – total inward leakage, airflow stability, filter penetration, high-low temperature durability and more – are completed in-house without outsourcing to third-party labs. All test data is complete and fully traceable.   As a notified body qualified for full conformity assessment of Category III high-risk PPE, RILSA delivers Module B type examination plus Module C2 annual surveillance as a complete package. Most small notified bodies can only offer Module B testing without follow-up surveillance, which easily leads to expired or invalid certificates. This full-service model perfectly matches NEW AIR’s long-term mass export demands.   2. Endorsed by Industry Benchmark Brands, Highly Recognized by Buyers   Leading European welding equipment manufacturers and top local PPE brands have long relied on RILSA for PAPR certification, building outstanding industry credibility through thousands of successful projects.   Many overseas distributors and PPE purchasers explicitly require suppliers to provide products certified by RILSA. In buyers’ eyes, the NB1024 number is a symbol of rigorous, authoritative performance verification for respiratory protection. When comparing identical PAPR products, NEW AIR respirators carrying NB1024 certificates pass customer qualification reviews much faster and secure large-volume purchase orders, granting us a distinct competitive edge in global markets.   3. Smooth Customs Clearance & Stable Market Surveillance, Low Risk of Certificate Suspension or Revocation   RILSA is a state-owned national occupational safety research institute in the Czech Republic, not a purely commercial private certification body. It enjoys high credibility with EU customs authorities and market surveillance agencies across all member states.   Shipments with NB1024 certificates face far lower inspection rates at EU borders, avoiding extra detention fees and delivery delays caused by questioned certification credentials. In the event of random EU market surveillance audits, RILSA can supply full original test records with complete data trails. Cases of certificate suspension, revocation or forced product withdrawal are extremely rare, drastically cutting compliance risks for NEW AIR’s large-scale shipments.   4. Full Certification Capacity for EN12941:2023 & EN12942:2023 to Secure Long-Term Compliance   The latest standard revisions introduced stricter mandatory test items, including mercury and NOx filter performance, unified total inward leakage assessment, battery safety and extreme temperature cycling durability. RILSA participated in the drafting of EU respiratory protection standards and completed full capability expansion for both updated 2023 standards well in advance. It can certify NEW AIR’s core welding helmet-style PAPR as well as tight-fitting full/half mask PAPR for chemical applications. New product certification and legacy certificate upgrades can be processed in one stop, eliminating repeated testing fees and the hassle of switching notified bodies to maintain market access.   5. One-Stop Certification Service Aligned with Mass Production & Export Cycles   RILSA maintains mature, streamlined communication channels for Chinese papr respirators manufacturers. Its technical team is familiar with integrated welding PAPR structures, composite filter media and blower modules made in China, delivering practical, efficient corrective action guidance when adjustments are needed.   The full Module B + C2 certification timeline is predictable and stable. Annual surveillance mainly consists of online document reviews and small sample lab testing, removing the need for frequent on-site factory audits in Europe. Thanks to this low-maintenance certification framework, NEW AIR’s team can minimize time spent on compliance paperwork and focus more on product R&D and global market expansion.   NEW AIR consistently chooses RILSA NB1024 for our entire PAPR lineup not merely for balanced lead times and competitive costs, but as the optimal all-round solution covering legitimate accreditation, global buyer recognition, trouble-free customs clearance, up-to-date standard compliance and long-term certificate stability. This is the core reason why NB1024 certificates remain trusted by industrial purchasers worldwide.If you want know more, please click  www.newairsafety.com.
