Beverage Application Filter Press

Description

A Beverage Application Filter Press is an essential, high-performance solid-liquid separation system engineered specifically for the food and beverage processing industry. Designed primarily to clarify, polish, and purify liquids, this specialized filtration equipment removes suspended solids, fine turbidity, residual yeast, lees, pulp, and colloidal impurities.

 

From achieving crystal-clear clarity in commercial beers and fine wines to stabilizing fruit juices, edible oils, and distilled spirits, the filter press is critical for ensuring product brilliance, extended shelf life, and strict compliance with global food safety standards. This comprehensive technical guide explores the working principles, engineering features, and industrial significance of beverage filter presses.

 

Industry Expertise and Quality Assurance

 

  • Selecting, sizing, and operating a beverage filter press requires deep engineering expertise. Operators must balance filtration pressure, flow rates, and media porosity to achieve maximum throughput without blinding the filter cloths or damaging delicate beverage characteristics.

 

  • By integrating robust sanitary design with advanced automated control, modern beverage filter presses empower manufacturers to maintain exceptional product consistency, minimize downtime, and deliver the highest standard of quality to consumers worldwide.

Working Principle of Beverage Application Filter Press

The slurry (beverage containing solids) is pumped under pressure into chambers formed by a series of filter plates (often recessed chamber or plate-and-frame design) covered with filter cloths. The liquid (filtrate) passes through the cloths and exits via ports, while solids build up as a filter cake between the plates. Once chambers are full, pressure is released, plates are separated, and the dry cake is discharged. This batch process achieves high clarity and efficient dewatering.

 

In beverage production, these presses often feature food-grade stainless steel construction, FDA-compliant materials, sanitary designs for easy cleaning/sterilization, and options like membrane plates for extra squeezing or drip-free systems to maintain hygiene.

For detailed working process of filter press please view working video in top right section of this webpage.

Technical Specification of Beverage Application Filter Press

Diameter of Plate

No. of Plates

Output LPH

Plate Height

Filtering Area m²

Cake Holding Space m³

Motor

Size of Pump

Plate Thickness

8

4

250

25mm

0.1507

0.002893

1 H.P.

½”

1.2mm

8

6

400

25mm

0.1886

0.004340

1 H.P.

½”

1.2mm

8

8

500

25mm

0.2260

0.00579

1 H.P.

½”

1.2mm

14

8

1000

38mm

0.6130

0.02778

2 H.P.

1″

1.2mm

14

10

1200

38mm

0.7960

003472

2 H.P.

1″

1.2mm

18S

8

2500

50mm

1.160

0.05007

3 H.P.

1 ½”

1.5mm

18D

15

5000

25mm

2.169

0.04050

3 H.P.

1 ½”

1.5mm

18D

12

4000

50mm

1.745

0.07801

3 H.P.

1 ½”

1.5mm

18S

23

7000

25mm

3.338

0.06349

3 H.P.

1 ½”

1.5mm

24D

10

9000

 

2.53

0.14256

5 H.P.

2″

1.5mm

24S

18

16200

 

4.37

0.1132

5 H.P.

2″

1.5mm

24D

13

11700

 

3.22

0.18533

5 H.P.

2″

1.5mm

24S

24

21000

 

5.75

0.15081

5 H.P.

2″

1.5mm

Note:

  1. The flow rate is mentioned in terms of water with 5% activated carbon with filter media as polypropylene cloth.
  2. Filtration rated depends on viscosity of liquids, quality of filter pads and nature of sediments in liquid to be filtered.

* Power voltage can be adjusted as per customer’s domestic power voltage requirements.
* Rights of technical improvements & modification reserved.
* Illustrations & dimensions are shown for information purpose only.

Types of Filter Press

Applications of Other Machines

Benefits of Beverage Application Filter Press

Produces crystal-clear juices, wine, beer & spirits

Removes pulp, yeast, haze & suspended solids effectively

Meets strict food-grade hygiene & sanitary standards

Minimizes product leakage with sealed/gasketed design

Easy CIP cleaning and low contamination risk

High filtration efficiency with stable flow rates

Key Features of Beverage Application Filter Press

Key features of filter presses designed for beverage applications (e.g., clarification/polishing of wine, beer, juices, cider, spirits, and similar liquids) emphasize hygienic design, product purity, ease of cleaning, and reliable solid-liquid separation while meeting food-grade standards.

 

Hygienic and Sanitary Construction

 

  • Food-grade materials such as stainless steel (AISI 304 or 316) frames, sidebars, and often plates; food-grade polypropylene plates are also common.
  • Sealed/gasketed chambers and closed filtrate discharge systems minimize product exposure to the environment, reduce leakage (a known issue with traditional open presses), and support high hygiene standards for wine, juices, beer, and pharmaceuticals.
  • Designs facilitate Clean-in-Place (CIP) or easy manual cleaning, inspection, and maintenance to prevent contamination.
  • Optional full stainless-steel enclosures for maximum corrosion resistance and cleanliness.

