
Gericke centrifugal sifter GS
The Gericke centrifugal sifter is a rotary sieving machine designed to separate particles of different sizes into two product streams and to remove tramp and oversize materials. Gericke rotary sifters are specifically designed to meet the increasing demands of modern applications and processes. The machine range, sizes, features and configurations can be optimised for a wide variety of sifting applications.

Gericke Engineering
Competent engineering and project management Save time and money with competent engineering and project management! Planning, manufacture, assembly and commissioning phases of complete systems are tailored by Gericke to meet the customer’s needs and the bulk solids used. Experiments and trials in our technical centres support the choice of components used and the design of the processes. Consistent project management and complete documentation are key to successful projects at Gericke.

Gericke Feedos S
High-precision volumetric dosing Accurate and reliable feeding of bulk materials is at the heart of many processes. Gericke volumetric feeders combine a precise volumetric material flow and a high degree of flexibility. Often, they are the most economic choice for applications which do not require the exceptional accuracy of loss-in-weight feeders.

Gericke GRAVIMETRIC FEEDING
Loss-in-Weight Feeders Whether feeding into a continuous mixer, a rotary kiln or any other process, accurate metering of bulk solids is key to process control and ensures highest product quality standards. High-precision gravimetric feeding Gravimetric feeding involves either weighing a requested quantity as a batch, or feeding a constant mass flow continuously over time. Gericke’s gravimetric feeders combine optimised mechanical design, precise load detection and sophisticated controls to guarantee highest accuracy for all loss-in-weight feeding applications. Special executions of our loss-in-weight feeders are available which consider the demands of the food and pharmaceutical industry.

Gericke Mixing
Batch and continuous inline mixing solutions Highest homogeneity, even with microingredients. Hygienic and easy to clean, fast and effective but nevertheless gentle, energy efficient and space saving. Fully integrated with feeders and with your entire process: That is mixing technology from Gericke. Gericke covers inline mixing ranges from 1 kg/h to more than 100,000 kg/h for powders, pellets, granules, flakes, particles and liquid additions. Gericke's unique experience also includes reaction processes such as agglomeration, coating and heat transfer, which are vital for product innovation.

Gericke Nibbler
DEAGGLOMERATOR NIBBLER The Gericke Nibbler is a coarse grinder and pre-breaker for the size reduction in a broad range of applications. It is used for de-agglomeration, rework and breaking down/size reduction of lumpy or frozen products.

Gericke Rotary valves
Thanks to its highly modular design, our products can be adapted for virtually all types of product characteristics and applications: # Metering device # Airlock, explosion containment, flame barrier and system isolation # Suitable for gravity, positive pressure and vacuum conveying systems # Powders, granules, pellets, grain, feed and chips The RotaVal products are used in many different industries, such as dairy, food, pharmaceutical, minerals, plastics, power plants and others.

Gericke Test Center
Trials on original equipment with your material Tests on an industrial scale reduce planning time and increase process safety. In our test centers you can pneumatically convey your bulk material over more than 200 meter! Or you conduct mixing trials on the highest capacity continuous mixing system in a test center anywhere in the world. These types of tests will give you results you really can rely on.

Giratory sifter mounts

GKM Screening Machines
- Tumbler Screening Machines - Vibrating Screening Machines - Laboratory Screening Machines - Spare Parts

glass pipe bends
A glass pipe bend is used when conveying abrasive, usually glass fiber-reinforced materials - for example polyamide. A glass pipe bend must be used, especially where space is limited and radii are small. If this is installed stress-free and is not mechanically damaged, it can be expected to last for years. This is particularly advantageous when installation space is limited and accessibility is poor. To prevent static charging, a copper tape is glued to the outer radius to transfer the charge via the pipe and earthed at the end of the pipe.

Glass pipe bends
For conveying abrasive media or for high flow rates, we can supply you with glass pipe bends made from 3.3 borosilicate glass with a copper grounding strip. These have a service life at least 10 times longer than that of stainless steel pipe bends.

Glatt GF ModFlex: Plant concept for continuous powder agglomeration
Glatt GF ModFlex - Based on proven fluid bed technology, Glatt offers a newly developed, compact, flexible and modular plant concept for maximum process flexibility, low space requirements, low investment costs, low operating costs, short installation times thanks to plug and play prefabricated modules and ensure operation including hygienic design (EHEDG), high filter performance, integrated WIP and dust Ex version (St 1).

Glatt PHOS4green technology: Phosphorus recovery from sewage sludge ashes and convertion into standardized fertilizer
Glatt PHOS4green technology is a groundbreaking waste-free process that recycles the phosphorus from ash to produce ready-to-use high-quality fertilizers. In the first step of the two-stage "PHOS4green" process, a suspension is produced from the phosphate-containing ash, a mineral acid and, depending on the objective, other components. The suspension is then spray granulated in the fluidised bed. This results in fertiliser granulates that are available to plants and soil, which can be discharged, filled and delivered directly after the desired grain size has been reached.

Glatt ProAPP® Lab: Glatt powder synthesis reactor in laboratory scale
The Glatt ProAPP® Lab is suitable for feasibility studies, testing of material and/or process ideas and the production of initial samples and test batches. This reactor can be operated between room temperature and 900 °C (optionally up to 1300 °C). This wide temperature range is achieved by the innovative design of the reactor. The Glatt ProAPP® is particularly suitable for initial experiments with large parameter variations and for optimizing the material system. It can be operated under inert conditions in addition to the oxidizing regime. The Glatt ProAPP® Lab pulsation reactor can produce approximately 100 to 500 grams of powder per hour.
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