loading

Gester Instruments | Professional PPE, Footwear and  Textile Testing  Equipment Manufacturers Since 1997


Products
Test Standard

Analysis on the Test of Formaldehyde Content in Textiles

1. Experimental principle In the textile industry, formaldehyde is widely used in the dyeing and finishing processes of pure or blended products (including some silk products) due to its use. The main function is to improve the durability of the auxiliary agent on the fabric. However, because formaldehyde has a strong stimulus to the protoplasm of biological cells, it can cause respiratory inflammation and dermatitis. Therefore, it has been identified as a carcinogen and teratogenic substance by the World Health Organization. The laws and standards of various countries all regulate the free formaldehyde content of textile products Strictly control [2]. This article is based on the spectrophotometric method in GB/T2912.1-2009 'Determination of Formaldehyde in Textiles Part 1: Free and Hydrolyzed Formaldehyde (Water Extraction Method)The details have been experimentally studied and analyzed. 2. Test Procedure 1. Instruments and Reagents Cary 50 UV-Vis Spectrophotometer (Varian, USA); ZHWY-110X50 Water Bath Constant Temperature Shaker (Shanghai Zhicheng); Electronic Balance (0.001g); Iodine Measuring Bottle (250 mL) ; Color test tube (10 mL); measuring cylinder (100 mL). Formaldehyde standard solution: the concentration is 11.0 mg/L (National Standard Material Research Center); tertiary water (or distilled water); color reagent (Nessler's reagent): in a 1000 mL volumetric flask, add 150 g of ammonium acetate, use 800 Dissolve in mL tertiary water, then add 3 mL glacial acetic acid and 2 mL acetylacetone, dilute to the mark with tertiary water, and store in a brown bottle for more than 12 h. Ammonium acetate, glacial acetic acid, and acetylacetone are all analytically pure. 2. Test principle The principle of the water extraction method to determine the content of formaldehyde in textiles is to extract the textile fabric in an aqueous solution at about 40°C [3], the formaldehyde in the extract reacts with the acetylacetone in Nessler's reagent, and the reaction equation is It is: CH2O+(CH3CO)2CH2→(CH3CO)2Cu003dCH2+H2O. The methylene group of acetylacetone is active because it has two carbonyl groups. It becomes a carbanion under the action of alkali, attacking formaldehyde, and first becomes 3- Hydroxymethyl-2,4-pentanedione ((CH3CO)2CH-CH2OH), and then dehydrated into 3-methylene-2,4-pentanedione (yellow) product. Then use a spectrophotometer to measure the absorbance value at a specific wavelength (412 nm), and then obtain the formaldehyde content by referring to the formaldehyde standard working curve. 3. Experimental method Take two samples from the sample and cut them into small pieces. Weigh 1g each, accurate to 0.001g, and put them into a 250 mL iodine measuring flask, add 100 mL tertiary water, close the lid, and put in (40± 2) Oscillate at a constant temperature of ℃ for (60±5) min, filter the extract, pipette 5 mL of filtrate and 5 mL of color developer into the color developing tube, place in a (40±2) ℃ water bath for color development (30±5) ) Min, then take it out, cool it at room temperature (30±5) min, measure the absorbance value with a spectrophotometer at the wavelength of 412 nm [4]. 3. Results and analysis 1. The influence of whether the sample is completely infiltrated during extraction on the test results of formaldehyde content. Different textile fabrics are selected for the formaldehyde content test. 1# and 3# are the same sample, 2# and 4# are the same sample, 1 #Sample and 2# samples are floating on the water surface without hand shaking after adding water, 3# and 4# samples are artificial hand shaking (about 30 s) after adding water to make the cloth sample completely immersed in water, put 4 samples into the water at the same time In the constant temperature water bath oscillator, under the same other test conditions, the test results of the formaldehyde content of the same fabric due to the different degree of infiltration are shown in Table 1. Table 1 The formaldehyde content test of fabrics with different degrees of infiltration can be obtained from Table 1. Polyester cloth and nylon cloth (including coating) are mostly non-hydrophilic fabrics, so whether they are completely immersed in tertiary water during extraction has little effect on the test results of formaldehyde content; while flocking that is completely immersed after manual shaking The cloth fabric is nearly half higher than the result without soaking; the denim fabric is usually immersed in the water after adding water, and there is almost no possibility of floating on the water surface, so whether it is manually shaken has no significant effect on the result. It is comprehensively recommended that after adding 100 mL of tertiary water, relevant testers should try to completely immerse the tested sample in tertiary water (especially flocking cloth or woolen cloth), and then perform constant temperature shaking extraction to ensure the test results Accuracy. 2. The effect of the cooling time after shaking extraction on the test results of formaldehyde content. Under the same other test conditions, take 4 samples of different formaldehyde content grades (fabrics with the same composition analysis) and go through (40± 2) After shaking at a constant temperature for (60±5) min, the same sample was placed at room temperature and cooled for 10 min, 25 min, 35 min, 45 min, 60 min, and then subjected to the color test [5]. The results are shown in Table 2. Table 2 Tests of formaldehyde content at different cooling times after extraction. As can be seen from Table 2, (1) Samples 1#~4# have different results in formaldehyde content with different storage time. The 1# and 2# samples have low formaldehyde content, and their influence with the storage time is also small, while the 3# and 4# samples have higher formaldehyde content, and their influence with the storage time is more significant. (2) It is not that the longer the storage time, the higher the formaldehyde content. The formaldehyde content in a short period of time (within about 60 minutes) is an increasing trend. When the storage time continues to extend (after 6 hours), the formaldehyde content gradually decreases with the volatilization of water and formaldehyde itself. (3) From the data in Table 2, it can be seen that the formaldehyde content within 30 minutes is quite close to the standard value, and the result will be far away from the standard value after 45 minutes. Therefore, it is recommended that after shaking extraction, the color test should be performed after appropriate cooling, but the cooling time should not be too long, preferably (30 ± 5) min.

