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-DEEPANSHU KUMAR YADAV
VTH SEMESTER [CBZ]
1. Malic Acid
2. Tartaric Acid
3. Citric Acid
PREPARATION AND CHEMICAL REACTION OF
HYDROXY ACID
Malic acid can be prepared by the
following methods:
1. By the partial reduction of tartaric acid
2. From bromosuccinic acid
3. From maleic acid
2. By the partial reduction of tartaric acid: Malic
acid can be prepared by the reduction of tartaric acid
with HI.
Red P
200℃
3. From bromosuccinic acid: When bromosuccinic
acid is treated with moist silver oxide, malic acid is
obtained.
H2SO4
Pressure
3. From Maleic Acid
Chemical Reaction of Malic Acid
1. Action of heat
2. Oxidation with KMnO4
3. Reduction
Action of heat: Malic acid undergoes dehydration
on heating to form maleic anhydride.
HCL
Oxidation with KMnO4
On oxidation with KMnO4 malic acid forms
oxalacetic acid, which exits in keto-enol tautomerism.
Reduction
Malic acid reduces with HI to form succinic acid.
TARTARIC ACID
Preparation of tartaric acid
1. From glyoxal
2. From Kiliani-Fisher synthesis: Kiliani
3. From α, α'-dibromosuccnic acid
From Glyoxal
On treatment with hydrogen cyanide,
glyoxal produces glyoxal cynohydrin which
on hydrolysis gives tartaric acid.
From Kiliani-Fisher synthesis: Kiliani- Fisher synthesis is
one of the methods to increase no of carbons in compounds.
Tartaric acid can also be formed from glyceraldehydes.
From α, α'-dibromosuccnic acid
Both (±) and meso tartaric acids are prepared by boiling α, α'-
dibromosuccnic acid with moist silver oxide.
Chemical Reaction of Tartaric Acid
1. Oxidation
2. Reduction
3. Action of heat
Oxidation
With mild oxidizing agents tartaric acid yields tartonic acid
while with strong oxidizing agents, tartaric acid forms oxalic
acid.
Ag2O
4Ag CO2
Reduction
Tartaric acid with HI is reduced into malic acid
2
Action of heat: When tartaric acid is heated at
150ºC, it decomposes into tartaric anhydride.
On strong heating, it decomposes into pyruvic acid with
the evolution of CO2.
KHSO4
CITRIC ACID
From Glycerol
By Grimaux and Adam synthesis (1880)
1,2,3-hydroxy
propane
1,3-dichloro-
2-propenol
1,3-dichloro-
2-propanone
1,3- dichloro-2-cyno-
2-hydroxypropane
α-chloromethyl-α-hydroxypropionic
acid
β-cyno-α-cynomethyl-α-
hydroxypropionic acid
2-hydroxy-1,2,3-
tricarboxylic acid
HNO3
FROM CANE SUGAR
C12H22O11 + 3O2 2C6H8O7 + 3H2O
C6H12O6+3[O] C6H8O7 + 2H2O
Aspergillus niger
40℃
Cane Sugar
Citric acid
Chemical Reactions of Citric acid
1. Action of heat
2. Reduction
1. Action of heat: On heating at 150 ºC, citric acid
undergoes dehydration as:
On heating with fuming sulphuric acid at 150 ºC, citric acid gives
acetone dicarboxylic acid.
3. Reduction
In presence of hydrogen iodide citric acid reduced to
tricarballylic acid.
Reflux
With copper and sodium carbonate it forms
Benedict Solution
6Na+
Sodium Cupricitrate
HYDROXY ACIDS:- MALIC, TARTARIC AND CITRIC  ACIDS

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HYDROXY ACIDS:- MALIC, TARTARIC AND CITRIC ACIDS

  • 1. -DEEPANSHU KUMAR YADAV VTH SEMESTER [CBZ]
  • 2. 1. Malic Acid 2. Tartaric Acid 3. Citric Acid PREPARATION AND CHEMICAL REACTION OF HYDROXY ACID
  • 3. Malic acid can be prepared by the following methods: 1. By the partial reduction of tartaric acid 2. From bromosuccinic acid 3. From maleic acid
  • 4. 2. By the partial reduction of tartaric acid: Malic acid can be prepared by the reduction of tartaric acid with HI. Red P 200℃
  • 5. 3. From bromosuccinic acid: When bromosuccinic acid is treated with moist silver oxide, malic acid is obtained.
  • 7. Chemical Reaction of Malic Acid 1. Action of heat 2. Oxidation with KMnO4 3. Reduction
  • 8. Action of heat: Malic acid undergoes dehydration on heating to form maleic anhydride. HCL
  • 9. Oxidation with KMnO4 On oxidation with KMnO4 malic acid forms oxalacetic acid, which exits in keto-enol tautomerism.
  • 10. Reduction Malic acid reduces with HI to form succinic acid.
  • 12. Preparation of tartaric acid 1. From glyoxal 2. From Kiliani-Fisher synthesis: Kiliani 3. From α, α'-dibromosuccnic acid
  • 13. From Glyoxal On treatment with hydrogen cyanide, glyoxal produces glyoxal cynohydrin which on hydrolysis gives tartaric acid.
  • 14. From Kiliani-Fisher synthesis: Kiliani- Fisher synthesis is one of the methods to increase no of carbons in compounds. Tartaric acid can also be formed from glyceraldehydes.
  • 15. From α, α'-dibromosuccnic acid Both (±) and meso tartaric acids are prepared by boiling α, α'- dibromosuccnic acid with moist silver oxide.
  • 16. Chemical Reaction of Tartaric Acid 1. Oxidation 2. Reduction 3. Action of heat
  • 17. Oxidation With mild oxidizing agents tartaric acid yields tartonic acid while with strong oxidizing agents, tartaric acid forms oxalic acid. Ag2O 4Ag CO2
  • 18. Reduction Tartaric acid with HI is reduced into malic acid 2
  • 19. Action of heat: When tartaric acid is heated at 150ºC, it decomposes into tartaric anhydride. On strong heating, it decomposes into pyruvic acid with the evolution of CO2. KHSO4
  • 21. From Glycerol By Grimaux and Adam synthesis (1880) 1,2,3-hydroxy propane 1,3-dichloro- 2-propenol 1,3-dichloro- 2-propanone 1,3- dichloro-2-cyno- 2-hydroxypropane α-chloromethyl-α-hydroxypropionic acid β-cyno-α-cynomethyl-α- hydroxypropionic acid 2-hydroxy-1,2,3- tricarboxylic acid HNO3
  • 22. FROM CANE SUGAR C12H22O11 + 3O2 2C6H8O7 + 3H2O C6H12O6+3[O] C6H8O7 + 2H2O Aspergillus niger 40℃ Cane Sugar Citric acid
  • 23. Chemical Reactions of Citric acid 1. Action of heat 2. Reduction
  • 24. 1. Action of heat: On heating at 150 ºC, citric acid undergoes dehydration as: On heating with fuming sulphuric acid at 150 ºC, citric acid gives acetone dicarboxylic acid.
  • 25. 3. Reduction In presence of hydrogen iodide citric acid reduced to tricarballylic acid. Reflux
  • 26. With copper and sodium carbonate it forms Benedict Solution 6Na+ Sodium Cupricitrate