loading

PPE Testing Equipment Manufacturer | Safety Equipment Testing Machines | GESTER


Products

The new diatomic material hydrogen air fuel cell will increase the existing highest activity by 20%1

Recently, iChEM researchers, the research group of Professor Wu Yuen of the University of Science and Technology of China, and Associate Professor Chang Chunran of Xi’an Jiaotong University (corresponding author) have successfully synthesized a diatomic Fe and Co immobilized on a porous nitrogen-doped by the two-solvent method for the first time. Electrocatalysts on heterocarbons, and diatomic materials are used in hydrogen air fuel cells and hydrogen-oxygen fuel cells. Related results were published in J. Am. Chem. Soc., DOI: 'Design of N-Coordinated Dual-Metal Sites: A Stable and Active Pt-Free Catalyst for Acidic Oxygen Reduction Reaction'. 10.1021/jacs.7b10385). The first author of the paper is Wang Jing, a doctoral student at the University of Science and Technology of China. With the development of human society, issues such as global energy consumption and climate change have attracted widespread attention. Therefore, it is urgent to find alternative clean energy. Among them, the fuel cell is a device that directly converts chemical energy into electrical energy through the electrode reaction of hydrogen and air to produce water. It does not require charging and does not produce exhaust gas. Because of the high energy conversion efficiency (up to 60%-80%) and the environment The superiority of friendliness has attracted people's attention, and it is considered to be the preferred clean energy power generation technology in the 21st century. Due to its unique electronic and geometric structure, diatomic catalysts usually exhibit unexpected catalytic activity in some important chemical reactions. Fe, Co diatomic catalyst as the cathode catalyst of the fuel cell not only reduces the cost of the fuel cell catalyst layer, but also has a maximum output power density of 0.51 W cm-2 when the load is less than 1 mg cm-2. It is commercial platinum carbon 76% of it. Professor Yuen Wu’s research group used zinc-cobalt bimetal MOF as the precursor to adsorb iron salts through the two-solvent method. Under high temperature environments, Fe3+ is gradually reduced by the surrounding graphitized C and bonds with adjacent Co to form Fe. Co bimetal active site. At the same time, the Fe catalytic carrier generates nitrogen-doped graphitized carbon, and decomposes and releases C and N fragments, accelerating the breaking of the metal-imidazole-metal bond, thereby forcing voids in the MOF. Eventually, a hollow structure was formed under the action of Kirkedall. Through spherical aberration electron microscopy, synchrotron radiation, Mössbauer spectroscopy and other methods, the structure of the diatomic material is characterized by the bonding of Fe and Co and coordination with the surrounding N. Theoretical calculations show that the existence of Fe-Co bonds is more conducive to the cleavage of O-O bonds, and this structure makes the catalyst highly active in oxygen reduction reactions. In the acidic oxygen reduction reaction, the half-wave potential is 0.863 V, the onset potential is 1.06 V, and the current density at 0.9 V is 2.842 mA cm-2, and the excellent performance of stable circulation is 50,000 cycles. The highest output power in the hydrogen-oxygen fuel cell is as high as 0.98 W cm-2. The highest output power in the hydrogen-air fuel cell is 0.51 W cm-2 and stable operation for more than 100 hours. Among the non-Pt catalysts that have been reported so far, the hydrogen-to-air fuel cell of the diatomic material has the highest performance and increases the existing maximum activity by 20%. This research result has successfully applied diatomic catalysts as the cathode catalysts of fuel cells, greatly reducing the cost of the catalyst layer in fuel cells. It is a major breakthrough in the field of fuel cells and provides the possibility for the commercial development of fuel cells. The development of battery cars has brought new enlightenment. The above-mentioned research work has been funded and supported by the National Natural Science Foundation of China, the Ministry of Science and Technology and other projects.

