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- W2895724145 abstract "Contact ing with O2 and at the same time ability to absorb nutrient will determin e productivity level of bakterioselulosa. To scale up the production, there are some effort done such as Rotary Disc Reactor (RDR) . The RDR is unable to rotate less than 7 rpm (equivalent 10 second to every rotation). In this research, weakness of the rotary disk bioreactor is overcome d by developing Controlled Dip Reactor (CDR ) . Excess of proposed appliance is that user can arrange the duration submerged phase in growth liquid medium and exposed to the air phase as according to experiment design, so that more effective and be free to gain time optimum to each the phase utilize to get maximal production of bakterioselulosa. At testing, designed appliance can lift place grow medium of bakterioselulosa toward as high as 15 cm meaning exposed to the air, and degrade place grow of bakterioselulosa medium downwards until 1 cm measured from medium place base, which mean bakterioselulosa submerged liquid of the growth medium and the time exposed to the air and exposed to the liquid can be controlled to vary from 1 until 20 minute s ." @default.
- W2895724145 created "2018-10-12" @default.
- W2895724145 creator A5077704187 @default.
- W2895724145 date "2018-02-25" @default.
- W2895724145 modified "2023-09-23" @default.
- W2895724145 title "Controlled Dip Reactor Design To Increase Bakterioselulosa Production Based on ATMega8535 Microcontroller" @default.
- W2895724145 hasPublicationYear "2018" @default.
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