SlideShare uma empresa Scribd logo
1 de 22
Microbial Synthesis of Succinic
Acid from Typha Grass Hydrolysate
 and Its Application in Biopolymer
  Synthesis and as Co-plasticizer

                   By
       Yakindra P Timilsena (111332)

       Examination Committee
          Prof. Athapol Noomhorm
           Prof. Sudip K Rakshit
            Dr. Anil Kumar Anal
Main Idea
 Renewable/Green Chemicals
 Cheap and Under-utilized resources
 Biodegradable polymer with better properties
Introduction
 Succinic Acid is a C4 dicarboxylic acid with
 molecular formula C4H6O4, molecular weight 118.09
 and melting point 185 1900C.
 It is predicted to be one of the most widely       used
 platform chemicals which can be produced from
 renewable feedstocks (Bechthold et al. 2008).
 Broad range of industrial applications -as a       source
 of food, pharmaceuticals, surfactants, detergents,
 antifoam agents, in the production of        resins,
 polymers, paints, cosmetics and inks (Isar et       al.
 2006).
 Biobased succinic acid can be a suitable alternative to its
 petrochemical equivalent.
Introduction
 Glycerol is a by-product of biodiesel
  industries and can be used as a good
  plasticizer
 Succinic acid can be used as an efficient co-
  plasticizer in starch based polymer synthesis
 Blending process is one of the important
  methods of modifying the polymer
  characteristics
 PBS is a biodegradable polyester- synthesized
  from SA platform
Problem statements

 Most of the research work on Green Technology
  are patented and details of the invention is not
  disclosed
 Currently succinic acid and synthetic polymers
  in food packaging - produced from petroleum
  based chemicals - two limitations: non
  renewability and non biodegradability
 Typha grass-abundantly available all over the
  world- not investigated as renewable raw material
  for high value platform chemical
Problem statements

 PBS synthesized from SA- lacks flexibility.
  Blending with starch help improve the
  characteristics of polymer.
 Glycerol plasticized starch polymer (GTPS)
  recrystallize on storage- requires a co-
  plasticizer.
 Amine co-plasticizer-toxic. Biosuccinic acid -
  food grade- can serve as an alternative co-
  plasticizer.
Main objective


• To synthesize bio-succinic acid   from
  Typha grass hydrolysate using
  microbial    fermentation     and    its
  application for the synthesis of PBS-
  starch and SGTPS copolymers
Specific objectives
1. To determine the yield of bio- succinic acid
   produced from Typha grass hydrolysate
   using A. succinogenes
2. To optimize the ratio succinic acid as co-
   plasticizer with glycerol to    synthesize
   SGTPS
3. To optimize the ratio of cassava starch and
   PBS to synthesize copolymerized PBS.
Literature review

Production of Succinic Acid by Bacterial fermentation
Raw Materials       Micro-organisms    Result/Findings        References

wood hydrolysate    M.                 yield of 56%           Kim et al. 2004
                    succiniciproducens Batch Fermentation

straw hydrolysate   A. Succinogenes    80.7%                 Zheng et al. 2009
                                       yield after 48 hrs of
                                       fermentation
cane molasses       A. succinogenes    yield of 79.5% after   Liu et al. 2008
                                       48 hrs of batch
                                       fermentation
Literature review
 Polymer and copolymer synthesis and characterization
Raw Materials       Polymerization   Result/Findings                      References
                    method/
                    polymer
CA, glycerol,       CGTPS by melt    • Esterification and better cross-   Shi et al. 2007
starch              blending         linking
                                     • Decrease in MW/light
                                     • Decreased Tg
                                     • Change in crystal structure
                                     (reduced retrogradation)
Starch, glycerol,   TPS/PCL Blends   • Decreased Tensile Strength         Averous et al. 2000
PCL                                  • Decreased Elongation at Break

Starch, glycerol,   TPS/PCL Blends   • Decreased Tc                       Huang et al. 1993
PCL                                  • Decreased Mp
                                     • increased % crystallinity
                                     • Increased Relative crystallinity
Materials and Methods
Materials and chemicals
Typha grass hydrolysate, Microbial strain pure
culture (A. succinogenes), sodium/calcium
hydroxide, biobased SA, PBS, Cassava starch,
Glycerol
Micro-organisms
• Actinobacillus succinogenes
• Anaerobiospirillum succiniciproducens or
• Mannheimia succiniciproducens
Equipments
•   Bioreactor, carbon dioxide cylinder,
•   HPLC with sugar column
•   High speed mixer,
•   twin screw co-rotating extruder,
•   Melt Blender,
•   FTIR, NMR, GPC, DSC, SEM
Experiment for Objective 1
METHODOLOGY
  Biomass (Typha
      grass)



Drying, Powdering



  Pre-treatment
     (Alkali)
                              Preparation of Hydrolysate

      Hydrolysis
    (Enzyme/Acid)
                                     The method developed by
                      Hydr           Mr. Idi Audu Guga, an AIT
 Fermentable Sugars   olysa           doctoral student, will be
  (Glucose, Xylose)    te              followed till hydrolysis
METHODOLOGY contd……
Fermentation and Product                 Experiment for Objective 1
       Recovery

