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A2MA2M Experimental and modeling approaches to optimize an algae-to-methane coupled bioreactor system Ruby An – 2015 SURF Metcalf Student Principal Investigators.

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Presentation on theme: "A2MA2M Experimental and modeling approaches to optimize an algae-to-methane coupled bioreactor system Ruby An – 2015 SURF Metcalf Student Principal Investigators."— Presentation transcript:

1 A2MA2M Experimental and modeling approaches to optimize an algae-to-methane coupled bioreactor system Ruby An – 2015 SURF Metcalf Student Principal Investigators : Joe Vallino & Zoe Cardon The University of Chicago – Chicago – IL – MA – Woods Hole – Marine Biological Laboratory

2 Algae-to-methane (A2M) has potential as an efficient and practical renewable energy strategy Algal biomass: minimal land & water usage Methane: efficiently stored & energy on demand www.prx.orgwww.wageningenur.nl

3 A2M Research Aims 1.Experimental – Develop closed system with 100% nutrient recycling – Maximize methane production 2.Modeling – Develop accurate description of system – Predict system performance to achieve experimental objectives

4 A2 M Design Temperature: 25 °C

5 A2 M Design Aerobic Algal Reactor Inputs: Air CO 2 Light – Diel 12h Cycle Temperature: 25 °C

6 Chlamydomonas rienhardtii CW15 25 μm Green algae mutant lacking a cell wall

7 A2 M Design Temperature: 25 °C Anaerobic Microbial Digester Output: CO 2 and methane gas Digested algae as nutrients & detritus

8 Aim 1: Experimental Set-up A2M IRL

9 Liquid Volume: pH Dissolved oxygen (DO) Headspace: Oxygen (O 2 ) Carbon Dioxide (CO 2 ) Methane (CH 4 ) Data Monitoring in both reactors

10 Key Features of the Data

11 Lights onLights off

12 Lights onLights off CO 2 + H 2 O CH 2 O + O 2 light algae

13 Key Features of Data Installed spargers Doubled light levels Elevated CO 2 input 0.039% => 2%

14 Key Features of Data Day 1Yesterday

15 Aim 2a: Algal Reactor Mass Balance Model rate of change = gain - loss State Variables: 1.C Algae 2.C DIC(aq) 3.C O2(aq) 4.p CO2(g) 5.p O2(g)

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17 Inflow & Outflow

18 Mass Transfer

19 Inflow & Outflow Mass Transfer Algal Growth & Respiration

20 CO 2 + H 2 O CH 2 O + O 2 light algae Algal Growth Equation Light Limitation CO 2 Limitation

21 Adjustable Parameters

22 Model & Data Comparison Model fit to days 57-60 Model Data

23 Model & Data Comparison Model predictions for days 30-33 Data Model

24 In Summary: Experimentally - achieved high algal growth Accurately modeled algal reactor dynamics Establish and maximize methane production Develop the full coupled bioreactor model to simulate methanogenisis Next Steps:

25 Acknowledgements Joe Vallino Zoe Cardon Suzanne Thomas Anonymous Donor Ken Foreman & Wyntin Goodman Zeiss Microscopy Staff Jim & Joey

26 Questions/Discussion

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28 Supplementary Info

29 Anaerobic Microbial Community www.oceanscience.com Inoculated Day 71

30 Methane

31 Microscopic analysis of algal cellular disintegration Jumpstart methanogenic pathway : new inoculum Genomic analysis of microbial community? Methane Production Strategies

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