Lentikats Biotechnology in Organic Acid Production.

Slides:



Advertisements
Similar presentations
Introduction on Scale Up Fine Chemicals : From Lab to Plant Site By Wiratni, PhD Gadjah Mada University Yogyakarta - Indonesia.
Advertisements

LentiKat´s a.s..
Bioreactor Analysis and Operation Chapter 9&10 (textbook)
Lentikats Biotechnology in wastewater treatment. Content Our company What is Lentikats Biocatalyst? Advantages of Lentikats Biotechnology Comparison of.
Lentikats Biotechnology in distilleries
The manufacture of plastics requires the use of non- renewable materials such as petroleum and natural gases. Many plastics are harmful to the environment.
The Deepwater Horizon oil spill in the Gulf of Mexico is the largest offshore oil spill in the history of the United States It is currently estimated.
Ionic Liquids for Natural Product Extraction
Unit Food Science. Problem Area Processing Animal Products.
Lentikats Biotechnology in Food Industry. Content  Our aim  What is Lentikats Biocatalyst  Production of Lentikats Biocatalyst  Benefits of Lentikats.
Topic 2.5 Enzymes IB Biology S. Dosman.
Green Engineering  Profit = Ø ?. It depends!!!!
Production Of Enzymes By Fermentation Method
Lentikats Biotechnology in Pharmaceutics. Content  Our focus  Protein engineering  What is Lentikats Biocatalyst  Production of Lentikats Biocatalyst.
DRIVING INNOVATION AND ABILITY TO COMPETE THROUGH OUTSOURCING Anthony (Tony) C. Bernardo, Alloy Polymers Inc. NPE 2003 bernardo:
Industrial Production of Citric Acid Application of Citric Acid: (text,p.524) -Acidulant in food, confectionary, and beverage (75%) -Pharmaceutical (10%),
In In the name of God. Polymer: Poly + Meros Polymers can be separated into 3 general categories: Polymers can be separated into 3 general categories:
Microbial Growth Kinetics
ChE 461/861 Introduction to Biochemical Engineering Instructor Dr. C. Niu Chemical Engineering.
Production of Invert Sugar using Lentikats Biotechnology
BREW Generic Approach by Martin Patel (Un. Utrecht) Tim Nisbet (Shell) Peter Nossin (DSM) BREW plenary meeting - September 9, 2003.
Biochemistry Class Nine. Macromolecules Microorganisms and their Identification Determination of pathogens responsible for infectious diseases Selection.
Making Biorefineries Competitive: PRO.E.SA TM The only sugar platform available today Guido Ghisolfi June 8, 2012.
CZECH MEMBRANE PLATFORM, o.s. CZECH MEMBRANE PLATFORM, o.s. Membrane processes in technologies for renewable resources, innovations and increasing of competitive.
Biotechnology – Biotechnological techniques 1.Use of micro-organisms 2.Industrial production of enzymes 3.Tissue cultures.
 Basic Definition:  Basic Definition: Technology of building or creating products such as electronic circuits from single atoms and molecules Deals.
Microorganisms used in food production
Biotechnology Thermal “Needs” Paul Nesvadba EVITHERM meeting at PTB Berlin, 17 th May 2004.
Microbial Biotechnology Commercial Production of Microorganism
Leaving Certificate Biology Higher Level
FERMENTATION.
Immobilized Enzyme Systems
Innovation Division. Innovation Its embedded novelty, providing qualitative increase in the efficiency of processes or products demanded by the market.
” Building Research Centre “AgroBioTech“ Demand-oriented project ITMS code:
3.6 & 7.6 Enzymes IB Biology. Enzyme Globular protein Made by cells of living organisms –To help with reactions taking place in cells Catalyst - speed.
Simulation Of Bioprocess ERT Modeling and Assessment in Process Development.
Biotechnology and biotechnics department National technical University of Ukraine “Kyiv Polytechnic Institute”
IB Biology HL 1 Mrs. Peters Fall 2014
Enzymes.
S-1007 Multi-State Research Committee
Genetic Algorithms based Parameter Identification of Yeast Fed-Batch Cultivation Angelova M., Tzonkov St., Pencheva T.
Covering Key Aspects  Technical  Environmental  Economic August 8, 2008 EthanolRecycle PaperRecycle.
1 Respiration The controlled release of energy from glucose, within a cell - 24 hour process.
PROCESS OPTIMIZATION OF BIOETHANOL PRODUCTION FROM PEELS OF CASSAVA CULTIVARS USING DIFFERENT MICROBIAL INNOCULANTS. by Uyoh Edak Aniedi 1, Obianwa Chibuzor.
Fermentation Technology
Topic : Bio-Ethanol Advisor : Prof. Jo-Shu Chang NURHAYATI / 林海亞 N PAPER REVIEW.
Global Gluconic Acid Industry 2016 Market Research Report
BSE222A/341: Biochemical Engineering
Topic 2: Molecular Biology 2.5 Enzymes Nature of science: Experimental design—accurate, quantitative measurements in enzyme experiments require replicates.
The Chemicals of Living Cells ©The Wellcome Trust.
Seventh Grade1. 2 Moving Cellular Material A. Passive Transport 1.A cell membrane is semipermeable, which means that it allows only certain substances.
Ch 2 The Chemistry of Life Students know most macromolecules (polysaccharides, nucleic acids, proteins, lipids) in cells and organisms are synthesized.
Batch and continuous processes. Chemicals may be manufactured using batch processes.
Cellular Transportation & Respiration
Cellular Transportation & Respiration
THE METHOD OF FIRST INTEGRALS OF DIFFERENTIAL SYSTEM APPLIED TO BATCH ALCHOHOL FERMENTATION WITH IMMOBILIZED CELLS Silvia B. Popova*, Georgi A. Kostov**
Prof. Dr. Ir. Sri Kumalaningsih, M.App.Sc
TEASER Metal forming is a production technology widely used in all Europe. Many of daily used products contains formed metal components. Changes in workpiece.
Strain choice and Improvement Mass Culture
Nature BioScience Pvt. Ltd. Consistently Embraced Innovation To Provide A Superior Level Of Excellence.
Nature BioScience Pvt. Ltd. Consistently Embraced Innovation To Provide A Superior Level Of Excellence.
Nature BioScience Pvt. Ltd. Consistently Embraced Innovation To Provide A Superior Level Of Excellence.
Geoff Bell - Microbiogen
Basis Operations in Industrial Fermentations
Bioreactors Engineering
Enzymes They be proteins..
4. Basis Operations in Food Fermentations (Biotechnology)
Cellular Transportation & Respiration
Cell Processes & Energy
Bioenergy-Fermentation
Presentation transcript:

