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FREEZER STORE ENTRANCES – How important are they?

A UK cold store owner remarked to me once that the electricity usage difference between a 30,000 and a 15,000 pallet freezer store was just over 1000 GBPs per year so long as the bigger store only had one commonly used access door. Having built both, he was in a position to know. The doors are just under 3 metres high and wider than the South African standard of 2.4 metres, with a demarcation line in the middle and entry on the left. Reach truck access is via a separate door. His freezer entrances have clear plastic flaps and an interior airlock with dehumidifier which exerts a positive air pressure. This keeps the cold air from escaping and the warm moist air from entering the store. There is no ice build-up or mist in the door way. Previously cheap electricity did not encourage South African operators to spend money on freezer doorways. In most there is a solid night door with a plastic strip curtain, some of which are broken or missing. The door may be motorised, but is too slow for high movement frequency and when the motorized system breaks it is seldom repaired. Doorways are frequently between 5 and 6 metres high and 2.4 metres wide to accommodate reach trucks. In some instances the door remains open all day with not even a strip curtain. At today’s electricity prices this is costing a fortune not only through the loss of expensive cold air but also the moisture in the warm incoming air ends up insulating the evaporator coils and making them inefficient. Multiple defrosts are expensive. Some door solutions to consider: Create a separate higher door for reach truck access and a lower one for product movement on motorised pallet jacks. Either create a small dehumidification airlock with positive pressure around the access door way or dehumidify the whole airlock. Install a high speed cloth door inside the freezer entrance and combine it with a dehumidifier. Install an insulated automated roll up door on the outside of the freezer. Install a fast opening 2 part door. Install an air curtain in lower doorways up to 4 metres. Consider the use of pallet conveyors for moving product into and out of freezers. Access can be a very expensive part of a cold store. It must be designed correctly but with the right equipment can reduce electricity bills significantly. Headline picture courtesy of MAT Biddle Cold Store Air (http://www.biddle.info/documents/UKbrochures/Invisidor%20MAT.UK.pdf)

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Fuel Cell Technology For Materials Handling Equipment Dr Mykhaylo Lototskyy at the HySA Systems Department of Science and Technologies

Fuel Cell Technology For Materials Handling Equipment

We visited Dr Mykhaylo Lototskyy at the HySA Systems Competence Centre which is part of the Department of Science and Technologies initiative to develop fuel cell technology for commercial use. The 2023 objective is to be using 25% of the world’s platinum production for fuel cell technology. Fuel cells were first developed in 1838 with the first commercial applications in the space (sources of water and electricity) and defence industries during the 1980’s. Whereas a battery stores electrical power a fuel cell generates electricity via a chemical reaction that normally uses hydrogen as a fuel. At 50% efficiency the by-products are green friendly water and heat with little noise. Dr Lototskyy was recently featured in the media demonstrating a Shill forklift powered by a fuel cell at Impala’s platinum refinery in Gauteng. Dr Lototskyy confirmed that while there are over 9200 fuel cell powered forklifts in use, almost all in the US. Studies have shown that the costs of ownership of fuel cell forklifts or MHE to be 10% cheaper than battery operated ones in Distribution Centres where there is 24/7 operations and in excess of 60 MHEs to reduce the unit cost of the refueling and distribution infrastructure. Some of the obstacles to the widespread use of fuel cells include the sourcing and distribution of hydrogen. As a by-product of hydrocarbon processing it is produced by Sasol purified of CO and Co2 and piped to metal refineries such as Impala’s. Hydrogen can also be produced from water via Electrolysis (1M3 of hydrogen per 4 to 5 KWh of electricity. The Department of Science and technology together with its Japanese counterpart is currently planning a high temperature solar hydrogen plant for South Africa. Compressing, storing and distributing Hydrogen is not simple either given its inflammatory properties, remember the Hindenburg airship disaster, 720 grams of hydrogen at 200 bar pressure in a special non leak cylinder weighs approximately 50 Kgs, so long distance transport is expensive. The efficient storage of Hydrogen in metal hydrides is Dr Lototskyy’s speciality and he showed me the on-site furnaces where the new hydrogen receptive hydrides are made. As each fuel cell produces between 0.38 and 0.85 volts, multiple cells must be joined in series or stacks to provide sufficient power together with the correct quantity of hydrogen. It is also necessary to control supply of the oxidant (air) to maintain operating temperature as well as to provide nominal output voltage at varying load (output current). All this support infrastructure is called, “Balance of Load.” Dr Lototskyy showed how bicycles, scooters and golf carts could be powered or have their range extended by fuel cells. Making a fuel cell plant big enough to power a 3.0 ton forklift shows how far the technology has advanced. Although fuel cell powered forklifts can be economically justified in a large high volume US distribution centre, given the infrastructure costs involved I wouldn’t expect to see them in commercial use locally for at least the next five to ten years. However if the Government provides sufficient incentives, and localised solar production is successful, fuel cell forklifts might become a fact of life sooner than we think.

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Barpro Storage - Rack Inspection Tool

Rack Inspection Tool

  The rack inspection tool was developed by Barpro as a quick way for any store manager or supervisor to check the condition and safety of their static or mobile racks. We encourage all our clients to check for rack damage at least weekly and rectify any damage immediately. Rack frames knocked by forklifts and if not identified, can lead to a rack collapse – every storage facility’s worst nightmare. For more information contact our offices: [gravityform id=”5″ title=”true” description=”true”]

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