HIFYBER Hall 7 / L5

Exhibitor Profile
HIFYBER is a leading manufacturer of polymeric nanofiber-based filter media. With a global presence, we have established ourselves as a trusted supplier in the industry.
Our cutting-edge facilities allow us to meet a wide range of filtration requirements with precision and efficiency.
Our expertise in nanofiber technology allows us to offer outstanding key quality features, including a small fiber diameter, narrow diameter distribution, uniform thickness, controllable pore size, and superior durability. These features provide exceptional performance benefits for the filtration industry.
Our company is distinguished by our unwavering commitment to delivering unparalleled quality, reliability, and performance in every product we offer. We are proud to meet high-volume demands and provide shorter lead times, ensuring prompt delivery without compromising on quality.
Products / Markets
Product Index
- Beschichtete Filter, antibakteriell
- Filtermedien
- Filtermedien f. Flüssigkeiten
- Filtermedien f. Gase
- Flüssig-Filtermedien
- Luftfilter
- Luftfiltermedien
- Membranen
- Nanomedien
- Oberflächenbehandlung
- Papierfiltermittel
- Staubabscheider
- Synthetische Fasermedien
- Vliesmaterialien
- Wiederverwendbare Filtermedien
Market Scope
- Automobilindustrie
- Bauindustrie
- Eisen-, Stahlherstellung
- Elektronik-, Mikroelektronikindustrie
- Energieerzeugung,-versorgung
- Farben-, Pigment-, Beschichtungsindustrie
- Filtrations- und Separationsindustrie
- Medizintechnik, Health Care Industrie
- Metallverarbeitende Industrie
- Umweltschutz
Product Index
- Air Filter Media
- Air Filters
- Coated Filters, antibacterial
- Dust Collectors
- Filter Media
- Filter Media for Gases
- Filter Media for Liquids
- Liquid Filter Media
- Membranes
- Nano Media
- Nonwovens
- Paper Media
- Reusable Filter Media
- Surface Treatment
- Synthetic Fibre Media
Market Scope
- Automotive Industry
- Construction & Infrastructure
- Electronic, Microelectronic Industry
- Energy, Energy Supply
- Environmental Protection
- Filtration and Separation Industry
- Iron, Steel Manufacturing
- Medical, Health Care Industry
- Metal Processing Industry
- Paint, Pigments, Coatings Industry
Product Index
- 可再用过滤器介质
- 合成纤维媒体
- 无纺布
- 气体过滤器介质
- 液体过滤器介质
- 液体过滤滤材
- 空气过滤器
- 空气过滤器介质
- 纳米介质
- 纸介质
- 表面处理
- 过滤介质
- 镀膜滤色镜,抗菌式
- 隔膜
- 集尘器
Market Scope
- 汽车工业
- 医疗卫生保健业
- 建筑与施工服务业
- 油漆、颜料、涂料工业
- 环境保护
- 电子、微电子工业
- 能源、能源供应
- 过滤与分离工业
- 金属加工业
- 钢铁制造业
Product Index
- اسطوانات
- الألياف الاصطناعية وسائل الإعلام عية وسائل الإعلام
- المعالجة السطحية
- غير المنسوجات / اللانسيج
- فلاتر الإستخدام المتكرر
- فلاتر الهواء
- فلاتر مغلفة، مضادة للجراثيم
- مجمعات الغبار
- مواد فلاتر الهواء
- مواد فلترة
- مواد فلترة السوائل
- مواد فلترة الغازات
- مواد فلترة الغازات
- مواد في غاية الدقة
- مواد ورقية
Market Scope
- الصناعات الطبية والعناية الصحية
- الطاقة والإمداد بالطاقة
- حماية البيئة
- خدمات البناء والإنشاء
- صناعات الفلترة وفصل المواد
- صناعة الألبان
- صناعة الحديد والصلب
- صناعة الدهانات والصبغات والتلبيس
- صناعة السيارات
- صناعة معالجة المعادن
Product Index
- Collecteurs de poussières
- Filtres à air
- Filtres à revêtement, antibactérien
- Fluides pour filtres à air
- Membranes
- Médias de filtration réutilisables
- Médias de filtre
- Médias de filtre pour gaz
- Médias de filtre pour liquides
- Médias de filtre pour liquides
- Médias papier
- Nanomédias
- Non tissés
- Synthetic Fiber Médias
- Traitement de surface
Market Scope
- Energies et fourniture d’énergies
- Industrie automobile
- Industrie de filtration et de séparation
- Industrie de peintures, pigments et revêtements
- Industrie du bâtiment et de la construction
- Industrie laitière
- Industrie médicale et de la santé
