Magnesium peroxide (Mg(O2))
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Magnesium peroxide (Mg(O2))
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CAS No:
14452-57-4
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Formula:
MgO2
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Chemical Name:
Magnesium peroxide (Mg(O2))
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Synonyms:
Magnesium peroxide (Mg(O2));Magnesium superoxol;Magnesium dioxide;Peromag;Magnesium peroxide;Magnesium perhydrol;Drillox M;1312-95-4;1333-87-5
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CAS No:
Description
MAGNESIUM PEROXIDE is a white powder. Noncombustible but accelerates the burning of combustible material, if the combustible material is finely divided the mixture may be explosive. Mixtures of combustible material and the peroxide can be ignited by friction or contact with moisture. Used in medicine, and as a bleaching agent.
Magnesium peroxide (Mg(O2)) Basic Attributes
56.3
55.974873
238-438-1
1476
DTXSID9049667
White cubic crystals|White powder
Characteristics
46.1
-0.13680
white powder
Approximately 3.0 g/cu cm
100 deg C (decomposes)
150.2ºC
Insoluble in water and gradually decomposed by it with liberation of oxygen
Odorless
Tasteless
A powerful oxidizing material|Dangerous fire risk, reacts with acidic materials and moisture|When strongly heated loses all the peroxide oxygen
Insoluble in water and slowly decomposed by water, liberating oxygen.
Salts, Basic
Strong Oxidizing Agent
Mixtures of combustible material and the peroxide can be ignited with friction or moisture. Water gradually decomposes it liberating oxygen, with dilute acids it forms hydrogen peroxide, when strongly heated it losses all peroxide oxygen [Merck 11th ed. 1989].
Safety Information
UN 1476 5.1/PG 2
3
8-34
17-36-45-36/37/39-27-26
O,C
The warehouse is ventilated, low temperature and dry; lightly loaded and unloaded; stored separately from organic substances, reducing agents, sulfur and phosphorus combustibles
It can be explosive when mixed with reducing agent, sulfur, phosphorus, etc.; it can be explosive when exposed to heat, impact and open flame
P210, P220, P221, P280, P370+P378, P501
H272
SRP: The most favorable course of action is to use an alternative chemical product with less inherent propensity for occupational harm/injury/toxicity or environmental contamination. Recycle any unused portion of the material for its approved use or return it to the manufacturer or supplier. Ultimate disposal of the chemical must consider: the material's impact on air quality; potential migration in soil or water; effects on animal and plant life; and conformance with environmental and public health regulations.
Mixtures of combustible material and the peroxide can be ignited by friction or contact with moisture.
Excerpt from ERG Guide 140 [Oxidizers]: These substances will accelerate burning when involved in a fire. Some may decompose explosively when heated or involved in a fire. May explode from heat or contamination. Some will react explosively with hydrocarbons (fuels). May ignite combustibles (wood, paper, oil, clothing, etc.). Containers may explode when heated. Runoff may create fire or explosion hazard. (ERG, 2016)
|Warning|H272 (100%): May intensify fire; oxidizer [Danger Oxidizing liquids; Oxidizing solids]|P210, P220, P221, P280, P370+P378, and P501|Aggregated GHS information provided by 99 companies from 1 notifications to the ECHA C&L Inventory.|Danger|H271 (49.17%): May cause fire or explosion; strong Oxidizer [Danger Oxidizing liquids; Oxidizing solids]|P210, P220, P221, P260, P264, P280, P283, P301+P330+P331, P303+P361+P353, P304+P340, P305+P351+P338, P306+P360, P310, P321, P363, P370+P378, P371+P380+P375, P405, and P501|Aggregated GHS information provided by 120 companies from 4 notifications to the ECHA C&L Inventory. Each notification may be associated with multiple companies.|H302: Harmful if swallowed [Warning Acute toxicity, oral]|P260, P261, P264, P270, P271, P280, P301+P312, P301+P330+P331, P303+P361+P353, P304+P340, P305+P351+P338, P310, P312, P321, P330, P363, P403+P233, P405, and P501
Excerpt from ERG Guide 140 [Oxidizers]: As an immediate precautionary measure, isolate spill or leak area in all directions for at least 50 meters (150 feet) for liquids and at least 25 meters (75 feet) for solids. LARGE SPILL: Consider initial downwind evacuation for at least 100 meters (330 feet). FIRE: If tank, rail car or tank truck is involved in a fire, ISOLATE for 800 meters (1/2 mile) in all directions; also, consider initial evacuation for 800 meters (1/2 mile) in all directions. (ERG, 2016)
