flâneur — a map of the web's best reading

The application of magical microalgae in carbon sequestration and emission reduction: Removal mechanisms and potential analysis - ScienceDirect

sciencedirect.com · saved by 1 readers

The electrons in P680 (PSII) get excited to a higher energy state by light energy (external illumination/solar energy) [33]. The excited electron is then transported through the membrane by the action of various membrane transporters such as plastoquinone (PQ), cytochrome b6F (Cyt b6F) and plastocyanin (PC) [34,35]. The excited electron from PSII then replaces the excited electron in the P700 (PSI) complex leading to the reduction of NADP+ to NADPH (Eq. 1). Considering recycling requirements in RAS, several biotechnological approaches can isolate nitrogenous nutrients from aquaculture wastewater (AW). Of these, microalgae-based technologies endow low energy consumption, environmental friendliness, and substantial potential as renewable energy resource (Dahai et al., 2024; Liu et al., 2023; Sarkheil et al. 2022a; Shahid et al., 2020; Sharma et al., 2022). In addition, microalgae stimulate disease resistance of aquatic organisms (Zribi et al., 2023). All content on this site: Copyright ©

The electrons in P680 (PSII) get excited to a higher energy state by light energy (external illumination/solar energy) [33]. The excited electron is then transported through the membrane by the action of various membrane transporters such as plastoquinone (PQ), cytochrome b6F (Cyt b6F) and plastocyanin (PC) [34,35]. The excited electron from PSII then replaces the excited electron in the P700 (PSI) complex leading to the reduction of NADP+ to NADPH (Eq. 1). Considering recycling requirements in RAS, several biotechnological approaches can isolate nitrogenous nutrients from aquaculture wastewat

Explore this link on the map →