Field of the Invention
[0001] The present invention relates to a method of dispensing solid products with a solid
product dispenser.
Background of the Invention
[0002] Extruded clay or ceramic tile, sometimes called quarry tile, is commonly used in
institutional and non-institutional kitchens such as restaurants because it is relatively
inexpensive; durable, and has relatively low porosity. Quarry tile is made from natural
clays with the composition being approximately 50% hard particles (silicon) and the
other 50% soft particles (clay components). When the clay tile is fired, it develops
a pervious glaze-like coating which encapsulates pores under the surface. Because
of the pervious nature of the surface, these pores collect and entrap various soils
that are extremely difficult to clean thoroughly.
[0003] During the manufacturing process of quarry tile, a natural surface roughness may
be created consisting of hard, microscopic peaks of silica and inert clays. The surface
texture or roughness coupled with the surface porosity provides the tile with an optimum
static coefficient of friction (traction). New quarry tile tends to be slip-resistant,
and some tiles feature anti-slip properties such as added grit, grid patterns, or
a rougher surface texture. However, even the anti-slip tile becomes worn and soiled
over time and becomes slippery and potentially dangerous. After a short time, the
quarry tile receives abrasion and surface wear due to foot traffic, soils, and daily
surface cleaning. The microscopic peaks may become polished or worn down, leading
to flat surface areas. These worn areas result in a lower static coefficient of friction
and create a potentially slippery floor surface. In addition, frying, grilling, and
sauteing create airborne grease, which causes a potentially hazardous film to develop
on the tile. Despite daily cleaning, there is often a buildup of soil and grease over
time, and a quarry tile floor can become saturated with grease and continue to stay
slippery despite routine cleaning.
[0004] Hard surface cleaners useful in institutional and non-institutional environments
may take any number of forms. An example of such a cleaner is an aqueous cleaner formulation
that can be neutral, acidic, or alkaline in pH when diluted to create a use solution.
Aqueous neutral, acidic, or alkaline cleaners in use solutions are typically formulated
using a major proportion of an aqueous diluent and a minor proportion of the cleaner.
Cleaners having a neutral pH or an alkaline pH effectively remove fresher grease soils,
and cleaners having an acidic pH effectively remove polymerized grease soils. An example
of an acidic cleaner formulation useful in cleaning soils comprising food residue
is disclosed in
U.S. Patent 6,432,906. An example of a basic (alkaline) cleaner formulation useful in cleaning soils comprising
food residue is disclosed in
U.S. Patent 5,474,698.
[0005] US 6,589,443 discloses a shaped solid oxidant bleach composition comprising oxidant bleach with
an encapsulated source of bleach.
[0006] US 4,569,781 describes a cast detergent containing article and a method of using the article in
an automatic washing machine.
[0007] EP 0 242 966 A2 discloses a method of making solid cast alkaline detergent compositions.
[0008] U.S. Patent 5,797,986, discloses a method of cleaning a floor using a first cleaner with a pH departing
from neutral followed by a second cleaner with a complementary pH. In one aspect,
the first cleaner is an acidic cleaner and the second cleanser is a basic cleaner.
In another aspect, the first cleaner is a basic cleaner and the second cleaner is
an acidic cleaner. This method provides optimal cleaning.
[0009] The cleanliness of hard surfaces such as floors is characteristic of a substantially
improved coefficient of friction (hereinafter "COF"). A COF greater than about 0.4
connotes a non-slip surface of substantially improves safety when compared to slippery
soiled surfaces. By increasing the coefficient of friction (traction) and reducing
floor slipperiness, dangerous accidents can be reduced.