Excerpt from ERG Guide 140 [Oxidizers]: Keep combustibles (wood, paper, oil, etc.) away from spilled material. Do not touch damaged containers or spilled material unless wearing appropriate protective clothing. Stop leak if you can do it without risk. Do not get water inside containers. SMALL DRY SPILL: With clean shovel, place material into clean, dry container and cover loosely; move containers from spill area. SMALL LIQUID SPILL: Use a non-combustible material like vermiculite or sand to soak up the product and place into a container for later disposal. LARGE SPILL: Dike far ahead of liquid spill for later disposal. Following product recovery, flush area with water. (ERG, 2016)
Excerpt from ERG Guide 140 [Oxidizers]: Wear positive pressure self-contained breathing apparatus (SCBA). Wear chemical protective clothing that is specifically recommended by the manufacturer. It may provide little or no thermal protection. Structural firefighters' protective clothing will only provide limited protection. (ERG, 2016)|Personnel protection: ... Wear appropriate chemical protective gloves, boots and goggles.
Flammable by chemical reaction with acidic materials and moisture ... .
Personnel protection: ... Wear positive pressure self-contained breathing apparatus when fighting fires involving this material.|If material on fire or involved in fire: Flood with water. Cool all affected containers with flooding quantities of water. Apply water from as far a distance as possible.|Evacuation: If fire becomes uncontrollable -- consider evacuation of one-half (1/2) mile radius.
Will decompose violently in or near a fire.
SRP: The scientific literature for the use of contact lenses by industrial workers is inconsistent. The benefits or detrimental effects of wearing contact lenses depend not only upon the substance, but also on factors including the form of the substance, characteristics and duration of the exposure, the uses of other eye protection equipment, and the hygiene of the lenses. However, there may be individual substances whose irritating or corrosive properties are such that the wearing of contact lenses would be harmful to the eye. In those specific cases, contact lenses should not be worn. In any event, the usual eye protection equipment should be worn even when contact lenses are in place.|Personnel protection: Avoid breathing dusts. ... Do not handle broken packages unless wearing appropriate personal protective equipment. Wash away any material which may have contacted the body with copious amounts of water or soap and water. ...|If material not on fire and not involved in fire: Keep sparks, flames, and other sources of ignition away. Keep material out of water sources and sewers.
/GUIDE 140: OXIDIZERS/ Fire or Explosion: These substances will accelerate burning when involved in a fire. Some may decompose explosively when heated or involved in a fire. May explode from heat or contamination. Some will react explosively with hydrocarbons (fuels). May ignite combustibles (wood, paper, oil, clothing, etc.). Containers may explode when heated. Runoff may create fire or explosion hazard.|/GUIDE 140: OXIDIZERS/ Health: Inhalation, ingestion or contact (skin, eyes) with vapors or substance may cause severe injury, burns or death. Fire may produce irritating, corrosive and/or toxic gases. Runoff from fire control or dilution water may cause pollution.|/GUIDE 140: OXIDIZERS/ Public Safety: CALL Emergency Response Telephone Number ... As an immediate precautionary measure, isolate spill or leak area in all directions for at least 50 meters (150 feet) for liquids and at least 25 meters (75 feet) for solids. Keep unauthorized personnel away. Stay upwind. Keep out of low areas. Ventilate closed spaces before entering.|/GUIDE 140: OXIDIZERS/ Protective Clothing: Wear positive pressure self-contained breathing apparatus (SCBA). Wear chemical protective clothing that is specifically recommended by the manufacturer. It may provide little or no thermal protection. Structural firefighters' protective clothing will only provide limited protection.|For more DOT Emergency Guidelines (Complete) data for Magnesium peroxide (8 total), please visit the HSDB record page.
... severe irritant to the eyes, skin, and mucous membranes.
