ɫɫÀ²

News

Metals in taps and water pipes can dissolve into drinking water – running the tap water reduces metal concentrations to safe levels

It is particularly important to run the tap water if the water has been stagnant for many hours or if the water installations are less than a year old.

Significant amounts of nickel, lead and copper can dissolve into the water from the water pipes and taps in buildings. This was revealed in the master’s thesis of Meri Sipilä, who graduated recently from Aalto University. Tap water samples were taken from 30 buildingss in different parts of Finland in her study.

The research showed that the metal concentrations in tap water were higher if the water had been stagnant in the pipes for longer. In addition to the stagnant time, metal concentrations in tap water were also affected by the age of the tap and pipes and by the materials used in them.

‘Nickel dissolved into the water the most in buildings where new taps had been installed less than a year earlier, while the highest copper levels were present where the copper pipes were less than a year old. The nickel had probably leached from the tap’s nickel-chrome coating. Lead, on the other hand, can be released from brass sections, such as taps and fittings’, Ms Sipilä explains.

For health reasons, Finnish law sets the maximum concentration of nickel in drinking water at 20 µg/l. This level was exceeded in the one-litre water samples in a third of the test locations when the water had been stagnant for longer than 8 hours. The nickel concentrations varied between 21 and 80 µg/l in the non compliant water samples. Ms Sipilä stresses, however, that the nickel concentrations dropped immediately once the stagnant water was flushed.

With shorter stagnant times, the maximum level for nickel was exceeded only in one location. For lead, the health-based  requirement of 10 µg/l was exceeded in stagnant water in one location and was close to the limit in several others. Concentrations of copper were elevated in several locations, but the maximum level was not exceeded in any of them.

‘Water used for drinking or cooking should be run from the tap until the cold water temperature is steady. In this way, the water that has been stagnant in the building’s water system is removed and the metal concentrations are definitely reduced to safe levels’, Ms Sipilä advises.

Important note for domestic water installations 

The changes made to the EU’s Drinking Water Directive require that levels of copper, lead and nickel in cold tap water is measured from now on without prior flushing. Earlier on, all tap water samples were taken after extensive flushing in Finland, so the samples corresponded to the water delivered by the water utility. In this new research as well, the concentrations of nickel, lead and copper in the water utility’s water were easily within the health based quality requirements set by law for drinking water.

The purpose of the new sampling method is to reveal the possible quality-reducing effect of a property’s water installations and pipes. If maximum metal concentration levels are exceeded in tap water, further studies are conducted to figure out whether this is due to the property’s water system or the water delivered by the water utility. Once the reason for non compliance is established, the health protection authorities can require the relevant party to correct the situation.

Officials in charge of health protection monitoring in Finland also recommend running the tap water before using the water for drinking or cooking.

Meri Sipilä’s master’s thesis ‘Release of metals from domestic drinking water installations’, was approved in Aalto University on 11 December 2017.  The project, led by FCG Design and Engineering Ltd, involved participation from eight water utilities (Helsingin seudun ympäristöpalvelut -kuntayhtymä HSY, Hämeenlinnan Seudun Vesi Oy, Iisalmen Vesi, Imatran Vesi, Kouvolan Vesi Oy, Lappeenrannan Energiaverkot Oy, Oulun Vesi, Tampereen Vesi) and also received funding from the Finnish Water Utilities Association's Water Utilities Development Fund. 

Further information:

Meri Sipilä, Project Engineer, MSc (Tech) , FCG Design and Engineering Ltd
meri.sipila@fcg.fi

Päivi Peltonen, Process Chemist, MSc, FCG Design and Engineering Ltd
paivi.peltonen@fcg.fi

Riina Liikanen, Senior Adviser on Water, Finnish Water Utilities Association & Adjunct Professor, Aalto University
tel. +358 40 758 1418
riina.liikanen@vvy.fi

Information on possible sources of copper, lead and nickel in domestic water and the related health effects and maximum levels can be found in Valvira’s

WHO Nickel in Drinking-water 

  • Updated:
  • Published:
Share
URL copied!

Read more news

Two students and a professor sitting around a table, talking and looking at laptop screen.
Research & Art, Studies Published:

Call for doctoral student tutors, September 2025

Sign-up to be a tutor for new doctoral students as part of the Aalto Doctoral Orientation Days!
Abstract image of glowing teal shapes and pink blocks on a striped yellow and green surface, with a dark background.
Research & Art Published:

Researchers turn energy loss into a way of creating lossless photonics-based devices

Turning energy loss from a fatal flaw into a dial for fine-tuning new states of matter into existence could yield better laser, quantum and optical technology.
An illustrative figure comparing disease-induced immunity (left) and randomly distributed immunity (right) in the same network. Illustration: Jari Saramäki's research group, Aalto UIniversity.
Research & Art Published:

Herd immunity may not work how we think

A new study from researchers at Aalto University suggests that our picture of herd immunity may be incomplete — and that understanding how people are connected could be just as important as knowing how many are immune.
AI applications
Research & Art Published:

Aalto computer scientists in ICML 2025

Department of Computer Science papers accepted to International Conference on Machine Learning (ICML)