Radiation chemistry of carbohydrates. Part XVI. The contribution of OH radicals to the radiolysis of aqueous solutions

Author(s):  
G. O. Phillips ◽  
W. Griffiths ◽  
J. V. Davies
2017 ◽  
Vol 19 (43) ◽  
pp. 29402-29408 ◽  
Author(s):  
Kateřina Tomanová ◽  
Martin Precek ◽  
Viliam Múčka ◽  
Luděk Vyšín ◽  
Libor Juha ◽  
...  

We provide evidence on the formation of ˙OH radicals via 253.7 nm photolysis of aqueous solutions, determine their quantum yields, and apply the knowledge to photo-induced formation of phospholipid hydroperoxides.


2019 ◽  
Vol 7 (2) ◽  
pp. 46-53
Author(s):  
Lal hmunsiama ◽  
◽  
Seung-Mok Lee ◽  

In this study, the iron-pillared clay nanocatalyst (ICN) was employed as a nanocatalyst for decolorization of methylene blue (MB) in aqueous solutions without hydrogen peroxide. The changes in clay structure after the incorporation of iron-oxide particles was studied with the help of XRD analytical data. The SEM micrographs showed higher heterogeneous structure of ICN compared to pristine clay and the specific surface area of ICN (82.54 m2/g) is considerably higher than the unmodified clay (63.41 m2/g). Further, the EDX analytical data indicate the successful incorporation of iron-oxide into bentonite clay. Batch experiments showed that ICN could degrade MB within pH 3.0 to 11.0 and it is efficient even at higher concentrations. The degradation is very fast and more than 90% is removed within 30 mins. A small amount of ICN is effective for degradation of MB and the reusability test showed that ICN can be reuse for several times for the degradation of MB in aqueous solutions. The effect of scavengers studies indicate that the ·OH radicals generated from the ICN are responsible in the degradation of MB. This study indicates that ICN must be low cost and environmentally friendly active nanocatalyst for degradation of MB present in aquatic environment.


1979 ◽  
Vol 10 (17) ◽  
Author(s):  
Z. D. DRAGANIC ◽  
I. G. DRAGANIC ◽  
K. SEHESTED

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