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Project Report · Papua New Guinea

Safe Water from the Mountain: Eastern Highlands, Papua New Guinea

How a community-built gravity pipeline reached more than 3,500 people, why we chose filters at the tap stands to make its water safe, and how a new local nonprofit, PNG Safe Water, will own and run the systems.

Pilot unit delivered
UpdatedSeptember 28, 2026
PartnerPhilip Wayaki Bongi; PNG Safe Water
Prepared byClean Water Help volunteers
Webcleanwaterhelp.org/projects/png

Clean Water Help is a 100% volunteer-run 501(c)(3) nonprofit (EIN 99-0765687). Founders cover all operating costs, so 100% of public donations go to projects. Numbers are current as of September 28, 2026. Photos are shared by partners with permission; names of private individuals are withheld. impact@cleanwaterhelp.org

At a glance

LocationDaulo District, Eastern Highlands
Local leaderPhilip Wayaki Bongi
Local nonprofitPNG Safe Water (registering)
Existing systemGravity pipeline, 3,500+ people
NowPilot unit delivered
CWH roleDesign, pilot funding, NGO start-up
3,500+people on the pipeline today
~5,000more people with the full plan
~$25,000full plan (estimate)
~$450est. cost per life saved

1 Executive summary

Key findingThe community already solved the hardest part: getting water down the mountain to 3,500+ people. The remaining gap is a reliable germ barrier at the taps. The chosen design is a gravity-powered ultrafiltration unit at each tap stand, which needs no electricity or chemicals. The pilot unit was delivered in September, and a plumber is being arranged to install it. Rainy-season testing follows. A local nonprofit is forming to own the systems.

In 2024, Philip Wayaki Bongi and his community built a gravity water system: a catchment on a mountain creek, a storage tank, and a pipeline to tap stands in the village. Villagers dug the trenches by hand. An extension completed in 2025, funded through writer Elan Head’s appeal, brought the total to more than 3,500 people.

To add a dependable germ barrier at the taps that needs no power or daily trips uphill, the team looked at multi-barrier filtration. In June 2026, CWH’s technical team compared the options and chose ultrafiltration at each tap stand for a pilot. The pilot unit was delivered in September 2026, and a plumber is being arranged to install it.

At the same time, CWH is paying the start-up costs of PNG Safe Water, a nonprofit led by Philip with a PNG-majority board. CWH will manage the water projects until PNG Safe Water is operating, funded and self-governing, then step back to an advisory role.

What happens next

  1. Install the pilot at a tap stand, measure pressure, fit the pressure-reducing valve, and record cloudiness, bacteria and cleaning needs through the rainy season.
  2. If the pilot works, install four more systems, one for each community down the mountain.
  3. If sediment clogging makes filters impractical, train households in point-of-collection chlorination as the fallback.
  4. Register PNG Safe Water (Notice of Intent, 60-day public notice, incorporation; target January 2027), then open its bank account and tax registration.
  5. Raise about $25,000 (estimate): filtration for the existing line (about $5,000), a pipeline extension for about 1,500 more people (about $5,000) and a new pipeline for about 3,500 more people (about $15,000).
The issue to watchSediment after heavy rain. Ultrafiltration removes germs reliably, but muddy water can clog prefilters and membranes. How often the filters need cleaning in the rainy season will decide whether the design can scale or whether the fallback is needed.

Key numbers and how solid they are

Each number is labeled by its basis: Measured counted or tested, Reported reported by a partner or a document, Record from our own payments, contracts and correspondence, Estimate a calculation or assumption, Planned a plan or target, not yet done.

ItemValueBasisSource
People served by the pipeline3,500+ReportedPhase 2 completion report, 2025
Original build costabout $15,000ReportedProject summary, 2026
Household repair-fund contributionabout K20 (about $4)ReportedPhase 2 completion report
Parts per tap-stand filter unitabout $100–120RecordSupplier quote and invoice, Jul–Aug 2026
Systems if the pilot works4 morePlannedCWH plan
Filtration for the existing lineabout $5,000EstimateCWH plan
Pipeline extension~1,500 more people, about $5,000EstimateCWH plan
New pipeline~3,500 more people incl. a mountain school, about $15,000EstimateCWH plan
Full planabout $25,000 for ~8,500 peopleEstimate10-year life, about $0.30 per person per year
Estimated cost per life savedabout $450EstimateMethod at cleanwaterhelp.org/technical
PNG Safe Water registrationabout K2,000–4,000EstimateStart-up cost plan

2 Background and progress

The place and the need

The project is in the Korepa area of Daulo District, near Goroka in Papua New Guinea’s Eastern Highlands. Before the pipeline, families walked miles each day for water that was not safe to drink, and relatives died of typhoid. A piped supply built in the 1980s had long since rusted out.

Community members dig the pipeline trench by hand
Digging the trench by hand
Materials carried up the mountain on foot
Carrying materials up the mountain

How the pipeline was built

Philip Wayaki Bongi grew up in the area. Donors paid for his university education, and he built a career in monitoring and evaluation before turning to his village’s water. In 2024, with support from a US water charity, the community built a creek catchment, a storage tank and a gravity line with tap stands, for about $15,000 and in under six months. In 2025 an extension added about 1.5 km of pipe, a tank and eight tap stands, funded through an appeal by writer Elan Head. Carey Lafferty, Elan’s mother, knew Philip from her years with a health charity in PNG.

The community reports shorter walks, easier access for elderly people, and fewer cases of typhoid. These are community observations, not a health study.

How Clean Water Help became involved

A CWH volunteer contacted Philip in January 2026, and he joined our team in February. In May, about 45 CWH volunteers were invited to join technical, awareness and grant teams. The technical team met from June 2026 to work through distribution, safe water and long-term operation.

Two girls collect water at a new tap stand
Two girls at a new tap stand. Photo: Philip Wayaki Bongi

Timeline

3 Technical foundation

The tap-stand filter

Each unit fits at a tap stand and runs on the pressure the mountain provides. The treatment train is:

  1. Pressure-reducing valve (the lowest taps can see very high static pressure)
  2. 40 micron stainless steel spin-down screen with a flush valve
  3. 5 micron polypropylene cartridge
  4. PVDF hollow-fiber ultrafiltration membrane, about 0.01 micron, about 2,000 L per hour, backwashable
  5. Pressure gauges before and after each stage, so a caretaker can see when cleaning is due
Diagram of Option A: water runs from the storage tank down 120 m of pipe through a prefilter and one large ultrafiltration unit, then on to three villages. Valves allow backwashing and a bypass.
Option A: one large unit for a whole line
Diagram of Option B: the main line carries water from the tank to seven villages, and each village line gets its own prefilter and small ultrafiltration unit where people collect water.
Option B (chosen): a small unit at each tap

What it removes. Bacteria (0.5–2 micron, including those behind cholera and typhoid) and protozoa such as Giardia and Cryptosporidium (4–6 micron). What it does not do. It leaves no chlorine residual, so water can be re-contaminated in dirty containers after collection; hygiene training covers this.

Maintenance

A caretaker reads the gauges weekly, flushes the screen, and changes the 5 micron cartridge when the pressure drop rises. The membrane is backwashed as needed and replaced every one to three years (replacement elements cost about $15–30). Cloudy water from a tap is treated as a possible membrane breach: stop use and check.

Decisions and the options we set aside

DecisionOptions consideredWhy
Ultrafiltration at each tap standOne central unit at the tank; household filtersNo power or chemicals; fault isolation; each village maintains its own unit.
No in-line chlorine dosingVenturi or tablet dosers in the pipelineNot proven at this flow; venturi dosers need more flow than the line provides; tablet supply is hard to sustain.
No UVSolar-powered UV at the tank or tapsNeeds electricity (no grid; theft risk for solar) and the same fine prefilter as ultrafiltration.
Point-of-collection chlorination as fallbackNo fallbackLess ideal (daily effort; long-term use about 40–50%) but far better than nothing.
A new, locally led nonprofitA CWH branch in PNGLocal ownership; grants held in PNG Safe Water’s own name; CWH steps back once it is self-governing.

Risks and how we respond

RiskLevelResponse
Sediment clogging after heavy rainHighScreen and cartridge prefilters, source protection, gauges; fallback to chlorination.
Landslides and pipe damageMediumCommunity repair fund; local plumber; spare pipe.
Theft or tamperingMediumLockable enclosures; no solar panels at remote sites.
Reliance on one caretaker per systemMediumTrain at least two people per village.
Registration delaysLowFiling prepared; 60-day public notice built into the plan.

4 What we learned and what is still open

Open questions

5 How you can help

Help bring safe water to more villages

Your gift pays for filtration on the existing line, pipe to about 5,000 more people and PNG Safe Water’s start-up costs. The water plan costs about $25,000 (estimate). 100% goes to the project.

References and sources

  1. Community Water Supply Project, Phase 2 Completion Report and Phase 2 update, 2025 (Philip Wayaki Bongi).
  2. Clean Water Help. PNG UF System Concept: installation and operation protocol (2026).
  3. Clean Water Help PNG technical team: Distribution; Safe Water; Legacy and Longevity working documents (June 2026).
  4. Clean Water Help. Master Project Information, Parts 3.3 and 5A (internal, September 2026).
  5. Papua New Guinea Associations Incorporation Act 2023.