Clean drinking water, where it is not a given
In India, more than two million children die from cholera or typhoid fever each year. Such diseases are spread mainly through drinking water. But only 32 percent of households in India have access to treated water. Many of them have to make do with boiling their water over an open fire. In turn, the smoke resulting from this causes diseases in the respiratory tract or eye infections. Due to the high consumption of firewood, the region is increasingly being deforested.
A simple and affordable supply of safe drinking water can do a lot here. That is why this project organises the chemical treatment of water using chlorine. The chloride solution is made on site, and the water is conveniently available in small village shops or delivered to people's homes.
Two billion people in the world have no access to clean drinking water. Many families have to boil their drinking water over an open fire, resulting in CO2 emissions and deforestation. Where water can be cleaned chemically (e.g. with chlorine) or mechanically (with filters), or where groundwater can be provided from wells, these CO2 emissions can be avoided. Clean drinking water projects in the ClimatePartner portfolio are registered with international standards.
TypeReduction
LocationIndia, Odisha
StandardGold Standard
TechnologyClean drinking water
Registry ID4205
Validated byGold Standard
Estimated annual emission reductions25,000 t CO₂
Four criteria for projects to meet quality thresholds
The life cycle of a climate project
A climate project has a set life cycle consisting of various phases, from the feasibility assessment to the retirement of Verified Emission Reductions (VERs).The project developer reviews the general feasibility of the project, the project design, and the financing. Then, the Project Design Document (PDD) is prepared, which contains all the basic information about the project, such as the objective, location, timeline, and duration.
In this phase, independent auditors examine the PDD and the information it contains. This phase often also involves field visits with on-side interviews and analyses. Auditors are accredited, impartial assessors who have to be approved by the relevant standard as a validation and verification body (VVB). TÜV Nord/Süd, S&A Carbon LLC., and SCS Global Services are examples of VVBs."
Once validated, the project can be registered with a standard such as the Verified Carbon Standard or the Gold Standard. All high-quality climate projects are based on international standards. They provide the framework for project design, construction, carbon accounting, and monitoring. Recognised standards make the climate project system and the projects themselves resilient, traceable, and credible.
After the climate project has been registered, the monitoring begins. Here, the project developers monitor and document the data of the project activities and progress. The duration of the monitoring phase varies from project to project: it can cover two years, but documentation over five or seven years is also possible.
At the end of each monitoring phase, a VVB checks and assesses whether the values and project activities stated in the monitoring report are correct. As with validation, visits to the project site are often part of the verification process.
Once verified, the emission reductions that were confirmed in the verification phase can be issued as VERs. The steps of monitoring, verification, and issuance of VERs are repeated regularly and are therefore considered as a cycle.
Once a VER has been used, it must be retired. This process is also reflected in the registry. If the financing of a climate project is done through ClimatePartner, the VERs are bundled in a system certified by TÜV Austria and then retired on a regular basis. This ensures that each VER can no longer be sold and is only used once, preventing double counting.
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