                Preparation for
                 Fermentation


                                       370C, pH 6.5,
                  Fermentation        Buffer MgCO3,
              ( by A. succinogenes)      12h, CO2



              Product Recovery        Precipitation
                                       with NaOH



               Succinic Acid/Sod.
                   Succinate
METHODOLOGY contd……
Co-polymerization and Characterization
                    Glycerol +                                                              Cassava
                                              Starch + SA                 PBS
                      Water                                                                  Starch


                              High speed blending




                                                                                                      Experiment for Objective 3
                                                                                 Extrusion Co-
Experiment for Objective 2




                                                                                polymerization
                                 Melt Blending



                                      SGTPS                                PBS-starch copolymer



                                                       Characterization



                                     Physical               Mechanical            Biodegradability
COMPOSITION of SGTPS
Co-polymer Abbrevi    Sample Weight Proportions
  Name      ation
                       Hydrous     Glycerol   SA
                     starch (20%
                       mc wb)
GTPS       SA0           100         30       0

SGTPS1     SA1          100          30       1

SGTPS2     SA2          100          30       2

SGTPS5     SA5          100          30       5

SGTPS10    SA10         100          30       10
COMPOSITION of PBS-starch

Co-polymer Name     Sample Weight Proportions

                  Hydrous starch (20%   PBS
                       mc wb)
PBS                      100             0

PBSS1                     80             20

PBSS2                     70             30

PBSS3                     60             40

PBSS4                     50             50
CHARACTERISTICS TO BE MEASURED
• Tensile Strength
• % Elongation at Break
• IR spectra by FTIR
• DSC Thermograms
• Thermogravimetric Analysis
• Inherent Viscosity (using available viscometer)
• Degree of Substitution and Esterification
  (According to Santayanon and
  Wootthirahokkam, 2003)
• Biodegradability (using lipase enzyme)
Work Plan
S.      Activities       Aug Sep Oct Nov Dec Jan Feb Mar Apr
N.
1    Literature review    X

2 Procurements of             X
  pure culture,
  chemicals and
  equipments
3 Fermentation,                   X   X   X
  Pdt Recovery
4 Blending, Co-                       X   X   X
  polymerization,
  characterization
5 Result                                      X   X
  interpretation
  and data analysis
6 Final reporting                                     X   X
Budget Estimation
S.N.             Operational Activities        Amount
                                                (Baht)
1      Chemicals, Pure culture and Enzymes   5000

2      Equipments:                           30000
       (HPLC Column, Melt Blender)

3      Travel                                2000

4      Miscellaneous                         5000

       Total                                 42000
References
 Bechthold I, Bretz K, Kabasci S, Kopitzky R, Springer A (2008).
  Succinic acid: a new platform chemical for biobased polymers
  from renewable resources. Chem Eng Technol 31:647-654.
 Takiyama, E.; Fujimaki, T. (1994). Bionolle biodegradable plastic
  through chemical synthesis. In Biodegradable Plastics and
  Polymers; Doi, Y., Fukuda, K., Eds.; Elsevier Science: Amsterdam,
  The Netherlands, pp. 150-174.
 Mochizuki, M.; Mukai, K.; Yamada, K.; Ichise, N.; Murase, S.;
  Iwaya, Y. (1997). Macromolecules, 30, 7403.
 Azim, H.; Dekhterman, A; Jiang, Z. and Gross, R.A. (2006).
  Biomacromolecules, 7, 3093-3097
 Shi, R.; Zhang, Z.; Liu, Q.; Han, Y.; Zhang, L.; Chen, D.; Tian,
  W. (2007). Characterization of citric acid/glycerol co-plasticized
  thermoplastic starch prepared by melt blending. Carbohydrate
  Polymers 69, 748–755
Thank you

Mais conteúdo relacionado

Mais procurados

Batch and Continuous Sterilization of Media in Fermentation Industry
Batch and Continuous Sterilization of Media in Fermentation Industry Batch and Continuous Sterilization of Media in Fermentation Industry
Batch and Continuous Sterilization of Media in Fermentation Industry Dr. Pavan Kundur
 
Aerobic, anaerobic, batch and continuous fermentation
Aerobic, anaerobic, batch and continuous fermentationAerobic, anaerobic, batch and continuous fermentation
Aerobic, anaerobic, batch and continuous fermentationHARINATHA REDDY ASWARTHA
 
Biotransformation of steroids
Biotransformation of steroidsBiotransformation of steroids
Biotransformation of steroidssudha rajput
 
vitamin by fermnetation
vitamin by fermnetation vitamin by fermnetation
vitamin by fermnetation Alok kumar Soni
 
bioreactor and its applications
bioreactor and its applications bioreactor and its applications
bioreactor and its applications saba naeem
 
Composition and degradation of lignin
Composition and degradation of ligninComposition and degradation of lignin
Composition and degradation of ligninAshenafiMiresa
 