- Industrie métallurgique
- Protection de l’environnement
- Sidérurgie
Product Index
- Collettori di polvere
- Filtri aria
- Filtri rivestiti, antibatterici
- Membrane
- Mezzi filtraggio liquidi
- Mezzi filtranti
- Mezzi filtranti aria
- Mezzi filtranti per gas
- Mezzi filtranti per liquidi
- Mezzi filtranti riutilizzabili
- Mezzi per carta
- Mezzi per fibre sintetiche
- Nano media
- Non tessuti
- Trattamento delle superfici
Market Scope
- Energia, approvvigionamento energetico
- Produzione ferro e acciaio
- Protezione ambientale
- Servizi settore edile
- Settore automobilistico
- Settore elettronico, microelettronico
- Settore filtrazione e separazione
- Settore lavorazione metallo
- Settore medicale e sanità
- Settore pitture, pigmenti e rivestimenti
Product Index
- Filtry powietrza
- Filtry powlekane, antybakteryjne
- Materiały nietkane
- Media filtrów
- Media filtrów cieczy
- Media filtrów cieczy
- Media filtrów gazu
- Media filtrów powietrza
- Media filtrów wielorazowego użytku
- Media papierowych materiałów filtracyjnych
- Media włókna syntetycznego
- Membrany
- Nanomedia
- Obróbka powierzchni
- Odpylacze
Market Scope
- Filtrowanie i separacja
- Obróbka metali
- Ochrona zdrowia
- Ochrona środowiska
- Produkcja farb i lakierów
- Przemysł budowlany
- Przemysł elektroniczny i mikroelektroniczny
- Przemysł energetyczny
- Przemysł hutniczy
- Przemysł samochodowy
Product Index
- Colectores de poeiras (aspiradores)
- Filtros de ar
- Filtros revestidos, antibacteriano
- Meios de filtragem
- Meios de filtragem para gases
- Meios de filtragem para líquidos
- Meios de filtragem para líquidos
- Meios de filtragem reutilizáveis
- Meios de filtro do ar
- Meios de nanotecnologia
- Meios de papel
- Membranas
- Não-tecidos
- Synthetic Fiber Mídia
- Tratamento de superfície
Market Scope
- Energia, abastecimento de energia
- Fabrico de ferro, aço
- Indústria automóvel
- Indústria de filtragem e separação
- Indústria de processamento de metal
- Indústria leiteira
- Indústria médica, cuidados de saúde
- Pintura, pigmentos, indústria de revestimentos
- Protecção ambiental
- Serviços de fabrico & construção
Product Index
- Бумажный элемент
- Воздушные фильтры
- Мембраны
- Нано-вещества
- Нетканые материалы
- Пылесборники
- Синтетические волокна Медиа
- Фильтрующий материал
- Фильтрующий материал
- Фильтрующий материал для газов
- Фильтрующий материал для жидкостей
- Фильтрующий материал для жидкостей
- Фильтрующий материал многократного использования
- Фильтры с покрытием, антибактериальные
- обработка поверхностей
Market Scope
- Автомобильная промышленность
- Защита окружающей среды
- Лакокрасочная промышленность
- Медицина, здравоохранение
- Металлообрабатывающая промышленность
- Молочная промышленность
- Отрасль фильтрации и сепарирования
- Производство железа, стали
- Строительство жилых и общественных зданий
- Энергетика, электроснабжение
Product Index
- Colectores de polvo
- Fibra Sintética de Medios
- Filtros de aire
- Filtros revestidos, antibacteriológicos
- Medios de filtro
- Medios de filtros de aire
- Medios de filtros para gases
- Medios de filtros para líquidos
- Medios de filtros para líquidos
- Medios de papel
- Medios filtrantes reutilizables
- Membranas
- Nanomedios
- Non-Wowens
- Tratamiento de Superficies
Market Scope
- Energía, suministro de energía
- Fabricación de hierro, acero
- Industria de la automoción
- Industria de la filtración y la separación
- Industria de las pinturas, pigmentos, revestimientos
- Industria de los productos lácteos
- Industria de procesamiento de metales
- Industria médica, de la atención sanitaria
- Protección del medio ambiente
- Servicios de edificación y construcción
Product Index