Summary of the Invention
[0010] One aspect of the present invention provides a method of dispensing a first solid
product and a second solid product with a solid product dispenser. The first solid
product and the second solid product are positioned in a product housing of the solid
product dispenser. The first solid product and the second solid product are different
products. The first solid product is placed in the product housing of the solid product
dispenser, and the second solid product is placed in the product housing of the solid
product dispenser on top of the first solid product. A portion of the first solid
product is dispensed during each cycle of the solid product dispenser until the first
solid product has been partially depleted to a size small enough to allow the second
solid product to also be dispensed. A portion of the first solid product and a portion
of the second solid product are dispensed during each cycle of the solid product dispenser
until the first solid product has been completely depleted. A portion of the second
solid product is dispensed during each cycle of the solid product dispenser.
[0011] Another aspect of the present invention provides a method of dispensing a first solid
product and a second solid product with a solid product dispenser. The first solid
product and the second solid product are positioned in a product housing of the solid
product dispenser. The first solid product and the second solid product are different
products. The first solid product is placed in the product housing of the solid product
dispenser. A portion of the first solid product is dispensed during each cycle of
the solid product dispenser until the first solid product has been partially depleted
to a size small enough to allow the second solid product to be positioned in the product
housing on top of the first solid product. The second solid product is placed in the
product housing of the solid product dispenser on top of the first solid product.
A portion of the first solid product is dispensed during each cycle of the solid product
dispenser until the first solid product has been partially depleted to a size small
enough to allow the second solid product to also be dispensed. A portion of the first
solid product and a portion of the second solid product are dispensed during each
cycle of the solid product dispenser until the first solid product has been completely
depleted. A portion of the second solid product is dispensed during each cycle of
the solid product dispenser.
[0012] Another aspect of the present invention provides a method of dispensing a first solid
product and a second solid product with a solid product dispenser. The first solid
product and the second solid product are positioned in a product housing of the solid
product dispenser. The first solid product and the second solid product are different
products. The first solid product is placed in the product housing, and a bottom portion
of the first solid product is contacted with a diluent to dissolve a portion of the
first solid product to create a first use solution. A portion of the first solid product
is dispensed during each cycle of the solid product dispenser until the first solid
product has been partially depleted to a size small enough to allow the second solid
product to be positioned within the product housing on top of the first solid product.
The second solid product is placed in the product housing of the solid product dispenser
on top of the first solid product, and a bottom portion of the first solid product
is contacted with the diluent to dissolve a portion of the first solid product to
create the first use solution. A portion of the first solid product is dispensed until
the first solid product has been partially depleted to a size small enough to allow
the second solid product to also be dispensed. A bottom portion of the first solid
product and a bottom portion of the second solid product are contacted with the diluent
to dissolve a portion of the first solid product and a portion of the second solid
product to create a second use solution. A portion of the first solid product and
a portion of the second solid product are dispensed until the first solid product
has been completely depleted. A bottom portion of the second solid product is contacted
with the diluent to dissolve a portion of the second solid product to create a third
use solution.
[0013] Another aspect of the present invention provides a method of dispensing an acidic
solid product and an alkaline solid product with a solid product dispenser. The acidic
solid product and the alkaline solid product are positioned in a product housing of
the solid product dispenser. The acidic solid product is placed in the product housing,
and a bottom portion of the acidic solid product is contacted with a diluent to dissolve
a portion of the acidic solid product to create an acidic use solution. A portion
of the acidic solid product is dispensed during each cycle of the solid product dispenser
until the acidic solid product has been partially depleted to a size small enough
to allow the alkaline solid product to be positioned within the product housing on
top of the acidic solid product. The alkaline solid product is placed in the product
housing of the solid product dispenser on top of the acidic solid product. A portion
of the acidic solid product is dispensed until the acidic solid product has been partially
depleted to a size small enough to allow the alkaline solid product to also be dispensed.
A bottom portion of the acidic solid product and a bottom portion of the alkaline
solid product are contacted with the diluent to dissolve a portion of the acidic solid
product and a portion of the alkaline solid product to create a neutral use solution.
A portion of the acidic solid product and a portion of the alkaline solid product
are dispensed until the acidic solid product has been completely depleted. A bottom
portion of the alkaline solid product is contacted with the diluent to dissolve a
portion of the alkaline solid product to create an alkaline use solution.
