SAE International The Analysis of a Modified Membrane-Aerated Biofilm Reactor for Space Flight Applications 2008-01-2016

Description
A modified membrane-aerated biofilm reactor (mMABR) was constructed by incorporating two distinct biofilm immobilization media: gas-permeable hollow fiber membranes and high surface area inert bio-media. In order to evaluate the mMABR for space flight applications, a synthetic ersatz early planetary base (EPB) waste stream was supplied as influent to the reactor, and a liquid loading study was conducted at three influent flow rates. On average, percent carbon removal ranged from 90.7% to 93.1% with volumetric conversion rates ranging from 25 \u00b1 3.3 g / m 2x d and 95 \u00b1 13.4 g / m 2x d. Simultaneous nitrification/denitr ification (SND) was achieved in a single reactor. As the liquid loading rate increased from 0.15 mL/min to 0.45 mL/min, the volumetric denitrification rates elevated from 27 \u00b1 3.3 g / m 2x d to 65 \u00b1 5.2 g / m 2x d. Additionally, it was found that nitrification and denitrification were linearly related with respect to both percent efficiency and volumetric reaction rates. The mMABR provides an equivalent systems mass (ESM) cost comparative alternative to previously studied two-stage biological systems.
Description
A modified membrane-aerated biofilm reactor (mMABR) was constructed by incorporating two distinct biofilm immobilization media: gas-permeable hollow fiber membranes and high surface area inert bio-media. In order to evaluate the mMABR for space flight applications, a synthetic ersatz early planetary base (EPB) waste stream was supplied as influent to the reactor, and a liquid loading study was conducted at three influent flow rates. On average, percent carbon removal ranged from 90.7% to 93.1% with volumetric conversion rates ranging from 25 \u00b1 3.3 g / m 2x d and 95 \u00b1 13.4 g / m 2x d. Simultaneous nitrification/denitr ification (SND) was achieved in a single reactor. As the liquid loading rate increased from 0.15 mL/min to 0.45 mL/min, the volumetric denitrification rates elevated from 27 \u00b1 3.3 g / m 2x d to 65 \u00b1 5.2 g / m 2x d. Additionally, it was found that nitrification and denitrification were linearly related with respect to both percent efficiency and volumetric reaction rates. The mMABR provides an equivalent systems mass (ESM) cost comparative alternative to previously studied two-stage biological systems.

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The Analysis of a Modified Membrane-Aerated Biofilm Reactor for Space Flight Applications - 2008-01-2016 - SAE International
Warrendale, PA, United States
The Analysis of a Modified Membrane-Aerated Biofilm Reactor for Space Flight Applications
2008-01-2016
The Analysis of a Modified Membrane-Aerated Biofilm Reactor for Space Flight Applications 2008-01-2016
A modified membrane-aerated biofilm reactor (mMABR) was constructed by incorporating two distinct biofilm immobilization media: gas-permeable hollow fiber membranes and high surface area inert bio-media. In order to evaluate the mMABR for space flight applications, a synthetic ersatz early planetary base (EPB) waste stream was supplied as influent to the reactor, and a liquid loading study was conducted at three influent flow rates. On average, percent carbon removal ranged from 90.7% to 93.1% with volumetric conversion rates ranging from 25 \u00b1 3.3 g / m 2x d and 95 \u00b1 13.4 g / m 2x d. Simultaneous nitrification/denitr ification (SND) was achieved in a single reactor. As the liquid loading rate increased from 0.15 mL/min to 0.45 mL/min, the volumetric denitrification rates elevated from 27 \u00b1 3.3 g / m 2x d to 65 \u00b1 5.2 g / m 2x d. Additionally, it was found that nitrification and denitrification were linearly related with respect to both percent efficiency and volumetric reaction rates. The mMABR provides an equivalent systems mass (ESM) cost comparative alternative to previously studied two-stage biological systems.

A modified membrane-aerated biofilm reactor (mMABR) was constructed by incorporating two distinct biofilm immobilization media: gas-permeable hollow fiber membranes and high surface area inert bio-media. In order to evaluate the mMABR for space flight applications, a synthetic ersatz early planetary base (EPB) waste stream was supplied as influent to the reactor, and a liquid loading study was conducted at three influent flow rates. On average, percent carbon removal ranged from 90.7% to 93.1% with volumetric conversion rates ranging from 25 \u00b1 3.3 g / m 2x d and 95 \u00b1 13.4 g / m 2x d. Simultaneous nitrification/denitrification (SND) was achieved in a single reactor. As the liquid loading rate increased from 0.15 mL/min to 0.45 mL/min, the volumetric denitrification rates elevated from 27 \u00b1 3.3 g / m 2x d to 65 \u00b1 5.2 g / m 2x d. Additionally, it was found that nitrification and denitrification were linearly related with respect to both percent efficiency and volumetric reaction rates. The mMABR provides an equivalent systems mass (ESM) cost comparative alternative to previously studied two-stage biological systems.

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  SAE International
Product Category Standards and Technical Documents
Product Number 2008-01-2016
Product Name The Analysis of a Modified Membrane-Aerated Biofilm Reactor for Space Flight Applications
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