Large Scale Fermentation of Vitamin B12
Large Scale Fermentation of Vitamin B12Large Scale Fermentation of Vitamin B12
Large Scale Fermentation of Vitamin B12BishwarupSarkar
 
Streptomycin production
Streptomycin productionStreptomycin production
Streptomycin productionShipra Sood
 
Biopreservatives i
Biopreservatives iBiopreservatives i
Biopreservatives iMunna Joy
 
Production of biodegradable. plastic
Production of biodegradable. plasticProduction of biodegradable. plastic
Production of biodegradable. plasticsiva ni
 
Power Requirements for Mixing in Bioreactor
Power Requirements for Mixing in Bioreactor Power Requirements for Mixing in Bioreactor
Power Requirements for Mixing in Bioreactor vishalachihari
 
Methods of metal recovery by microorganisms
Methods of metal recovery by microorganismsMethods of metal recovery by microorganisms
Methods of metal recovery by microorganismsPRASHANTSHARMA976
 
FERMENTATION AND ITS TYPES
FERMENTATION AND ITS TYPESFERMENTATION AND ITS TYPES
FERMENTATION AND ITS TYPESShikha Popali
 

Mais procurados (20)

Riboflavin
RiboflavinRiboflavin
Riboflavin
 
Batch and Continuous Sterilization of Media in Fermentation Industry
Batch and Continuous Sterilization of Media in Fermentation Industry Batch and Continuous Sterilization of Media in Fermentation Industry
Batch and Continuous Sterilization of Media in Fermentation Industry
 
Aerobic, anaerobic, batch and continuous fermentation
Aerobic, anaerobic, batch and continuous fermentationAerobic, anaerobic, batch and continuous fermentation
Aerobic, anaerobic, batch and continuous fermentation
 
Bioleaching
BioleachingBioleaching
Bioleaching
 
Cellulose presentation
Cellulose presentationCellulose presentation
Cellulose presentation
 
Biotransformation of steroids
Biotransformation of steroidsBiotransformation of steroids
Biotransformation of steroids
 
vitamin by fermnetation
vitamin by fermnetation vitamin by fermnetation
vitamin by fermnetation
 
BIOMINERALISATION
BIOMINERALISATIONBIOMINERALISATION
BIOMINERALISATION
 
Bioplastics ppt
Bioplastics ppt Bioplastics ppt
Bioplastics ppt
 
bioreactor and its applications
bioreactor and its applications bioreactor and its applications
bioreactor and its applications
 
Composition and degradation of lignin
Composition and degradation of ligninComposition and degradation of lignin
Composition and degradation of lignin
 
Large Scale Fermentation of Vitamin B12
Large Scale Fermentation of Vitamin B12Large Scale Fermentation of Vitamin B12
Large Scale Fermentation of Vitamin B12
 
Streptomycin production
Streptomycin productionStreptomycin production
Streptomycin production
 
Biopreservatives i
Biopreservatives iBiopreservatives i
Biopreservatives i
 
Biosurfactant
BiosurfactantBiosurfactant
Biosurfactant
 
Lactic acid Production
Lactic acid ProductionLactic acid Production
Lactic acid Production
 
Production of biodegradable. plastic
Production of biodegradable. plasticProduction of biodegradable. plastic
Production of biodegradable. plastic
 
Power Requirements for Mixing in Bioreactor
Power Requirements for Mixing in Bioreactor Power Requirements for Mixing in Bioreactor
Power Requirements for Mixing in Bioreactor
 
Methods of metal recovery by microorganisms
Methods of metal recovery by microorganismsMethods of metal recovery by microorganisms
Methods of metal recovery by microorganisms
 
FERMENTATION AND ITS TYPES
FERMENTATION AND ITS TYPESFERMENTATION AND ITS TYPES
FERMENTATION AND ITS TYPES
 

Semelhante a Succinic Acid- Presentation

Research Presentation for Moratuwa Engineering Research Conference, 2019
Research Presentation for Moratuwa Engineering Research Conference, 2019Research Presentation for Moratuwa Engineering Research Conference, 2019
Research Presentation for Moratuwa Engineering Research Conference, 2019B.K.T. Samarasiri
 
Cellulose hydrolysis in subcritical water
Cellulose hydrolysis in subcritical waterCellulose hydrolysis in subcritical water
Cellulose hydrolysis in subcritical waterSandeep Kumar
 
Effects of chemical interesterification on solid fat content and slip melting...
Effects of chemical interesterification on solid fat content and slip melting...Effects of chemical interesterification on solid fat content and slip melting...
Effects of chemical interesterification on solid fat content and slip melting...particular
 
JBEI Science Highlights - February 2023
JBEI Science Highlights - February 2023JBEI Science Highlights - February 2023
JBEI Science Highlights - February 2023SaraHarmon5
 
Dialysis -Annals of Microbiology
Dialysis -Annals of MicrobiologyDialysis -Annals of Microbiology
Dialysis -Annals of MicrobiologyDr. Seema Bhanwar
 
Bioconversion of Whey
Bioconversion of WheyBioconversion of Whey
Bioconversion of WheySnehal Ingle
 