Brief Description of the Drawings
[0014]
Figure 1 is a cross-section view of a solid product dispenser containing a first solid
product and a second solid product within a product housing of the solid product dispenser;
Figure 2 is a schematic view of the first solid product as it would be positioned
in the product housing of the solid product dispenser shown in Figure 1;
Figure 3 is a schematic view of the first solid product shown in Figure 2 partially
depleted as it would be positioned in the product housing of the solid product dispenser
shown in Figure 1;
Figure 4 is a schematic view of the first solid product shown in Figures 1 and 2 partially
depleted with the second solid product positioned on top of the first solid product
as they would be positioned in the product housing of the solid product dispenser
shown in Figure 1;
Figure 5 is a schematic view of the first solid product shown in Figures 1 and 2 partially
depleted with the second solid product positioned on top of the first solid product
as they would be positioned in the product housing of the solid product dispenser
shown in Figure 1;
Figure 6 is a schematic view of the second product shown in Figures 4 and 5 after
the first product has been completely depleted as it would be positioned in the product
housing of the solid product dispenser shown in Figure 1;
Figure 7 is a graph showing a pH transition from an acid solid product to an alkaline
solid product over several dispensing cycles; and
Figure 8 is a graph showing average coefficient of friction readings with acid product
compared to alternating acid and alkaline products.
Detailed Description of a Preferred Embodiment
[0015] The present invention relates to magazine loading of solid products by alternating
two different solid products within a product housing of a solid product dispenser
and a method of dispensing the magazine loaded solid products.
[0016] The term "alternating" as used herein includes arranging at least two different solid
products in a desired order including, but not limited to, every other, every second,
every third, and the like. The purpose for alternating at least two different solid
products is to cycle the use solutions created therefrom through a desired pH range
to enhance the overall effectiveness of the system. The exact manner in which the
solid products are alternated may vary depending upon the type of cycling desired.
[0017] Any suitable solid product dispenser may be used. Examples of suitable solid product
dispensers are disclosed in
U.S. Patent Nos. 4,426,362;
4,687,121;
4,690,305; and
4,826,661 and
U.S. Provisional Patent Application No. 60/795,340. Because such solid product dispensers are well known in the art, only a general
description of how such a solid product dispenser operates is discussed.
[0018] Figure 1 shows a solid product dispenser 100 including a top housing portion 101
and a bottom housing portion 111 with a support member 102 such as a screen supported
between the top housing portion 101 and the bottom housing portion 111. The top housing
portion 101 includes a product housing 103 with a cavity 104 in which a first solid
product 150 and a second solid product 160 are positioned. The support member 102
supports a bottom portion of the solid product or products being dispensed. A cover
105 may be placed over the cavity 104 to protect the first and second solid products
150 and 160. The bottom housing portion 111 includes a diluent inlet 112 in fluid
communication with a spray nozzle 113. A diluent, such as water, is supplied via a
conduit (not shown) to the diluent inlet 112 and is then sprayed via the spray nozzle
113 onto a bottom portion 151 of the first solid product 150 through the support member
102. The bottom portion 151 may include a bottom surface and sides of the first solid
product 150. A portion of the second solid product 160 may also be sprayed with the
diluent to erode a portion of the second solid product 160. The diluent erodes a portion
of the first solid product 150, and perhaps a portion of the second solid product
160, to create a use solution, which flows through a cavity 114, through a use solution
outlet 115, and through an outlet conduit 116 into a mop bucket (not shown) or any
other suitable container.
[0019] As the first solid product 150 erodes and becomes smaller, a greater portion of the
second solid product 160 will be sprayed with the diluent. Eventually, over a course
of several dispensing cycles, the first solid product 150 will be completely dispensed
leaving just the second solid product 160 to be dispensed. As the first solid product
150 is eroded and becomes smaller, or as the second solid product 160 is eroded and
becomes smaller, a new first solid product 150 may be placed on top of the second
solid product 160. Thus, as the solid products are dispensed, alternating products
are placed within the product housing 103 to replenish the products.
