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Automatic Belt Filter Press for Fruit Juice Wastewater 1
Automatic Belt Filter Press for Fruit Juice Wastewater 2
Automatic Belt Filter Press for Fruit Juice Wastewater 3
Automatic Belt Filter Press for Fruit Juice Wastewater 4
Automatic Belt Filter Press for Fruit Juice Wastewater 5
Automatic Belt Filter Press for Fruit Juice Wastewater 6
Automatic Belt Filter Press for Fruit Juice Wastewater 1
Automatic Belt Filter Press for Fruit Juice Wastewater 2
Automatic Belt Filter Press for Fruit Juice Wastewater 3
Automatic Belt Filter Press for Fruit Juice Wastewater 4
Automatic Belt Filter Press for Fruit Juice Wastewater 5
Automatic Belt Filter Press for Fruit Juice Wastewater 6

Automatic Belt Filter Press for Fruit Juice Wastewater

In the cool light of dawn at a juice mill, piles of pulp and milky waste line up and the automatic belt filter press steps in like a calm, tireless hero. It hugs the wet waste, squeezes out clear water, and leaves dry cake in one smooth, hands‑free pass. Sparkling water flows out to be reused, the cake goes to compost, and the plant breathes easy with lower cost and a greener heart.

5.0
brand name:
QILEE
Shipping:
Support Sea freight
Payments:
L/C,D/A,D/P,T/T,Western Union,MoneyGram,OA
Lead Time:
1-1(sets):15(days),>1(sets):To be negotiated(days)
Place of Origin:
China
design customization

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    Reference Weight(kg)
    660
    Base Dimension L1*W1(mm)
    1460*854
    Powder Consumption(kw)
    0.73
    Water Content's Rate(%)
    75~85
    Inlet Consistency(%)
    1.5~2.5
    Dried Sludge(kg/hr)
    30~50
    Treating Capacity(m3/hr)
    2.0~3.3
    Belt Width(mm)
    500mm
    weight
    660
    condition
    New
    automatic grade
    Automatic
    Dimensions(mm)
    2150*1050*2350
    Type
    Belt filter press
    dimension(l*w*h)
    2150*1050*2350
    Power
    730
    Voltage
    380v/220v
    warranty
    1 Year
    place of origin
    Shanghai, China

    Automated Compact Hygienic Dewatering 

    QTA Filter Press Equipment provides fast, energy-efficient dewatering of fruit juice wastewater, delivering low‑moisture cakes and reliable food‑grade hygiene. Built with stainless‑steel construction, Swiss filter cloth and an air‑chamber automatic belt alignment, it ensures durable, low‑noise operation with minimal maintenance. Compact, modular styling, standard export carton packaging and integrated safety monitoring make it easy to transport, install and run securely for long‑term service.

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    Here are three four-word subtitle options:

    QTA Filter Press Equipment features a SUS304 stainless-steel frame, Swiss-imported filter cloth and an air-chamber automatic belt deviation correction system to ensure corrosion resistance, long service life and stable operation. Its high-efficiency dewatering delivers low cake moisture (typically 75–85%), flexible operation with low energy consumption and noise ≤75dB(A), while integrated safety monitors and automatic stop devices reduce maintenance and operational risks. The compact modular structure with selectable belt widths, drum thickener and filtrate collecting trays enables easy installation, thorough washing and reliable slurry–water separation for food, beverage, municipal and industrial wastewater, providing cost-effective sludge handling.

    Automated Fruit Juice Dewatering 

    QTA Filter Press Equipment is an automatic belt filter press engineered for fruit juice wastewater treatment, featuring SUS304 stainless steel construction and Swiss-imported filter cloth for durable, rust-resistant operation. Its air-chamber automatic deviation correction ensures stable cloth tracking while providing high throughput, low-moisture cake discharge, and energy-efficient, low-noise performance (≤75 dB(A)). Built-in safety monitoring, simple operation and model options from QTA-500 to QTA-2000 make it well suited for food and beverage, municipal and industrial sludge dewatering applications.


