A system for treating whole stillage includes a stillage tank, a separation system in communication with the stillage tank and configured to separate the whole stillage into a wet cake portion and a thin stillage portion, and a primary filtration system in communication with the separation system. The primary filtration system can be configured to separate the thin stillage into a primary concentrate and a primary permeate. A secondary filtration system in communication with the primary filtration system can be configured to further purify the primary permeate. A water reclamation system in communication with the primary and/or secondary filtration system can remove water from the permeate. An additive can be added to the primary permeate to precipitate phosphorus-containing minerals and corn oil can be advantageously extracted from the primary concentrate. Protein-enriched animal feeds can be generated from dehydration of the primary concentrate.
A23K 10/38 - Produits alimentaires pour animaux à base de matières d’origine végétale, p. ex. de racines, de graines ou de foinProduits alimentaires pour animaux à base de matières d’origine fongique, p. ex. de champignons à base de matières résiduelles à base de résidus provenant d’une distillerie ou d’une brasserie
A23K 40/20 - Mise en forme ou traitement des produits alimentaires pour animaux par moulage, p. ex. fabrication de gâteaux ou de briquettes
A23L 29/30 - Aliments ou produits alimentaires contenant des additifsLeur préparation ou leur traitement contenant des sirops d'hydrate de carboneAliments ou produits alimentaires contenant des additifsLeur préparation ou leur traitement contenant des sucresAliments ou produits alimentaires contenant des additifsLeur préparation ou leur traitement contenant des alcools de sucre, p. ex. du xylitolAliments ou produits alimentaires contenant des additifsLeur préparation ou leur traitement contenant des hydrolysats d'amidon, p. ex. de la dextrine
C02F 1/44 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par dialyse, osmose ou osmose inverse
C02F 103/32 - Nature de l'eau, des eaux résiduaires ou des eaux ou boues d'égout à traiter provenant de l'industrie alimentaire, p. ex. eaux résiduaires de brasseries
C11B 1/04 - Traitement préliminaire des matières premières végétales
A method for manufacturing a liquid fertilizer product, including the steps of removing solids from organic waste to obtain a filtrate; converting ammonia present in the filtrate to nitrate using ammonia oxidizing bacteria and nitrite oxidizing bacteria to form a converted stream; and removing water from the converted stream to obtain the liquid fertilizer product, wherein the liquid fertilizer product includes nitrate.
C05F 17/50 - Procédés combinant au moins deux traitements différents biologiques ou biochimiques, p. ex. des traitements anaérobie et aérobie ou lombricompostage et traitement aérobie
C05F 3/00 - Engrais fabriqués à partir des excréments humains ou animaux, y compris le fumier
C05F 7/00 - Engrais fabriqués à partir des eaux résiduaires ou d'épandage, wagage, limon ou masses similaires
Waste processing machines using heat and chemical breakdown processes; Waste water purification units; Water treatment apparatus, namely, clarification and thickening machines for use in treatment of liquids in the nature of water, waste water and industrial water
4.
METHOD FOR MANUFACTURING ORGANIC LIQUID FERTILIZER
Systems and methods for manufacturing an organic liquid fertilizer product are shown. The contemplated systems and methods are configured to treat waste from a natural source in order to produce an organic liquid fertilizer. The liquid organic waste may be derived from an organic source. The liquid organic waste may be pre-treated through an anaerobic digestion process, or it may be treated in a raw form. Advantageously, the systems and methods of the present disclosure may be used to manufacture the organic liquid fertilizer with a sufficiently high nitrogen content, which is usable by plants and crops. The systems and methods are likewise more efficient than known systems and methods to produce such fertilizer products.
Systems and methods for manufacturing an organic liquid fertilizer product are shown. The contemplated systems and methods are configured to treat waste from a natural source in order to produce an organic liquid fertilizer. The liquid organic waste may be derived from an organic source. The liquid organic waste may be pre-treated through an anaerobic digestion process, or it may be treated in a raw form. Advantageously, the systems and methods of the present disclosure may be used to manufacture the organic liquid fertilizer with a sufficiently high nitrogen content, which is usable by plants and crops. The systems and methods are likewise more efficient than known systems and methods to produce such fertilizer products.
Systems and methods for manufacturing an organic liquid fertilizer product are shown. The contemplated systems and methods are configured to treat waste from a natural source in order to produce an organic liquid fertilizer. The liquid organic waste may be derived from an organic source. The liquid organic waste may be pre-treated through an anaerobic digestion process, or it may be treated in a raw form. Advantageously, the systems and methods of the present disclosure may be used to manufacture the organic liquid fertilizer with a sufficiently high nitrogen content, which is usable by plants and crops. The systems and methods are likewise more efficient than known systems and methods to produce such fertilizer products.
Waste water purification apparatus, installations and tanks; Waste water purification units; Water treatment apparatus, namely, clarification and thickening machines for use in treatment of liquids in the nature of water, waste water and industrial water; Thickening and dewatering machines for use in treatment of liquids including water, industrial effluent and sewage
A system and method for treating whole stillage includes a stillage tank, a separation system (26) in communication with the stillage tank and configured to separate the whole stillage into a wet cake portion and a thin stillage portion, and a primary filtration system (28) in communication with the separation system (26). The primary filtration system (28) can be configured to separate the thin stillage into a primary concentrate (52) and a primary permeate (50). A secondary filtration system (32) in communication with the primary filtration system (28) can be configured to further purify the primary permeate (50). A water reclamation system (60) in communication with the primary and/or secondary filtration system (28, 32) can remove water from the permeate (50, 80). An additive can be added to the primary permeate (50) to precipitate phosphorus-containing minerals and corn oil can be advantageously extracted from the primary concentrate (52). Protein-enriched animal feeds can be generated from dehydration of the primary concentrate (52).
A23J 1/00 - Préparation des compositions à base de protéines pour l'alimentationOuverture des œufs par grandes quantités et séparation du jaune du blanc
C07K 1/34 - ExtractionSéparationPurification par filtration, ultrafiltration ou osmose inverse
C07K 1/36 - ExtractionSéparationPurification par une combinaison de plusieurs procédés de types différents
Waste water purification units; Water treatment apparatus, namely, clarification and thickening machines for use in treatment of liquids in the nature of water, waste water and industrial water; Thickening and dewatering machines for use in treatment of liquids including water, industrial effluent and sewage
Waste processing machines using heat and chemical breakdown processes; Waste water purification units; Thickening and dewatering machines for use in treatment of liquids including water, industrial effluent and sewage; Water treatment apparatus, namely, clarification and thickening machines for use in treatment of liquids in the nature of water, waste water and industrial water
12.
METHOD FOR MANUFACTURING ORGANIC LIQUID FERTILIZER
Systems (100, 300) and methods (200, 400) for manufacturing an organic liquid fertilizer product are shown. The contemplated systems (100, 300) and methods (200, 400) are configured to treat waste from a natural source in order to produce the organic liquid fertilizer. The liquid organic waste may be derived from an organic source. The liquid organic waste may be pre-treated through an anaerobic digestion process, or it may be treated in a raw form. Advantageously, the systems (100, 300) and methods (200, 400) of the present disclosure may be used to manufacture the organic liquid fertilizer with a sufficiently high nitrogen content, which is usable by plants and crops. The systems (100, 300) and methods (200, 400) are likewise more efficient than known systems and methods to produce such fertilizer products.