[0020] Figures 2-6 schematically illustrate how the solid products 150 and 160 are dispensed
over several dispensing cycles. Figure 2 shows the first solid product 150 as it would
be positioned in the product housing 103 of the solid product dispenser 100. After
several dispensing cycles, the first solid product 150 becomes partially depleted
and smaller in size, as shown in Figure 3. Once the first solid product 150 becomes
small enough to allow another product to be placed within the product housing 103,
the second solid product 160 may be positioned within the product housing 103 on top
of the first solid product 150 as shown in Figures 1 and 4. The first solid product
150 continues to become depleted as shown in Figure 5. As the first solid product
150 becomes more depleted and even smaller, there is a transition from the first solid
product 150 to the second solid product 160 where both products will be dispensed.
The erosion of the first solid product 150 does not always erode evenly in a straight
line across the bottom surface of the product, as shown in the schematic views. The
erosion may be uneven, resulting in both solid products 150 and 160 being dispensed
substantially concurrently. In addition, the dispenser may spray the diluent onto
the sides of the solid products 150 and 160 resulting in both solid products 150 and
160 being dispensed substantially concurrently. Once the first solid product 150 is
totally depleted, only the second solid product 160 remains as shown in Figure 6.
Then, as the second solid product 160 is depleted and becomes small enough to allow
another product to be placed within the product housing 103, a new first solid product
150 is positioned within the product housing 103 on top of the second solid product
160. This rotation of products continues.
[0021] It is recognized that solid products smaller in size may be placed within the product
housing so that the first solid product does not have to be partially depleted before
the second solid product is placed on top of the first solid product within the product
housing. Alternatively, the product housing may be large enough to receive both solid
products.
[0022] If the first solid product 150 is an acidic cleaning product, then the second solid
product 160 is preferably an alkaline cleaning product. During the transition from
the first solid product 150 to the second solid product 160, the pH changes from acidic
to neutral (while a portion of both solid products 150 and 160 are being eroded and
dispensed) to alkaline. If the first solid product 150 is an alkaline cleaning product,
then the second solid product 160 is preferably an acidic cleaning product. During
the transition from the first solid product 150 to the second solid product 160, the
pH changes from alkaline to neutral to acidic.
[0023] Although acidic cleaning products and alkaline cleaning products are described herein,
it is recognized that other suitable products providing benefits of alternating chemistries
may also be used. It is also recognized that more than two products may be rotated
within the product dispenser. Any products that could be placed within a product housing
of the same dispenser could be used. Preferably, the products would not chemically
react with one another. Preferably, the products would dispense at approximately the
same rate and utilize the same dispenser settings such as pressure, nozzle height,
flow rate, temperature, etc.
[0024] Figure 7 shows the pH transition from an acidic solid product, to an alkaline solid
product, to an acidic solid product, and so on over 70 dispensing cycles, each dispensing
cycle being represented by the fill number. Each fill used 4 gallons of water to erode
a portion of the product and create a use solution. The acidic solid product was dispensed
over the first to the eleventh fills, both the acidic solid product and the alkaline
solid product were dispensed over the twelfth to twenty-seventh fills, the alkaline
solid product was dispensed over the twenty-eighth to thirty-eighth fills, both the
alkaline solid product and the acidic solid product were dispensed over the thirty-ninth
to forty-ninth fills, and the cycle begins again. The transition from an acidic pH
to an alkaline pH (a pH ranging from 6.00 to 8.00) occurred over approximately 10
fills using a total of approximately 40 gallons of water. It is recognized that smaller
or larger solid products may be used and that the numbers of fills over which each
solid product is completely dispensed may vary.
