Saltwater or Freshwater Pool?
The honest pool comparison for the Algarve. Hard water, a lot of chemistry, and the eternal question of where the old water should go: we look at both systems without a sales pitch — with tables, charts, and honest pros and cons for the private pool in the Algarve.
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IN SHORT
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01 — THE UNDERLYING PROBLEM
The Real Problem: Water in the Algarve
Before debating salt versus chlorine, it's worth looking at what actually comes out of the tap, the cistern, or your own borehole. Large parts of the Algarve — especially the Sotavento between Loulé and the Spanish border, but also many inland areas — sit on limestone bedrock. Groundwater passes through this rock and picks up large amounts of calcium and magnesium along the way. The result: water that, in many zones, is well above 400 mg/l calcium carbonate — the threshold beyond which cloudiness, limescale deposits, and clogged filters, pipes, and heat exchangers become part of everyday life.

Rough reference values for orientation, not an official measurement series. The Sotavento algarvio, because of its limestone soils, is regularly considered one of the hardest water zones in Portugal.
This hardness shows up directly in pool maintenance: alongside the actual disinfectant, pools in the Algarve often also need anti-limescale products, pH-minus — hard water tends to push the pH upward — and flocculants. A cocktail that costs time, money, and storage space in the plant room.
This is exactly the point where the suggestion almost automatically comes up: "Why don't we just install a salt electrolysis system?" The two main arguments you hear from pool technicians are almost always the same: a noticeably softer, more pleasant feel to the water — and fewer limescale problems.
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HONESTLY ASSESSED The second argument only partly holds up under close scrutiny. Salt electrolysis doesn't change water hardness — it merely changes the way chlorine is produced. If hard water comes from the well or the cistern, it stays hard, with or without salt. What's more, it's precisely the electrolysis cell that's especially at risk from limescale in hard Algarve water, because calcium deposits build up on the titanium plates. Modern systems automatically reverse polarity to prevent this — but a salt system in a limestone region is still not entirely maintenance-free. |
02 — THE TECHNOLOGY
How Does the Salt Actually Get Into the Pool?
"Saltwater pool" sounds like a single technology, but it's actually an umbrella term for several, sometimes very different systems. The overview below shows what's really behind the common terms.

Simplified cycle: dissolved pool salt is split in the cell by electrolysis into chlorine gas, which immediately reacts to form hypochlorous acid (HOCl) and flows back into the pool via the filter circuit.
Table 1 — Ways Salt Is Used in Pool Care |
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Method |
How it works |
Salt content |
Advantages |
What to watch for |
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Salt electrolysis (inline) |
Pool salt is dissolved directly in the pool water and passes through an electrolysis cell in the plant room. Electric current splits NaCl into sodium and chlorine gas, which immediately reacts to form HOCl. |
approx. 1.5–5 g/l |
Fully automatic, consistent chlorine levels, little chloramine odour |
Chloride attacks metal parts; the cell is a wear part (5–10 years); chlorine production drops below approx. 16 °C |
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Indirect electrolysis |
Chlorine is generated in a separate, membrane-separated cell outside the pool and is then dosed in. |
variable, lower salt load in the pool |
Less constant chloride contact with pool materials |
More complex, more expensive technology; more common in larger/commercial installations |
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Manual salt addition without electrolysis |
Pool salt is added purely for the softer feel of the water; disinfection continues via tablets/granules. |
as desired, usually low |
Cheap entry point, no need to modify the equipment |
You save nothing on chemical handling — the salt is simply added on top |
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Mineral / combination systems |
Combine salt electrolysis with magnesium, potassium, or silver/copper additives for skin feel. |
same as standard electrolysis, plus mineral additive |
Often marketed as especially gentle on skin, can reduce chlorine demand |
Higher costs; mineral levels also need to be monitored |
03 — THE MISCONCEPTION
But: Saltwater Also Needs to Be Disinfected
This is probably the most misunderstood point in the entire saltwater debate: salt itself disinfects nothing at all. It is merely the raw material from which the system continuously produces chlorine. Anyone with a saltwater pool is therefore still swimming in chlorinated water — the chlorine is just no longer poured in from a canister, but produced by the system itself. Marketing claims like "100% chlorine-free" are simply inaccurate for pure salt electrolysis.