 

Filtration Performance and Flexibility

 

  • Plate-and-frame or recessed-chamber (chamber filter press) designs, often using depth filter sheets (e.g., 400 × 400 mm) or filter cloths for clarification, polishing, or rough filtration.
  • Effective removal of suspended solids, pulp, yeast, proteins, and haze-forming particles; filter aids (e.g., diatomaceous earth) may be used in some processes.
  • Adjustable filtration grade by changing sheets/cloths; supports stable flow rates and high dirt-holding capacity.
  • Typical operating (feed) pressures up to about 7–16 bar (100–225 psi); some beverage units rate to 15 bar. Membrane/diaphragm plates can add squeeze capability for drier cake if needed.
  • Cake thickness commonly around 25 mm in dedicated beverage models; filtration area and chamber volume scale with plate size (e.g., 470–1200 mm) and number of chambers.

 

Operation and Automation

 

  • Manual, semi-automatic, or fully automatic closing (hydraulic or pneumatic-hydraulic systems) and plate shifting.
  • Options for PLC controls, touchscreens, automatic pump control, and safety features (e.g., two-hand operation).
  • Easy cake discharge and cleaning; shuttle/plate shifters, optional cloth washing systems, and designs that reduce labor compared with older manual presses.
  • Batch operation suited to beverage production scales, from small/pilot units to larger industrial systems.

 

Additional Practical Features

 

  • Customizable capacity via plate size/number and modular expansion options.
  • Compatibility with various filter media (sheets, cloths, papers, membranes) for different clarification levels.
  • Focus on product quality: minimal impact on taste/flavor, high clarity/brightness of filtrate, and recovery of valuable liquid.
  • Lower maintenance relative to some alternatives in certain setups (though enclosed cartridge systems are sometimes preferred for even lower labor/leakage in beer clarification).
  • Compliance with food/beverage and pharmaceutical standards for materials and cleanability.

 

These presses are widely used for juice/cider clarification, wine/beer polishing or lees filtration, spirit filtration, and related processes. Specific models (e.g., AQUACHEM EC-Beverage series or sheet filter presses) are engineered expressly for hygienic beverage duty, while general industrial presses can be adapted with appropriate materials and seals. Exact specifications (area, pressure, automation level) depend on throughput, product characteristics, and required clarity. Always verify against manufacturer data and local food-safety regulations for a given application.

FAQ for Beverage Application Filter Press

The slurry (beverage containing solids) is pumped under pressure into chambers formed by filter plates covered with filter cloths. The liquid filtrate passes through the cloths and exits via ports, while solids build up as a filter cake. Once the chambers are full, pressure is released, the plates are separated, and the dry cake is discharged. It is a batch process that achieves high clarity and efficient dewatering.

All contact parts are made from stainless steel SS 304, SS 316, or SS 316L with a high degree of finish. The design follows sanitary and food-grade standards to ensure hygiene, corrosion resistance, and compliance with food safety requirements.

It is ideal for commercial beers, fine wines, fruit juices, edible oils, distilled spirits, cider, and similar liquids. It is used for clarification, polishing, lees filtration, and removal of haze-forming particles while preserving product quality and flavor.

Available models feature plate diameters of 4, 8, 14, 18, 24, and 33 inches. Different configurations vary in the number of plates, filtering area, cake-holding capacity, and output rates to suit small pilot to larger industrial production needs.

Key features include maintenance without lifting the full cartridge, pressure gauge, safety valve and air vent, compatibility with centrifugal/gear/lobe pumps, minimum hold-up of unfiltered slurry for higher productivity, and construction to the latest engineering standards.

Output varies by model. For example, an 8-inch plate with 4 plates delivers around 250 LPH, while larger 24-inch configurations can reach 9,000–21,000 LPH (based on water with 5% activated carbon and polypropylene cloth). Actual rates depend on liquid viscosity, filter media, and sediment nature.

The press uses food-grade stainless steel, sealed/gasketed chambers, closed filtrate discharge systems, and designs that support Clean-in-Place (CIP) or easy manual cleaning and sterilization. Optional full stainless-steel enclosures further enhance cleanliness and corrosion resistance.

It delivers high product clarity and brilliance, extended shelf life, consistent quality, minimized product hold-up and waste, reduced downtime through sanitary design and automation options, and compliance with global food safety standards.

Yes. Filtration grade is adjustable by changing filter sheets, cloths, or media. Capacity is customizable through plate size, number of plates/chambers, and modular expansion. Options include membrane plates for extra squeezing and various pump types to match specific process requirements.

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Connect with our engineering team to discuss your specific production requirements. We provide customized, cGMP-compliant machinery solutions designed to optimize your manufacturing facility and maximize output.

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