A stand-alone trickling photobioreactor (TPBR) was seeded with activated sludge and microalgae to treat domestic wastewater. The TPBR was started-up at 12-h hydraulic retention time at room temperature with 12:12 h light:dark cycle. The light was provided by blue LED strips. The reactor has a total volume of 30 L and is divided into six segments. Each segment is 30 cm long and has a diameter of 15 cm. Each segment was packed with polyurethane foam sponge cubes (2.5 × 2.5 × 2.5 cm3) with 40% occupancy. The chemical oxygen demand (COD), total organic carbon (TOC), total nitrogen (TN), and phosphorus (P) of domestic wastewater varied in the range of 164–256 mg/L, 84.4–133.8 mg/L, 34.2–55.6 mg/L, and 24.7–39.3 mg/L, respectively, during this pe...
This study aims to enhance nutrient removal in an existing activated sludge process based decentrali...
Microalgae can add value to biological wastewater treatment processes by capturing carbon and nutrie...
BACKGROUND: Secondary effluent wastewaters still contain resources including water and nutrients tha...
In this study, the efficiency of a trickling photo-bioreactor (TPBR), seeded with activated sludge a...
Photobioreactor design and determination of operation conditions for pollution removal from wastewat...
In this study, a 1200L outdoor pilot scale microalgal photobioreactor (PBR) was used for toilet wast...
Everyone who uses water produces wastewater. This inevitability creates several problems that increa...
To address the growing need for renewable energy and high quality water, the concept of industrial s...
Real field demonstrations to assess the removal efficiency of nutrients and organic matter from dome...
A flat plate and a tubular packed-bed photobioreactor with an algal-bacterial biofilm attached onto ...
A key future challenge of domestic wastewater treatment is nutrient recovery while still achieving a...
Using microalgae to treat wastewater has received growing attention in the world because it is regar...
Biofilm photobioreactors rely on cooperation between algae and bacteria within a single biofilm to t...
The objective of this paper is to present the design, construction and operation (during one year) o...
Various resources from a municipal wastewater treatment plant (MWTP) are available for microalgae cu...
This study aims to enhance nutrient removal in an existing activated sludge process based decentrali...
Microalgae can add value to biological wastewater treatment processes by capturing carbon and nutrie...
BACKGROUND: Secondary effluent wastewaters still contain resources including water and nutrients tha...
In this study, the efficiency of a trickling photo-bioreactor (TPBR), seeded with activated sludge a...
Photobioreactor design and determination of operation conditions for pollution removal from wastewat...
In this study, a 1200L outdoor pilot scale microalgal photobioreactor (PBR) was used for toilet wast...
Everyone who uses water produces wastewater. This inevitability creates several problems that increa...
To address the growing need for renewable energy and high quality water, the concept of industrial s...
Real field demonstrations to assess the removal efficiency of nutrients and organic matter from dome...
A flat plate and a tubular packed-bed photobioreactor with an algal-bacterial biofilm attached onto ...
A key future challenge of domestic wastewater treatment is nutrient recovery while still achieving a...
Using microalgae to treat wastewater has received growing attention in the world because it is regar...
Biofilm photobioreactors rely on cooperation between algae and bacteria within a single biofilm to t...
The objective of this paper is to present the design, construction and operation (during one year) o...
Various resources from a municipal wastewater treatment plant (MWTP) are available for microalgae cu...
This study aims to enhance nutrient removal in an existing activated sludge process based decentrali...
Microalgae can add value to biological wastewater treatment processes by capturing carbon and nutrie...
BACKGROUND: Secondary effluent wastewaters still contain resources including water and nutrients tha...