M.Sc. Thesis Presentation - Mauro Claudino
M.Sc. Thesis Presentation - Mauro ClaudinoM.Sc. Thesis Presentation - Mauro Claudino
M.Sc. Thesis Presentation - Mauro ClaudinoMauro Claudino
 
Hydroxyapatite synthesis and its chromatographic properties
Hydroxyapatite synthesis and its chromatographic propertiesHydroxyapatite synthesis and its chromatographic properties
Hydroxyapatite synthesis and its chromatographic propertiesJagjit Kahlon
 
A ppt on fermentation of cereal grains for improving nutritional properties
A ppt on fermentation of cereal grains for improving nutritional propertiesA ppt on fermentation of cereal grains for improving nutritional properties
A ppt on fermentation of cereal grains for improving nutritional propertiesPragyilaMishra1
 
Whey proteins–pectin interaction
Whey proteins–pectin interactionWhey proteins–pectin interaction
Whey proteins–pectin interactiononeraltinsoy
 
Improving Downstream Processing: Application of Excipients in DSP
Improving Downstream Processing: Application of Excipients in DSPImproving Downstream Processing: Application of Excipients in DSP
Improving Downstream Processing: Application of Excipients in DSPMerck Life Sciences
 
Improving Downstream Processing: Application of Excipients in DSP
Improving Downstream Processing: Application of Excipients in DSPImproving Downstream Processing: Application of Excipients in DSP
Improving Downstream Processing: Application of Excipients in DSPMilliporeSigma
 

Semelhante a Succinic Acid- Presentation (20)

Research Presentation for Moratuwa Engineering Research Conference, 2019
Research Presentation for Moratuwa Engineering Research Conference, 2019Research Presentation for Moratuwa Engineering Research Conference, 2019
Research Presentation for Moratuwa Engineering Research Conference, 2019
 
Cellulose hydrolysis in subcritical water
Cellulose hydrolysis in subcritical waterCellulose hydrolysis in subcritical water
Cellulose hydrolysis in subcritical water
 
Synthesis of hydroxyapatite nanoparticles
Synthesis of hydroxyapatite nanoparticlesSynthesis of hydroxyapatite nanoparticles
Synthesis of hydroxyapatite nanoparticles
 
Gatot trimulyadi
Gatot trimulyadiGatot trimulyadi
Gatot trimulyadi
 
Pla with soyabene oil
Pla with soyabene oilPla with soyabene oil
Pla with soyabene oil
 
Thesis presentation
Thesis presentationThesis presentation
Thesis presentation
 
Effects of chemical interesterification on solid fat content and slip melting...
Effects of chemical interesterification on solid fat content and slip melting...Effects of chemical interesterification on solid fat content and slip melting...
Effects of chemical interesterification on solid fat content and slip melting...
 
JBEI Science Highlights - February 2023
JBEI Science Highlights - February 2023JBEI Science Highlights - February 2023
JBEI Science Highlights - February 2023
 
Development of Hydrolysis Route for Cellulosic Ethanol from Sugarcane Biomass
Development of Hydrolysis Route for Cellulosic Ethanol from Sugarcane BiomassDevelopment of Hydrolysis Route for Cellulosic Ethanol from Sugarcane Biomass
Development of Hydrolysis Route for Cellulosic Ethanol from Sugarcane Biomass
 
Final project power point
Final project power pointFinal project power point
Final project power point
 
Final project power point
Final project power pointFinal project power point
Final project power point
 
Dialysis -Annals of Microbiology
Dialysis -Annals of MicrobiologyDialysis -Annals of Microbiology
Dialysis -Annals of Microbiology
 
Bioconversion of Whey
Bioconversion of WheyBioconversion of Whey
Bioconversion of Whey
 
M.Sc. Thesis Presentation - Mauro Claudino
M.Sc. Thesis Presentation - Mauro ClaudinoM.Sc. Thesis Presentation - Mauro Claudino
M.Sc. Thesis Presentation - Mauro Claudino
 
Hydroxyapatite synthesis and its chromatographic properties
Hydroxyapatite synthesis and its chromatographic propertiesHydroxyapatite synthesis and its chromatographic properties
Hydroxyapatite synthesis and its chromatographic properties
 
A ppt on fermentation of cereal grains for improving nutritional properties
A ppt on fermentation of cereal grains for improving nutritional propertiesA ppt on fermentation of cereal grains for improving nutritional properties
A ppt on fermentation of cereal grains for improving nutritional properties
 
Whey proteins–pectin interaction
Whey proteins–pectin interactionWhey proteins–pectin interaction
Whey proteins–pectin interaction
 
PhD 1.ppt
PhD 1.pptPhD 1.ppt
PhD 1.ppt
 
Improving Downstream Processing: Application of Excipients in DSP
Improving Downstream Processing: Application of Excipients in DSPImproving Downstream Processing: Application of Excipients in DSP
Improving Downstream Processing: Application of Excipients in DSP
 
Improving Downstream Processing: Application of Excipients in DSP
Improving Downstream Processing: Application of Excipients in DSPImproving Downstream Processing: Application of Excipients in DSP
Improving Downstream Processing: Application of Excipients in DSP
 

Mais de Yakindra Timilsena, PhD (15)

Stevia a natural non-nutritive sweetener and its potential application in fo...
Stevia  a natural non-nutritive sweetener and its potential application in fo...Stevia  a natural non-nutritive sweetener and its potential application in fo...
Stevia a natural non-nutritive sweetener and its potential application in fo...
 
