Effluent Polishing Consultant Portable onsite & emergence Filtration equipment for Industry and Municipal Sewage Lagoon release Phosphorus is highly concentrated in plant seeds (grains), animals and animal (and human) excrements. Consequently environments with intensive animal production or high population density receive a surplus of P that commonly causes environmental pollution. Urea, also called carbamide, Biochemistry. a compound, CO(NH 2) 2, is an organic chemical compound, and is essentially the waste produced by the body after metabolizing protein. Naturally, the compound is produced when the liver breaks down protein or amino acids, and ammonia; the kidneys then transfer the urea from the blood to the urine. Extra nitrogen is expelled from the body through urea, and because it is extremely soluble, it is a very efficient process. The average person excretes about 30 grams of urea a day, mostly through urine, but a small amount is also secreted in perspiration. Synthetic versions of the chemical compound can be created in liquid or solid form, and is often an ingredient found in fertilizers, animal feed, and diuretics, just to name a few. Most of the manufactured compound is used in fertilizers; when nitrogen is added to urea, the compound becomes water soluble, making it a highly desired ingredient for lawn fertilizer. The synthetic version is also used commercially and industrially to produce some types of plastics, animal feed, glues, toilet bowl cleaners, dish washing machine detergents, hair coloring products, pesticides, and fungicides. Medicinally, it is used in barbiturates, dermatological products that re-hydrate the skin, and diuretics Organic-P Organic phosphorus can be converted to orthophosphate and polyphosphate, some organics degrade very slowly Orthophosphate Most abundant phosphorus species Reactive species in chemical reactions and consumed in biological growth Polyphosphates Condensed orthophosphates Possibly reacts with metal salts Can be used for biological growth Chemical phosphorus Precipitated phosphates formed by reacting orthophosphate with metal salts, or precipitates as phosphate hydroxides Biological phosphorus Phosphorus incorporated into the biomass for growth Excess phosphorus may accumulate under certain conditions
Published by Alan D. Lietz C.E.T. Environmental Engineering Tech, Seeking new opportunity: Project Manager, Water & Wastewater
Effluent Polishing Consultant
Portable onsite & emergence Filtration equipment for Industry and Municipal Sewage Lagoon release
Phosphorus is highly concentrated in plant seeds (grains), animals and animal (and human) excrements.
Consequently environments with intensive animal production or high population density receive a surplus of P that commonly causes environmental pollution.
Urea, also called carbamide, Biochemistry. a compound, CO(NH 2) 2, is an organic chemical compound, and is essentially the waste produced by the body after metabolizing protein. Naturally, the compound is produced when the liver breaks down protein or amino acids, and ammonia; the kidneys then transfer the urea from the blood to the urine. Extra nitrogen is expelled from the body through urea, and because it is extremely soluble, it is a very efficient process. The average person excretes about 30 grams of urea a day, mostly through urine, but a small amount is also secreted in perspiration. Synthetic versions of the chemical compound can be created in liquid or solid form, and is often an ingredient found in fertilizers, animal feed, and diuretics, just to name a few.
Most of the manufactured compound is used in fertilizers; when nitrogen is added to urea, the compound becomes water soluble, making it a highly desired ingredient for lawn fertilizer. The synthetic version is also used commercially and industrially to produce some types of plastics, animal feed, glues, toilet bowl cleaners, dish washing machine detergents, hair coloring products, pesticides, and fungicides. Medicinally, it is used in barbiturates, dermatological products that re-hydrate the skin, and diuretics
Organic-P Organic phosphorus can be converted to orthophosphate and polyphosphate, some organics degrade very slowly
Orthophosphate Most abundant phosphorus species Reactive species in chemical reactions and consumed in biological growth
Polyphosphates Condensed orthophosphates Possibly reacts with metal salts Can be used for biological growth Chemical phosphorus Precipitated phosphates formed by reacting orthophosphate with metal salts, or precipitates as phosphate hydroxides Biological phosphorus
Phosphorus incorporated into the biomass for growth Excess phosphorus may accumulate under certain conditions
Portable onsite & emergence Filtration equipment for Industry and Municipal Sewage Lagoon release
Phosphorus is highly concentrated in plant seeds (grains), animals and animal (and human) excrements.
Consequently environments with intensive animal production or high population density receive a surplus of P that commonly causes environmental pollution.
Urea, also called carbamide, Biochemistry. a compound, CO(NH 2) 2, is an organic chemical compound, and is essentially the waste produced by the body after metabolizing protein. Naturally, the compound is produced when the liver breaks down protein or amino acids, and ammonia; the kidneys then transfer the urea from the blood to the urine. Extra nitrogen is expelled from the body through urea, and because it is extremely soluble, it is a very efficient process. The average person excretes about 30 grams of urea a day, mostly through urine, but a small amount is also secreted in perspiration. Synthetic versions of the chemical compound can be created in liquid or solid form, and is often an ingredient found in fertilizers, animal feed, and diuretics, just to name a few.
Most of the manufactured compound is used in fertilizers; when nitrogen is added to urea, the compound becomes water soluble, making it a highly desired ingredient for lawn fertilizer. The synthetic version is also used commercially and industrially to produce some types of plastics, animal feed, glues, toilet bowl cleaners, dish washing machine detergents, hair coloring products, pesticides, and fungicides. Medicinally, it is used in barbiturates, dermatological products that re-hydrate the skin, and diuretics
Organic-P Organic phosphorus can be converted to orthophosphate and polyphosphate, some organics degrade very slowly
Orthophosphate Most abundant phosphorus species Reactive species in chemical reactions and consumed in biological growth
Polyphosphates Condensed orthophosphates Possibly reacts with metal salts Can be used for biological growth Chemical phosphorus Precipitated phosphates formed by reacting orthophosphate with metal salts, or precipitates as phosphate hydroxides Biological phosphorus
Phosphorus incorporated into the biomass for growth Excess phosphorus may accumulate under certain conditions