Chemical analysis results of Spring No. 8 (mg/dm3)
No.
|
Chemical element
|
mg/dm3
|
No.
|
Chemical
element
|
mg/dm3
|
1
|
K
|
5,6
|
7
|
Zn
|
0,03
|
2
|
Na
|
27,3
|
8
|
Ni
|
0,07
|
3
|
Mn
|
˂0,05
|
9
|
Co
|
0,09
|
4
|
Pb
|
˂0,02
|
10
|
As
|
0,1
|
5
|
Cu
|
0,01
|
11
|
CNS
|
19,3
|
6
|
Cr
|
0,04
|
12
|
Al
|
˂10,0
|
Chemical analysis results (Table 1) Hygienic requirements and quality control for the supply of domestic drinking water to the state standards of Uzbekistan (UzDSt 951:2011) fully comply with the requirements of the State Standard of Uzbekistan, as
well as drinking Hygienic requirements and quality control for drinking water fully
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“ILM-FAN VA TA’LIMDA INNOVATSION YONDASHUVLAR, MUAMMOLAR, TAKLIF VA YECHIMLAR” MAVZUSIDAGI 26-SONLI RESPUBLIKA ILMIY-ONLAYN KONFERENSIYASI
comply with the requirements of the State Standard of Uzbekistan (UzDSt 0950:2011).
References:
[1] Syed Waqar Hussain and et al, Assessment of drinking water quality “Natural springs and surface water” and associated health risks in Gilgit-Baltistan Pakistan. Pure Appl. Biol., 11(4):919-931, December, 2022
http://dx.doi.org/10.19045/bspab.2022.110095
Raut, K. (2015). Sustainability of community water supply system managed by water user committee: a case study of rural water supply system in Nepal (Master's thesis, Norwegian University of Life Sciences, Ås).
Bence Molnár and et al, Natural radioactivity and rock-water interactions in the springs of Sopron Mountains (Hungary). EGU22-10471 https://doi.org/10.5194/egusphere-egu22-10471 EGU General Assembly 2022 © Author(s) 2022. This work is distributed under the Creative Commons Attribution 4.0 License.
https://en.wikipedia.org/wiki/Spring_(hydrology)
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