Consumer's right in food act in nepal
Consumer's right in food act in nepalConsumer's right in food act in nepal
Consumer's right in food act in nepal
 
Health hazards of food contaminants
Health hazards of food contaminantsHealth hazards of food contaminants
Health hazards of food contaminants
 
Typha capensis
Typha capensisTypha capensis
Typha capensis
 
Molecular detection of food borne pathogens-presentation
Molecular detection of food borne pathogens-presentationMolecular detection of food borne pathogens-presentation
Molecular detection of food borne pathogens-presentation
 
Assignment 1
Assignment 1Assignment 1
Assignment 1
 
Assignment bioprocess
Assignment bioprocessAssignment bioprocess
Assignment bioprocess
 
Quiz
QuizQuiz
Quiz
 
Quiz soln
Quiz solnQuiz soln
Quiz soln
 
Renewable chemicals presentation final
Renewable chemicals presentation finalRenewable chemicals presentation final
Renewable chemicals presentation final
 
Quiz by yp-with answers
Quiz by yp-with answersQuiz by yp-with answers
Quiz by yp-with answers
 
Presentation by FEBT10 Team in OPC, AIT
Presentation by FEBT10 Team in OPC, AITPresentation by FEBT10 Team in OPC, AIT
Presentation by FEBT10 Team in OPC, AIT
 
Acrylamide presentation
Acrylamide presentationAcrylamide presentation
Acrylamide presentation
 
Storage design for corn yp
Storage design for corn ypStorage design for corn yp
Storage design for corn yp
 
Aeration of storage structures
Aeration of storage structuresAeration of storage structures
Aeration of storage structures
 

Último

Ensure the security of your HCL environment by applying the Zero Trust princi...
Ensure the security of your HCL environment by applying the Zero Trust princi...Ensure the security of your HCL environment by applying the Zero Trust princi...
Ensure the security of your HCL environment by applying the Zero Trust princi...Roland Driesen
 
Understanding the Pakistan Budgeting Process: Basics and Key Insights
Understanding the Pakistan Budgeting Process: Basics and Key InsightsUnderstanding the Pakistan Budgeting Process: Basics and Key Insights
Understanding the Pakistan Budgeting Process: Basics and Key Insightsseri bangash
 
Mondelez State of Snacking and Future Trends 2023
Mondelez State of Snacking and Future Trends 2023Mondelez State of Snacking and Future Trends 2023
Mondelez State of Snacking and Future Trends 2023Neil Kimberley
 
Creating Low-Code Loan Applications using the Trisotech Mortgage Feature Set
Creating Low-Code Loan Applications using the Trisotech Mortgage Feature SetCreating Low-Code Loan Applications using the Trisotech Mortgage Feature Set
Creating Low-Code Loan Applications using the Trisotech Mortgage Feature SetDenis Gagné
 
Event mailer assignment progress report .pdf
Event mailer assignment progress report .pdfEvent mailer assignment progress report .pdf
Event mailer assignment progress report .pdftbatkhuu1
 
Progress Report - Oracle Database Analyst Summit
Progress  Report - Oracle Database Analyst SummitProgress  Report - Oracle Database Analyst Summit
Progress Report - Oracle Database Analyst SummitHolger Mueller
 
Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...
Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...
Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...anilsa9823
 
Pharma Works Profile of Karan Communications
Pharma Works Profile of Karan CommunicationsPharma Works Profile of Karan Communications
Pharma Works Profile of Karan Communicationskarancommunications
 
Mysore Call Girls 8617370543 WhatsApp Number 24x7 Best Services
Mysore Call Girls 8617370543 WhatsApp Number 24x7 Best ServicesMysore Call Girls 8617370543 WhatsApp Number 24x7 Best Services
Mysore Call Girls 8617370543 WhatsApp Number 24x7 Best ServicesDipal Arora
 
Call Girls Pune Just Call 9907093804 Top Class Call Girl Service Available
Call Girls Pune Just Call 9907093804 Top Class Call Girl Service AvailableCall Girls Pune Just Call 9907093804 Top Class Call Girl Service Available
Call Girls Pune Just Call 9907093804 Top Class Call Girl Service AvailableDipal Arora
 
VIP Call Girls Gandi Maisamma ( Hyderabad ) Phone 8250192130 | ₹5k To 25k Wit...
VIP Call Girls Gandi Maisamma ( Hyderabad ) Phone 8250192130 | ₹5k To 25k Wit...VIP Call Girls Gandi Maisamma ( Hyderabad ) Phone 8250192130 | ₹5k To 25k Wit...
VIP Call Girls Gandi Maisamma ( Hyderabad ) Phone 8250192130 | ₹5k To 25k Wit...Suhani Kapoor
 
