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#bioreactors β€” Public Fediverse posts

Live and recent posts from across the Fediverse tagged #bioreactors, aggregated by home.social.

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  1. πŸ’πŸ»β€β™€οΈ TIL: 🚽🌱 #NASA is testing a mobile #wastewater system at the University of #NorthDakota that turns #astronaut #poop into water for #plants and drinking.

    Three #bioreactors process different waste types and feed the treated #water into a vertical #garden – growing #lunar salad from human waste. Engineers are stress-testing the setup in a simulated moon habitat to support a planned lunar base by 2029.

    πŸ‘‰ popsci.com/technology/nasa-was

    #moon #space #agriculture #recycling #science #engineering #food #nutrition

  2. πŸ’πŸ»β€β™€οΈ TIL: 🚽🌱 #NASA is testing a mobile #wastewater system at the University of #NorthDakota that turns #astronaut #poop into water for #plants and drinking.

    Three #bioreactors process different waste types and feed the treated #water into a vertical #garden – growing #lunar salad from human waste. Engineers are stress-testing the setup in a simulated moon habitat to support a planned lunar base by 2029.

    πŸ‘‰ popsci.com/technology/nasa-was

    #moon #space #agriculture #recycling #science #engineering #food #nutrition

  3. πŸ’πŸ»β€β™€οΈ TIL: 🚽🌱 #NASA is testing a mobile #wastewater system at the University of #NorthDakota that turns #astronaut #poop into water for #plants and drinking.

    Three #bioreactors process different waste types and feed the treated #water into a vertical #garden – growing #lunar salad from human waste. Engineers are stress-testing the setup in a simulated moon habitat to support a planned lunar base by 2029.

    πŸ‘‰ popsci.com/technology/nasa-was

    #moon #space #agriculture #recycling #science #engineering #food #nutrition

  4. πŸ’πŸ»β€β™€οΈ TIL: 🚽🌱 #NASA is testing a mobile #wastewater system at the University of #NorthDakota that turns #astronaut #poop into water for #plants and drinking.

    Three #bioreactors process different waste types and feed the treated #water into a vertical #garden – growing #lunar salad from human waste. Engineers are stress-testing the setup in a simulated moon habitat to support a planned lunar base by 2029.

    πŸ‘‰ popsci.com/technology/nasa-was

    #moon #space #agriculture #recycling #science #engineering #food #nutrition

  5. πŸ’πŸ»β€β™€οΈ TIL: 🚽🌱 #NASA is testing a mobile #wastewater system at the University of #NorthDakota that turns #astronaut #poop into water for #plants and drinking.

    Three #bioreactors process different waste types and feed the treated #water into a vertical #garden – growing #lunar salad from human waste. Engineers are stress-testing the setup in a simulated moon habitat to support a planned lunar base by 2029.

    πŸ‘‰ popsci.com/technology/nasa-was

    #moon #space #agriculture #recycling #science #engineering #food #nutrition

  6. Findings from a targeted #metabolomic profiling of rubber #tree laticifers by Deng et al. support the potential of developing laticifers as #bioreactors for the production of valuable metabolites in Hevea.
    doi.org/10.1111/jipb.13948
    @wileyplantsci
    #PlantSci #JIPB #rubber #latex #botany #OpenAccess

  7. Findings from a targeted #metabolomic profiling of rubber #tree laticifers by Deng et al. support the potential of developing laticifers as #bioreactors for the production of valuable metabolites in Hevea.
    doi.org/10.1111/jipb.13948
    @wileyplantsci
    #PlantSci #JIPB #rubber #latex #botany #OpenAccess

  8. @nicole2g @compost My two mini #JohnsonSu #Bioreactors of #Compost built and filled in August. The downpipes (removed after 24 hrs) create ventilating air holes in the compost pile.

    After initially heating up between 55-65Β°C for several days, to kill weed seeds and pathogens, worms were added in September as soon as the pile temperature fell below 25Β°C.

    They are regularly watered to maintain the moisture level. They will take 12 months to produce a fungal, biologically rich compost. 🀞

  9. @nicole2g @compost My two mini #JohnsonSu #Bioreactors of #Compost built and filled in August. The downpipes (removed after 24 hrs) create ventilating air holes in the compost pile.

    After initially heating up between 55-65Β°C for several days, to kill weed seeds and pathogens, worms were added in September as soon as the pile temperature fell below 25Β°C.

    They are regularly watered to maintain the moisture level. They will take 12 months to produce a fungal, biologically rich compost. 🀞

  10. @nicole2g @compost My two mini #JohnsonSu #Bioreactors of #Compost built and filled in August. The downpipes (removed after 24 hrs) create ventilating air holes in the compost pile.

    After initially heating up between 55-65Β°C for several days, to kill weed seeds and pathogens, worms were added in September as soon as the pile temperature fell below 25Β°C.

    They are regularly watered to maintain the moisture level. They will take 12 months to produce a fungal, biologically rich compost. 🀞

  11. @nicole2g @compost My two mini #JohnsonSu #Bioreactors of #Compost built and filled in August. The downpipes (removed after 24 hrs) create ventilating air holes in the compost pile.

    After initially heating up between 55-65Β°C for several days, to kill weed seeds and pathogens, worms were added in September as soon as the pile temperature fell below 25Β°C.

    They are regularly watered to maintain the moisture level. They will take 12 months to produce a fungal, biologically rich compost. 🀞

  12. #introduction

    I'm an #automation and #fermentation engineer based in the SF Bay Area.

    I'm interested in microbes of all kinds, and especially how we can work with them to meet human needs.

    In my day job, I work in #biomanufacturing, focusing on #robotics and #bioreactors. I figure that #microbiology can do amazing things, and #robots and #software are the best tools we have to talk to it.

    I'm big on #OpenSource and #diybio. Yes, I would love to collaborate on a cool bio project with you!

  13. #introduction

    I'm an #automation and #fermentation engineer based in the SF Bay Area.

    I'm interested in microbes of all kinds, and especially how we can work with them to meet human needs.

    In my day job, I work in #biomanufacturing, focusing on #robotics and #bioreactors. I figure that #microbiology can do amazing things, and #robots and #software are the best tools we have to talk to it.

    I'm big on #OpenSource and #diybio. Yes, I would love to collaborate on a cool bio project with you!

  14. #introduction

    I'm an #automation and #fermentation engineer based in the SF Bay Area.

    I'm interested in microbes of all kinds, and especially how we can work with them to meet human needs.

    In my day job, I work in #biomanufacturing, focusing on #robotics and #bioreactors. I figure that #microbiology can do amazing things, and #robots and #software are the best tools we have to talk to it.

    I'm big on #OpenSource and #diybio. Yes, I would love to collaborate on a cool bio project with you!