Chemical dispensers for prolonged water treatment
Chemical dispensers are provided that include a hollow body member including a bottom end configured to be disposed below a waterline and a top end configured to be disposed above the waterline. The hollow body member defines an interior space disposed between the bottom end and the top end that is configured to accept, through the top end, and hold therein a dissolvable chemical. The dispenser includes a buoyancy member surrounding the hollow body member and configured to provide buoyancy to the dispenser when placed in a body of water such that a first portion of the interior space remains above the waterline and a second portion of the interior space submerges below the waterline. An opening in the hollow body member allows sufficient water flow into the interior space below the waterline such that dissolution or partial dissolution of the dissolvable chemical below the waterline occurs.
1 . A chemical dispenser comprising:
a hollow body member including a bottom end configured to be disposed below a waterline and a top end configured to be disposed above the waterline, the hollow body member defining an interior space disposed between the bottom end and the top end, the interior space configured to accept, through the top end, and hold therein a dissolvable chemical; and
a buoyancy member surrounding the hollow body member and configured to provide buoyancy to the chemical dispenser when the chemical dispenser is placed in a body of water such that a first portion of the interior space remains above the waterline, a second portion of the interior space submerges below the waterline, and a third portion of the interior space submerges below the waterline, wherein the hollow body member is configured such that when the interior space is filled with the dissolvable chemical, prior to dissolution, at least some of the dissolvable chemical is above the waterline in the first portion of the interior space, where an opening in the hollow body member allows sufficient water flow into the interior space below the waterline such that dissolution or partial dissolution of the dissolvable chemical below the waterline occurs,
wherein the hollow body member is configured to, when the chemical dispenser is in the body of water, provide a reduced water flow to the third portion of the interior space relative to the second portion of the interior space.
2 . The chemical dispenser of claim 1 , wherein the bottom end comprises an interior surface defining a bottom of the interior space, the interior surface comprising one or more protrusions extending therefrom on which the dissolvable chemical is supported, wherein the one or more protrusions are configured such that water can flow underneath portions of the dissolvable chemical that is in contact with the one or more protrusions when the dissolvable chemical is in the interior space.
3 . The chemical dispenser of claim 1 , wherein the hollow body member has a central axis, the buoyancy member surrounds the top end of the hollow body member around the central axis, and the bottom end of the hollow body member extends below the buoyancy member along the central axis and remains submerged when the chemical dispenser is placed in the body of water.
4 . The chemical dispenser of claim 3 , wherein at least 30% of the second portion is open space defined by the opening.
5 . The chemical dispenser of claim 1 , wherein the interior space is configured to receive a stack of two or more tablets of the dissolvable chemical.
6 . The chemical dispenser of claim 1 , wherein the hollow body member and/or the buoyancy member comprise a thermoplastic elastomer.
7 . The chemical dispenser of claim 1 , wherein the dissolvable chemical includes a water treating material releasing chemical.
8 . The chemical dispenser of claim 1 , further comprising an opening in the top end of the hollow body member configured to allow access to the interior space and a cap adapted to cover the opening in the top end and form a watertight connection, wherein the cap is removable from the top end of the hollow body member to provide the access to the interior space.
9 . The chemical dispenser of claim 1 , further comprising a catch cup portion adjacent the bottom end of the hollow body member that does not include the opening, the catch cup portion configured to retain undissolved solids within the hollow body member.
10 . A chemical dispenser comprising:
a tubular container including a sidewall, a bottom end configured to be disposed below a waterline, and an open top end configured to be disposed above the waterline;
an interior space defined by the tubular container between the bottom end and top end, the interior space configured to accept through the open top end a dissolvable chemical, wherein the tubular container is configured such that when the interior space is filled with the dissolvable chemical, prior to dissolution, at least some of the dissolvable chemical is above the waterline in the first portion of the interior space,
an annular buoyancy member surrounding the tubular container to provide buoyancy to the chemical dispenser such that when placed on a body of water a first portion of the interior space proximal to the open top remains above the waterline, a second portion of the interior space proximal to the first portion remains below the water line, and a third portion of the interior space proximal to the bottom end remains below the waterline; and
apertures defined in the sidewall surrounding the second portion of the interior space and configured to allow water flow into the interior space below the waterline, and to allow dissolution or partial dissolution of the dissolvable chemical below the waterline,
wherein the apertures are not defined in the sidewall surrounding the third portion of the interior space, and
wherein the hollow body member is configured to, when the chemical dispenser is in the body of water, provide a reduced water flow to the third portion of the interior space relative to the second portion of the interior space such that any of the dissolvable chemical disposed in the third portion dissolves at a reduced rate relative to any of the dissolvable chemical disposed in the second portion.
11 . The chemical dispenser of claim 10 , wherein the bottom end comprises an interior surface defining a bottom of the interior space, the interior surface comprises one or more protrusions extending therefrom, wherein the one or more protrusions are configured such that water flows underneath and dissolves portions of the dissolvable chemical in contact with the one or more protrusions.
12 . The chemical dispenser of claim 11 , wherein the tubular container has a central axis, the annular buoyancy member surrounds the top end of the tubular container around the central axis, and the bottom end of the tubular container extends below the annular buoyancy member along the central axis and remains submerged when the chemical dispenser is placed in the body of water.
13 . The chemical dispenser of claim 12 , wherein at least 30% of the sidewall below the annular buoyancy member is open space defined by the apertures.
14 . The chemical dispenser of claim 10 , wherein the interior space is configured to receive a stack of two or more tablets of the dissolvable chemical.
15 . The chemical dispenser of claim 10 , wherein when the chemical dispenser is placed in water with the dissolvable chemical, a total weight of the dissolvable chemical completely dissolves after at least six days.
16 . The chemical dispenser of claim 10 , wherein the dissolvable chemical includes a water treating material releasing chemical.
17 . The chemical dispenser of claim 10 , further comprising a cap adapted to cover the open top of the tubular container and form a watertight connection, wherein the cap is removable from the tubular container to reveal an opening into the interior space.
18 . The chemical dispenser of claim 10 , further comprising a catch cup portion adjacent the bottom end of the tubular container that does not include the apertures, the catch cup portion configured to retain undissolved solids within the tubular container.