Analysis of Radium and Radon in the Environmental Samples and some physico-chemical properties of drinking water samples belonging to some areas of Rajasthan and Delhi, India
نویسندگان
چکیده
Indoor radon measurements in some dwellings of Rajasthan and Delhi areas have been carried out using LR-115 type II Cellulose Nitrate films in the bare mode. The Radon values vary from 22.30 Bq/m to 219.3 Bq/m in the Delhi region and 55.76 Bq/m to 107.80 Bq/m in the Rajasthan areas, which is well within the recommended action level. The Radon concentration in water samples of some locations of Rajasthan and Delhi have also been measured by using RAD 7. The radon values vary from 0.581 Bq / l to 1.54 Bq / l in the Delhi region and from 0.0342 Bq / l to 3.45 Bq / l in the Rajasthan region.The Radium concentration in soil samples have been found to vary from1.74 Bq / Kg to 5.03 Bq / Kg in the Delhi region and from 1.97 Bq /Kg to 2.91 Bq /Kg in the Rajasthan region. The values are found to be within the safe limits. Some of the physic-chemical properties such as pH, conductivity, hardness and total dissolved solids (TDS) have been reported in water samples. The results reveal that these areas are safe from the health hazard point of view as the radioactivity is concerned. A weak correlation has been observed between radon and radium.
منابع مشابه
Measurement of radium concentration and radon exhalation rates of soil samples collected from some areas of Bulandshahr district, Uttar Pradesh, India using plastic track detectors
Background: Radon is an odourless, colourless and tasteless gas and it is the first cause of lung cancer among non- smokers. The assessment of the level of radium in building materials helps in understanding the radiological implications. It has been observed that everyone has some levels of exposure to them. Therefore measurement of radium and radon in the soil samples are important f...
متن کاملبررسی مواد رادیواکتیو سنگین رادون و رادیوم در رودها و آب شرب منطقه رامسر به وسیله دستگاه PRASSI
Inhalation of radon gas 222Rn, which is a decay product of 226Ra, and its decay products accounts for typically about half of the effective doses received by public from all natural sources of ionizing radiation. Radon alpha particles can initiate a series of molecular and cellular events that culminates in the development of lung and other cancers. Also, 226Ra in the environment is widely dis...
متن کاملAssessment of radon-222 and radium-226 radioactivity concentration in the mineral and drinking water of Sareyn city
The main objective of this research is measurement and assessment of the Radon-222 and Radium-226 radioactive levels in mineral water and drinking water in the Sareyn city. The guidelines used for Radon-222 and Radium-226 radiation sampling and analysis were ASTM D: 5072-09 and ISO 13165-1: 2013, respectively. The concentration of Radon-222 and radium-226 in mineral water and drinking water sam...
متن کاملAssessment of household reverse-osmosis systems in heavy metal and solute ion removal in real and synthetic samples
In this study, the efficiency of household reverse-osmosis system (HROS) with and without neutralizer accessory was investigated in both real and synthetic samples. The real samples were collected from rural and urban public drinking-water systems with and without primary refinery treatment. The selected areas were situated in the Kurdistan province, Iran. The HROS model RO100GPD with and witho...
متن کاملLifetime risk assessment of Radium-226 in drinking water samples
Background: One of the most significant radionuclides in natural drinking waters is 226Ra and its decay products. It is potential of health problems, including cancer risk. In this study, the effect of 226Ra concentration in 28 drinking water samples collected from the North Guilan province was investigated. Materials and Methods: The activity concentrations of 226Ra were measured by using of r...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2012