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Phosphoric acid, mono(2-hydroxyethyl) mono[2-[(hydroxymethoxyphosphinyl)oxy]ethyl] ester, disodium salt, also known as MDPH or disodium etidronate, is a versatile chemical compound with applications in various industries, including pharmaceuticals, detergents, personal care products, water treatment, and metal plating. It is a white crystalline powder that is easily soluble in water and has a high affinity for calcium ions.

112402-90-1

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112402-90-1 Usage

Uses

Used in Detergent Industry:
Phosphoric acid, mono(2-hydroxyethyl) mono[2-[(hydroxymethoxyphosphinyl)oxy]ethyl] ester, disodium salt is used as a chelating agent and sequestering agent in the formulation of detergents. Its ability to bind to minerals helps prevent the formation of calcium deposits, enhancing the cleaning efficiency and performance of detergents.
Used in Pharmaceutical Industry:
Phosphoric acid, mono(2-hydroxyethyl) mono[2-[(hydroxymethoxyphosphinyl)oxy]ethyl] ester, disodium salt is used for its pharmaceutical properties, such as the ability to bind to minerals in the body and prevent the formation of calcium deposits in the kidneys. This makes it useful in the treatment and prevention of kidney stones and related conditions.
Used in Personal Care Products:
Phosphoric acid, mono(2-hydroxyethyl) mono[2-[(hydroxymethoxyphosphinyl)oxy]ethyl] ester, disodium salt is used in the manufacturing of personal care products due to its ability to bind to minerals and improve the performance of these products.
Used in Water Treatment Industry:
Phosphoric acid, mono(2-hydroxyethyl) mono[2-[(hydroxymethoxyphosphinyl)oxy]ethyl] ester, disodium salt is used in water treatment processes to remove calcium and other minerals, improving water quality and preventing the formation of scale and deposits.
Used in Metal Plating Industry:
Phosphoric acid, mono(2-hydroxyethyl) mono[2-[(hydroxymethoxyphosphinyl)oxy]ethyl] ester, disodium salt is used in metal plating processes to improve the quality and performance of the plated metal surfaces by preventing the formation of calcium deposits and other impurities.

Check Digit Verification of cas no

The CAS Registry Mumber 112402-90-1 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,1,2,4,0 and 2 respectively; the second part has 2 digits, 9 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 112402-90:
(8*1)+(7*1)+(6*2)+(5*4)+(4*0)+(3*2)+(2*9)+(1*0)=71
71 % 10 = 1
So 112402-90-1 is a valid CAS Registry Number.

112402-90-1Downstream Products

112402-90-1Relevant academic research and scientific papers

A REAFFIRMATION OF STEREOELECTRONIC CONTROL IN THE ALKALINE HYDROLYSIS OF METHYL AND ETHYL ETHYLENE PHOSPHATE

Gorenstein, David G.,Chang, Andrew,Yang, Ji-Charng

, p. 469 - 478 (2007/10/02)

A reinvestigation of the product distribution in the hydrolysis of ethyl and methyl ethylene phosphates has confirmed our earlier suggestion (Taira et al., J.Org.Chem., 1984, 4531) that the stereoelectronic effect is an important factor in these reactions.In contrast to the claims of Kluger and Thatcher (J.Am.Chem.Soc., 1985, 107, 6006; J.Org.Chem., 1986, 51, 207), the increase in exocyclic cleavage product, methanol, with increasing strong base is shown to arise from an artifactual side-reaction in the base catalyzed hydrolysis of methyl ethylene phosphate.The initial product of endocyclic cleavage, methyl hydroxyethyl phosphate, reacts with a second molecule of methyl ethylene phosphate to yield a "triester" dimer which subsequently releases methanol to yield a "diester" dimer.Although a small amount of exocyclic cleavage product is observed in strong alkali (2 - 4percent +/- 1.5percent for methyl ethylene phosphate and .5percent +/-1.5percent for ethyl ethylene phosphate) the proportion does not vary with alkali when the hydrolysis reaction is run under dilute conditions to minimize the dimerization reaction.Even these small proportions of exocyclic cleavage are still completely consistent with arguments regarding stereoelectronic control in these reactions.

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