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  • Refinery PAPR Selection Guide
    Refinery PAPR Selection Guide
    Jan 08, 2026
      Refineries have a long process chain and complex operating scenarios, with significant differences in respiratory hazards faced by different occupations—some need to cope with flammable and explosive environments, some have to resist "dust-toxin composite" pollution, and others only need to prevent dust intrusion. The core of selecting purifying respirator is "matching risks on demand". The following combines the core occupations in refineries to clarify the applicable scenarios of various types of PAPR, providing a reference for enterprises to accurately configure protective equipment.   Explosion-Proof PAPR: Suitable for high-risk occupations in flammable and explosive environments. Scenarios such as hydroprocessing units, reforming units, gasoline/diesel storage tank areas, and confined space operations in refineries contain flammable and explosive gases such as hydrogen sulfide, methane, and benzene series, which belong to explosive hazardous areas (e.g., Zone 1, Zone 2). Occupations in such scenarios must use PAPR that meets explosion-proof certification. Typical occupations include: Hydroprocessing Unit Maintenance Workers (responsible for opening and maintaining reactors and heat exchangers, with high concentrations of hydrogen and hydrogen sulfide in the environment), Storage Tank Cleaning Workers (working inside crude oil tanks and finished product tanks, where residual oil and gas in the tanks are prone to forming explosive mixtures), Catalytic Cracking Unit Operators (patrolling the reaction-regeneration system, with the risk of oil and gas leakage), and Confined Space Workers (working in enclosed spaces such as reactors, waste heat boilers, and underground pipelines). Such PAPR must have ATEX or IECEx intrinsic safety explosion-proof certification, and core components such as motors and batteries need to isolate electric sparks to avoid causing explosion accidents.   Gas + Dust Filtering Composite respiratory papr: Main type for occupations facing "coexistence of dust and toxins" scenarios. Most process links in refineries simultaneously generate toxic gases and dust, forming "dust-toxin composite" pollution. Occupations in such scenarios need to select composite PAPR with "high-efficiency dust filtration + dedicated gas filtration". Typical occupations include: Catalytic Cracking Unit Decoking Workers (a large amount of catalyst dust is generated during decoking, accompanied by leakage of VOCs and hydrogen sulfide in cracked gas), Asphalt Refining Workers (toxic gases such as benzopyrene are released during asphalt heating, along with asphalt fume), Sulfur Recovery Unit Operators (there is a risk of sulfur dioxide and hydrogen sulfide leakage when treating sulfur-containing tail gas, accompanied by sulfur dust), and Spent Catalyst Handlers (dust is pervasive when handling and screening spent catalysts, and the catalysts may contain heavy metal toxic components).    Dust-Only Filtering PAPR: Suitable for occupations with no toxic gases and only dust pollution. In some auxiliary or subsequent processes of refineries, the operating environment only generates dust without the risk of toxic gas leakage. At this time, selecting a simple dust-filtering powered respirators can meet the protection needs while ensuring wearing comfort. Typical occupations include: Oil Transfer Trestle Inspectors (crude oil impurity dust is generated during crude oil loading and unloading, with no toxic gas release), Boiler Ash Cleaning Assistants (cleaning ash in the furnace of coal-fired or oil-fired boilers, where the main pollutants are fly ash and slag dust), Lubricating Oil Blending Workshop Operators (lubricating oil dust is generated during the mixing of base oil and additives, with no toxic volatiles), and Warehouse Material Handlers (packaging dust is generated when handling bagged catalysts and adsorbents, and the working area is well-ventilated with no accumulation of toxic gases).    Supplementary Note: Some occupations need to flexibly adapt to multiple types of PAPR. For example, equipment maintenance fitters in refineries may need to enter confined spaces for explosion-proof operations (using explosion-proof PAPR) and also perform ash cleaning and maintenance outside equipment (using simple dust-filtering PAPR); when instrument maintenance workers operate in different plant areas, they need to use composite PAPR if maintaining toxic gas leakage points, and may use simple dust-filtering PAPR only for routine inspections. Therefore, in addition to basic configuration by occupation, enterprises also need to dynamically adjust the type of PAPR according to the risk assessment results before operation to ensure precise protection. In summary, PAPR selection in refineries is not a "one-size-fits-all" approach, but focuses on "hazard identification", distinguishing three core types (explosion-proof, composite gas and dust filtering, and simple dust filtering) based on the type of hazards in the occupational operating scenarios. Accurate selection can not only ensure the respiratory safety of workers but also reduce the use cost of protective equipment and improve operational efficiency, building a solid line of defense for the safe production of enterprises.If you want know more, please click www.newairsafety.com.
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