Lentikats Biotechnology in Organic Acid Production

Content What is the Lentikats biocatalyst? How is the Lentikats biocatalyst produced? Benefits of the Lentikats biotechnology Lentikats biocatalyst and its usage in organic acid production Partners Guarantees Contacts

What is the Lentikats Biocatalyst? Unique shape of the matrix and original immobilization procedure enables to encapsulate free enzymes or microorganisms (bacteria, yeasts, fungi) inside a solid porous carrier from polyvinylalkohol (PVA). The advantages of PVA cells are: Excellent physical and mechanical characteristics that result in a long-term mechanical stability Hardly biodegradable No toxic effects Lentikats biocatalysts enable easy separation of enzymes or microorganisms from the bulk media and therefore can be used repeatedly. Biotechnologies are changing the world…

How does the Lentikats Biocatalyst work? A maximum surface in combination with the minimum volume of Lentikats biocatalyst results in a substantial reduction of diffusion limitations associated with the transfer of substrate into the matrix and the product out of the matrix.

Why polyvinylalcohol? It is an inexpensive material Encapsulation takes place under optimal, cell-sparing conditions It allows a production of hydrogel with excellent mechanical properties It does not have any side effects on fermentation It offers high capacity for the cell loading The process is stable and easy to control It is a non-toxic material Biotechnologies are changing the world…

How is the Lentikats Biocatalyst produced?

