Converting nitrogen and phosphorus wastewater into bioenergy using microalgae-bacteria consortia: a critical review

C Zhang, S Li, SH Ho - Bioresource technology, 2021 - Elsevier
Conventional wastewater treatment using activated sludge cannot efficiently eliminate
nitrogen and phosphorus, thus engendering the risk of water eutrophication and ecosystem …

CO2 improves the microalgal-bacterial granular sludge towards carbon-negative wastewater treatment

B Ji, C Liu - Water research, 2022 - Elsevier
As a promising wastewater treatment technology, little is known about whether the
greenhouse gas CO 2 can be applied for microalgal-bacterial granular sludge (MBGS) …

New concept in swine wastewater treatment: development of a self-sustaining synergetic microalgae-bacteria symbiosis (ABS) system to achieve environmental …

W Qu, C Zhang, X Chen, SH Ho - Journal of hazardous materials, 2021 - Elsevier
Much attention has been paid to developing methods capable of synchronous removal of
pollutants from swine wastewater. Due to the natural symbiotic interactions between …

Second-generation phosphorus: recovery from wastes towards the sustainability of production chains

CE Hollas, AC Bolsan, B Venturin, G Bonassa… - Sustainability, 2021 - mdpi.com
Phosphorus (P) is essential for life and has a fundamental role in industry and the world food
production system. The present work describes different technologies adopted for what is …

[HTML][HTML] Enhancing phosphorus removal of photogranules by incorporating polyphosphate accumulating organisms

LM Trebuch, J Sohier, S Altenburg, BO Oyserman… - Water Research, 2023 - Elsevier
Photogranules are a novel wastewater treatment technology that can utilize the sun's energy
to treat water with lower energy input and have great potential for nutrient recovery …

Responses of Chlorella vulgaris to the native bacteria in real wastewater: Improvement in wastewater treatment and lipid production

L Zhang, B Wang, L Zhang, L Lian, X Cheng… - Environmental …, 2023 - Elsevier
Alga–bacterium interaction can improve wastewater treatment efficiency. To unravel the
mystery of the interaction between microalgae and bacteria in wastewater, mono-cultures …

Oxygen affinity and light intensity induced robust phosphorus removal and fragile ammonia removal in a non-aerated bacteria-algae system

J Fan, W Yuan, X Zhang, B Ji, X Du - Science of The Total Environment, 2024 - Elsevier
Non-aerated bacteria-algae system gaining O 2 through photosynthesis presents an
alternative for costly mechanical aeration. This study investigated oxygen supply and …

The successful application of light to the system of simultaneous nitrification/endogenous denitrification and phosphorus removal: Promotion of partial nitrification and …

Q Meng, W Zeng, H Liu, M Zhan, J Zhang, H Wu - Water Research, 2023 - Elsevier
Partial nitrification (PN) and high glycogen accumulating metabolism (GAM) activity are the
basis for efficient nitrogen (N) and phosphorus (P) removal in simultaneous nitrification …

Microalga-mediated tertiary treatment of municipal wastewater: removal of nutrients and pathogens

S Rani, R Chowdhury, W Tao, L Nedbalová - Sustainability, 2021 - mdpi.com
The microalgal strain Chlorella sorokiniana isolated from a waste stabilization pond was
used for tertiary treatment of municipal wastewater. Three light: dark (L: D) regimes of 12: 12 …

A high-efficiency mixotrophic photoelectroactive biofilm reactor (MPBR) for enhanced simultaneous removal of nutrients and antibiotics by integrating light intensity …

X Yao, J Sun, X Bai, Y Yuan, Y Zhang, Y Xu… - Journal of Environmental …, 2023 - Elsevier
The performance of a mixotrophic photoelectroactive biofilm reactor (MPBR) was improved
in order to achieve enhanced simultaneous removal of multiple aqueous pollutants and the …