0183760ssssssssssssssssssssssssssss00101011 (27).pdf
0183760ssssssssssssssssssssssssssss00101011 (27).pdf0183760ssssssssssssssssssssssssssss00101011 (27).pdf
0183760ssssssssssssssssssssssssssss00101011 (27).pdfRenandantas16
 
A305_A2_file_Batkhuu progress report.pdf
A305_A2_file_Batkhuu progress report.pdfA305_A2_file_Batkhuu progress report.pdf
A305_A2_file_Batkhuu progress report.pdftbatkhuu1
 
VIP Call Girls In Saharaganj ( Lucknow ) 🔝 8923113531 🔝 Cash Payment (COD) 👒
VIP Call Girls In Saharaganj ( Lucknow  ) 🔝 8923113531 🔝  Cash Payment (COD) 👒VIP Call Girls In Saharaganj ( Lucknow  ) 🔝 8923113531 🔝  Cash Payment (COD) 👒
VIP Call Girls In Saharaganj ( Lucknow ) 🔝 8923113531 🔝 Cash Payment (COD) 👒anilsa9823
 
Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...
Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...
Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...amitlee9823
 
Grateful 7 speech thanking everyone that has helped.pdf
Grateful 7 speech thanking everyone that has helped.pdfGrateful 7 speech thanking everyone that has helped.pdf
Grateful 7 speech thanking everyone that has helped.pdfPaul Menig
 
Value Proposition canvas- Customer needs and pains
Value Proposition canvas- Customer needs and painsValue Proposition canvas- Customer needs and pains
Value Proposition canvas- Customer needs and painsP&CO
 
M.C Lodges -- Guest House in Jhang.
M.C Lodges --  Guest House in Jhang.M.C Lodges --  Guest House in Jhang.
M.C Lodges -- Guest House in Jhang.Aaiza Hassan
 

Último (20)

Ensure the security of your HCL environment by applying the Zero Trust princi...
Ensure the security of your HCL environment by applying the Zero Trust princi...Ensure the security of your HCL environment by applying the Zero Trust princi...
Ensure the security of your HCL environment by applying the Zero Trust princi...
 
Understanding the Pakistan Budgeting Process: Basics and Key Insights
Understanding the Pakistan Budgeting Process: Basics and Key InsightsUnderstanding the Pakistan Budgeting Process: Basics and Key Insights
Understanding the Pakistan Budgeting Process: Basics and Key Insights
 
Mondelez State of Snacking and Future Trends 2023
Mondelez State of Snacking and Future Trends 2023Mondelez State of Snacking and Future Trends 2023
Mondelez State of Snacking and Future Trends 2023
 
Creating Low-Code Loan Applications using the Trisotech Mortgage Feature Set
Creating Low-Code Loan Applications using the Trisotech Mortgage Feature SetCreating Low-Code Loan Applications using the Trisotech Mortgage Feature Set
Creating Low-Code Loan Applications using the Trisotech Mortgage Feature Set
 
VVVIP Call Girls In Greater Kailash ➡️ Delhi ➡️ 9999965857 🚀 No Advance 24HRS...
VVVIP Call Girls In Greater Kailash ➡️ Delhi ➡️ 9999965857 🚀 No Advance 24HRS...VVVIP Call Girls In Greater Kailash ➡️ Delhi ➡️ 9999965857 🚀 No Advance 24HRS...
VVVIP Call Girls In Greater Kailash ➡️ Delhi ➡️ 9999965857 🚀 No Advance 24HRS...
 
Event mailer assignment progress report .pdf
Event mailer assignment progress report .pdfEvent mailer assignment progress report .pdf
Event mailer assignment progress report .pdf
 
Progress Report - Oracle Database Analyst Summit
Progress  Report - Oracle Database Analyst SummitProgress  Report - Oracle Database Analyst Summit
Progress Report - Oracle Database Analyst Summit
 
Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...
Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...
Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...
 
Pharma Works Profile of Karan Communications
Pharma Works Profile of Karan CommunicationsPharma Works Profile of Karan Communications
Pharma Works Profile of Karan Communications
 
Mysore Call Girls 8617370543 WhatsApp Number 24x7 Best Services
Mysore Call Girls 8617370543 WhatsApp Number 24x7 Best ServicesMysore Call Girls 8617370543 WhatsApp Number 24x7 Best Services
Mysore Call Girls 8617370543 WhatsApp Number 24x7 Best Services
 
Call Girls Pune Just Call 9907093804 Top Class Call Girl Service Available
Call Girls Pune Just Call 9907093804 Top Class Call Girl Service AvailableCall Girls Pune Just Call 9907093804 Top Class Call Girl Service Available
Call Girls Pune Just Call 9907093804 Top Class Call Girl Service Available
 
VIP Call Girls Gandi Maisamma ( Hyderabad ) Phone 8250192130 | ₹5k To 25k Wit...
VIP Call Girls Gandi Maisamma ( Hyderabad ) Phone 8250192130 | ₹5k To 25k Wit...VIP Call Girls Gandi Maisamma ( Hyderabad ) Phone 8250192130 | ₹5k To 25k Wit...
VIP Call Girls Gandi Maisamma ( Hyderabad ) Phone 8250192130 | ₹5k To 25k Wit...
 