Toxicity
/OTHER TOXICITY INFORMATION/ Microporous filters containing MgO2 were shown to be effective in the removal and inactivation of bacteria and viruses from tap water. Pseudomonas aeruginosa, P. cepacia and Escherichia coli collected by the filters were found to rapidly decrease in numbers to undetectable levels within 24 hours. In contrast, the same bacteria collected on identical filters not containing MgO2, either rapidly increased in numbers or their numbers remained unchanged. Poliovirus type 1, Echovirus type 1, Reovirus type 3 and Rotavirus SA-11 were found to readily adsorb to the filters. The numbers of viruses which could be recovered from the MgO2 containing filters decreased rapidly with time as compared to control filters. No significant inactivation of bacteria or viruses occurred in tap water passed through the filters, strongly suggesting that the microorganisms were being inactivated while adsorbed to the filters and not by substances released by the filters into the water. The filters remained effective even after the passage of large volumes of tap water through small diameter filters and in the presence of raw sewage contaminated tap water. Such filters could potentially be useful for disinfection of water supplies for small community and individual water systems.|/OTHER TOXICITY INFORMATION/ Sulfate-reducing bacteria (SRB), which cause microbiologically influenced material corrosion under anoxic conditions, form one of the major groups of microorganisms responsible for the generation of hydrogen sulfide. In this study, which is aimed at reducing the presence of SRB, a novel alternative approach involving the addition of magnesium peroxide (MgO2) compounds involving the use of reagent-grade MgO2 and a commercial product (ORC) was evaluated as a means of inhibiting SRB in laboratory batch columns. Different concentrations of MgO2 were added in the columns when black sulfide sediment had appeared in the columns. The experimental results showed that MgO2 is able to inhibit biogenic sulfide. The number of SRB, the sulfide concentration and the sulfate reducing rate (SRR) were decreased. ORC trade mark as an additive was able to decrease more effectively the concentration of sulfide in water and the SRB-control effect was maintained over a longer time period when ORCtrade mark was used. The level of oxidation-reduction potential (ORP), which has a linear relationship to the sulfide/sulfate ratio, is a good indicator of SRB activity. As determined by fluorescence in-situ hybridization (FISH), most SRB growth was inhibited under increasing amounts of added MgO2. The concentration of sulfide reflected the abundance of the SRB. Utilization of organic matter greater than the theoretical SRB utilization rate indicated that facultative heterotrophs became dominant after MgO2 was added. The results of this study could supply the useful information for further study on evaluating the solution to biocorrosion problems in practical situations.
NIOSH (NOES Survey 1981-1983) has statistically estimated that 1,426 workers (12 of these are female) are potentially exposed to manganese peroxide in the US(1).
Drug Information
Excerpt from ERG Guide 140 [Oxidizers]: Inhalation, ingestion or contact (skin, eyes) with vapors or substance may cause severe injury, burns or death. Fire may produce irritating, corrosive and/or toxic gases. Runoff from fire control or dilution water may cause pollution. (ERG, 2016)
Excerpt from ERG Guide 140 [Oxidizers]: Ensure that medical personnel are aware of the material(s) involved and take precautions to protect themselves. Move victim to fresh air. Call 911 or emergency medical service. Give artificial respiration if victim is not breathing. Administer oxygen if breathing is difficult. Remove and isolate contaminated clothing and shoes. Contaminated clothing may be a fire risk when dry. In case of contact with substance, immediately flush skin or eyes with running water for at least 20 minutes. Keep victim calm and warm. (ERG, 2016)
Immediate first aid: Ensure that adequate decontamination has been carried out. If patient is not breathing, start artificial respiration, preferably with a demand-valve resuscitator, bag-valve-mask device, or pocket mask, as trained. Perform CPR as necessary. Immediately flush contaminated eyes with gently flowing water. Do not induce vomiting. If vomiting occurs, lean patient forward or place on left side (head-down position, if possible) to maintain an open airway and prevent aspiration. Keep patient quiet and maintain normal body temperature. Obtain medical attention. /Magnesium and Related Compounds/|Basic treatment: Establish a patent airway (oropharyngeal or nasopharyngeal airway, if needed). Suction if necessary. Watch for signs of respiratory insufficiency and assist ventilations if necessary. Administer oxygen by nonrebreather