摘要:
A liquid ejection apparatus (100) comprising a fluid line (101) configured to extend into a tank (40) and to receive a liquid (L), a rotary head (106) being arranged on the pipe and fitted with a rotary hub (108) that comprises a liquid ejection nozzle (112) for ejecting the liquid, the rotary head being rotatable in a first direction (R1)and the rotary hub being rotatable in a second direction (R2), such that the liquid ejected by the nozzle (112) is ejected in a pattern on an interior surface (41) of the tank. The liquid ejection nozzle (112) comprises a first liquid outlet (5) capable of ejecting the liquid in a first direction (D1) towards the interior surface of the tank(41), and a second liquid outlet (10) capable of ejecting the liquid in a second direction (D2) towards the interior surface (41) of the tank (40).
摘要:
A micro-reactor system for contacting fluids is described. The system comprises a substrate and at least a first microfluidic channel structure for distributing a first fluid into a plurality of first sub-flows distributed to a first set of output nozzles for outputting the first fluid and a second microfluidic channel structure for distributing a second fluid into a plurality of second sub-flows distributed to a second set of output nozzles for outputting the second fluid. The first microfluidic channel structure and the second microfluidic channel structure are substantially positioned in different planes of the substrate and the first set of output nozzles are aligned with the second set of output nozzles and are arranged for contacting the first fluid and the second fluid.
摘要:
The invention relates to a system for dispensing a foam of a fluid product (P) comprising a head (3) wherein a mixing chamber (4) of said product with air (A) is formed, said head having: a passage for product (23) and a passage for air (25); a unit for foaming (5); a supply valve (30) of the mixing chamber (4) which comprises a product valve (31) and an air valve (32); a passage for return air (33) which is provided with an air return valve (34); the supply valve comprising a membrane (30) whereon the product (31) and air (32) valves are formed, said membrane being arranged in order to be reversibly mobile starting at a pressure that the source of product (24) or that the source of air (26) exerts on it, between a stable position wherein the passages of the product (23) and of the air (25) are closed by the intermediary of the corresponding valve (31, 32) and a stressed position wherein the passages for product (23) and for air (25) are open in order to supply the mixing chamber (4).
摘要:
A plant and associated method for producing a water and hydrocarbon emulsion wherein a water supply circuit (2) and a hydrocarbon supply circuit (3) distribute water and hydrocarbon in a mixing circuit (4); the mixing circuit (4) comprises at least two tanks (16a, 16b) separated from each other and a pipe (13) connecting the tanks (16a, 16b) in order to transfer the water and hydrocarbon mixture from one tank to the other a series of times until obtaining an emulsion.
摘要:
A method of processing an adipose tissue to collect adipose derived regenerative cells is provided, wherein the method comprises providing a vessel comprising a fluid jet mixer; introducing the adipose tissue into the vessel; introducing a buffer solution into the vessel; washing the adipose tissue using the fluid jet mixer; introducing an enzyme solution into the vessel; initiating jet mixing into the vessel comprising the adipose tissue, the enzyme solution, and the buffer solution using the fluid jet mixer to digest the adipose tissue to form a digestion product; phase-separating the digestion product into a digested buoyant fat layer and a non-buoyant aqueous layer; and collecting the non-buoyant aqueous layer comprising the adipose derived regenerative cells. A system of processing an adipose tissue to collect adipose derived regenerative cells is also provided.
摘要:
The invention relates to a method and a device for mixing a liquid in a substantially sealed container or a mixture of a liquid and a fine-particle solid, said liquid or mixture only partially filling the internal volume of the container that can be occupied by a fluidic phase and the remaining available internal volume of the container being filled by a gaseous phase. According to the invention, the essentially same liquid or mixture is fed to the container in the form of a propelled stream of a suction device that is situated in the liquid or mixture in the container. In its simplest form, the method according to the invention is implemented by means of an ejector (i.e. according to water jet pump principles) embodied as the suction device. The propelled stream is pumped through a propelling nozzle, which is fitted into the ejector in such a way that gas is sucked from the gaseous phase during the passage of the stream through the nozzle, e.g. by means of a riser tube that projects into the gaseous phase of the container, and is released in the form of dispersed gas bubbles, together with the propelled stream, into the liquid content of the storage container.
摘要:
The invention relates to a method for biologically purifying waste water, wherein waste water and gas are introduced into a reaction vessel (1), containing micro-organisms, by means of a two-fluid nozzle (2) exclusively comprising two smooth pipes which are arranged in a concentric manner in relation to each other, said two-fluid nozzle being devoid of additional introduction elements and penetrating inside the reaction vessel (1), by means of a vertical axis, until it reaches the waste water. The internal pipe, which guides the gas, of the two-fluid nozzle (2), is surrounded by an external pipe which guides the waste water delivered by a pump (12), and a free annular gap is defined by the two pipes. The gas is introduced into the internal pipe by means of a blower (13) and the end of the internal pipe is arranged inside the external pipe and at a certain distance on the outlet opening (3) of the external pipe, said distance being greater than, by at least a factor of 5', the internal diameter of the external pipe in the region of the outlet opening (3). The outlet opening (3) of the external pipe and the two-fluid nozzle (2) are arranged at a distance from the base (4) of the reaction vessel (1) containing no additional components other than the two-fluid nozzle (2), said distance being greater than half of the height of the used water which is disposed in the reaction vessel (1).