Skip to main content
Top

4. Carbon Sequestration and Storage by Wetlands: Implications in the Climate Change Scenario

  • 2020
  • OriginalPaper
  • Chapter
Published in:

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The impacts of climate change are discernible and can only be reduced through proper adaptation and mitigation techniques. Wetlands represent an excellent example of natural ecosystems providing a wide range of ecosystem services valuing billions of dollars. The service of carbon sequestration by wetlands is directly linked to greenhouse gas regulation and climate change. They are known to have higher rates of carbon sequestration than any other terrestrial ecosystem on this planet. This is because of their higher above- and belowground productivity, anoxic soil conditions, and higher sedimentation rates. The most important factor affecting carbon sequestration in wetlands is substrate availability which depends on the type and composition of vegetation. Wetland vegetation is mainly responsible for determining the detritus quality and the carbon sequestration capacity of wetlands. Unfortunately, wetlands are under various anthropogenic pressures which affect their functional capacity of acting as sinks of carbon. Climate change also has a positive feedback on their functioning. Therefore, their maintenance and conservation are imperative, for they act as an important pool to balance the deleterious impacts of climate change. If climate change is not taken care of, then wetlands may act as a source of carbon, stored by them over years, and can augment the problem. Moreover, the concept of constructed wetlands needs to be encouraged to increase the number of potential carbon sinks. Their methane emissions can also be controlled by regulating C:N and N:P ratios in their soils.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Business + Economics & Engineering + Technology"

Online-Abonnement

Springer Professional "Business + Economics & Engineering + Technology" gives you access to:

  • more than 130.000 books
  • more than 540 journals

from the following subject areas:

  • Automotive
  • Construction + Real Estate
  • Business IT + Informatics
  • Electrical Engineering + Electronics
  • Energy + Sustainability
  • Finance + Banking
  • Management + Leadership
  • Marketing + Sales
  • Mechanical Engineering + Materials
  • Surfaces + Materials Technology
  • Insurance + Risk


Secure your knowledge advantage now!

Springer Professional "Engineering + Technology"

Online-Abonnement

Springer Professional "Engineering + Technology" gives you access to:

  • more than 75.000 books
  • more than 390 journals

from the following specialised fileds:

  • Automotive
  • Business IT + Informatics
  • Construction + Real Estate
  • Electrical Engineering + Electronics
  • Energy + Sustainability
  • Mechanical Engineering + Materials
  • Surfaces + Materials Technology





 

Secure your knowledge advantage now!

Springer Professional "Business + Economics"

Online-Abonnement

Springer Professional "Business + Economics" gives you access to:

  • more than 100.000 books
  • more than 340 journals

from the following specialised fileds:

  • Construction + Real Estate
  • Business IT + Informatics
  • Finance + Banking
  • Management + Leadership
  • Marketing + Sales
  • Insurance + Risk



Secure your knowledge advantage now!

Title
Carbon Sequestration and Storage by Wetlands: Implications in the Climate Change Scenario
Authors
Afreen J. Lolu
Amrik S. Ahluwalia
Malkiat C. Sidhu
Zafar A. Reshi
S. K. Mandotra
Copyright Year
2020
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-13-7665-8_4
This content is only visible if you are logged in and have the appropriate permissions.

Premium Partner

    Image Credits
    Korero Solutions/© Korero Solutions