mask at 10 to 15 L/min. Monitor for pulmonary edema and treat if necessary ... . Monitor for shock and treat if necessary ... . For eye contamination, flush eyes immediately with water. Irrigate each eye continuously with 0.9% saline (NS) during transport ... . Do not use emetics. For ingestion, rinse mouth and administer 5 ml/kg up to 200 ml of water for dilution if the patient can swallow, has a strong gag reflex, and does not drool ... . /Magnesium and Related Compounds/|Advanced treatment: Consider orotracheal or nasotracheal intubation for airway control in the patient who is unconscious, has severe pulmonary edema, or is in severe respiratory distress. Positive-pressure ventilation techniques with a bag valve mask device may be beneficial. Consider drug therapy for pulmonary edema ... . Monitor cardiac rhythm and treat arrhythmias if necessary ... . Start IV administration of D5W /SRP: "To keep open", minimal flow rate/. Use 0.9% saline (NS) or lactated Ringer's (LR) if signs of hypovolemia are present. For hypotension with signs of hypovolemia, administer fluid cautiously. Consider vasopressors if patient is hypotensive with a normal fluid volume. Watch for signs of fluid overload ... . Use proparacaine hydrochloride to assist eye irrigation ... . /Magnesium and Related Compounds/
magnesium peroxide
Magnesium peroxide (Mg(O2)) Use and Manufacturing
Commercial magnesium peroxide is made by mixing a light grade of magnesium oxide with hydrogen peroxide and drying the slurry. The product is a white powder containing about 25% MgO2 and 7% active oxygen. The remaining constituents are magnesium oxide, magnesium hydroxide, and magnesium carbonate.|Industrial production of magnesium peroxide ... involves the reaction of magnesium oxide and hydrogen peroxide. A product containing not more than 50% MgO2 is obtained. Another process using magnesium hydroxide yields a product containing up to 60% magnesium peroxide.
Magnesium oxide, a seemingly ordinary inorganic compound with great potential, although it may show potential danger under certain conditions, its widespread use in many industries and applications cannot be ignored. In the medical field, magnesium oxide, with its unique chemical properties, plays a vital role. Praised as a highly effective bleach and oxidizer, it is often used in the manufacture of topical ointments, disinfectants and wound care products, and its antibacterial and cleaning properties help speed wound healing and protect the body from infection. In the textile, paper and pulp industries, the versatility of magnesium oxide has been fully reflected. Due to its ability to release oxygen on contact with water, it is used as an ideal bleaching and whitening agent, especially when dealing with natural fibers and cellulosic materials, which can significantly improve the whiteness and purity of the product, thereby increasing the market value of the product. In the broad arena of the chemical industry, magnesium oxide stands out for its unique chemical reactivity. As an oxidizer for many organic and inorganic syntheses, it is able to participate in and facilitate a range of complex chemical transformations, is an important precursor for the manufacture of various compounds and new materials, and plays an integral role in driving the development of the chemical industry. In addition, the application of magnesium oxide in the field of water treatment has also attracted increasing attention. Adding magnesium oxide to the water body can release oxygen, which is of great benefit to the aeration and oxygenation process of the water body, especially in aquaculture and wastewater treatment, which helps to maintain the ecological balance of the water body and improve the efficiency and effect of water treatment. However, it is worth noting that magnesium oxide needs to be handled and stored with extreme care. Due to its potential explosive and accelerated combustion characteristics, safety operating procedures must be strictly observed and appropriate sealing measures must be taken to ensure safety during use and transportation. Magnesium oxide is a versatile inorganic compound whose oxidation ability, combined with a wide range of applications, has shown great value in many fields, including medical, industrial and environmental protection. Whether as a useful aid in healthcare or as a key ingredient in various industrial processes, magnesium oxide has proven its importance in the modern world with its unique properties and wide range of uses.
Magnesium peroxide (Mg(O2)): ACTIVE
Computed Properties
Molecular Weight:56.304
Hydrogen Bond Acceptor Count:2
Exact Mass:55.9748709
Monoisotopic Mass:55.9748709
Topological Polar Surface Area:46.1
Heavy Atom Count:3
Complexity:2.8
Covalently-Bonded Unit Count:2
Compound Is Canonicalized:Yes
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