[0025] This rotation through the ranges of pH (acid to neutral to alkaline to neutral to
acid ...) delivers improved cleaning results. Preferably, the acidic use solution
has a pH of 3.00 to 6.00, the neutral use solution has a pH of 6.00 to 8.00, and the
alkaline use solution has a pH of 8.00 to 11.00. Cleaning products having an acidic
pH effectively remove polymerized grease soils while cleaning products having an alkaline
pH effectively remove fresher grease soils. During the transition from an acidic pH
to an alkaline pH, there is a neutral pH, which is effective in removing fresher grease
soils although not typically as well as an alkaline pH. Acidic cleaning products remove
build-up on floors not effectively removed by alkaline cleaning products and vice
versa. Therefore, by alternating these products within a product dispenser, improved
cleaning results are delivered.
[0026] A preferred acidic cleaning product includes the ingredients listed in Table 1. The
weight percentage is the weight of an ingredient based upon the total weight of the
composition.
Table 1
| Acidic Product Ingredients |
| Ingredients |
Weight Percentage of Product |
NACCONOL®90G
(Sodium Dodecylbenzene Sulfonate) |
44.79 |
| Citric Acid |
20.00 |
| Sodium Citrate Dihydrate |
15.00 |
| Urea, Microprilled |
10.00 |
SURFONIC® L 12-6
(Ethoxylated Alcohol) |
10.00 |
| Fragrance |
0.20 |
| Dye |
0.01 |
| TOTAL |
100.00 |
[0027] It is recognized that any suitable acidic cleaning product may be used. An example
of an acidic cleaning product that may be used is disclosed in
U.S. Patent 6,432,906. Another example of an acidic cleaning product that may be used is disclosed in U.S.
Patent Application Publication No.
US 2005/0197276 A1.
[0028] A preferred alkaline cleaning product includes the ingredients listed in Table 2.
The weight percentage is the weight of an ingredient based upon the total weight of
the composition.
Table 2
| Alkaline Product Ingredients |
| Ingredients |
Weight Percentage of Product |
NACCONOL®90G
(Sodium Dodecylbenzene Sulfonate) |
45.67 |
| Dissolvine 2205 |
20.00 |
| Sodium Carbonate |
5.00 |
| Sodium Bicarbonate |
5.00 |
| Sodium Metasilicate Pentahydrate |
1.00 |
| Urea |
12.50 |
| Pluronic L62 |
5.00 |
SURFONIC® L 12-6
(Ethoxylated Alcohol) |
5.00 |
| Water |
0.62 |
| Fragrance |
0.20 |
| Dye |
0.01 |
| TOTAL |
100.00 |
[0029] It is recognized that any suitable alkaline cleaning product may be used. An example
of an alkaline cleaning product that may be used is disclosed in
U.S. Patent Application Serial No. 11/487599 (M&G Docket No. 163.2315US01, titled Alkaline Floor Cleaning Composition and Method
of Cleaning a Floor).
[0030] Another example of an alkaline cleaning product that may be used in disclosed in
U.S. Patent 5,474,698.
[0031] The acidic solid product disclosed in U.S. Patent Application Publication No.
US 2005/0197276 A1 and the alkaline solid product disclosed in
U.S. Patent Application Serial No.11/487599 (M&G Docket No. 163.2315US01, titled Alkaline Floor Cleaning Composition and Method
of Cleaning a Floor) are the SOLIDSENSE™ Floor Care A & B products by Ecolab Inc.
of St. Paul, Minnesota.
[0032] There are many benefits to simply alternating two different solid products within
a product housing of a solid product dispenser. One benefit is that only one step
is needed to clean the area and as product is dispensed in a use solution, the use
solution rotates through a range of pH to effectively clean a range of soils. Another
benefit is that only one product dispenser is needed and when the first product level
is low, a second product is placed within the product housing. In other words, no
product selection is required. This eliminates the need to keep track of which product
should be used for each cleaning as the use solution is automatically dispensed by
simply alternating the products within the product housing and using the dispenser
in its normal course. These benefits are not exhaustive as there are many additional
benefits obvious to those skilled in the art.