Over the years, has become very popular as more and more people are trying it out.

The expert engineers of GESTER International Co.,Limited always develop with utmost precision so that all quality standards are met during the production. we are looking forward to becoming a trusted supplier of customers. visit us at GESTER Instruments.

We have abundant experience in providing enhancement services and we are expert in textile testing equipment.

GET IN TOUCH WITH Us
recommended articles
Everything You Need to Know About Programmable Temperature Humidity Chamber
A Programmable Temperature Humidity Chamber simulates environmental conditions to test product durability, stability (like shelf life & ageing), and performance across materials, electronics, automotive parts, food, and pharmaceuticals. This guide explains its five core systems (Control, Refrigeration, Heating, Humidity, Air Circulation) and their functions for precise testing.
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.
What is a Light Fastness Tester?
A Light Fastness Tester accelerates material aging by simulating sunlight (xenon lamps) and moisture to predict long-term durability. Used in textiles, automotive, plastics, and more, it follows AATCC TM 16, ISO 105-B02, and ASTM standards. Features include real-time light control, temperature/humidity regulation, and energy-efficient testing.
ISO 17694 / ISO 5402-1: Footwear Flexing Resistance Test Methods
Footwear soles and uppers endure thousands of flex cycles during use, risking premature cracking, delamination, or chipping if material resistance is inadequate. This technical analysis details two critical international standards:

1. ISO 5402-1: Specifies the flexometer method for testing leather flex resistance under repeated bending.

2. ISO 17694: Defines test methods for footwear upper and lining flex resistance, simulating real-world bending stress to assess long-term durability.

C
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.
How to Find a Professional Safety Glove Testing Machine Manufacturer with CE Certification?
With the global PPE market’s rapid growth, choosing a professional CE-certified safety glove testing machine manufacturer is critical for data integrity and international compliance. This article explains why CE certification is non-negotiable (ensuring EU safety/quality standards), outlines essential test items (abrasion, cut, thermal protection per EN 388/EN 407), highlights core instruments (GESTER GT-KC28 TDM Cut Tester, GT-KC29 Cutting Tester, GT-C101 Heat Contact Machine), and details how to evaluate suppliers (20+ years of experience, partnerships with SGS/Bureau Veritas, ISO 9001 certification, after-sales support). It also covers the benefits of OEM/ODM capabilities for customized solutions. Ultimately, partnering with trusted manufacturers like GESTER ensures high-precision, compliant testing to protect workers and meet global market requirements.
Mask Testing Equipment: Everything You Need to Know
This article comprehensively introduces mask testing equipment, including its definition, application significance, core international testing standards, main equipment types and functional characteristics. It also puts forward a step-by-step selection guide and common selection misunderstandings, providing a reference for mask manufacturers, third-party testing institutions and regulatory departments to select appropriate testing equipment, so as to ensure mask product quality, pass international certification and protect user safety.
Understanding the Color Fastness To Washing Testing Machine GT-D07
The GESTER GT-D07 Color Fastness To Washing Testing Machine is designed to evaluate the color durability of dyed fabrics under washing and dry-cleaning conditions. By simulating real washing processes, it helps determine how resistant a fabric is to fading and staining, ensuring consistency, reliability, and compliance with international standards. With stainless-steel construction, safety features, and precise temperature and timing control, the GT-D07 provides an efficient and standardized testing solution for textile manufacturers worldwide.
Everything You Need to Know About the Hydrostatic Head Tester
A hydrostatic head tester evaluates the waterproof capability of textiles, automotive interiors, and industrial materials. This guide covers its working principle, core components, global test standards (ISO, AATCC, EN), and a detailed testing procedure to ensure accurate results.
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.
no data
Quanzhou 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)18059985379
Address:  Block 402,4th floor, f buliding, shengfulan business Center, no.577 jitai road, economic and  Technological development zone quanzhou of fujian.China.
Customer service
detect