WWU -- Chemistry Experiment 11 ISOLATION OF CAFFEINE FROM TEA Reading Assignment –pp. 119 – 127 –Technique 7, pp. 595 – 613 –Green Lab people: download.

Slides:



Advertisements
Similar presentations
Isolation of Caffeine From “Mountain DewTM” or “Coca-ColaTM” Syrup
Advertisements

Chromatography Dr.Tawfeq A. Al-Howiriny Associate Professor
Preparation of a haloalkane. Haloalkanes can be made by a substitution reaction with an alcohol. Tertiary alcohols are the most reactive, and therefore.
Organic Chemistry Lab 315 Fall, 2014
Week 3 Collection and Analysis of Biodiesel
Preparation of Acetaminophen
Extraction Lab # 6.
Bromobutane. Halogenoalkanes Halogenoalkanes are hydrocarbon chains that have one or more hydrogen atom(s) exchanged for halogen atom(s).
Synthesis of Isopentyl (Amyl) Acetate Ester (Banana Oil)
Methods of Purification
Today: Conclusion of Distillation/GC Introduction to Exp
Experiment 6: Fractional Distillation Reading Assignment –Experiment 6 (pp ) –Operation 29.
Exercise F2 Recrystallization and Vacuum Filtration Organic Chemistry Lab I Fall 2009 Dr. Milkevitch September 21 & 23, 2009.
THE SEPARATORY FUNNEL Theodore will show you how to use a separatory funnel. Scroll down for him to guide you through the extraction technique.
Drink Up Live Long sabotage By: Chong Zhi Lin Derrick Fung Ethan Tan Gan Jia Jie Glen Vintario.
WWU -- Chemistry Experiment 12 ISOLATION OF CAFFEINE FROM TEA OR COFFEE Reading Assignment –pp. 87 – 99 –Technique 12, pp. 669 – 693 –Green Lab: Not available.
Dr. F. Iskanderani Spring 2003/2004 Example C : Component.
WWU -- Chemistry Experiment 56: Synthesis of an Ester from an Alcohol and Carboxylic Acid Structure determination by Infrared Spectroscopy.
Today: Exp.9, “Separation and Identification of an Unknown Mixture” (3 lab periods) “Qualitative analysis” This experiment includes: liquid/liquid.
Synthesize t-Butyl (or t-Pentyl) Chloride
Close your books and take out a piece of paper. Give an example of each of the following. 1)Element that exist as a solid at room temperature (298.15K)
Distillation and Chromatography. Objectives Separate the components of a solution using distillation and chromatography Determine physical or chemical.
Chapter 7: Properties of Solutions. Mixture Review  Mixtures are combos of elements and/or compounds that are physically combined  True mixtures can.
Regents Review THE PHYSICAL BEHAVIOR OF MATTER. 1. The phase change represented by the equation I 2 (s) -> I 2 (g) is called: A) Condensation B) Melting.
Experiment 21: ESTERS: SYNTHESIS AND FRAGRANCE Objectives:  To synthesize an ester from acetic acid with isoamyl alcohol under reflux.  To purify your.
Separatory funnels. Separatory Funnels: To separate liquid-liquid mixtures that have different densities. Typically, one of the phases will be aqueous,
Separation Science All separations go against the 2 nd Law of Thermodynamics: entropy increases during any natural process.
Classifying Matter and Separating Techniques. Matter and Chemicals  Matter is anything with mass and occupies space  118 elements in the PT  Properties.
EXTRACTION - a separation technique. Extraction Transferring a solute from one solvent to another Solvents must be immiscible – usually one is water an.
