Storm overflow register · Southern Water

Staplehurst sewage works: storm overflow spills 2025

Staplehurst sewage treatment works, run by Southern Water, has 1 monitored storm overflow discharging to The River Beult. In 2025 it recorded 7 spills totalling 53 hours, against 16 spills and 83 hours in 2024. By hours spilling, it ranks 168 of 215 Southern Water works, where 1 spilled longest.

Works size: 5,683 population equivalent (STAPLEHURST STW, UWWTD 2018). Used for the spill volume estimate.

Every spill in 2025

Each blue mark is one spill, placed by when it started and sized by how long it lasted. Hover over a mark for the date and duration.

JanFebMarAprMayJunJulAugSepOctNovDecStaplehurst WwTW1 Jan 2025 17:43 GMT, 6.6 h5 Jan 2025 03:07 GMT, 17.8 h5 Jan 2025 20:56 GMT, 7.3 h6 Jan 2025 04:14 GMT, 67 min6 Jan 2025 06:49 GMT, 15 min26 Jan 2025 17:26 GMT, 16.4 h24 Feb 2025 22:02 GMT, 26 min23 Oct 2025 07:38 GMT, 3 h

Estimated spill volume by month, 2025

Hours spilling each month × the estimated spill rate for a works of this size. The bars are central estimates and the whiskers show the low–high range. Method.

05,00010k15kJan 2025: 49 h spilling ≈ 4,810 m³ (range 1,916–12,077 m³)JanFeb 2025: 0.4 h spilling ≈ 39 m³ (range 16–98 m³)FebMar 2025: 0.0 h spilling ≈ 0.0 m³ (range 0.0–0.0 m³)MarApr 2025: 0.0 h spilling ≈ 0.0 m³ (range 0.0–0.0 m³)AprMay 2025: 0.0 h spilling ≈ 0.0 m³ (range 0.0–0.0 m³)MayJun 2025: 0.0 h spilling ≈ 0.0 m³ (range 0.0–0.0 m³)JunJul 2025: 0.0 h spilling ≈ 0.0 m³ (range 0.0–0.0 m³)JulAug 2025: 0.0 h spilling ≈ 0.0 m³ (range 0.0–0.0 m³)AugSep 2025: 0.0 h spilling ≈ 0.0 m³ (range 0.0–0.0 m³)SepOct 2025: 3.0 h spilling ≈ 292 m³ (range 116–733 m³)OctNov 2025: 0.0 h spilling ≈ 0.0 m³ (range 0.0–0.0 m³)NovDec 2025: 0.0 h spilling ≈ 0.0 m³ (range 0.0–0.0 m³)Dec
Cubic metres (m³), estimate. Hours are measured by the event duration monitor.

Longest single spills

Started (GMT)OverflowDurationEstimated volume
5 Jan 2025, 03:07Staplehurst WwTW17.8 h690 – 4,347 m³
26 Jan 2025, 17:26Staplehurst WwTW16.4 h636 – 4,009 m³
5 Jan 2025, 20:56Staplehurst WwTW7.3 h282 – 1,781 m³
1 Jan 2025, 17:43Staplehurst WwTW6.6 h255 – 1,609 m³
23 Oct 2025, 07:38Staplehurst WwTW3.0 h116 – 733 m³

Estimated 2025 spill volume and pollution

Estimate, not a measurement. Monitors record how long an overflow spills, not how much. This calculator back-calculates a spill rate from the size of the works, using the Environment Agency's permit formulae, and multiplies it by published storm-sewage concentrations. How it works.

Volume, central estimate5,141 m³range 2,048 – 12,908 m³
In litres5.1 millionrange 2.0 million – 12.9 million L
Olympic swimming pools2.1at 2,500 m³ each
Organic load, as people's raw sewage7,712person-days of untreated BOD

Assumed spill rate while spilling: 10.8 – 67.9 L/s (central 27.0 L/s), from a dry-weather flow of 10.8 L/s.

