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Comparison Barrier WaterFort OSMO vs Gejzer Prestige

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Barrier WaterFort OSMO
Gejzer Prestige
Barrier WaterFort OSMOGejzer Prestige
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Effective purification of tap water. Cut off the smallest particles of pollution. Reverse osmosis. Quick-release filter element mounts with SmartLock technology.
5-stage purification of tap water. Reverse osmosis.
Typekitchen sinkkitchen sink
Reverse osmosis
Connectionto the water supplyto the water supply
Purpose
for cold water
for cold water
Specs
Number of flasks3
Stages of purification55
Pollution clipping0.01 µm0.01 µm
Filtration speed0.2 L/min0.14 L/min
Tank volume
12 L /useful volume 8 L/
12 L /usable volume 7.5 L/
Resource5 ths of L3.5 ths of L
Min. operating pressure3 atm3 atm
Max. operating pressure7 atm8 atm
Max operating temperature35 °C40 °C
Filtration
Types of filtration
mechanical impurities
organic impurities
active chlorine
ferrous
heavy metal ions
pesticides
nitrates
cadmium
petroleum products
hardness salts
mechanical impurities
organic impurities
active chlorine
ferrous
heavy metal ions
pesticides
nitrates
cadmium
petroleum products
hardness salts
More features
Tap
Dimensions
39х40x14 cm /without storage tank/
Added to E-Catalogjune 2017august 2013

Number of flasks

The number of flasks in the filter makes it clear how many water cartridges can be installed in it. For a filter for sink, in most cases there are three flasks. If we are talking about reverse osmosis, then flasks do not mean a membrane, post-filter, etc. since their installation does not provide a separate container. But these types of processing are taken into account in the stages of cleaning. The most obvious difference in the number of flasks is observed in the main filters, where the predominant weight per 1 flask, but there are also models for 2 flasks or even more.

Filtration speed

The amount of water that the filter is able to pass through itself per unit of time (of course, effectively purified in the process); usually stated in liters per minute. This parameter is largely related to the type (see above): for example, in jugs, the filtration rate usually does not exceed 0.5 L per minute, while for main devices that supply entire apartments, a throughput of tens or even hundreds of liters is required.

Note that it does not always make sense to pursue a high filtration rate. After all, other things being equal, finer cleaning takes more time; accordingly, the faster the filter works, the higher the chance that the quality of such cleaning will be relatively low. And devices that purify water efficiently and quickly usually have an appropriate price. Therefore, it is worth considering the purpose of the filter and, on the basis of this, determine the balance between the filtration speed and its quality when choosing. It is also worth keeping in mind the conditions of use: for example, if you need to filter low-quality tap water for drinking, it is better to sacrifice speed in favor of efficiency.

Resource

The resource can be described as the total amount of water (in thousands of liters) that the filter is able to clean before the cartridge needs to be changed. Usually, it is indicated for a standard filter element (see "Removable cartridges").

Different types of filters (see above) can significantly differ in resource, depending on the features of their application. However, for all models, the rule applies: do not use a cartridge that has exhausted its resource. This is due not only to a drop in filtration efficiency — an “overfilled” filter can begin to release the accumulated contents into the water, further degrading its quality. Since it can be quite difficult to monitor of a specific amount of treated water, many manufacturers indicate the approximate time in which it will be exhausted with an average intensity of use in addition to the resource. Usually it is a few months, but there are exceptions. In addition, for the convenience of the user, various indicators can be provided in the filter design (see "Cartridge replacement indicator").

In models with a multi-stage design (see "Stages of purification"), where there are several cartridges, their resource usually differs, and the total filter resource is usually indicated by the least durable cartridge, that is, until the first replacement of any of the filter elements.

Max. operating pressure

The highest inlet water pressure at which a filter connected to a tap or water supply can operate indefinitely (at least until the resource is exhausted, see above) without breakdowns, failures, etc. In other words, this is the ultimate strength of the filter. Therefore, this parameter has a great importance, and when choosing a filter, you must make sure that it meets the characteristics of the connection point. In this case, it is best to choose a model with a margin: although the device will not break from short-term pressure surges in excess of the working device, but this will create off-design loads and can lead to early failure.

When buying a filter for ordinary domestic use, it can be assumed that the maximum pressure in the water supply, provided for by the housing and communal services standards of most post-Soviet countries, represents 6 atm, but its actual value is usually lower. Therefore, 6 atm filters are quite suitable for the definition of a “model with a margin” for apartments with medium and especially low water pressure.

Max operating temperature

The highest inlet water temperature at which the filter is able to operate normally. Modern filters are conditionally divided into models for cold and hot water: the operating temperature in the first case does not exceed 40 °C, and in the second it can reach 95 °C. For more information on the importance of matching water temperature and filter characteristics, see "Purpose".
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