Table 2 — Disinfection Methods Compared |
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Method |
How it works |
Can be combined with salt? |
What to watch for |
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Salt electrolysis (base method) |
Continuously produces free chlorine (HOCl) from the dissolved salt |
Base method |
Is itself already chlorine disinfection, not "chlorine-free" |
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UV-C lamp |
Uses UV light to break down chloramines and destroy some germs/algae spores as the water passes through |
Yes, a common addition |
Does not replace residual protection; the lamp typically lasts about 12 months |
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Ozone system |
Strong oxidizer, breaks down organic contamination, reduces the chlorine needed |
Yes, a widespread addition |
Must not enter the pool directly; can attack seals |
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Active oxygen (H₂O₂/MPS) |
Oxygen-based oxidative disinfectant |
Rather a replacement system |
Loses effectiveness at high temperatures, more expensive to run than chlorine |
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PHMB / biguanide |
Polymer-based active ingredient with no oxidizing effect, active only against germs |
No, incompatible |
Never mix with chlorine; requires a separate algaecide |
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Copper/silver ionization |
Metal ions act as a supporting algaecide/bactericide |
Yes, a widespread addition |
Keep an eye on copper levels (risk of staining in liner pools) |
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FOR PRACTICE For saltwater pools in the Algarve, UV-C and ozone are the most sensible additions — they noticeably lower the chlorine level needed without making the electrolysis system redundant. PHMB, on the other hand, is off-limits once a salt system is installed. |
04 — THE AUTUMN CLASSIC
Where Does the "Old" Water Go?
At the latest when it comes to the autumn backwash or fully draining the pool before a renovation, the question comes up that's regularly debated heatedly in Algarve forums: where should the water go? Three options are common in practice — with very different consequences.
Soakaway / Septic Tank (Fossa Séptica)
Most quintas and montes in the Algarve hinterland — including many away from the coastal towns — aren't connected to the public sewer network but to a fossa séptica or a mini-ETAR (small treatment plant). Large amounts of pool water all at once are not a good idea here: both residual chlorine and the salt load, unusual compared to normal wastewater, can temporarily throw the bacterial culture in the tank off balance. In small, spread-out amounts — such as during normal sand filter backwashing — this is usually unproblematic in practice. A complete drain of 30–80 m³ all at once, however, is not.
Public Treatment Plant (ETAR)
Where a connection to the public sewer network exists — usually in town centres and newer residential areas, less often for standalone properties inland — discharging into the wastewater network is the simplest solution: the ETAR is designed for strongly fluctuating inflow values and dilutes chlorine and salt residues without any problem. For larger volumes, it's worth making a quick call beforehand to the relevant Câmara Municipal or to Águas do Algarve to check whether registration is required — for the average private pool, this is usually just a formality.
"Simply" Into the Garden
The most pragmatic — and most common — solution in the Algarve. To avoid this becoming a problem for the soil and plants, a few basic rules apply: let residual chlorine break down in the sun for 24–48 hours (UV light reliably decomposes free chlorine), spread the water over as large an area as possible rather than releasing it in one concentrated spot, and favour salt-tolerant plants. Olive trees, for instance, tolerate occasional salt exposure well; sensitive neighbours such as young citrus trees or rose beds should generally be avoided. A permanent pipe into an open watercourse or drainage channel always requires a permit — for larger or commercial pools, this falls under the responsibility of the relevant water authority (APA). For a normal private garden pool, occasional, spread-out draining is widespread practice and generally uncritical; when in doubt, it's still worth a quick check of your local Câmara's regulations.
Table 3 — Disposal Routes at a Glance |
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Option |
Availability in the Algarve |
Effort |
What to watch for |
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Fossa séptica / soakaway |
Very common (rural properties) |
Low, only small portions |
Don't drain the whole pool at once; let residual chlorine break down first |
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Public ETAR |
Only with a sewer connection (mainly town centres) |
Low to medium, possible registration |
Check with the Câmara / Águas do Algarve |
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Garden / irrigation |
Very common, standard practice |
Low |
Let chlorine break down, rotate the area, salt-tolerant plants, never near watercourses or wells |
05 — THE FULL PICTURE
Salt vs. Fresh: Pros and Cons at a Glance
Table 4 — Direct Comparison |
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Criterion |
Saltwater (electrolysis) |
Freshwater (classic/alternative) |
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Skin & eye feel |
Usually perceived as softer |
The same result is achievable with Grander re-vitalization well-managed chlorine levels |
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Chemical handling |
Much less frequent, no handling of tablets |
Regular dosing of chlorine or an alternative is required |
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Limescale / water hardness |
Not improved by salt; the cell is even at risk of scaling |
Same limescale problem, but no additional scaling point |
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Purchase cost |
Higher (electrolysis unit, installation, possibly redox/pH automation) |
Lower for classic chlorination, medium for UV/ozone |
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Running costs |
Low (1–2 bags of pool salt per season + some pH product) |
Higher for classic chlorine, variable for alternatives |
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Wear / maintenance |
Cell lasts approx. 5–10 years, needs cleaning/replacing |
No comparable wear part, but requires regular dosing |
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Material compatibility |
Chloride attacks metal/stainless steel parts and reinforcement |
Less problematic for metal parts |
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Temperature behaviour |
Chlorine production drops noticeably below approx. 16 °C |
Can be dosed independently of water temperature |
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Winter storage |
The cell should be removed and stored somewhere frost-free |
No comparable effort |
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Disposal / environment |
Salt load in the soil needs to be spread out |
No salt problem, but possibly other residues |
06 — THE FAMILY QUESTION
And What About the Children?
For many families, this exact point tips the scales: children often react more sensitively to chlorine smell and red eyes than adults do. Saltwater is therefore often marketed as the more child-friendly choice — and indeed, a pool's salt content is around a tenth of seawater's, so the occasional mouthful while playing is harmless.
The more honest message: the decisive factor for red eyes and skin irritation is the same in both systems — a stable pH between 7.2 and 7.6, and as few chloramines as possible, which are the actual cause of the typical "chlorine smell". A well-run classic chlorine pool can be just as pleasant for children's skin as a poorly balanced saltwater pool can be unpleasant. Anyone swimming with children often should therefore — regardless of the system chosen — test more rather than less often, and keep an eye on residual chlorine and chloramines, rather than relying solely on the "saltwater" label.
07 — CONCLUSION
For Environmentally Conscious Pool Owners: Freshwater with Grander Revitalisation, Without the Old Problems
Anyone who, while reading this, was thinking mainly about their own soil and the neighbouring garden can't get around one point: salt that's once in the pool doesn't simply disappear on its own. Every drop that ends up in the garden leaves behind a small salt load, which can add up over the years if you don't consciously counteract it.
Anyone unwilling to accept this trade-off ends up almost inevitably back with the classic freshwater pool — but doesn't have to return to the old heavy-handed chemical approach to do so.
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THE SIMPLE PATH Anyone who wants to keep things simple goes with freshwater plus Grander water revitalisation. We ourselves rely on Grander technology, and we've summarised our experience with it in a dedicated article: Our Grander experience in detail → In brief: the revitaliser is simply integrated into the water circuit — no salt, no additional chemicals, no need to modify the equipment. In our own practice, the water feels noticeably softer afterwards, limescale marks on tiles and equipment noticeably decrease, and overall ongoing maintenance effort goes down. Anyone who wants neither salt load in the garden nor additional dosing technology gets through the season most simply and easily with this combination. |
In practice, the most coherent combination for an environmentally conscious yet uncomplicated Algarve pool is usually: Grander water revitalisation, low-dosed chlorine as reliable residual protection, complemented by UV-C or ozone to reduce chlorine demand and chloramines, plus consistent pH and filter care. This resolves the entire water problem of the Algarve described at the outset — without the salt load that, in the end, you'd find again in your own garden.
Which Type Suits Me? |
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Priority |
Recommendation |
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Handle as few chemicals as possible |
Salt electrolysis |
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As few chemicals as possible, and simple — no tinkering with technology |
Freshwater + Grander water revitalisation |
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Young children, sensitive skin |
Salt or well-managed freshwater with UV-C — pH care is what decides it |
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Own septic tank, no sewer connection |
Freshwater is preferable (less salt load when draining) |
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Stainless steel pools, high-quality reinforcement |
Freshwater (no constant chloride contact) |
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Environmentally conscious gardening, citrus grove next door |
Freshwater with UV-C/ozone |
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Maximum comfort, budget secondary |
Salt electrolysis with mineral/UV addition |
