200 KLD STP Price - MBBR

200 KLD Sewage Treatment Plant – MBBR Technology | RRR ENVIRO SYSTEMS

200 KLD Sewage Treatment Plant – MBBR Technology

Moving Bed Biofilm Reactor (MBBR) using PP/HDPE bio-carrier media — compact, robust and ideal for variable loads. Designed for 20 hours/day operation.
Overview

MBBR is an advanced attached-growth biological process using floating bio-media to increase active surface area and reduce tank size.
This page provides an indicative 200 KLD MBBR design: process flow, media specs, careful calculations (digit-by-digit), equipment list, O&M notes and reuse guidance. Final design will be confirmed after site visit & jar test.

Process Flow (MBBR)

Bar Screen → Oil & Grit Trap → Collection / Equalization Tank (disc diffusers) → Raw Sewage Transfer Pump → MBBR Aeration Tank (PP/HDPE bio-media + fine bubble aeration) → Secondary Settling Tank → Clarified Water Tank → Pressure Sand Filter → Activated Carbon Filter → Hypochlorite Dosing / UV → Final Treated Water Tank.

Return activated sludge (RAS) pumped back to reactor; excess sludge → sludge holding & dewatering. MBBR media reduces footprint but requires mixing & scouring air.

Design Basis & Mass Calculations (digit-by-digit)

Given / Assumed:
Design daily flow (Qd) = 200,000 L/day (200 KLD).
Operating hours = 20 hours/day.
Design hourly flow (Qh) = Qd / hours = 200,000 / 20 = 10,000 L/h.
Influent BOD (assumed) = 300 mg/L (0.300 g/L).
Target BOD removal = 80% (indicative).

Step-by-step BOD & O₂ calculations

1) BOD mass/day
Influent BOD = 300 mg/L = 0.300 g/L.
BOD mass/day = 200,000 L × 300 mg/L = 200,000 × 300 mg = 60,000,000 mg = 60,000 g = 60.000 kg/day.

2) BOD removed (80%)
Removed BOD = 60.000 kg/day × 0.80 = 48.000 kg/day.

3) Oxygen demand (1.5 kg O₂ per kg BOD removed)
O₂ required = 48.000 kg/day × 1.5 = 72.000 kg O₂/day.

4) Air required (using 0.278 kg O₂ per m³ air and 10% transfer efficiency)
Available O₂ per m³ air = 0.278 kg × 0.10 = 0.0278 kg O₂/m³ air.
Air (m³/day) = 72.000 kg / 0.0278 kg/m³ = 72.000 / 0.0278 ≈ 2,590.650 m³/day.
Air (m³/hour) = 2,590.650 / 20 = 129.533 m³/hr.
Recommendation: Provide blowers totalling ~ 150–200 m³/hr (split across 2 blowers for duty + standby) to allow margin for media mixing & scouring.

Tank Sizing & Volumes (Indicative)

Design hourly flow = 10,000 L/h. We use conservative HRTs; values rounded for practical tank sizes.

UnitHRT / NoteCalculated Volume (L)Rounded (m³)
Collection / Equalization Tank (disc diffusers)6 hours10,000 × 6 = 60,000 L60 m³
Bar screen & O&G chamber0.5–1 hour~10,000 L10 m³
MBBR Aeration Tank (required water volume)6 hours (required free water)10,000 × 6 = 60,000 L60 m³ (free water)
Secondary Clarifier2 hours10,000 × 2 = 20,000 L20 m³
Clarified Water / Buffer Tank (PSF feed)Buffer~3,000 – 5,000 L3 – 5 m³
Final Treated Water TankReuse buffer~10,000 L10 m³
Sludge holding / ThickenerIntermediate~2,000 – 4,000 L2 – 4 m³

Important note on media fill and physical reactor volume:
The **60 m³** above is the required *free water volume* for biological HRT (6 hr). MBBR uses floating media which occupies part of the aeration tank volume — therefore the **physical** aeration tank volume must be increased to provide the required free water volume.

Worked example — media fill effect (digit-by-digit)

Desired free water volume = 60 m³ (from HRT calculation).
Let media filling ratio f = 55% → media occupies 0.55 of tank volume.
Free water fraction = 1 − f = 0.45.
Physical tank volume V needed such that free water = 0.45 × V = 60 m³.
=> V = 60 / 0.45 = 133.333... m³ ≈ 133.3 m³ physical aeration tank.

If f = 60% (0.60), free fraction = 0.40 → V = 60 / 0.40 = 150 m³ physical.
If f = 50% (0.50), free fraction = 0.50 → V = 60 / 0.50 = 120 m³ physical.

Design guidance: choosing media fill 50–55% is common to balance footprint & hydraulic free volume. For 55% fill we recommend a physical aeration tank ≈ 133 m³. This increases civil footprint versus simple ASP but gains performance & resilience. We will finalize fill% and physical volumes after jar test & site constraints.

MBBR Media Specification & Filling

PropertyValue / Note
Media TypePP / HDPE Floating Bio-carrier (virgin material)
Surface Area500 – 650 m² / m³ (typical; vendor dependent)
Filling Ratio (recommended)55% of aeration tank volume (adjustable 50–65% based on load)
Media MovementFree-moving carriers; check for carry-over protection at clarifier outlet
AdvantageHigher biofilm surface area → compact reactor & stable performance

Exact carrier type & fill percent will be specified after influent characterization and vendor selection.

Air / Blower & Power Estimates

From O₂ calculation above: design air ≈ 2,590.65 m³/day ≈ 129.5 m³/hr for biological O₂ demand (10% transfer assumption). MBBR requires additional air for media mixing & scouring — recommend total design blower capacity in the range:
Recommended blower capacity ≈ 150 – 200 m³/hr (split into 2 blowers for duty + standby).

Blower motor power depends on blower type, discharge pressure & piping losses. Typical combined blower motor range: 15 – 40 HP for this capacity (vendor dependent).

Expected Performance & Reuse

ParameterInfluent (Design)Expected Treated (After PSF+ACF+Disinfection)
pH6.5 – 7.56.5 – 7.5
BOD~300 mg/L< 30 mg/L
COD~900 mg/L< 200 mg/L (site dependent)
TSS~150 mg/L< 30 mg/L
Oil & Grease~50 mg/L< 5 mg/L

Typical reuse: gardening, toilet flushing, car wash, pavement wash. For critical reuse (RO feed/cooling towers) include UF/RO & perform lab validation.

Operation & Maintenance (Key Points)

  • Maintain DO in reactor: 2.0 – 3.5 mg/L (increase as needed for media scouring).
  • Monitor biofilm & MLSS; control wasting to maintain appropriate solids.
  • Inspect media movement & prevent carrier carryover (screens at clarifier outlet).
  • Blower and diffuser maintenance; spare diffusers & blower spare parts recommended.
  • Keep records for TNPCB/CPCB compliance; schedule periodic performance checks.

Get Quick Quotation / Technical Proposal

Free site visit & jar test for final design & price. Send site photos, sample report (if available) and project brief.

Contact
Sales / Technical: +91 97100 35249 • Service: +91 99623 95875 • Email: rrrenviro@gmail.com