Measurement of Natural Radioactivity in Water Samples from Al Dora Thermal Power plant in Baghdad Governorate

2018 ◽  
Vol 3 (2) ◽  
pp. 79-82
Author(s):  
Nada F. Tawfiq ◽  
Dhuha R. Mathloom
2016 ◽  
Vol 171 (2) ◽  
pp. 196-199 ◽  
Author(s):  
Lalit Mohan Singh ◽  
Mukesh Kumar ◽  
B. K. Sahoo ◽  
B. K. Sapra ◽  
Rajesh Kumar

2016 ◽  
Vol 06 (03) ◽  
pp. 153-160 ◽  
Author(s):  
Aziz Boukhair ◽  
Laila Belahbib ◽  
Khadija Azkour ◽  
Hamid Nebdi ◽  
Mohammed Benjelloun ◽  
...  

2011 ◽  
Vol 26 (1) ◽  
pp. 11-17 ◽  
Author(s):  
Zora Zunic ◽  
Jerzy Mietelski ◽  
Sanja Radanovic ◽  
Renata Kierepko ◽  
Giancarlo Ciotoli ◽  
...  

This paper deals with the analysis of natural radionuclide content in 23 water samples collected in the vicinity of the Nikola Tesla B thermal power plant, Serbia. All samples were analyzed for 226Ra and uranium isotopes (238U, 234U) activity using radiochemical methods and alpha spectrometry. Obtained results show that the activity concentrations for uranium and radium in the water around the thermal power plant are low when compared to those from areas across Serbia with their enhanced natural uranium and radium content. No important radiological hazard related to uranium and radium activity stored in heap was found.


2018 ◽  
Vol 10 (3) ◽  
pp. 915-924
Author(s):  
Savita Verma ◽  
Anju .

In the present study, both the underground and surface water samples around Guru Nanak Dev Thermal Power Plant Bathinda, Punjab, having total installed capacity of 440MW, were analyzed for the physico-chemical parameters viz. pH, Electrical Conductivity (EC), Total Dissolved Solid (TDS), Total Hardness (TH), Calcium (Ca2+), Magnesium (Mg2+), Total Alkalinity (TA), Carbonate (CO32-), Bicarbonate (HCO3-), Chloride (Cl-), Phosphate (PO43-), Nitrate (NO3-), Fluoride (F-) and heavy metals such as Cadmium (Cd), Copper (Cu), Lead(Pb), Nickel (Ni) and Zinc (Zn). The correlation coefficients (r) among various water quality parameters of studied underground water samples were calculated. The physical and chemical parameters of groundwater are compared with the drinking water quality standards recommended by Bureau of Indian Standards (BIS) (2012) and World Health Organization (WHO) (2017). On the basis of results obtained in the present study, concentration of Chloride (Cl-), Magnesium (Mg2+), Fluoride (F-) and Total  dissolved solids (TDS) observed in ground water of Bathinda varied from 30 to 284 mg/l, 120 to 280 mg/l, 2.66-3.99 mg/l and 620-1439 mg/l, respectively which are exceeding the acceptable limits prescribed by WHO (2017) as well as BIS (2012). Also, the concentration of heavy metals viz. cadmium (0.366 to 0.437 mg/l), and lead (0.193 to 0.353 mg/l) have higher levels than prescribed by WHO and BIS for drinking purpose. Thus, groundwater is not suitable for drinking purposes with prior treatment.


2015 ◽  
Vol 10 (2) ◽  
pp. 572-580 ◽  
Author(s):  
Shubham Kanchan ◽  
Vinit Kumar ◽  
Krishna Yadav ◽  
Neha Gupta ◽  
Sandeep Arya

Thermal power plant generates a huge amount of fly ash on combustion of coal which is becoming a major environmental issue. Thermal power plants are greatly facing a fly ash management problem. Open dumping of fly ash can deteriorate the groundwater quality by runoff. In the present investigation, the ground water samples were collected from nearby areas of Parichha Thermal Power Plant at six locations during the period of Jan 2014 to May 2014. The samples were taken to the laboratory and analyzed for physico-chemical properties and heavy metal content. The physico-chemical analysis was done for the parameters like pH, Turbidity, Temperature, Electrical Conductivity, Alkalinity, Total Dissolved Solids, Total Hardness, Calcium Hardness and Magnesium Hardness. The concentration of Turbidity, EC and Alkalinity was exceeding the standard at all locations and shows that the groundwater of the area is not fit for drinking. The ground water samples were also analyzed for the presence of lead and cadmium and it was found that lead was exceeding the limit although cadmium was found within the limit.


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