Device and method for preparation of liquid marbles
A device for preparation of liquid marbles that has a belt conveyor for carrying a layer of solid particles, the belt conveyor being provided, successively in the direction of movement of the belt with at least one solids dispenser with a reservoir for solid particles, at least one liquid dispenser with a reservoir for liquid, and a separator for separating the prepared liquid marbles from solid particles, is disclosed.
1 . A device for preparation of liquid marbles, characterized in that it comprises a belt conveyor ( 1 ) for carrying a layer of solid particles, said belt conveyor ( 1 ) being provided, successively in the direction of movement of the belt, with at least one solids dispenser ( 2 ) with a reservoir for solid particles, at least one liquid dispenser ( 5 ) with a reservoir ( 7 ) for liquid, and a separator for separating the prepared liquid marbles from solid particles; wherein the liquid dispenser comprises a pump; and wherein the pump is selected from a syringe pump, a pump with a syringe, a piston in a heated block, a pneumatic pump, a linear pump, a peristaltic pump, a centrifugal pump, a gear pump, a spindle pump, a single-channel or multiple-channel dispense solenoid valve, a diaphragm pump, a vane pump, a pneumatic pump, a hydrostatic pump, a screw pump, and a dosing valve.
2 . The device according to claim 1 , which further comprises means ( 4 ) for adjusting the height of the layer of solid particles, said means being located downstream of the solids dispenser ( 2 ).
3 . The device according to claim 2 , wherein the means for adjusting the height of the layer of solid particles is height-adjustable for setting heights of the layer of solid particles within the range of 1 to 20 mm.
4 . The device according to claim 1 , wherein the solids dispenser ( 2 ) is equipped with a mechanical agitator, a rotating disk with blades, or a vibrating wall, for preventing formation of an arching inside the solids dispenser.
5 . The device according to claim 1 , wherein the outlet of the liquid dispenser ( 5 ) is a hollow capillary with an inner diameter of 0.05 to 2.5 mm, or a set thereof, or a needle with an inner diameter of 0.1 mm to 0.9 mm with a straight or bevelled tip, or a set thereof.
6 . The device according to claim 1 , wherein the liquid dispenser ( 5 ) is further provided with a system for accurate and rapid droplet formation which vibrates regularly in contact with the dispenser.
7 . The device according to claim 6 , wherein the system for accurate and rapid droplet formation is selected from a diaphragm compressed by a regularly moving piston, a piezoelectric transducer acting on a liquid, a diaphragm compressed by a solenoid with a spring, a device producing an air flow along the dispenser needle, a device causing mechanical vibration of the needle in its longitudinal or transverse direction.
8 . The device according to claim 1 , wherein the liquid dispenser ( 5 ) is further provided with a system for regulating the temperature of the liquid to be dispensed.
9 . The device according to claim 1 , wherein the belt conveyor ( 1 ) is provided with a plurality of solids dispensers and/or with a plurality of liquid dispensers.
10 . The device according to claim 1 , wherein surface of the belt conveyor ( 1 ) belt is made of a material selected from teflonglass fabrics, teflon (polytetrafluoroethylene), silicone, metal, polyvinyl chloride, polyurethane, polyethylene, thermoplastic elastomeric copolymer of polybutylene terephthalate and glycols, rubber, and combination thereof.
11 . The device according to claim 1 , wherein the belt conveyor ( 1 ) is provided with a rake downstream of the liquid dispenser ( 5 ), said rake being configured for rolling or rotating of the droplets and completing their coating by solid particles.
12 . The device according to claim 1 , wherein the belt conveyor ( 1 ) is provided with a system for mechanical vibration of the belt located downstream of the liquid dispenser ( 5 ).
13 . The device according to claim 1 , wherein the separator is provided with a sloping stop ( 9 ) for carrying solid particles and for completing the coating of liquid marbles.
14 . The device according to claim 1 , wherein the separator comprises a vibrating screen ( 8 ) or a set of vibrating screens.
15 . The device according to claim 14 , wherein the vibrating screen(s) is/are removable.
16 . The device according to claim 1 , wherein the liquid dispenser ( 5 ) is height-adjustable.
17 . A method of producing liquid marbles comprising the step of a device comprising:
a belt conveyor ( 1 ) for carrying a layer of solid particles, said belt conveyor ( 1 ) being provided, successively in the direction of movement of the belt, with at least one solids dispenser ( 2 ) with a reservoir for solid particles, at least one liquid dispenser ( 5 ) with a reservoir ( 7 ) for liquid, and a separator for separating the prepared liquid marbles from solid particles.
18 . A method of producing liquid marbles, said method comprising the steps of:
providing a device comprising:
a belt conveyor ( 1 ) for carrying a layer of solid particles, said belt conveyor ( 1 ) being provided, successively in the direction of movement of the belt, with at least one solids dispenser ( 2 ) with a reservoir for solid particles, at least one liquid dispenser ( 5 ) with a reservoir ( 7 ) for liquid, and a separator for separating the prepared liquid marbles from solid particles,
continuously applying a layer of solid particles to a moving belt conveyor ( 1 ) by means of at least one solids dispenser ( 2 ),
applying droplets of liquid to this layer by at least one liquid dispenser ( 5 ) to at least partially coat the liquid droplets with the said solid particles,
transferring the said at least partially coated liquid droplets into a separator in which their coating by solid particles is completed, if needed, to form liquid marbles,
separating the produced liquid marbles from the excess solid particles on the basis of their different sizes.
19 . The method of producing liquid marbles according to claim 18 , further comprising rolling or rotating the said liquid droplets to be completely coated to form liquid marbles after applying droplets of liquid to this layer by at least one liquid dispenser ( 5 ) to at least partially coat the liquid droplets with the said solid particles.