Ask Chemistry Expert

DEGREE OF HARDNESS:

 

The degree of hardness of water is conveniently expressed in terms of equivalent amount of CaCO3. Although hardness of water is never present in the form of calcium carbonate because it is insoluble in water and hardness is actually caused by bicarbonates, chlorides and sulphates of calcium and magnesium. Choice of CaCO3 as the standard for reporting hardness of water is due to its molecular weight which is exactly 100 and equivalent weight is 50 (easy for calculations). Moreover it is the most insoluble salt that can be precipitated in water treatment. Thus equivalent of CaCO3 for hardness producing substance can be calculated by formula.

For calculating the multiplication factor of hardness producing substances to convert into equivalent of CaCO3, according to following steps given below:

For example: To find the multiplication factor of Mg (HCO3)2

Step1. Molar mass of Mg (HCO3)2 = 146

Step2. Find molar mass of CaCO3 (100)

Step3. Multiplication factor =2/2*chemical equivalents 

Step4. Find molar mass of CaCO3

Multiplication factor = 100/2*73 = 100/146

NOW, we calculate hardness of Mg (HCO3) in terms of CaCO3 equivalents.

Suppose, x quantity of Mg (HCO3)2 = x.100/146 amount of CaCO3.

Thus, the factor 100/146 is multiplication factor for Mg (HCO3)2. Multiplication factors for different compounds are given in table.

Table: Formulae and multiplication factor of various dissolved salt/Ion

Dissolved             Molar                 Chemical                             Multiplication factor for converting into equivalents of

Salt/ion                 Mass                   Equivalent                          CaCO3

Ca (HCO3)          162                         81                                 100/162

Mg (HCO3)2           146                         73                                 100/146

CaSO4                  136                         68                                  100/136

CaCl2                   111                         55.5                                100/111

MgSO4                  120                         60                                   100/120

MgCl                   95                           47.5                                 100/95

CaCO3                 100                          50                                    100/100

MgCO3                 84                            42                                    100/84

Mg (NO3)2            148                          74                                     100/148

Ca++                   40                            20                                     100/40

Mg++                   24                            12                                     100/24

HCO3-                  61                            61                                     100/2*61

CO2-2                  60                            30                                     100/2*17

OH-                      17                            17                                     100/2*17

H+                       1                               1                                      100/2

CO2                     44                            22                                     100/44

HCl                      36.5                         36.5                                   100/36.5*2

H2SO4                 98                             49                                     100/98

FeSO4.7H2O        278                            139                                   100/278

Al (SO4)3            342                             57                                    100/114

NaAlO2               82                               82                                    100/164

Thus the various types of hardness in a water sample may be calculated as below:

Temporary hardness = [(hardness due to Ca (HCO3)2 + hardness of due to Mg (HCO3)2]

Permanent hardness = [(hardness due to CaCl2 + CaSO4 + MgSO4 + MgCl2 + Mg (NO3)2 + Ca (NO3)2]

Total hardness = [temporary hardness + permanent hardness]

Chemistry, Academics

  • Category:- Chemistry
  • Reference No.:- M9504659

Have any Question?


Related Questions in Chemistry

Question 1bonding energyi draw an energy level diagram for

Question 1: Bonding Energy i. Draw an energy level diagram for a single Na ion and Cl ion. ii. Explain what is happening to the energy level between these two ions in terms of the Potential Energy. iii. Which process uti ...

Wat is the molarity to the hundredths place of 50 g hpo3

What is the molarity, to the hundredths place, of 5.0 g HPO3 in 300. mL of solution?

Describe how to assign anbspoxidation number from

Describe how to assign a Oxidation number from the text: The oxidation number of an atom in an elemental substance is zero. The oxidation number of a monatomic ion is equal to the ion's charge. Oxidation numbers for comm ...

How many grams of h2so4 must be dissolved into 0709 l of

How many grams of H2SO4 must be dissolved into 0.709 L of solution to generate a concentration of 0.303 M?

What could a source of error be during a titration lab that

What could a source of error be during a titration lab that is not a humans fault?

How many moles of magnesium ion are present in 525g

How many moles of magnesium ion are present in 5.25g Mg 3 (PO 4 ) 2 ?

What is the volume of a solution with a concentration of 12

What is the volume of a solution with a concentration of 1.2 M that contains 12 g of NaOH?

What is the molarity of a solution made by dissolving 200 g

What is the molarity of a solution made by dissolving 20.0 g of CrCl2 in 0.150 L of solution?

What is the mass of naoh present in grams given that a 100

What is the mass of NaOH present in grams, given that a 100. mL solution has a concentration of 0.125 M?

What is the volume of a solution in milliliters that

What is the volume of a solution, in milliliters, that contains 1.5 g LiNO3 and has a concentration of 0.40 M?

  • 4,153,160 Questions Asked
  • 13,132 Experts
  • 2,558,936 Questions Answered

Ask Experts for help!!

Looking for Assignment Help?

Start excelling in your Courses, Get help with Assignment

Write us your full requirement for evaluation and you will receive response within 20 minutes turnaround time.

Ask Now Help with Problems, Get a Best Answer

Why might a bank avoid the use of interest rate swaps even

Why might a bank avoid the use of interest rate swaps, even when the institution is exposed to significant interest rate

Describe the difference between zero coupon bonds and

Describe the difference between zero coupon bonds and coupon bonds. Under what conditions will a coupon bond sell at a p

Compute the present value of an annuity of 880 per year

Compute the present value of an annuity of $ 880 per year for 16 years, given a discount rate of 6 percent per annum. As

Compute the present value of an 1150 payment made in ten

Compute the present value of an $1,150 payment made in ten years when the discount rate is 12 percent. (Do not round int

Compute the present value of an annuity of 699 per year

Compute the present value of an annuity of $ 699 per year for 19 years, given a discount rate of 6 percent per annum. As