Example 1
[0033] The coefficient of friction (hereinafter "COF") was measured on quarry tile floors
proximate a fryer, a grill, a sink, and a lobby at two separate quick servile restaurant
locations, Location 1 and Location 2. The quarry tile floors were 10,16 by 20,32 cm
(4 inches by 8 inches) American Olean Q01 Canyon Red quarry tiles. The COF was measured
using a Brungraber Magic II Slip-Tester with a 7,62 by 7,62 cm (3 inches by 3 inches)
Neolite Sensor according to the Standard Test Method for Using a Portable Inclineable
Articulated Strut Slip Tester (PIAST), Designation F 1677 96, under ASTM Standards,
ASTM International of West Conshohocken, Pennsylvania.
[0034] The first measurement, measurement A, was taken after cleaning the floors with an
acidic cleaning product, KADET™ Quarry Tile Floor Cleaner by Ecolab Inc. of St. Paul,
Minnesota. Each of the floors was cleaned with a use solution of KADET™ Quarry Tile
Floor Cleaner prepared in a mop bucket according to the directions on the product
label. The use solution was applied onto the floor with a mop and then brushed or
agitated with the mop on the surface of the floor. A squeegee was used to direct the
use solution into a floor drain, and then the floor was allowed to dry. The second
measurement, measurement B, was taken after cleaning the floors with an alternating
acidic cleaning product and an alkaline cleaning product, the SOLIDSENSE™ Floor Care
A & B products by Ecolab Inc. of St. Paul, Minnesota, according to the principles
of the present invention. The alternating cleaning products were used over an eight
week period and measured at weeks four and eight. Typically, one solid product block
was used per week, so the typical cycle would allow for rotation through an acid to
alkaline to acid to alkaline use solution before the measurement at week four was
taken.
[0035] The measurement Dirty/Dry was taken after the breakfast or lunch activity of the
quick service restaurants when the quarry tile kitchen floors would be dirty with
fresh grease from frying starch or protein food items and some areas could also have
polymerized grease. The measurement Dirty/Wet was taken under the same circumstances
as Dirty/Dry but wet with water on the floors to simulate a spill. The measurement
Clean/Dry was taken after the floors had been cleaned using the typical floor cleaning
protocol using either the acidic cleaning product (measurement A) or the alternating
acidic cleaning product and the alkaline cleaning product (measurement B) and the
floors were allowed to dry. The Clean/Wet measurement was taken under the same circumstances
as Clean/Dry but wet with water on the floors to simulate a spill or a still wet after
mopping situation.
[0036] As shown in Figure 8, the COF was greater after the floors had been cleaned with
the alternating acidic cleaning product and the alkaline cleaning product. Therefore,
by alternating the acidic cleaning product and the alkaline cleaning product, the
floors had better traction and were less slippery.
1. A method of dispensing a first solid product (150) and a second solid product (160)
with a solid product dispenser (100), the first solid product (150) and the second
solid product (160) being positioned in a product housing (103) of the solid product
dispenser (100), the fist solid product (150) and the second solid product (160) being
different products, comprising:
a) placing the fist solid product (150) in the product housing (103) of the solid
product dispenser (100);
b) placing the second solid product (160) in the product housing (103) of the solid
product dispenser (100) on top of the first solid product;
c) dispensing a portion of the first solid product (150) with a diluent to dissolve
a portion of the first solid product to create a first use solution during each cycle
of the solid product dispenser (100) until the first solid product has been partially
depleted to a size small enough to allow the second solid product (160) to also be
dispensed;
d) dispensing a portion of the first solid product (150) and a portion of the second
solid product (160) with the diluent to dissolve a portion of the first solid product
and a portion of the second solid product to create a second use solution during each
cycle of the solid product dispenser (100) until the first solid product (150) has
been completely depleted; and
e) dispensing a portion of the second solid product (160) with a diluent to dissolve
a portion of the second solid product to create a third use solution during each cycle
of the solid product dispenser (100).