- Dokunmamış Mamuller
- Filtre Ortamı
- Gazlar için Filtre Ortamı
- Hava Filtreleri
- Hava Filtresi Ortamı
- Kaplı Filtreler, antibakteriyel
- Kağıt Ortam
- Membranlar
- Nano Ortam
- Sentetik Elyaf Medya
- Sıvılar için Filtre Ortamı
- Sıvılar için Filtre Ortamı
- Tekrar Kullanılabilir Filtre Ortamı
- Toz Toplayıcılar
- Yüzey İşlem
Market Scope
- Bina ve İnşaat Hizmetleri
- Boya, Pigment, Kaplama Endüstrisi
- Demir, Çelik Üretimi
- Elektronik, Mikroelektronik Endüstrisi
- Enerji, Enerji İkmali
- Filtrasyon ve Ayırma Endüstrisi
- Metal İşleme Endüstrisi
- Otomotiv Endüstrisi
- Tıp, Sağlık Sektörü
- Çevre Koruma
Product Index
- 가스용 여과재
- 공기 여과재
- 공기 필터
- 나노 매체
- 부직포
- 분리막
- 액체 여과재
- 액체용 여과재
- 여과재
- 재사용 가능한 여과재
- 종이 매체
- 집진기
- 코팅 필터, 항균성
- 표면 처리
- 합성섬유 매체
Market Scope
- 건축 및 건설 용역
- 금속 가공 산업
- 에너지, 에너지 공급
- 여과 및 분리 산업
- 의료, 보건 산업
- 자동차 산업
- 전자, 마이크로 전자 산업
- 철, 철강 제조
- 페인트, 안료, 도장 산업
- 환경 보호
Product Index
- エアフィルター
- エアフィルターメディア
- ガス用濾過材
- コーティングフィルター
- ナノメディア
- フィルターメディア
- 不織布
- 再利用可能なフィルター媒体
- 合成繊維媒体
- 液体フィルター媒体
- 液体用濾過材
- 紙媒体
- 膜
- 表面処理
- 集塵機
Market Scope
- エネルギー、エネルギー供給
- 医療、ヘルスケア業界
- 塗料、顔料、コーティング産業
- 建築・建設業
- 濾過および分離技術工業
- 環境保護
- 自動車産業
- 製鉄、製鋼業
- 金属加工業界
- 電子、マイクロエレクトロニクス産業
What's new
CombiNano: The New Standard in Advanced Air Filtration
Nanofiber Precision and Activated Carbon Power Combined in a Single Media
The rules of air filtration are changing. Breaking the boundaries of traditional methods, CombiNano combines gas-phase adsorption and particulate filtration into a single hybrid structure. Unlike legacy technologies that rely on electrostatic charges, CombiNano never compromises on performance, even under the harshest conditions.
Designed with a 2026 vision, this next-generation media places sustainability and operational stability at its core.
Why CombiNano? 3 Key Advantages
1. 100% Mechanical and Stable Filtration with Nanofiber
Standard carbon filters on the market often use electrostatically charged "meltblown" layers to capture particles. However, this charge is neutralized when exposed to humidity, temperature fluctuations, and chemical gases, causing the filter to lose efficiency over time.
- The CombiNano Difference: Our nanofiber layer does not rely on any electrostatic charge. Owing to the extremely small fiber diameters, particle capture is achieved purely through mechanical filtration mechanisms. In particular, diffusion and interception are the dominant mechanisms across the most critical particle size range, while inertial impaction contributes to particle capture at larger particle sizes. This ensures stable and long-term filtration performance independent of electrostatic effects.
- The Result: Filtration efficiency remains stable and consistent from day one, even in humid or chemically aggressive environments.
2. Micropore Power from Coconut Shell
Instead of ordinary coal-based carbon, CombiNano utilizes high-purity activated carbon derived from renewable coconut shells.
- VOC & Odor Expert: Unlike the mixed pore structure of coal-based carbons, coconut shell carbon features a dense microporous structure (<2nm diameter), making it an excellent trap specifically for VOCs (Benzene, Toluene, etc.) and odors.
- Clean and Durable: With its low ash content, it prevents dusting, does not contaminate your systems, and does not obstruct airflow.
3. Synergistic Protection: Let Your Carbon "Breathe"
When carbon is used alone, fine dust clogs its pores, prematurely depleting its gas-holding capacity.
- Dual Action: CombiNano’s nanofiber surface acts as a shield, capturing fine dust and aerosols to protect the carbon layer. This ensures the carbon focuses solely on adsorbing target gases throughout its service life.
