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Itchen Bank STW, Phosphorus Removal

Itchen Bank Sewage Treatment Works (STW) is a medium sized oxidation ditch site. Under the Water Framework Directive (WFD), the total phosphorus (TP) consent on site has been tightened from 0.6 mg/l to 0.3 mg/l.

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Newick STW, Phosphorus Removal

Newick Sewage Treatment Works (STW) is a medium sized trickling filter works. Under the Water Framework Directive (WFD), the site had to meet a new total phosphorus (TP) consent of 0.5 mg/l, and an iron consent of 4 mg/l. To achieve these new consent standards, CMDP (Southern Water’s delivery partner) installed a FilterClear® plant with ferric dosing.

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Dyserth STW, Phosphorus Removal

Dyserth Sewage Treatment Works (STW) is a medium sized trickling filter works. Under the Water Framework Directive (WFD), the site had to meet a new total phosphorus (TP) consent of 0.5 mg/l, and an Iron consent of 4 mg/l.

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Barton STW, Phosphorus Removal

Barton Sewage Treatment Works (STW) is a medium sized trickling filter works. In AMP6, under the Water Framework Directive (WFD), the site had to meet a new total phosphorus (TP) consent of 0.5 mg/l, and an iron consent of 4 mg/l.

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Brockhampton STW, Phosphorus Removal

Brockhampton STW is a medium sized activated sludge works treating the Cheltenham catchment, comprising domestic sewage, trade effluent and the effluent from the Cheltenham race course. The works treats a FFT of 105 l/s. The consent limits are: TSS 25 mg/l, BOD 15 mg/l, AmmN 5 mg/l.

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Harby STW, Phosphorus Removal

Harby STW is a small trickling filter works in Nottinghamshire, treating domestic sewage and trade effluent, containing dairy wastewater from a cheese factory. In AMP6, under the Water Framework Directive (WFD), the site was upgraded to meet more stringent discharge standards, including a new total phosphorus (TP) consent of 0.25 mg/l, and Fe of 2.5 mg/l.

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Ledbury STW – Phosphorus Removal

Ledbury STW is a medium size activated sludge plant in Herefordshire, treating domestic sewage and trade effluent from a brewery. The current total population equivalent (PE) is over 14,000, and expected to approach 20,000 in 2028.

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