Gas Transport in Blood Birmingham AL

To balance the overall increase in negative charges entering the plasma, chloride ions diffuse in the opposite direction, from the plasma to the red blood cells (chloride shift).

Local Companies

Jefferson County Board of Education
205-379-2650
3400 Brown Cir
Birmingham, AL
J Lockhart Performing Arts Institute
205-942-0724
240 Oxmoor Cirle Ste 104
Birmingham, AL
Make Your Best Impression
205-264-1361
3921 Spring Valley Road
Birmingham, AL
Alabama Laborers Training
205-591-8810
4836 Richard Arrington Jr Blvd N
Birmingham, AL
Champion Latin & Ballroom
205-994-6457
100 Old Towne Road
Birmingham, AL
Birmingham Dance Theatre
205-822-3012
100 Old Towne Rd
Birmingham, AL
Masterminds Learning Center
205-970-1117
3016 Pump House Rd
Birmingham, AL
Athena The Training Professionals
205-967-6661
1 Perimeter Park S
Birmingham, AL
Ross Bridge Golf Resort
205-949-3086
4000 Grand Ave
Birmingham, AL
Sugar & Spice Day Care & Kindergarten
205-822-8581
2237 Sumpter St
Birmingham, AL

Oxygen is transported in the blood in two ways:

  • A small amount of O2 (1.5 percent) is carried in the plasma as a dissolved gas.

  • Most oxygen (98.5 percent) carried in the blood is bound to the protein hemoglobin in red blood cells. A fully saturated oxyhemoglobin (HbO2) has four O2 molecules attached. Without oxygen, the molecule is referred to as deoxygemoglobin (Hb).

The ability of hemoglobin to bind to O2 is influenced by the partial pressure of oxygen. The greater the partial pressure of oxygen in the blood, the more readily oxygen binds to Hb. The oxygen-hemoglobin dissociation curve, shown in Figure 1 , shows that as pO2 increases toward 100 mm Hg, Hb saturation approaches 100%. The following four factors decrease the affinity, or strength of attraction, of Hb for O2 and result in a shift of the O2-Hb dissociation curve to the right:





Figure 1

The oxygen-hemoglobin dissociation curve.


  • Increase in temperature.

  • Increase in partial pressure of CO2 (pCO2).

  • Increase in acidity (decrease in pH). The decrease in affinity of Hb for O2, called the Bohr effect, results when H+ binds to Hb.

  • Increase in BPG in red blood cells. BPG (bisphosphoglycerate) is generated in red blood cells when they produce energy from glucose.

Carbon dioxide is transported in the blood in the following ways.

  • A small amount of CO2 (8 percent) is carried in the plasma as a dissolved gas.

  • Some CO2 (25 percent) binds to Hb in red blood cells forming carbaminohemoglobin (HbCO2). (The CO2 binds to a place different from that of O2.)

  • Most CO2 (65 percent) is transported as dissolved bicarbonate ions (HCO3-) in the plasma. The formation of HCO3-, however, occurs in the red blood cells, where the formation of carbonic acid (H2CO3-) is catalyzed by the enzyme carbonic anhydrase, as follows.





Following their formation in the red blood cells, most H+ bind to hemoglobin molecules (causing the Bohr effect) while the remaining H+ diffuse back into the plasma, slightly decreasing the pH of the plasma. The HCO3− ions diffuse back into the plasma as well. To balance the overall increase in negative charges entering the plasma, chloride ions diffuse in the opposite direction, from the plasma to the red blood cells (chloride shift).

Cliffs Notes Online

Featured Local Company

Jefferson County Board of Education

205-379-2650
3400 Brown Cir
Birmingham, AL

Related Local Events
Riverchase Middle School 2008 - 2009
Dates: 12/7/2009 - 12/7/2009
Location: Riverchase Middle School
Pelham, AL
View Details

Riverchase Middle School 2008 - 2009
Dates: 11/7/2009 - 11/7/2009
Location: Riverchase Middle School
Birmingham, AL
View Details

Veteran’s Day Celebration Living History Presentations
Dates: 11/6/2009 - 11/6/2009
Location: Depot Park
Cullman, AL
View Details

Alabama Educational Technology Conference - AETC
Dates: 6/9/2009 - 6/12/2009
Location: Birmingham Jefferson Convention Complex - BJCC
Birmingham, AL
View Details

Alabama Educational Technology Conference - AETC
Dates: 6/8/2009 - 6/10/2009
Location: Birmingham Jefferson Convention Complex
Birmingham, AL
View Details