Applications:
CombiNano is designed for sensitive environments where both gaseous contaminants and fine dust (PM) pose a simultaneous threat.
- Commercial HVAC Systems: Offices and hospitals where Indoor Air Quality (IAQ) is critical.
- Data Centers: Corrosion prevention and protection of sensitive equipment.
- Cabin Air Filtration: Vehicles exposed to exhaust gases and external particulates.
- Industrial Facilities: Production areas with high VOC and particulate loads.
Breathe the Air of the Future Today
CombiNano combines sustainable raw materials with advanced nanofiber engineering to both protect nature and lower your operating costs.
Contact us for detailed information and sample requests.
What's new
HIFYBER is specialized in manufacturing nanofiber filter media
“HIFYBER” is specialized in manufacturing nanofiber filter media for Gas Turbine, Air Purification, HVAC, Face Mask and customer specified composites. HIFYBER manufactures in Turkey and serves directly or through distributors globally.We can slit master rolls, laminate, corrugate and coat with top quality nanofibers on needle-free equipments.
We can offer nanofiber media in wide range of grades: F7-F9 (MERV 13-16) / E10-E12 with different media designs.
Contact us for more information and free samples
Documents
Conference Presentation/s
The next generation of nanofiber-based air filtration: Nanofiber media vs. glass fiber
V. Demirel*, HIFYBER, Turkey
Conference Session: G09 - Poster Session - 2026-07-01, 14:45 - 16:00
Glass fiber media have traditionally dominated high-efficiency static air filtration. However, growing expectations around energy performance, sustainability, durability, and chemical safety are pushing the industry to reconsider conventional material choices.
This article introduces a new generation of fully synthetic nanofiber-based filtration media developed as an alternative to glass fiber in HVAC applications. Through comparative evaluations aligned with ISO 16890 efficiency classifications and energy assessment principles, nanofiber-based designs are assessed against conventional glass fiber solutions.
The results demonstrate that optimized nanofiber structures can deliver improved energy performance, lower resistance, competitive or superior dust holding behavior, and enhanced mechanical robustness — all within standard filter geometries. In addition, the PFAS-free composition and absence of fiber shedding offer environmental and health-related advantages compared to traditional glass fiber media.
F. Tezcan*, HIFYBER, Turkey
Conference Session: G10 - Poster Session - 2026-07-01, 14:45 - 16:00
Simultaneous removal of particulate matter and gaseous contaminants remains a critical challenge in air filtration engineering, particularly in gas-dominant environments where volatile organic compounds (VOCs) coexist with fine and submicron particles. While activated carbon effectively adsorbs gaseous pollutants, it lacks intrinsic particulate filtration capability. Commercial hybrid systems typically rely on electrostatically charged meltblown (MB) layers for particle capture; however, charge-dependent mechanisms are susceptible to efficiency decay under humidity variations, temperature fluctuations, and exposure to chemically reactive gases, limiting long-term performance stability.
This study introduces a laminated filtration architecture integrating charge-independent nanofiber mechanical filtration with highly microporous coconut-shell-derived activated carbon. The nanofiber layer, defined by ultra-fine fiber diameters and high specific surface area, enables efficient particle capture via diffusion, interception, and inertial impaction without reliance on electrostatic charge, ensuring stable performance under chemically active conditions while maintaining low pressure drop (ΔP).
The activated carbon component exhibits a predominantly microporous (<2 nm) pore structure optimized for adsorption of low- and medium-molecular-weight VOCs. Compared to carbons with broader pore size distributions, the coconut-based carbon provides enhanced adsorption selectivity, low ash content, high purity, and reduced dust generation.
The integrated nanofiber-carbon structure creates functional synergy by mitigating particulate fouling of adsorption sites, preserving adsorption capacity, and enabling stable dual-phase contaminant removal within a single-stage laminated media. Comparative evaluation against conventional charged MB-carbon composites demonstrates improved particle efficiency stability, sustained gas adsorption performance, and controlled pressure drop behavior.
The presented laminated nanofiber–carbon configuration addresses a structural limitation observed in existing commercial carbon-composite filters, where long-term particulate stability and gas adsorption efficiency are not simultaneously optimized. The results support the feasibility of a scalable, dual-function media architecture capable of delivering stable mechanical and adsorptive performance in HVAC systems, data centers, industrial environments, cabin air and indoor air quality applications.