Pollutant releasedLowCentralHighConcentration used (low / typical / high)
BOD₅ (organic load) 82 kg463 kg2,582 kg 40 / 90 / 200 mg/L
Low/high: Europe range, Ellis & Jenkins 2005; typical: UK, Ellis & Jenkins 2005 (both via botturi)
Suspended solids 215 kg2,185 kg9,306 kg 105 / 425 / 721 mg/L
Low/high: Europe range; typical: UK, Ellis & Jenkins 2005 (via botturi)
Ammonium-N 3.9 kg32 kg120 kg 1.9 / 6.3 / 9.3 mg/L
Low: Germany, Brombach 2005; typical/high: Paris range 3.3–9.3 midpoint and top, Gasperi 2012 (via botturi); no UK value found
Total phosphorus 2.5 kg13 kg70 kg 1.2 / 2.6 / 5.4 mg/L
Low/high: Paris, Gasperi 2012; typical: Slovakia (via botturi). UK figure of 10 mg/L treated as an outlier
E. coli 204.8 billion organisms5.1 trillion organisms129.1 trillion organisms 10,000 / 100,000 / 1.0 million per 100 mL
Median range at CSO and retention-tank outlets, Stott et al. 2018 (via botturi); typical = log midpoint

Low combines the low spill rate with low concentrations, and high combines high with high, so the true figure is very likely inside the range. Long spills become more diluted as they go on, so the central figure tends to overstate the load of long events. The calculator does not estimate the effect on the receiving water, which depends on river flow or tide at the time of the spill.

Staplehurst WwTW

Storm tank at sewage works · discharges to The River Beult

Spills 2025
7 (53 hours) · down 56% on 2024
Spills 2024
16 (83 hours)
Long-term average
12.2 spills a year (monitored since 2019)
Monitor uptime
100% of the year
Investigation
UWWTR investigation ongoing
Improvement
No improvement action in reporting period
WFD catchment
Beult (GB106040018270)
Outlet location
TQ7947044700 (OS grid reference) · View on Apple Maps
EA ID / permit
SWS00824 · W00533 · company name: STAPLEHURST SSO - 115800

How the estimate works

  1. Dry-weather flow (DWF) = population × water use per person × (1 + infiltration). Water use is 136.5 L per person per day, England's per-capita consumption for 2024–25 [EA]. Infiltration of groundwater into sewers is taken as 0–40% of that flow [Escritt, via HBF]. The Environment Agency defines DWF as PG + I + E [EA].
  2. Population. The size of each works comes from the load entering it as reported under the Urban Waste Water Treatment Directive, in population equivalents (1 p.e. = 60 g of BOD a day) [UWWTD]. We treat population equivalent as population. That overstates flow where trade effluent adds load, and no official source links the two. Works serving fewer than 2,000 p.e. are not reported, so their size has to be entered by hand.
  3. Low spill rate = DWF. This is the method used by Giakoumis & Voulvoulis (2026), which they note likely underestimates storm loads [G&V].
  4. High spill rate = Formula A − flow to full treatment = (DWF + 1360P) − 3DWF. This is the largest flow the permit expects the storm tanks to handle before it passes on to treatment or overflows [EA]. The central rate is the geometric mean of the low and high rates.
  5. Volume = spill rate × hours spilling, with hours taken from the event duration monitor.
  6. Pollution = volume × published storm-sewage concentrations [Botturi et al.] [US EPA]. Organic load is also shown as person-days of untreated sewage at 60 g of BOD per person per day [UWWTD].

What this cannot tell you. It gives no real flow for any single spill, and no effect on the river or sea, which depends on the flow, tide and the other pressures on the water at the time. It gives no figure for spills from overflows on the sewer network, which serve catchments of unknown size. It is a way to put hours into rough physical terms, not a substitute for flow monitoring.

Sources

  1. EA: Water companies – environmental permits for storm overflows and emergency overflows
  2. EA: Water resources 2024 to 2025 – per capita consumption
  3. HBF: Foul sewer design – historic conventions (citing Escritt 1984 on infiltration)
  4. Giakoumis & Voulvoulis (2026), Environ. Sci.: Water Res. Technol., doi:10.1039/D5EW00860C
  5. Botturi et al. (2021), Crit. Rev. Environ. Sci. Technol. 51:1585 – CSO quality review, Table 2
  6. US EPA (2004) Report to Congress on CSOs and SSOs, chapter 4
  7. Urban Waste Water Treatment Directive, Article 2(6): 1 p.e. = 60 g BOD5/day
  8. Olympic-size swimming pool: 2,500 m³ at the nominal 2 m depth

← All Southern Water works · Contains Environment Agency data licensed under the Open Government Licence v3.0. Spill start and stop times: © Environment Agency copyright and/or database right 2026. All rights reserved. They are water-company data and have not been verified by the Environment Agency. Works size: EEA Waterbase UWWTD. How to read the data.