How to combat segregation on the vacuum conveying line

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Vacuum conveying technology has proven to be the standard for material transfer in the consumer goods and pharmaceutical industries. It is being used to move materials through the processing line, to blend ingredients in various solutions, and to handle tablets<p>&nbsp;</p><p align="left"><font size="1">While it is the ideal solution for many applications due to the hygienic properties of using a safeenclosed systemvacuum conveying of powders and granules must be done properly to avoid the separation of ingredients that can lead to an uneven mixture. This separation is also known as segregationand it affects most manufacturers transferring and combining ingredients with varied characteristics.</font></p><p align="left"><font size="1">The issue of segregation in conveying is one that pervades the powder and bulk handling industry. How solids separate during material transfer is dependent on a variety of factors: particle sizeshape and density; speed of transfer; geometric variables like angle and length of conveying distance; even static electricity. Regardless of the how and whysegregation can prove to be a costly challenge for manufacturers in a variety of industries.</font></p><p align="left"><font size="1">When conveying in an air streammanufacturers face the risk of ingredients separating through sifting. Smaller particles will find their way through the mixture of larger particles. Dense particles will drop below less dense particles.</font></p><p align="left"><font size="1">Clearly this issue effects production. Whether it is a food product that requires the correct mixture of ingredientsor a pharmaceutical product that depends on an accurate powder-to-powder ratiothe quality of an end product is in jeopardy if the situation is not assessed. Even if the incorrect mixture is caught before end-of-line processinga vast amount of raw material may have been wasted.</font></p><p align="left"><font size="1">Of coursethe problem is not exclusive to powder and bulk conveying only; segregation can occur on the way from the mixer to the feederas well as during mix discharge at the end of the conveying linewhere heavier materials drop to the bottom. Howeverwhen dissecting the problemthere are steps that can be taken to optimise the conveying process itself.</font></p><p align="left"><font size="1">There are different phases in pneumatic conveying; from lean phase conveying to dense phase conveying. When conveying with a low phase densityor lean phase densitya lot of air is mixed with a little powderresulting in high-velocity conveying. In this type of systemthe volume and speed of air is high enough to keep particles continuously moving in suspension. This also increases the chance of segregation.</font></p><p align="left"><font size="1">Converselydense phaseor plug phase conveyingis a slow-down in speed. With a lower volume of air in the conveyermaterial can be moved in plugs with a bit of distance between them. Fluidisation allows for compressed air to pass through porous materials. This fluidised material is pulled along at a slower speed than the compressed airin intermittent waves. The mix is more likely to remain true to the desired ratio when dense phase conveying is utilised.</font></p><p align="left"><font size="1"> </font><strong></strong></p><p align="left"><strong><font face="ITC Caslon 224 Bold" color="#ff4f00">Empirical testing</font></strong></p><p align="left"><strong><font size="1"> </font></strong></p><p align="left"><strong><font size="1">While segregation may be a common and somewhat general problemthe solution is not a general one. Each segregation issue is unique as each mixture is unique. The issues must be treated as such because of the importance and gravity of the situation.</font></strong></p><p align="left"><strong><font size="1">Take as an example a drug manufacturer in the pharmaceutical industry. Here is a condition where the content of the final product may be a life or death matter. While a consumer receiving pain reliever capsules with not enough medication in them may just continue to have a headachethe consumer receiving too much medication may have a dangerous overdose.</font></strong></p><p align="left"><strong><font size="1">Because the consequences can be direthe situation must be addressed empirically on the spot. Many companies producing delicate and potentially hazardous goods will test their mixes on a regular basis to ensure product quality and content. The next step is to assess the conveying line and test how different variables affect material transfer.</font></strong></p><p align="left"><strong><font size="1">What a vacuum partner can contribute to the powder and bulk handling process is a recommendation for controlled speed. When the speed of conveying is kept lowand denser phase conveying is employedthe end result will be better.</font></strong></p><p align="left"><strong><font size="1">RecentlyPIAB worked with a company producing antacid tablets that was conveying about six tons of powder per hour. The manufacturer faced a segregation problemwhereby the ingredientsincluding citric acid and calcium carbonatewere separating out during high speed conveying. The powders were brought to our testing facilitieswhere we simulate the conveying process using different variablessuch as speed and distancefor our manufacturing partners. The results this time were clear: by reducing the speedthe problem was solved.</font></strong></p><p align="left"><strong><font size="1">Product and system updates and innovations in conveying will help manufacturers in the food and pharmaceutical industry with segregation concerns. For instancewe at PIAB are currently in development with a constant-speed conveyor. Controls to set the vacuum pump providing flow in the conveyor at a consistent speed would ensure that regardless of the product being conveyedsegregation is a much easier adversary to beat.</font><strong><font face="Zapf Dingbats Bold" size="1" color="#ff4f00">v</font></strong></strong></p><p align="left"><strong><strong><em></em></strong></strong></p><p><strong><strong><em><font face="ITC Caslon 224 Book Italic" size="1">Peter Tell is Chief Technology Officer of PIAB and developer of COAX technologyWhere. www.piab.com</font></em></strong></strong></p>&quot;

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