Experiment 2 DISTILLATION AND GAS CHROMATOGRAPHY OF ALKANES.
Chapter 3 Notes II CHEMICAL & PHYSICAL Properties/Changes.
Lecture 3 Chapter 5: Extraction Lecture Problem 1 Due Thursday
Organic Chemistry Lab 318 Spring, DUE DATES Today –Aldehyde/Ketone Qualitative Analysis Report at beginning of lab –At end of lab -- copy of laboratory.
IGCSE Coordinated Science Y1 Topic: Methods of Separation & Purification Monday, August 27 th Lesson 2.
Gas Chromatography Experiment. Gas Chromatography - Gas Chromatography (GC) is a common technique used to separate and identify volatile organic compounds.
Objectives/Warm-Up  SWBAT describe and choose appropriate separation techniques.  Draw a diagram of: a solid and gas in a closed flask, a solid and gas.
WWU -- Chemistry Chemistry 354 Organic Chemistry Laboratory I.
SEPARATION OF SUBSTANCES
Dehydration of 2-methylcyclohexanol -- an E 1 reaction.
Lecture 4c Extraction.
Lecture 4b. Theory of Epoxidation The epoxidation is carried out in a biphasic system Organic layer: ethyl acetate, Jacobsen catalyst, unknown alkene.
Partition chromatography Partition chromatography is carried out on sheets of filter paper, column or thin layer of powdered cellulose, moist silica gel.
Physical Properties of Matter. You live in a huge universe of matter. Because you cannot live without a sense of order. Our sorting techniques are usually.
NaBH4 Reduction of p-Vanillin
Mixture Separations.
Experiment 6: EXTRACTION of ANALGESICS. Objectives  To learn the techniques of acid-base extraction, drying organic solvents, and vacuum filtration.
Lab Activity 7 IUG, Fall 2012 Dr. Tarek Zaida IUG, Fall 2012 Dr. Tarek Zaida 1.
PURIFCATION OF ORGANIC COMPOUNDS
EQ: What are the different methods of physical separation? SEPARATION OF MATTER NOTES.
Dehydration of 2-methylcyclohexanol -- an E 1 reaction.
1 Classification and purification of Organic Compounds.
1/17/ Thin-Layer Chromatography References: Pavia:Experiment 5A; pp. 36 – 39 Technique 2.0; pp. 801 – 812 Note:The above reference material is not.
Chem. 133 – 5/3 Lecture. Announcements Lab – Term Project Progress Report Due Today – Last Assignments: Term Project Poster and Peer Review Grading (Friday,
Additional Topics. Chromatography Chromatography is a separation technique used to separate components of a mixture, and this separation can be based.
Experiment 5: Chromatography
Identification of Substances by Physical Properties.
Organic Chemistry Lab 315 Fall, 2016.
Experimental Objectives
LU 3: Separation Technique (P2)
Lab Activity 7 Separation of blood serum lipids by thin-layer chromatography IUG, Dr. Tarek Zaida.
Lab Activity 5 Separation of blood serum lipids by thin-layer chromatography IUG, Fall 2017 Dr. Tarek Zaida.
Lab Activity 4 IUG, Fall 2017 Dr. Tarek Zaida.
Preparation of Methyl Benzoate
Preparation of Acetaminophen
Lab does not meet on Tues., Oct. 11. (Monday classes meet).
SEPARATION TECHNIQUES
Drill (pd 3, 4A) 5/12/2015 Predict how to separate each of the following heterogeneous mixtures: Colors from black ink Sand and iron filings.
Answers the question, “How to ‘unmix’?”
Lab Activity 7 Separation of blood serum lipids by thin-layer chromatography IUG, Fall 2017 Dr. Tarek Zaida.
Mixture Separation Techniques
Presentation transcript:

WWU -- Chemistry Experiment 11 ISOLATION OF CAFFEINE FROM TEA Reading Assignment –pp. 119 – 127 –Technique 7, pp. 595 – 613 –Green Lab people: download materials –Technique 16, pp

WWU -- Chemistry Caffeine

WWU -- Chemistry Distribution Coefficient

WWU -- Chemistry See page 597 for an example on how this equation is applied to extraction.

WWU -- Chemistry Bottom line! You will remove more solute (caffeine) from an aqueous solution by using two 1 mL portions of methylene chloride than by using one 2 mL portion of methylene chloride! See the textbook for an example.

WWU -- Chemistry Separatory funnel Remove from top before you start to drain! Remember! Close stopcock before pouring stuff in the top of the funnel!

WWU -- Chemistry Which layer on the top? Which layer is on the bottom? You need to know the density of the methylene chloride and the density of the aqueous phase to answer this question!

WWU -- Chemistry Green extraction of caffeine from tea You will remove caffeine from tea using a Solid Phase Extraction column (SPE). Be sure to download the experiment and some of the technique materials from Charles Wandler’s web page.

WWU -- Chemistry Solid Phase Extraction (SPE) Two Neoprene adapters SPE column filled with C-18 silica Filter flask To house vacuum

WWU -- Chemistry C-18 silica Silica is alkylated with long chain hydrocarbon groups, using 18 carbons long. This is usually referred to as C-18 silica.

WWU -- Chemistry Solid phase extraction (SPE) The C-18 column packing is NON-POLAR Caffeine will move more slowly because it is attracted to the column packing. The more polar components such as tannins, gallic acid and chlorophyll move more quickly down the column with the the polar water Once the aqueous materials have moved down the column, then you elute the caffeine with ethyl acetate.

WWU -- Chemistry Sublimation Behavior

WWU -- Chemistry Sublimation Apparatus To house vacuum

WWU -- Chemistry Three examples: 1.A solid will melt if its vapor pressure is below the applied pressure when the solid is heated to its melting point. 2. A solid will sublime if its vapor pressure is higher than the applied pressure as it is heated. You will not observe melting behavior. 3.If you want to sublime a solid that has a vapor pressure of 50 mm Hg, you can do this if you reduce the pressure, under vacuum, to below this value.

WWU -- Chemistry MIDTERM EXAMINATION Friday, February 10 th 2:00 to 2:50 PM Distillation lab (Exp 6) is due Monday or Tuesday, depending on your section. Dr. Pavia will post answers to the questions in the post lab on his bulletin board after Tuesday so you have them for the test on Friday!

WWU -- Chemistry Coverage EXP. 2SOLUBILITY EXP. 3CRYSTALLIZATION EXP. 5CHROMATOGRAPHY EXP. 6SIMPLE AND FRACTIONAL DISTILLATION AND GAS CHROMATOGRAPHY ALSO READ: PP – TECHNIQUES 1, 2, 3, 4, 5, 6, 8, 10, 12, 14, 15

WWU -- Chemistry BRING YOUR CALCULATOR

WWU -- Chemistry Experiment 52 PREPARATION OF A C-4 OR C-5 ACETATE ESTER Reading Assignment –pp. 128 – 135 –pp. 470 – 475 –Technique 3, pp. 529 – 534; 536 –Technique 6, pp. 585 – 595 –Technique 7, pp. 605 – 611 –Technique 8, pp. 617 – 629 –Technique 19, pp. 742 – 760 –Appendix 3, pp. A14 – A32 –Appendix 4, pp. A32 – A50 (probably not required

WWU -- Chemistry Main Reaction

WWU -- Chemistry * Ideal stopping place There may be some ROH left in the ester

WWU -- Chemistry Why the extraction with NaHCO 3 ? Partly soluble In the ester Ionic substance now soluble in the aqueous phase

WWU -- Chemistry Preparation of Esters: Gas Chromatography solvent Unreacted cyclopentanol Some Alkene may Appear here

WWU -- Chemistry Preparation of Esters: Gas Chromatography Ret. Time Width Peak Peak Result Time Offset Area Sep. 1/2 Status No. Name () (min) (min) (counts) Code (sec) Codes BB BB ========== ======= ========== Totals: Total Identified Counts : counts Assume that all response factors = In some cases, you may observe extra unknown peaks. Recalculate the percentages of your data based on the alcohol and ester peaks. Round off the percentages: 4.3 % cyclopentanol 95.7% cyclopentyl acetate

WWU -- Chemistry We will not be using response factors for the esters Lab (assuming that they are 1.0). However, you may need to recalculate the data to give new areas if you have “extra” peaks that don’t belong. The example data in the previous slide can be used directly without doing calculations. The usual products include alkene from dehydration, unreacted alcohol and ester. Esters have the longest retention times, alkenes are lowest and unreacted alcohol is in the middle someplace! You will also be running the infrared spectrum of your product.

WWU -- Chemistry

Infrared spectroscopy and other material associated with the esters lab will be covered on February 17th