What can be immobilized? Free or immobilized enzymes The size of Lentikats biocatalyst pores varies depending on the size and diameter of the biocatalyst due to: type of PVA additives (size of macromolecules) concentration of additives biomass concentration Free cells Dead cells Living non-growing cells Living growing cells

Laboratory Units for the Encapsulation Lab scale units with a low production capacity of Lentikats biocatalysts (for research purposes) are also available

Lentikats Biocatalyst – production line

What are the benefits of LB? Biotechnologies that are environmentally friendly …

…and also… Lower biochemical reaction time In comparison with conventional technologies much higher yield (i.e. 5 – 15% higher) Reuse of the biocatalyst (sieve separation) Reduction of the risk of contamination during fermentation processes High stability of production processes

Lentikats Organic Acid Production Solutions Lentikats biotechnology is used in the following processes: lactic acid production from glucose, sucrose and lactose (immobilized bacteria Bacillus coagulans) gluconic acid production from sucrose and glucose (immobilized filamentous fungi Aspergillus niger) itaconic acid production from sucrose and glucose (immobilized filamentous fungi Aspergillus terreus).

Lentikats Biotechnology LENTIKATS BIOTECHNOLOGY FOR LACTIC ACID PRODUCTION Producer: bacteria Bacillus coagulans. Substrates: glucose, sucrose, lactose. Production: batch, fed batch and continuous lactic fermentation is stable for all C-substrates. saccharose fermentation solutions with 60 g/l of saccharose concentrate (The total fermentation process was decresed from 48 hours in „the first conversion“ to 12 hours in „the tenth conversion“ with a lactic acid yield of 91 to 93 %.) glucose fermentation solution with 60 g/l glucose concentrate (After 14 hours fermentation broths consist of 55.2 g /l of lactic acid and 1.2 g /l of glucose in the tenth conversion.) fermentation productivity is increased from 13.5 to 17.0 (g LA.dm -3.h -1 ).

Lentikats Biotechnology LENTIKATS BIOTECHNOLOGY FOR ORGANIC ACIDS PRODUCTION Producer: 1) filamentous fungi Aspergillus terreus for itaconic acid production 2) filamentous fungi Aspergillus niger for gluconic acid production Substrates: sucrose, glucose Production: extensive production of itaconic acid is not stable yet first results indicate that if the initial concentration of sucrose is 50 g/l then the concentration of itaconic acid is 18.5 g/l in the batch mode process

What does Lentikats Biocatalyst bring? High specific activity Fermentation processes regulation Operational costs decrease Optically clear L- lactic acid (99%) manufacturing High yield of lactic acid (about 20 %) Robustness Biomass regeneration costs decrease

Delivering on Lentikats Biotechnology Key Benefits High Productivity Short fermentation time (10 hours) High yields About % Reusable Lentikats Biocatalysts High concentration of Lentikats Biocatalysts in fermentors Low risk of contamination Increased operational costs Decreased sales revenue Decreased fermentation volumes Notable cost reduction Significant improvement of operating economic results

Our partners in the field of industrial applications geniaLab ®, BioTechnologie-Produkte und Dienstleistungen Gmbh Büchnerstraße 7, Braunschweig, Germany

Lentikats Biotechnology – guarantee of your investments and the investment return You can test our biocatalyst easily by yourself with your substrate in your own plant or plant of your choice to see the results. We offer you our assistance and full support. We offer a long-term cooperation to the engineering companies specialising in the design of distilleries and are interested in the implementation of technologies requiring minimal investment at high profitability. Biotechnologies are changing the world…

Lentikats Biotechnology – Investment and Investment Return Guarantees We guarantee for the following: 1.delivery of production facilities within 24 months 2.delivery of output parameters 3.operational stability of Lentikats biocatalyst and their activity and productivity 4.purchase price stability within 36 months.

Our partners in the field of research and development Institute of Microbiology, Academy of Science of the Czech Republic, Vídeňská 1083, Praha 4, Krč STU Bratislava, Faculty of chemical and food technology, Institute of biotechnology and food technology, Radlinského 9, Bratislava, SK ICT Prague, Department of Fermentation Chemistry and bioengineering, Technická 5, Praha 6 University of Alberta, Edmonton Alberta, T6G 2J9 Canada

Lentikats Biotechnology Applications Lentikats Biocatalysts and applied Lentikats Biotechnology also delivers additional value and benefits in the following sectors: waste and industrial water treatment, distillery industry – bioethanol production, pharmaceutics – production of robust biocatalysts, food industry – whey processing, production of special sugars carbohydrates and syrups Biotechnologies are changing the world…

Contacts Company Headquarters: LentiKat´s a.s. Evropská 423/ Praha 6 Czech republic Tel.: Fax: Production plant and laboratories: LentiKat´s a.s. Pod Vinicí Stráž pod Ralskem Czech republic Tel.: Fax: