A bottle of drinking water may look simple. But behind that clear bottle is a process that starts with the water source and continues through filtration, purification, testing, and hygienic bottling.
For Kriztle, that journey begins with nature. The brand says its packaged drinking water is sourced from springs in Kerala and combines nature-sourced water with modern technology across sourcing, purification, and delivery.
So, what happens between the source and the bottle?
Kriztle’s purification approach can be understood through five key stages, designed to help maintain the quality and consistency of the finished drinking water.
Where Does Kriztle Water Come From?
Before purification even begins, the source matters.
Kriztle describes its water as nature-sourced packaged drinking water, with water sourced from springs in Kerala. The company places strong emphasis on staying close to nature while using modern technology to meet the needs of consumers.
Natural water can contain dissolved minerals and other substances picked up as it moves through its surroundings. That doesn’t mean untreated source water should go directly into a bottle.
The source needs to be assessed, managed, and processed before the final product reaches consumers.
This is where purification becomes important.
Kriztle’s 5-Stage Purification Process
The purification journey can be understood as five important steps:
Source → Filtration → RO Processing → UV Treatment → Ozonisation → Bottling
Each stage has a different purpose.
Stage 1: Careful Water Sourcing
Everything begins with the source.
Kriztle states that its water is sourced from springs in Kerala. This connection to natural sources forms an important part of the brand’s identity.
But sourcing water from a natural environment is only the beginning.
The source needs to be managed carefully so that the water entering the production system is suitable for further treatment. Monitoring the source helps manufacturers understand the characteristics of the water and determine the appropriate purification approach.
Think of it as the starting point of a quality chain.
If the source is carefully managed, the subsequent treatment stages have a strong foundation to work with.
Stage 2: Filtration
The next step is filtration.
Water can contain suspended particles and other physical impurities. Filtration helps remove unwanted particles before the water moves through more advanced treatment stages.
This is an important preparation step because each purification process works better when the water entering it has already gone through appropriate preliminary treatment.
Kriztle’s published information describes its approach as combining sourcing and purification with modern technology. Its earlier product information also highlights filtration as part of the purification process.
At this point, the water is moving from its natural source toward a controlled production environment.
Stage 3: Reverse Osmosis Processing
Reverse osmosis, commonly called RO, is one of the most familiar water purification technologies.
In RO treatment, water is passed through a specialised membrane under pressure. The process helps reduce many dissolved substances and impurities from the water.
The exact treatment required depends on the characteristics of the source water and the intended finished product.
Kriztle’s Water 18 packaging specifically identifies the product as RO processed, showing that reverse osmosis is part of the treatment used for that product.
RO is not simply about making water “more pure” in a general sense. It is a controlled treatment process used to manage the composition and quality of water.
Stage 4: UV Treatment
After filtration and other purification processes, another important step is ultraviolet, or UV, treatment.
UV technology uses ultraviolet light as part of the water treatment process. It is commonly used to control microorganisms in water without adding a chemical disinfectant directly to the water.
This makes UV treatment a useful part of a multi-stage purification system.
Kriztle’s product packaging identifies its water as UV treated, confirming UV treatment as part of the process for the relevant product.
The benefit of a multi-stage approach is that different technologies address different aspects of water quality rather than relying on a single treatment method.
Stage 5: Ozonisation
The final purification stage is ozonisation.
Ozone is a powerful oxidising agent that can be used in water treatment and disinfection. In packaged water production, ozonation can help control microorganisms and support the hygienic quality of the finished water.
Kriztle’s Water 18 packaging also states that the product is ozonised.
At this stage, the water has moved through several controlled treatment processes.
But purification isn’t the end of the journey.
The water still needs to be bottled and handled under hygienic conditions.
From Purified Water to Sealed Bottle
Once the water has completed the required treatment stages, it moves into the bottling process.
This part is easy to overlook.
Imagine spending time carefully purifying water and then allowing contamination to occur during packaging. The purification process would lose much of its value.
That’s why hygienic production and suitable packaging are essential parts of packaged drinking water manufacturing.
Kriztle says it uses safe and superior plastic for bottle manufacturing and places importance on quality throughout its process, from sourcing and purification to delivery.
The finished bottle should therefore protect the water during storage, transportation, and handling until it reaches the consumer.
Why Does Water Need Multiple Purification Stages?
A common question is:
“If the source water is naturally clean, why does it need purification?”
Because natural doesn’t automatically mean ready to bottle.
Water can interact with soil, rocks, minerals, and its surrounding environment before reaching the source. Even when the source is carefully managed, packaged drinking water needs controlled processing and quality checks before it is sold.