0183760ssssssssssssssssssssssssssss00101011 (27).pdf
0183760ssssssssssssssssssssssssssss00101011 (27).pdf0183760ssssssssssssssssssssssssssss00101011 (27).pdf
0183760ssssssssssssssssssssssssssss00101011 (27).pdf
 
Forklift Operations: Safety through Cartoons
Forklift Operations: Safety through CartoonsForklift Operations: Safety through Cartoons
Forklift Operations: Safety through Cartoons
 
A305_A2_file_Batkhuu progress report.pdf
A305_A2_file_Batkhuu progress report.pdfA305_A2_file_Batkhuu progress report.pdf
A305_A2_file_Batkhuu progress report.pdf
 
VIP Call Girls In Saharaganj ( Lucknow ) 🔝 8923113531 🔝 Cash Payment (COD) 👒
VIP Call Girls In Saharaganj ( Lucknow  ) 🔝 8923113531 🔝  Cash Payment (COD) 👒VIP Call Girls In Saharaganj ( Lucknow  ) 🔝 8923113531 🔝  Cash Payment (COD) 👒
VIP Call Girls In Saharaganj ( Lucknow ) 🔝 8923113531 🔝 Cash Payment (COD) 👒
 
Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...
Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...
Call Girls Jp Nagar Just Call 👗 7737669865 👗 Top Class Call Girl Service Bang...
 
Grateful 7 speech thanking everyone that has helped.pdf
Grateful 7 speech thanking everyone that has helped.pdfGrateful 7 speech thanking everyone that has helped.pdf
Grateful 7 speech thanking everyone that has helped.pdf
 
Value Proposition canvas- Customer needs and pains
Value Proposition canvas- Customer needs and painsValue Proposition canvas- Customer needs and pains
Value Proposition canvas- Customer needs and pains
 
M.C Lodges -- Guest House in Jhang.
M.C Lodges --  Guest House in Jhang.M.C Lodges --  Guest House in Jhang.
M.C Lodges -- Guest House in Jhang.
 

