scholarly journals Photolysis of sodium chloride and sodium hypochlorite by ultraviolet light inactivates the trophozoites and cysts of Acanthamoeba castellanii in the water matrix

Author(s):  
Beni J. M. Chaúque ◽  
Marilise B. Rott

Abstract The present study aimed to investigate an effective, sustainable and accessible way to inactivate chlorine-resistant microorganisms, such as Acanthamoeba castellanii, through the photolysis of sodium chloride (NaCl) and sodium hypochlorite (NaOCl) in the water matrix. The inactivation of trophozoites and cysts (2 × 107 per 8 mL) were exposed for 30, 60, 90, 120 and 150 min to the photolysis effect of NaOCl (1.0, 2.0, 4.0 and 8.0 mg/L) or NaCl (5.0, 10, 20 and 40 g/L) by ultraviolet light C (243 μW·cm2), then the viability was analyzed. The inactivation of all trophozoites was achieved by exposure to the photolysis effect of 2.0 mg/L of NaOCl or 20 g/L of NaCl, in 150 or 120 min, respectively. Inactivation of all cysts was achieved by double exposure to the photolysis effect of 1.0 mg/L NaOCl or 5.0 g/L NaCl from 90 min of each exposure round. The exposure time was a strong determinant in the inactivation of A. castellanii trophozoites or cysts. The photolysis of NaOCl or NaCl is an effective method to eliminate A. castellanii in water. These findings expand the list of chlorine-resistant microorganisms that can be inactivated by NaOCl photolysis and show that NaCl photolysis is a new and promising method for treating swimming pool water and wastewater.

2018 ◽  
Vol 78 (8) ◽  
pp. 1633-1641
Author(s):  
Yuanxiang Mao ◽  
Liping Zhang ◽  
Huiyu Dong

Abstract Disinfection is essential to preventing infection caused by microbial pathogens in swimming pool water. The most commonly used disinfection methods are chlorine disinfectant, including sodium hypochlorite (NaOCl) and sodium dichloroisocyanurate (SDIC, C3O3N3Cl2Na) with characteristics of available chlorine formation and stability. In this study, we estimate the formation of trihalomethanes (THM4) in indoor swimming pools filled with seawater that adopt these disinfection methods, and we investigated the factors influencing the formation of THM4. Formation of THM4 by free chlorine (FC) and SDIC respectively is 327.8 μg L−1 and 307.6 μg L−1; Br-THMs is 226.7 μg L−1 for FC, 198 μg L−1 for SDIC. SDIC has less THM4 formation than FC in the same molar Br− dosage (10 μM) and total chlorine dosage (20 μM), and bromoform is the main Br-THMs species. The occurrence of THM4 is inhibited at high dosages of natural organic matter and Br−. The total Br-THMs increase from 75 μg L−1 to 189.7 μg L−1 and from 64.6 μg L−1 to 190 μg L−1 by FC and SDIC at pH 5.0–9.0, both of which are highly dependent on pH. In real water, similar results were found in Br−-containing water (1 mg-Br− L−1).


1965 ◽  
Vol 48 (3) ◽  
pp. 640-643
Author(s):  
L F Ortenzio

Abstract Collaborative results on the standard test for the efficiency of germicides in disinfecting swimming pool water (This Journal, 47, 541 (1964)) showed a reasonable degree of precision. Variations in the standard sodium hypochlorite solution and unknown sample are discussed. The method is recommended for adoption as official, first action.


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