• Natural Gas Drying Machine for Pulp Molding Curing: Energy-Efficient Drying Tunnel for Bio-Based Food Packaging Production
  • Natural Gas Drying Machine for Pulp Molding Curing: Energy-Efficient Drying Tunnel for Bio-Based Food Packaging Production
  • Natural Gas Drying Machine for Pulp Molding Curing: Energy-Efficient Drying Tunnel for Bio-Based Food Packaging Production
  • Natural Gas Drying Machine for Pulp Molding Curing: Energy-Efficient Drying Tunnel for Bio-Based Food Packaging Production
Natural Gas Drying Machine for Pulp Molding Curing: Energy-Efficient Drying Tunnel for Bio-Based Food Packaging Production

Natural Gas Drying Machine for Pulp Molding Curing: Energy-Efficient Drying Tunnel for Bio-Based Food Packaging Production

제품 상세 정보:

원래 장소: 중국
브랜드 이름: OSMANUV
인증: ISO9001
모델 번호: OSM-TRQ-1320
문서: Natural Gas Drying Machine.pdf

결제 및 배송 조건:

최소 주문 수량: 1 세트
가격: negotiable
포장 세부 사항: 목재 포장
배달 시간: 45 일
지불 조건: t/t
공급 능력: 협상
최고의 가격 접촉

상세 정보

힘: 40kW 보증: 1년, 한 Year,12 달
상태: 새로운 치수 (l*w*h): 맞춤형 크기 90000mm*2050mm*2250mm
애프터 판매 서비스 제공: 서비스 기계 해외 서비스, 비디오 기술 지원, 온라인 지원, 해외 타사 지원 이용 가능, 현장 설치 애플리케이션: 펄프 성형 및 섬유, 보드
자동 등급: 자동, 반자동, 매뉴얼, 기타 전압: 220V, 380V, 380V/220V, 220V/380V, 380V/50Hz
강조하다:

natural gas pulp molding drying machine

,

energy-efficient industrial drying tunnel

,

bio-based food packaging dryer

제품 설명

Natural Gas Drying Machine for Pulp Molding Curing: Energy-Efficient Drying Tunnel for Bio-Based Food Packaging Production

  • Composition of Production Line:
    This system comprises an automated conveyor belt (mesh type), pre-heating zone, main drying tunnel with natural gas-powered hot air circulation system, temperature control zones, cooling section, and discharge conveyor.

  • Product Description:
    Our natural gas drying oven is specifically engineered for the high-volume curing and drying of pulp molded products, such as food trays, egg cartons, and packaging inserts. It utilizes clean-burning natural gas to generate high-volume hot air, ensuring rapid and uniform moisture removal from the porous plant fiber structure. This results in significantly reduced energy costs compared to electric ovens while achieving superior product stability and dimensional accuracy.

  • Technical Parameters:



Parameter Category Details & Specifications
Model OSM-TRQ-1320
Suitable Product Pulp Molded Food Trays, Egg Cartons, Packaging Inserts
Heat Source Natural Gas Burner (Low-NOx)
Drying Method Forced Hot Air Circulation
Operating Temperature 80°C - 220°C (Adjustable)
Conveyor Width 1500 mm (Customizable)
Number of Zones 5 Zones (Pre-heat, 3 Drying, Cooling) (Customizable)
Control System PLC + HMI Touch Screen with recipe memory
  • Application:
    Drying and curing of water-based coatings and the pulp substrate itself in the production of disposable food service products and protective packaging.

  • Customization:
    This oven can be customized in length, width, number of heating zones, and conveyor type (e.g., mesh belt, chain-on-edge) to perfectly integrate with your existing production line and meet specific product dwell time requirements.

  • Feature:

    • Low Operational Cost: Natural gas is a cost-effective energy source for high-temperature drying.

    • Uniform Air Flow: Patented airflow design ensures even temperature distribution, preventing warping.

    • Rapid Heating: Gas systems achieve operating temperature much faster than electric ones.

    • Environmentally Friendly: Modern low-NOx burners reduce emissions.

  • Support and Services:
    Installation supervision, combustion tuning for optimal efficiency, operator safety training, and readily available spare parts for the burner system.

  • Packing and Shipping:
    The oven is shipped in modular sections for easy assembly on-site. The burner unit is crated separately. All sections are insulated and protected from weather.

  • FAQ:
    Q: Why choose natural gas over electricity for drying pulp molding?
    A: For high-temperature, continuous industrial drying, natural gas is typically 3-4 times more cost-effective than electricity per unit of heat, leading to substantial savings in operational expenditure (OPEX), especially for high-volume production.

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