2. The method of claim 1, wherein the first solid product (150) is an acidic cleaning
product and the second solid product (160) is an alkaline cleaning product, wherein
a use solution having a neutral pH is dispensed during step 1 (d).
3. The method of claim 1, wherein the first solid product (150) is an alkaline cleaning
product and the second solid product (160) is an acidic cleaning product, wherein
a use solution having a neutral pH is dispensed during step 1 (d).
4. A method of claim 1, wherein step c) is carried out between steps a) and b).
5. The method of claim 1, wherein the first use solution has an acidic pH, the second
use solution has a neutral pH, and the third use solution has an alkaline pH.
6. The method of claim 1, wherein the first use solution has an alkaline pH, the second
use solution has a neutral pH, and the third use solution has an acidic pH.
7. The method of claim 1, wherein the products are sprayed with the diluent
8. The method of claim 1, wherein the acidic use solution has a pH from 3.00 to 6.00,
the neutral use solution has a pH from 6.00 to 8.00, and the alkaline use solution
has a pH from 8.00 to 11.00
1. Verfahren zum Ausgeben eines ersten festen Produkts (150) und eines zweiten festen
Produkts (160) mit einem Feststoffspender (100), wobei das erste feste Produkt (150)
und das zweite feste Produkt (160) in einem Produktgehäuse (103) des Feststoffspenders
(100) angeordnet sind und das erste feste Produkt (150) und das zweite feste Produkt
(160) unterschiedliche Produkte sind, umfassend:
a) Hineingeben des ersten festen Produkts (150) in das Produktgehäuse (103) des Feststoffspenders
(100);
b) Hineingeben des zweiten festen Produkts (160) in das Produktgehäuse (103) des Feststoffspenders
(100) auf das erste Festprodukt;
c) Ausgeben eines Teils des ersten festen Produkts (150) mit einem Verdünnungsmittel,
um einen Teil des ersten festen Produkts aufzulösen, um eine erste Anwendungslösung
während jedes Zyklus des Feststoffspenders (100) zu erzeugen, bis das erste feste
Produkt teilweise bis zu einer solchen Größe aufgebraucht ist, die klein genug ist,
um zu ermöglichen, dass das zweite feste Produkt (160) auch ausgegeben wird;
d) Ausgeben eines Teils des ersten festen Produkts (150) und eines Teils des zweiten
festen Produkts (160) mit dem Verdünnungsmittel, um einen Teil des ersten festen Produkts
und einen Teil des zweiten festen Produkts aufzulösen, um eine zweite Anwendungslösung
während jedes Zyklus des Feststoffspenders (100) zu erzeugen, bis das erste feste
Produkt (150) vollständig aufgebraucht ist; und
e) Ausgeben eines Teils des zweiten festen Produkts (160) mit einem Verdünnungsmittel,
um einen Teil des zweiten festen Produkts aufzulösen, um eine dritte Anwendungslösung
während jedes Zyklus des Feststoffspenders (100) zu erzeugen.
2. Verfahren nach Anspruch 1, wobei das erste feste Produkt (150) ein saures Reinigungsprodukt
ist und das zweite feste Produkt (160) ein alkalisches Reinigungsprodukt ist, wobei
während Schritt 1 (d) eine Anwendungslösung mit einem neutralen pH ausgegeben wird.
3. Verfahren nach Anspruch 1, wobei das erste feste Produkt (150) ein alkalisches Reinigungsprodukt
und das zweite feste Produkt (160) ein saures Reinigungsprodukt ist, wobei während
Schritt 1 (d) eine Anwendungslösung mit einem neutralen pH ausgegeben wird.
4. Verfahren nach Anspruch 1, wobei Schritt c) zwischen Schritt a) und b) durchgeführt
wird.