GET IN TOUCH WITH Us
recommended articles
Why GESTER Ranks as a Leading TPP Thermal Protective Performance Tester Exporter
As a trusted leading TPP Thermal Protective Performance Tester exporter, GESTER International Co., Ltd. brings 25+ years of R&D and manufacturing expertise to PPE safety testing. Our flagship GT-RC02 series TPP testers feature advanced dual-source thermal simulation, high-sensitivity sensors, and full digital automation—delivering precise, repeatable data to evaluate thermal protection for firefighter and industrial protective clothing. Fully compliant with global standards (NFPA 1971, EN 469, ISO), GESTER’s equipment is trusted by SGS, Intertek, and top testing institutes worldwide. Backed by ISO 9001 certification, global service in 160+ countries, and professional calibration support, we empower manufacturers and labs to meet stringent safety regulations and ensure life-saving thermal protection. Discover tailored TPP testing solutions for PPE excellence at GESTER.
PPE Testing Laboratory Equipment List
Setting up a PPE testing laboratory requires the right combination of instruments for safety footwear, gloves, protective clothing, masks and safety helmets. This guide explains the core testing equipment used in modern PPE laboratories, the standards they support, and the functions of each instrument, helping manufacturers, third-party laboratories and certification bodies choose a reliable and compliant testing setup.
Heat Contact Machine GT-C101-The Ultimate Selection Guide

The Heat Contact Machine GT-C101 is a specialized testing instrument designed for evaluating the heat resistance and thermal protective performance of gloves, protective clothing, and other heat-resistant materials used in high-temperature environments. In industries such as smelting, casting, welding, and glass manufacturing, workers are frequently exposed to intense heat, making accurate testing of contact heat resistance essential for ensuring safety and compliance.