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    Automatic Efficient Hygienic Dewatering

    Born from decades of specialized wastewater engineering and a quality-driven brand story, QTA Filter Press Equipment combines rigorous R&D with fruit-processing industry standards to deliver an automatic belt filter press tailored for fruit juice wastewater. This system automates continuous solid–liquid separation with PLC-controlled belt speed and tension, energy-efficient drives, corrosion-resistant stainless-steel contact parts, and hygienic, easy-to-clean zones to ensure stable high-throughput dewatering and low cake moisture. Features and advantages include automated belt tensioning and self-cleaning, adjustable dewatering zones, sanitary design, low maintenance, reduced sludge disposal costs, higher juice recovery, regulatory-compliant effluent, and extended service life.

    Material introduction

    QTA Filter Press Equipment for fruit juice wastewater is constructed mainly from corrosion‑resistant SUS304 stainless steel, giving the frame and contact parts high strength and long service life in wet, acidic process conditions. The filtration surfaces use Swiss‑imported filter cloth for superior permeability and durability, while rollers and wear components are precision‑finished and treated with protective coatings to reduce abrasion and maintenance. An air‑chamber automatic deviation correction device combined with robust sealing materials ensures stable cloth tracking, low cake moisture and reliable continuous operation.


    ◎ SUS304 Stainless Construction 

    ◎ Swiss Filter Cloth

    ◎ Automatic Cloth Protection

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    FAQ

    1
    What is an Automatic Belt Filter Press used for in fruit juice wastewater treatment?
    It continuously dewaters sludge and solids from fruit juice production—such as press cake washings, clarifier sludge, and screening residues—reducing wastewater volume, lowering disposal cost, recovering water for further treatment or reuse, and producing a relatively dry filter cake that can be composted or disposed of more easily.
    2
    Which types of fruit-processing waste streams are suitable for belt filter press treatment?
    Typical feeds include pulpy wash water, sediment from clarification, centrifuge sludge, and mixed primary/secondary sludges from juice plants. The machine handles high organic and sugar content streams, though highly fibrous or very abrasive solids may require pre-screening or special belts.
    3
    What pre-treatment or conditioning steps are needed before using a belt filter press?
    Common pre-treatment includes screening to remove large debris, grit removal, equalization or surge tanks to even out flow, and sludge thickening. Chemical conditioning—typically polymer flocculants and sometimes coagulants or pH adjustment—is almost always required to form filterable flocs; exact chemicals and dosages depend on the raw wastewater and should be optimized in trials.
    4
    What filtration performance and product quality can I expect for fruit juice sludge?
    Performance varies with sludge characteristics and conditioning, but typical outcomes are cake solids in the range of about 15–30% dry solids (often 18–25% for fruit-processing sludge) and high total solids capture (often >85–95%). Filtrate turbidity/SS will depend on flocculation quality; well-optimized plants can produce low-SS filtrate suitable for downstream biological treatment or reuse.
    5
    How does the press cope with seasonal or variable loads common in fruit processing?
    The press is designed for flexible, continuous operation: belt speed, roll pressure zones, and polymer dosing can be adjusted to match variable feed strengths and volumes. Best practice is to use surge/equalization tanks upstream, automatic polymer dosing tied to solids concentration, and periodic reassessment of operating parameters during peak seasons to maintain cake quality and throughput.
    6
    What are the main operational and maintenance considerations for fruit juice wastewater applications?
    Key items are reliable polymer dosing and flocculator performance, regular inspection and replacement of belts and scraper blades, routine cleaning/CIP to prevent clogging from sugars/pectin, monitoring of roller bearings and drive systems, and keeping a stock of critical spare parts. Also plan for safe handling and disposal or beneficial use of the cake (composting, feedstock, or landfill), and account for energy and chemical consumption in operating costs.
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