Multiple treatment stages provide different functions.
For example:
- Source management focuses on the starting water.
- Filtration helps manage suspended particles.
- RO processing helps control dissolved substances.
- UV treatment helps with microbial control.
- Ozonisation provides another disinfection step.
The idea isn’t to depend on one technology.
It’s to build a controlled purification chain.
Does Purification Remove All Minerals?
Not necessarily.
This is one of the most common misunderstandings about water purification.
Some purification technologies can reduce naturally occurring dissolved minerals. However, the final mineral composition depends on the source water, treatment process, and product formulation.
That’s why consumers should not assume that every purified water product has exactly the same mineral content.
Kriztle’s product range includes different packaged drinking water products, and some products are specifically marketed with minerals. The exact composition should always be understood from the relevant product label rather than assuming all products have the same characteristics.
Why Source and Technology Work Better Together
There is sometimes a false choice between “natural water” and “technology”.
In reality, a packaged drinking water company can value both.
The source provides the starting point.
Technology helps the manufacturer control the water before packaging.
For Kriztle, this combination is central to the brand’s positioning. The company describes itself as staying close to nature while adopting modern technological factors to meet changing consumer needs.
That’s an important distinction.
Modern purification doesn’t have to mean ignoring the natural source. Instead, technology can be used to create a controlled production process around that source.
What Consumers Should Look for in Packaged Drinking Water
You don’t need to understand every technical detail to make a sensible choice.
Before buying a bottle, check a few basics.
Check the seal
The cap should be intact and show no obvious signs of tampering.
Check the label
Look for the product name, manufacturer information, batch details, date information, and other required product information.
Check the bottle
Avoid bottles that are damaged, leaking, or poorly stored.
Check storage conditions
Packaged water should be kept away from unsuitable conditions such as prolonged direct sunlight or excessive heat.
Choose a transparent brand
A reliable water company should be willing to explain its source, products, purification approach, and quality practices.
What Makes Kriztle’s Approach Different?
Kriztle’s approach is built around a combination of Kerala’s natural water sources and modern purification technology.
The water produced by the company is characterized as nature sourced packaged drinking water that has been enhanced through various innovations in terms of sourcing, purification, and distribution.
The company also has several packaging sizes within its range of products starting from small individual bottles and going up to 2.5 litres and 5 litres.
The important point is that the journey doesn’t stop at the source.
It continues through purification, packaging, distribution, and finally the bottle in your hand.
From Kerala’s Springs to Your Bottle
The next time you pick up a bottle of Kriztle, there is more to it than what you see through the transparent plastic.
The journey begins with a natural source in Kerala.
Then comes controlled treatment.
Source.
Filtration.
RO processing.
UV treatment.
Ozonisation.
And finally, hygienic packaging and distribution.
Each stage plays a role in producing consistent packaged drinking water.
That combination of nature and technology is what makes the journey from source to bottle possible.
Frequently Asked Questions
What is Kriztle’s water purification process?
Kriztle’s purification approach involves water sourcing followed by filtration and treatment processes including RO processing, UV treatment, and ozonisation for relevant products. Its Water 18 product specifically identifies RO processing, UV treatment, and ozonisation on the packaging.
Is Kriztle water sourced from natural springs?
Kriztle states that its packaged drinking water is sourced from springs in Kerala and describes its products as nature-sourced packaged drinking water.
Why is RO used in water purification?
Reverse osmosis uses a specialised membrane to help reduce dissolved substances and other impurities from water. The treatment used depends on the source water and the requirements of the finished product.
What is UV treatment in drinking water?
UV treatment uses ultraviolet light as part of the purification process to help control microorganisms in water.
What is ozonisation in water treatment?
Ozonisation uses ozone as an oxidising and disinfecting agent. It can help control microorganisms as part of a multi-stage water treatment process.
Does Kriztle water contain minerals?
Mineral content depends on the specific Kriztle product and its treatment. Some Kriztle products are marketed as packaged drinking water with minerals, so consumers should check the individual product label for accurate information.
Final Thoughts
Good packaged drinking water doesn’t happen at the bottling line alone.
This journey begins at the source and ends only at the end of all treatments, testing, packaging, storage, and delivery.
Through this method used by Kriztle, there is a blend of water sources available in Kerala and modern processes of purification like filtration, reverse osmosis, ultraviolet, and ozonisation of water.
This leads to the creation of an organized journey from the source to the bottle, ensuring that consumers always get reliable packaged water.
In conclusion, when next you drink from your Kriztle bottle, remember that it is not just bottled water from a source but the outcome of a carefully managed journey.