Elevate your resort's environmental footprint with Neya Memveins' reinforced PVDF MBR membranes. Odor-free, compact and engineered to deliver crystal-clear water for landscape irrigation, cooling towers and toilet flushing.
Eliminates clarifiers, reducing footprint by 40-50%
Less maintenance intensive; simple backwash cycles
PLC-controlled automation with remote IoT cloud monitoring
Sewage & Greywater Recovery Rate
Filtrate Turbidity (Pristine Quality)
STP Footprint Reduction
Luxury properties demand millions of liters of freshwater daily. From high-capacity guest laundries to expansive tropical gardens and central cooling plants, managing water demands while adhering to strict environmental laws is a critical operational challenge.
Resorts face drastic wastewater flow surges during peak tourist seasons and weekends. Traditional sewage systems break down under shock organic and hydraulic loads.
High volumes of laundry detergents, kitchen oils and pool chemicals create foaming and biological disruption that conventional clarifiers cannot settle.
Freshwater procurement via municipal tankers is skyrocketing. Discharge penalties and strict CPCB/NGT guidelines make inefficient treatment a financial liability.
Conventional Activated Sludge (ASP), MBBR and SBR systems require secondary clarifiers and extensive sand/carbon filter screens. They struggle to match hospitality standards.
| Feature / Metric | Traditional STP (ASP/MBBR) | Neya MBR Membrane System |
|---|---|---|
| Treated Water Clarity | Turbidity 5–15 NTU (often brownish/cloudy) | Turbidity < 0.2 NTU (crystal clear) |
| System Footprint (Space) | Requires large settling clarifiers, sand & carbon filters | Saves 40-50% space (no clarifiers/tertiary filters) |
| Odor Control | High risk of septic smells due to settling tanks | Enclosed, fully aerobic, zero-odor operation |
| Pathogen / E. Coli Removal | Incomplete removal; relies on heavy chlorine dosing | 99.99% physical barrier removal (0.03µm pores) |
| Cooling Tower Reuse | High scaling & bio-fouling risks; not recommended | 100% Safe (very low BOD, COD and TSS) |
| Automation Capability | Manual sludge recycling, valve adjustments required | Fully automated PLC control with remote IoT access |
Click on any process stage in the flowchart below to view its role, biochemical parameters and engineering function within the MBR sewage treatment plant.
Wastewater collected from guest bathrooms, toilets, kitchen drains and general facility operations.
Integrating MBR membranes into your hotel's sewage treatment plant yields immediate advantages in guest comfort, regulatory ease and overhead costs.
Designed to operate silently and without odors. It can be placed directly adjacent to guest villas, outdoor dining areas or swimming pools.
Reduces STP space requirements by 40-50%. Frees up valuable real estate for guest parking, landscaping or recreational amenities.
High-strength reinforced PVDF membranes filter out soaps, laundry surfactants, kitchen fats and organic loads with ease.
Optimized hydraulic performance and air-scouring design minimize blower power usage, reducing energy consumption and maintenance.
Designed to achieve high-quality treated effluent, supporting compliance with applicable CPCB & State Pollution Control Board standards for wastewater discharge and reuse.
Neya Memveins hollow fiber membranes feature high mechanical strength and chemical stability, extending replacement intervals.
From remote eco-resorts with delicate local ecosystems to sprawling business hotels in metropolitan centers, we scale our MBR technology for any architecture.
Compare key parameters of conventional systems against Neya Memveins advanced MBR membranes. Click the buttons below to switch perspectives.
Neya Memveins Technologies designs, engineers and manufactures reinforced hollow fiber PVDF membranes in Ahmedabad, ensuring rigorous quality controls and fast delivery cycles.
An absolute micro-barrier that rejects viruses, organic colloids, bacteria and macro-molecules with 99.99% efficiency.
Internal reinforcement core prevents fiber breakage or elongation even under high backwash and scouring pressures.
Unique hydrophilic surface modification increases permanent flux rates while reducing transmembrane pressure (TMP).
Highly resistant to chlorine and severe acid cleaning protocols, ensuring a membrane lifespan of 3-5 years.
Liters Freshwater Saved Daily
Wastewater Recovery Rate
Carbon Emitted Less / Year
Average Membrane Lifespan
Our modules are available in varied heights and densities to support custom engineering specifications for EPC contractors and hotel STP capacities.
Unreinforced hollow fibers stretch, wear out and shear under high backwash velocities. Neya Memveins uses custom internal braid-reinforced PVDF (Polyvinylidene Fluoride) fibers. They are virtually impossible to break under everyday hospitality operations.
Reinforced inner core resists fiber pullout and physical wear during intense air-scouring.
Chemical graft modification ensures constant water attraction, limiting grease binding and fouling.
Withstands robust sodium hypochlorite washes without fiber degradation or loss of pore structure.
Hydrophilic PVDF with 0.03µm micro-filtration pores
Braided support structure for tensile strength
Input your hotel specs below to estimate recycled water volumes, annual financial savings, carbon footprint reduction and MBR system payback.
How a premium five-star resort in Goa achieved 100% recycling compliance and cut fresh water tanker dependence using Neya Memveins MBR membranes.
A sea-facing resort in Goa was operating a 30 KLD civil-based MBR STP. As the property expanded with more rooms and hospitality facilities, wastewater generation increased and the existing treatment capacity needed to be upgraded.
The resort needed to increase STP capacity from 30 KLD to 60 KLD, but additional space for new civil tanks was not available. The upgrade also had to be completed with minimal disruption to ongoing resort operations.
Neya Memveins Technologies upgraded the existing MBR system while retaining the existing civil tanks. The upgrade included additional PVDF hollow fiber MBR membrane modules, improved membrane aeration, higher permeate capacity and optimization of the biological process.
By upgrading the membrane system instead of rebuilding the STP, the resort successfully doubled its wastewater treatment capacity within the existing infrastructure, saving space, civil work, project time and overall upgrade cost.
The upgraded system continues to deliver high-quality treated water suitable for reuse in landscaping, flushing and other utility applications.
Read comments from general managers, hotel sustainability directors and leading MEP consultants who have implemented Neya Memveins MBR membranes.
"Transitioning our resort's STP to Neya Memveins MBR was a game-changer. We eliminated tanker water supply reliance entirely during peak season and the treated water runs completely clear in our guest room toilets with absolutely zero chemical smell."
"As MEP consultants, we recommend Neya's reinforced PVDF MBR membranes. The high mechanical resistance of the fibers prevents breakages and the Ahmedabad support team makes engineering custom packages extremely simple."
Every membrane module produced at our Ahmedabad facility undergoes rigorous performance pressure testing to ensure it meets global water purification standards.
Certified quality management systems covering design, manufacture and validation processes.
Each membrane unit is dry-bubble point verified to guarantee absolute pore size integrity before dispatch.
Constructed with high-grade PVDF plastics that do not leach chemical compounds into recycled water storage.
Supporting local environmental infrastructure with engineering manufactured completely in Ahmedabad, Gujarat.
Find technical answers to the most common questions regarding wastewater recycling, membrane lifespans, space constraints and ROI timelines.
Connect with Neya Memveins' wastewater engineering specialists. Get custom tank layouts, mechanical designs, sizing calculations and commercial estimates tailored for your hospitality project.