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Showing posts with the label LIMIT TEST INORGANIC CHEMISTRY

Limit Test for Lead (Heavy Metals)

  ๐Ÿงช Limit Test for Lead (Heavy Metals) Subject: Pharmaceutical Inorganic Chemistry Experiment Type: Qualitative Analysis Aim: To carry out the Limit Test for Lead in a given sample using dithizone reagent and to ensure that lead impurities are within the permissible limit as per I.P. standards. ✨ Principle Lead (Pb²⁺) in solution reacts with dithizone (diphenylthiocarbazone) in chloroform. A pink to violet color develops if lead is present. The intensity of color in the sample is compared with that of a standard lead solution. If the test solution shows less or no color compared to the standard, the sample passes the test. Reaction: P b 2 + + D i t h i z o n e ⟶ L e a d - D i t h i z o n a t e   C o m p l e x ( P i n k / V i o l e t ) Pb^{2+} + Dithizone \longrightarrow Lead\text{-}Dithizonate\ Complex (Pink/Violet) P b 2 + + D i t hi zo n e ⟶ L e a d - D i t hi zo na t e   C o m pl e x ( P ink / Vi o l e t ) ⚗️ Materials Required Test sample ...

๐Ÿงช Limit Test of Heavy Metals – Practical Guide

๐Ÿ“Œ Aim: To carry out the limit test for heavy metals present in pharmaceutical substances as an impurity. ๐ŸŽฏ Principle The test is based on the reaction of heavy metals (like lead) with hydrogen sulfide (H₂S) in an acidic medium, producing a brownish-black coloration of metal sulfides . The intensity of this color is compared with a standard lead solution prepared simultaneously. ๐Ÿงฐ Materials Required Nessler cylinders Test sample solution Standard lead solution (Pb²⁺) Dilute acetic acid Hydrogen sulfide (H₂S) water or thioacetamide reagent ๐Ÿงช Procedure Take the sample solution in a Nessler cylinder. Add dilute acetic acid to adjust the pH. Add a few drops of thioacetamide reagent (or pass H₂S gas) . Prepare a standard solution of lead in another Nessler cylinder. Keep both cylinders side by side for comparison. ๐Ÿ”ฌ Reaction Involved P b 2 + + H 2 S    →    P b S ↓    ( b r o w n i s h − b l a c k p r e c i p i t a t e ) Pb^{2+} + H_2S \; \...