Succinic Acid- Presentation

  • 1. Microbial Synthesis of Succinic Acid from Typha Grass Hydrolysate and Its Application in Biopolymer Synthesis and as Co-plasticizer By Yakindra P Timilsena (111332) Examination Committee Prof. Athapol Noomhorm Prof. Sudip K Rakshit Dr. Anil Kumar Anal
  • 2. Main Idea  Renewable/Green Chemicals  Cheap and Under-utilized resources  Biodegradable polymer with better properties
  • 3. Introduction  Succinic Acid is a C4 dicarboxylic acid with molecular formula C4H6O4, molecular weight 118.09 and melting point 185 1900C.  It is predicted to be one of the most widely used platform chemicals which can be produced from renewable feedstocks (Bechthold et al. 2008).  Broad range of industrial applications -as a source of food, pharmaceuticals, surfactants, detergents, antifoam agents, in the production of resins, polymers, paints, cosmetics and inks (Isar et al. 2006).  Biobased succinic acid can be a suitable alternative to its petrochemical equivalent.
  • 4. Introduction  Glycerol is a by-product of biodiesel industries and can be used as a good plasticizer  Succinic acid can be used as an efficient co- plasticizer in starch based polymer synthesis  Blending process is one of the important methods of modifying the polymer characteristics  PBS is a biodegradable polyester- synthesized from SA platform
  • 5. Problem statements  Most of the research work on Green Technology are patented and details of the invention is not disclosed  Currently succinic acid and synthetic polymers in food packaging - produced from petroleum based chemicals - two limitations: non renewability and non biodegradability  Typha grass-abundantly available all over the world- not investigated as renewable raw material for high value platform chemical
  • 6. Problem statements  PBS synthesized from SA- lacks flexibility. Blending with starch help improve the characteristics of polymer.  Glycerol plasticized starch polymer (GTPS) recrystallize on storage- requires a co- plasticizer.  Amine co-plasticizer-toxic. Biosuccinic acid - food grade- can serve as an alternative co- plasticizer.
  • 7. Main objective • To synthesize bio-succinic acid from Typha grass hydrolysate using microbial fermentation and its application for the synthesis of PBS- starch and SGTPS copolymers
  • 8. Specific objectives 1. To determine the yield of bio- succinic acid produced from Typha grass hydrolysate using A. succinogenes 2. To optimize the ratio succinic acid as co- plasticizer with glycerol to synthesize SGTPS 3. To optimize the ratio of cassava starch and PBS to synthesize copolymerized PBS.
  • 9. Literature review Production of Succinic Acid by Bacterial fermentation Raw Materials Micro-organisms Result/Findings References wood hydrolysate M. yield of 56% Kim et al. 2004 succiniciproducens Batch Fermentation straw hydrolysate A. Succinogenes 80.7% Zheng et al. 2009 yield after 48 hrs of fermentation cane molasses A. succinogenes yield of 79.5% after Liu et al. 2008 48 hrs of batch fermentation
  • 10. Literature review Polymer and copolymer synthesis and characterization Raw Materials Polymerization Result/Findings References method/ polymer CA, glycerol, CGTPS by melt • Esterification and better cross- Shi et al. 2007 starch blending linking • Decrease in MW/light • Decreased Tg • Change in crystal structure (reduced retrogradation) Starch, glycerol, TPS/PCL Blends • Decreased Tensile Strength Averous et al. 2000 PCL • Decreased Elongation at Break Starch, glycerol, TPS/PCL Blends • Decreased Tc Huang et al. 1993 PCL • Decreased Mp • increased % crystallinity • Increased Relative crystallinity
  • 11. Materials and Methods Materials and chemicals Typha grass hydrolysate, Microbial strain pure culture (A. succinogenes), sodium/calcium hydroxide, biobased SA, PBS, Cassava starch, Glycerol Micro-organisms • Actinobacillus succinogenes • Anaerobiospirillum succiniciproducens or • Mannheimia succiniciproducens
  • 12. Equipments • Bioreactor, carbon dioxide cylinder, • HPLC with sugar column • High speed mixer, • twin screw co-rotating extruder, • Melt Blender, • FTIR, NMR, GPC, DSC, SEM
  • 13. Experiment for Objective 1 METHODOLOGY Biomass (Typha grass) Drying, Powdering Pre-treatment (Alkali) Preparation of Hydrolysate Hydrolysis (Enzyme/Acid) The method developed by Hydr Mr. Idi Audu Guga, an AIT Fermentable Sugars olysa doctoral student, will be (Glucose, Xylose) te followed till hydrolysis
  • 14. METHODOLOGY contd…… Fermentation and Product Experiment for Objective 1 Recovery Preparation for Fermentation 370C, pH 6.5, Fermentation Buffer MgCO3, ( by A. succinogenes) 12h, CO2 Product Recovery Precipitation with NaOH Succinic Acid/Sod. Succinate
  • 15. METHODOLOGY contd…… Co-polymerization and Characterization Glycerol + Cassava Starch + SA PBS Water Starch High speed blending Experiment for Objective 3 Extrusion Co- Experiment for Objective 2 polymerization Melt Blending SGTPS PBS-starch copolymer Characterization Physical Mechanical Biodegradability
  • 16. COMPOSITION of SGTPS Co-polymer Abbrevi Sample Weight Proportions Name ation Hydrous Glycerol SA starch (20% mc wb) GTPS SA0 100 30 0 SGTPS1 SA1 100 30 1 SGTPS2 SA2 100 30 2 SGTPS5 SA5 100 30 5 SGTPS10 SA10 100 30 10
  • 17. COMPOSITION of PBS-starch Co-polymer Name Sample Weight Proportions Hydrous starch (20% PBS mc wb) PBS 100 0 PBSS1 80 20 PBSS2 70 30 PBSS3 60 40 PBSS4 50 50
  • 18. CHARACTERISTICS TO BE MEASURED • Tensile Strength • % Elongation at Break • IR spectra by FTIR • DSC Thermograms • Thermogravimetric Analysis • Inherent Viscosity (using available viscometer) • Degree of Substitution and Esterification (According to Santayanon and Wootthirahokkam, 2003) • Biodegradability (using lipase enzyme)
  • 19. Work Plan S. Activities Aug Sep Oct Nov Dec Jan Feb Mar Apr N. 1 Literature review X 2 Procurements of X pure culture, chemicals and equipments 3 Fermentation, X X X Pdt Recovery 4 Blending, Co- X X X polymerization, characterization 5 Result X X interpretation and data analysis 6 Final reporting X X
  • 20. Budget Estimation S.N. Operational Activities Amount (Baht) 1 Chemicals, Pure culture and Enzymes 5000 2 Equipments: 30000 (HPLC Column, Melt Blender) 3 Travel 2000 4 Miscellaneous 5000 Total 42000
  • 21. References  Bechthold I, Bretz K, Kabasci S, Kopitzky R, Springer A (2008). Succinic acid: a new platform chemical for biobased polymers from renewable resources. Chem Eng Technol 31:647-654.  Takiyama, E.; Fujimaki, T. (1994). Bionolle biodegradable plastic through chemical synthesis. In Biodegradable Plastics and Polymers; Doi, Y., Fukuda, K., Eds.; Elsevier Science: Amsterdam, The Netherlands, pp. 150-174.  Mochizuki, M.; Mukai, K.; Yamada, K.; Ichise, N.; Murase, S.; Iwaya, Y. (1997). Macromolecules, 30, 7403.  Azim, H.; Dekhterman, A; Jiang, Z. and Gross, R.A. (2006). Biomacromolecules, 7, 3093-3097  Shi, R.; Zhang, Z.; Liu, Q.; Han, Y.; Zhang, L.; Chen, D.; Tian, W. (2007). Characterization of citric acid/glycerol co-plasticized thermoplastic starch prepared by melt blending. Carbohydrate Polymers 69, 748–755