GT-C101 simulates real working conditions by measuring heat transfer delay and thermal transmission under instant contact with high-temperature surfaces. Fully compliant with EN 407, EN 702, and ISO 12127-1 standards, this machine provides precise, repeatable data for manufacturers, laboratories, and research institutions. With high-temperature capability up to 500°C, advanced calorimetry, digital monitoring, and adjustable contact speed, the Heat Contact Machine GT-C101 is an indispensable tool for developing and certifying next-generation PPE and heat-insulation materials.
PPE Testing Equipment: Complete Guide to Personal Protective Equipment Testing
PPE Testing Equipment is used to evaluate the safety, durability, and protective performance of personal protective equipment under controlled test conditions. This complete guide covers five major PPE testing categories: Safety Footwear Testing Equipment, Glove Testing Equipment, Protective Clothing Testing Equipment, Mask Testing Equipment, and Safety Helmet Testing Equipment. Learn about common PPE test methods, applicable standards, equipment types, laboratory requirements, and key factors to consider when selecting PPE Test Equipment for quality control, product development, certification, and laboratory applications.
What is EN 149 & Why is it Important?
EN 149 is the core European standard for particle-filtering half masks and FFP respirators. This article elaborates on the definition, structure, performance classification, marking rules and core advantages of EN 149, compares it with NIOSH N95, KN95, EN 143 and medical mask standards, and lists industry application scenarios, as well as professional mask and filter testing instruments compliant with EN 149 testing requirements.
Looking for a Laboratory Protective Clothing Tester Supplier? Key Criteria to Consider
As global demand for high-performance PPE surges, selecting a qualified laboratory protective clothing tester supplier becomes critical for manufacturers and regulators. This article outlines core selection criteria: compliance with international standards (ISO, EN, ASTM), comprehensive protective gear tests (particle resistance, fluid barrier, thermal resistance, electrostatic safety), manufacturer qualifications (ISO 9001 certification, partnerships with SGS/TUV/Intertek), equipment precision (automation, modular design, data traceability), and end-to-end service (global support, calibration, customization). With 25+ years of experience, GESTER International delivers standards-aligned, high-precision testing instruments and integrated laboratory solutions, ensuring PPE meets rigorous safety requirements for medical, industrial, and chemical sectors. Explore how to choose a partner that safeguards worker safety through reliable testing.
GESTER: China Top PPE Testing Equipment Company Leading Global Safety Standards
Since 1997, GESTER International Co., Ltd has emerged as China’s top PPE testing equipment company, with 25+ years of R&D experience in high-precision testing instruments. Serving clients in over 160 countries and partnering with global leaders like SGS, Intertek, and TUV, GESTER aligns its products with international standards (ISO, ASTM, EN, GB) to ensure reliable PPE performance. Highlighted by the GT-RC02B TPP Thermal Protection Tester—capable of simulating extreme thermal environments and calculating critical safety metrics like TPP values and escape time—and the GT-KC28 TDM Cut Test Machine, GESTER’s portfolio covers thermal protection, cut resistance, footwear testing, and more. The company offers comprehensive support, including ISO 17025/NFPA-aligned calibration, on-site installation, and staff training, empowering PPE manufacturers and testing laboratories to meet stringent global regulations, prevent workplace injuries, and accelerate market access. As a leader in global safety standards, GESTER combines technical precision, user-centric design, and lifecycle service to deliver tailored solutions for high-risk industries worldwide. Visit https://www.gesterinstruments.com/ for full product details.
Why Is Shoe Slip Resistance Tester Important for Footwear Safety?
Slip resistance is one of the most critical performance indicators for modern footwear, especially safety shoes used in industrial and high-risk working environments. Slip and fall accidents frequently occur on wet or smooth surfaces, posing serious risks to workers and consumers. To prevent such accidents and improve product safety, footwear manufacturers widely use professional testing equipment such as Shoe Slip Resistance Tester and Footwear Slip Testing Machine. These devices simulate real walking conditions to measure the coefficient of friction between the shoe sole and various surfaces. This article explores the working principle, features, applications, and industry significance of shoe slip safety tester, explaining why accurate slip resistance testing is essential for footwear safety, product development, quality control, and compliance with international standards.
Leather Industry Innovations: GESTER at ACLE as a Footwear Testing Equipment Factory
The global leather and footwear industry is shifting toward prioritizing durability, material integrity, and functional excellence—driving demand for high-precision testing equipment. As a highlight of ACLE 2026 (All China Leather Exhibition), GESTER International Co., Ltd., a 25+ year footwear testing equipment factory, showcases innovative solutions tailored to this trend. Trusted by leading testing institutes like SGS, TUV, and Intertek, GESTER’s product lineup includes the Martindale Abrasion Tester (for surface durability), Tension Testing Machine (for mechanical properties), and Safety Shoe Cutting Tester—all compliant with ISO, ASTM, and EN standards. These instruments integrate automation (PLC systems) and data traceability to reduce human error, support ISO 9001 compliance, and streamline laboratory efficiency. With a global service network spanning 160+ countries, GESTER offers on-site installation, calibration, and software updates to ensure long-term usability. The article also outlines strategic procurement tips for manufacturers, emphasizing modular design, standard compatibility, and supplier track records. For leather and footwear brands seeking to enhance product reliability, avoid recalls, and stay competitive, GESTER’s ACLE 2026 innovations and end-to-end support provide a definitive quality assurance solution.
Must-See Innovation: Leading Safety Helmets Tester Company at A+A International Trade Fair
The A+A International Trade Fair in Düsseldorf serves as the global hub for occupational safety and PPE innovation, where GESTER—an industry leader with over 20 years of R&D experience—shines as a top safety helmets tester company. This article explores the evolving global safety standards (ISO, ASTM, EN, ANSI) driving demand for advanced testing equipment, and highlights GESTER’s high-precision solutions for impact absorption, penetration resistance, and flame resistance testing. With ISO 9001 certification, computerized automation, real-time data capture, and a comprehensive global support framework (on-site installation, calibration, OEM/ODM services), GESTER empowers PPE manufacturers and laboratories to meet rigorous compliance requirements. The company’s presence at A+A underscores its commitment to bridging innovative PPE design with reliable safety validation, helping businesses accelerate time-to-market while ensuring worker protection worldwide.
GESTER International Co., Ltd. gains certificates of ISO 9001, 3A and SGS Audited supplier etc. with advanced design concept, excellent manufacturing technology and strict quality control.
WeChat
Contact us
Tel: +86-595-28886108 
Fax: +86-595-22515221
E-mail: sales10@gester-instruments.com,
                 info@gester-instruments.com
Mobile/Whatapp/ Wechat:  
             + 86(0)18059983973
Address:  No.15, Chifeng Road,Licheng Region, Quanzhou city of Fujian,PR China.
Customer service
detect