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Magnesium ions improving the growth and organics reduction of Rhodospirillum rubrum cultivated in sewage through regulating energy metabolism pathways
by
Liu, Ri-Jia
, Xu, Chang-Ru
, Lang, Lang
, Wu, Pan
, Ji, Yu-Bin
, Li, Jian-Zheng
in
Adenosine triphosphatase
/ ATP
/ Bacteria
/ Bacteriochlorophyll
/ Biological Oxygen Demand Analysis
/ Biomass
/ Biomass energy production
/ Bioreactors
/ Ca2+/Mg2+-exchanging ATPase
/ Calcium
/ Chemical oxygen demand
/ Dehydrogenase
/ Dosage
/ Efficiency
/ Energy Metabolism
/ Enzymes
/ Hydraulic retention time
/ Isocitrate dehydrogenase
/ Light
/ Magnesium
/ Metabolism
/ Oxygen Consumption
/ Photophosphorylation
/ Potash
/ Potassium
/ Purification
/ Recycling
/ Reduction
/ Removal
/ Resource recovery
/ Retention time
/ Rhodospirillum rubrum
/ Rhodospirillum rubrum - drug effects
/ Rhodospirillum rubrum - growth & development
/ Rhodospirillum rubrum - metabolism
/ Sewage
/ Soybeans
/ Statistical analysis
/ Sulfur
/ Waste Disposal, Fluid
/ Waste Water
/ Wastewater
/ Wastewater treatment
/ Water purification
2015
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Magnesium ions improving the growth and organics reduction of Rhodospirillum rubrum cultivated in sewage through regulating energy metabolism pathways
by
Liu, Ri-Jia
, Xu, Chang-Ru
, Lang, Lang
, Wu, Pan
, Ji, Yu-Bin
, Li, Jian-Zheng
in
Adenosine triphosphatase
/ ATP
/ Bacteria
/ Bacteriochlorophyll
/ Biological Oxygen Demand Analysis
/ Biomass
/ Biomass energy production
/ Bioreactors
/ Ca2+/Mg2+-exchanging ATPase
/ Calcium
/ Chemical oxygen demand
/ Dehydrogenase
/ Dosage
/ Efficiency
/ Energy Metabolism
/ Enzymes
/ Hydraulic retention time
/ Isocitrate dehydrogenase
/ Light
/ Magnesium
/ Metabolism
/ Oxygen Consumption
/ Photophosphorylation
/ Potash
/ Potassium
/ Purification
/ Recycling
/ Reduction
/ Removal
/ Resource recovery
/ Retention time
/ Rhodospirillum rubrum
/ Rhodospirillum rubrum - drug effects
/ Rhodospirillum rubrum - growth & development
/ Rhodospirillum rubrum - metabolism
/ Sewage
/ Soybeans
/ Statistical analysis
/ Sulfur
/ Waste Disposal, Fluid
/ Waste Water
/ Wastewater
/ Wastewater treatment
/ Water purification
2015
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Magnesium ions improving the growth and organics reduction of Rhodospirillum rubrum cultivated in sewage through regulating energy metabolism pathways
by
Liu, Ri-Jia
, Xu, Chang-Ru
, Lang, Lang
, Wu, Pan
, Ji, Yu-Bin
, Li, Jian-Zheng
in
Adenosine triphosphatase
/ ATP
/ Bacteria
/ Bacteriochlorophyll
/ Biological Oxygen Demand Analysis
/ Biomass
/ Biomass energy production
/ Bioreactors
/ Ca2+/Mg2+-exchanging ATPase
/ Calcium
/ Chemical oxygen demand
/ Dehydrogenase
/ Dosage
/ Efficiency
/ Energy Metabolism
/ Enzymes
/ Hydraulic retention time
/ Isocitrate dehydrogenase
/ Light
/ Magnesium
/ Metabolism
/ Oxygen Consumption
/ Photophosphorylation
/ Potash
/ Potassium
/ Purification
/ Recycling
/ Reduction
/ Removal
/ Resource recovery
/ Retention time
/ Rhodospirillum rubrum
/ Rhodospirillum rubrum - drug effects
/ Rhodospirillum rubrum - growth & development
/ Rhodospirillum rubrum - metabolism
/ Sewage
/ Soybeans
/ Statistical analysis
/ Sulfur
/ Waste Disposal, Fluid
/ Waste Water
/ Wastewater
/ Wastewater treatment
/ Water purification
2015
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Magnesium ions improving the growth and organics reduction of Rhodospirillum rubrum cultivated in sewage through regulating energy metabolism pathways
Journal Article
Magnesium ions improving the growth and organics reduction of Rhodospirillum rubrum cultivated in sewage through regulating energy metabolism pathways
2015
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Overview
Rhodospirillum rubrum has the potential for biomass resource recycling combined with sewage purification. However, low biomass production and yield restricts the potential for sewage purification. This research investigated the improvement of biomass production, yield and organics reduction by Mg2+ in R. rubrum wastewater treatment. Results showed that with optimal dosage (120 mg/L), biomass production reached 4,000 mg/L, which was 1.5 times of that of the control group. Biomass yield was improved by 43.3%. Chemical oxygen demand (COD) removal reached over 90%. Hydraulic retention time was shortened by 25%. Mechanism analysis indicated that Mg2+ enhanced the isocitrate dehydrogenase and Ca2+/Mg2+-ATPase activities, bacteriochlorophyll content on respiration and photophosphorylation. These effects then enhanced ATP production, which led to more biomass accumulation and COD removal. With 120 mg/L Mg2+ dosage, the isocitrate dehydrogenase and Ca2+/Mg2+-ATPase activities, bacteriochlorophyll content, ATP production were improved, respectively, by 33.3%, 50%, 67%, 41.3% compared to those of the control group.
Publisher
IWA Publishing
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