5. Verfahren nach Anspruch 1, wobei die erste Anwendungslösung einen sauren pH, die zweite
Anwendungslösung einen neutralen pH und die dritte Anwendungslösung einen alkalischen
pH aufweist.
6. Verfahren nach Anspruch 1, wobei die erste Anwendungslösung einen alkalischen pH,
die zweite Anwendungslösung einen neutralen pH und die dritte Anwendungslösung einen
sauren pH aufweist.
7. Verfahren nach Anspruch 1, wobei die Produkte mit dem Verdünnungsmittel besprüht werden.
8. Verfahren nach Anspruch 1, wobei die saure Anwendungslösung einen pH von 3,00 bis
6,00, die neutrale Anwendungslösung einen pH von 6,00 bis 8,00 und die alkalische
Anwendungslösung einen pH von 8,00 bis 11,00 aufweist.
1. Procédé de distribution d'un premier produit solide (150) et d'un second produit solide
(160) avec un distributeur de produit solide (100), le premier produit solide (150)
et le second produit solide (160) étant positionnés dans un logement pour produit
(103) du distributeur de produit solide (100), le premier produit solide (150) et
le second produit solide (160) étant des produits différents, comprenant les étapes
consistant à :
a) placer le premier produit solide (150) dans le logement pour produit (103) du distributeur
de produit solide (100) ;
b) placer le second produit solide (160) dans le logement pour produit (103) du distributeur
de produit solide (100) au-dessus du premier produit solide ;
c) distribuer une partie du premier produit solide (150) avec un diluant pour dissoudre
une partie du premier produit solide afin de créer une première solution d'utilisation
pendant chaque cycle du distributeur de produit solide (100) jusqu'à épuisement partiel
du premier produit solide à une quantité suffisamment réduite pour permettre au second
produit solide (160) d'être également distribué ; et
d) distribuer une partie du premier produit solide (150) et une partie du second produit
solide (160) avec le diluant pour dissoudre une partie du premier produit solide et
une partie du second produit solide afin de créer une deuxième solution d'utilisation
pendant chaque cycle du distributeur de produit solide (100) jusqu'à épuisement complet
du premier produit solide (150) ;
e) distribuer une partie du second produit solide (160) avec un diluant pour dissoudre
une partie du second produit solide afin de créer une troisième solution d'utilisation
pendant chaque cycle du distributeur de produit solide (100).
2. Procédé selon la revendication 1, dans lequel le premier produit solide (150) est
un produit de nettoyage acide et le second produit solide (160) est un produit de
nettoyage alcalin, dans lequel une solution d'utilisation ayant un pH neutre est distribuée
pendant l'étape 1 (d).
3. Procédé selon la revendication 1, dans lequel le premier produit solide (150) est
un produit de nettoyage alcalin et le second produit solide (160) est un produit de
nettoyage acide, dans lequel une solution d'utilisation ayant un pH neutre est distribuée
pendant l'étape 1 (d).
4. Procédé selon la revendication 1, dans lequel l'étape c) est réalisée entre les étapes
a) et b).
5. Procédé selon la revendication 1, dans lequel la première solution d'utilisation a
un pH acide, la deuxième solution d'utilisation a un pH neutre, et la troisième solution
d'utilisation a un pH alcalin.
6. Procédé selon la revendication 1, dans lequel la première solution d'utilisation a
un pH alcalin, la deuxième solution d'utilisation a un pH neutre, et la troisième
solution d'utilisation a un pH acide.
7. Procédé selon la revendication 1, dans lequel les produits sont pulvérisés avec le
diluant.
8. Procédé selon la revendication 1, dans lequel la solution d'utilisation acide a un
pH allant de 3,00 à 6,00, la solution d'utilisation neutre a un pH allant de 6,00
à 8,00, et la solution d'utilisation alcaline a un pH allant de 8,00 à 11,00.