Matches in SemOpenAlex for { <https://semopenalex.org/work/W4307388618> ?p ?o ?g. }
- W4307388618 endingPage "2622" @default.
- W4307388618 startingPage "2613" @default.
- W4307388618 abstract "Aquatic plants and their root exudates play important roles in the removal of trace organic contaminants in aquatic environments. However, the wavelength-dependent photogeneration of reactive species (RS) and photodegradation of organic contaminants by root exudates are poorly understood. This paper presents the first evidence that the photogeneration of 3DOM*, 1O2, and ·OH by root exudates varied under UV light-emitting diode (UV-LED) irradiation in the wavelength range of 265–400 nm. The quantum yields of 3DOM* and 1O2 of the four plants’ root exudates, including Scindapsus aureus, Pistia stratiotes, Eichhornia crassipes, and Nymphaea tetragona, reached the highest value at an irradiation wavelength of 275 nm and further decreased with increasing wavelength, while the ·OH quantum yield decreased gradually from 3.2–5.5 × 10–4 at 265 nm to 1.4–2.6 × 10–6 at 400 nm. The root exudate of Pistia stratiotes showed higher quantum yields of 3DOM* and 1O2 than that of the other three plants, while the highest ·OH quantum yield was observed in that of Eichhornia crassipes. The excitation wavelength affected the indirect degradation of organic contaminants by altering the photogeneration of RS in root exudate solutions. These findings highlight the wavelength-dependent photoreactivity of root exudates and improve the understanding of their photochemical processes in aquatic environments." @default.
- W4307388618 created "2022-11-01" @default.
- W4307388618 creator A5011203156 @default.
- W4307388618 creator A5024832149 @default.
- W4307388618 creator A5029851581 @default.
- W4307388618 creator A5046822943 @default.
- W4307388618 creator A5079570847 @default.
- W4307388618 creator A5086617143 @default.
- W4307388618 date "2022-10-25" @default.
- W4307388618 modified "2023-10-16" @default.
- W4307388618 title "Wavelength-Dependent Photoreactivity of Root Exudates from Aquatic Plants under UV-LED Irradiation" @default.
- W4307388618 cites W1926950498 @default.
- W4307388618 cites W1969922892 @default.
- W4307388618 cites W2000393951 @default.
- W4307388618 cites W2005797130 @default.
- W4307388618 cites W2031350988 @default.
- W4307388618 cites W2035150385 @default.
- W4307388618 cites W2041269463 @default.
- W4307388618 cites W2078694731 @default.
- W4307388618 cites W2106012378 @default.
- W4307388618 cites W2134602538 @default.
- W4307388618 cites W2155812824 @default.
- W4307388618 cites W2162216076 @default.
- W4307388618 cites W2165258753 @default.
- W4307388618 cites W2232192360 @default.
- W4307388618 cites W2288703130 @default.
- W4307388618 cites W2318943109 @default.
- W4307388618 cites W2320295642 @default.
- W4307388618 cites W2332114953 @default.
- W4307388618 cites W2332928108 @default.
- W4307388618 cites W2487445249 @default.
- W4307388618 cites W2521273518 @default.
- W4307388618 cites W2529957433 @default.
- W4307388618 cites W2558243891 @default.
- W4307388618 cites W2566257129 @default.
- W4307388618 cites W2582104301 @default.
- W4307388618 cites W2588366046 @default.
- W4307388618 cites W2782037627 @default.
- W4307388618 cites W2787432311 @default.
- W4307388618 cites W2800806212 @default.
- W4307388618 cites W2803006510 @default.
- W4307388618 cites W2887215403 @default.
- W4307388618 cites W2913124941 @default.
- W4307388618 cites W2940909936 @default.
- W4307388618 cites W2946377895 @default.
- W4307388618 cites W2947776653 @default.
- W4307388618 cites W2949935935 @default.
- W4307388618 cites W2953196169 @default.
- W4307388618 cites W2964072580 @default.
- W4307388618 cites W2972537565 @default.
- W4307388618 cites W2986168422 @default.
- W4307388618 cites W3006638557 @default.
- W4307388618 cites W3046130831 @default.
- W4307388618 cites W3049364375 @default.
- W4307388618 cites W3092527123 @default.
- W4307388618 cites W3133853005 @default.
- W4307388618 cites W3139032283 @default.
- W4307388618 cites W3177350445 @default.
- W4307388618 cites W3201200801 @default.
- W4307388618 cites W3204977677 @default.
- W4307388618 cites W3207505515 @default.
- W4307388618 cites W3209960448 @default.
- W4307388618 cites W3210519142 @default.
- W4307388618 cites W4200266182 @default.
- W4307388618 cites W4229456772 @default.
- W4307388618 cites W4280602855 @default.
- W4307388618 doi "https://doi.org/10.1021/acsestwater.2c00371" @default.
- W4307388618 hasPublicationYear "2022" @default.
- W4307388618 type Work @default.
- W4307388618 citedByCount "2" @default.
- W4307388618 countsByYear W43073886182023 @default.
- W4307388618 crossrefType "journal-article" @default.
- W4307388618 hasAuthorship W4307388618A5011203156 @default.
- W4307388618 hasAuthorship W4307388618A5024832149 @default.
- W4307388618 hasAuthorship W4307388618A5029851581 @default.
- W4307388618 hasAuthorship W4307388618A5046822943 @default.
- W4307388618 hasAuthorship W4307388618A5079570847 @default.
- W4307388618 hasAuthorship W4307388618A5086617143 @default.
- W4307388618 hasConcept C107872376 @default.
- W4307388618 hasConcept C120665830 @default.
- W4307388618 hasConcept C121332964 @default.
- W4307388618 hasConcept C132000320 @default.
- W4307388618 hasConcept C161790260 @default.
- W4307388618 hasConcept C162847780 @default.
- W4307388618 hasConcept C171001562 @default.
- W4307388618 hasConcept C185592680 @default.
- W4307388618 hasConcept C18903297 @default.
- W4307388618 hasConcept C192562407 @default.
- W4307388618 hasConcept C2776131572 @default.
- W4307388618 hasConcept C2777729419 @default.
- W4307388618 hasConcept C2781356878 @default.
- W4307388618 hasConcept C34771814 @default.
- W4307388618 hasConcept C49040817 @default.
- W4307388618 hasConcept C55493867 @default.
- W4307388618 hasConcept C6260449 @default.
- W4307388618 hasConcept C65165184 @default.
- W4307388618 hasConcept C75473681 @default.
- W4307388618 hasConcept C86803240 @default.