Sparkle Clean Tech Pvt. Ltd. CBD Belapur, Navi Mumbai, Maharashtra

  • ULTRA VIOLET SYSTEM

    ULTRA VIOLET SYSTEM

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    UV System is also one of the maseares for the disinfecteant of water. Water is passed through the UV light, which eliminates bactreia and viruses. UV is an electro magnetic radiation, having radiation from 10nm to 400nm. UV rays penetrate through harmful bacteria in water and eliminate them. Disinfecting through UV light is a very simple and effective method. UV system destroy 99.99% harmful microorganism without adding any chemicals. Since there is no chemical being added water does not change its taste or odour.

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  • ultra filtration

    ultra filtration

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    Ultrafiltration (UF) is a variety of membrane filtration in which hydrostatic pressure forces a liquid against a semi permeable membrane. Suspended solids and solutes of high molecular weight are retained, while water and low molecular weight solutes pass through the membrane. Ultrafiltration technology produces superior quality water by removing virtually all harmful pathogens and suspended solids. Ultrafiltration membranes are designed for Cross Flow and Dead End filtration. In Cross Flow filtration a portion of the feed passes through the membrane and is called permeate. The rejected materials are flushed away in a stream called the concentrate. Cross Flow membrane filtration uses a high cross flow rate to enhance permeate passage and reduce membrane fouling. Hollow fibre membranes also have the capability to be backwashed, where filtered water is pushed backwards through the membrane to remove accumulated solids on the membrane surface. Ultrafiltration systems provide flexibility to operate in a range of conditions that can be optimized for a specific water source to reduce operating costs.

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  • TWO BED Demineralization

    TWO BED Demineralization

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    Demineralization is often a term used interchangeably with deionization. Demineralization is essentially removing all the minerals that can be found in water. This process is usually done when the water is to be used for chemicals processes and the minerals present may interfere with the other chemicals. For eg. all chemistic and beauty products have to be made with demineralized water for this reason. With the demineralization process, the water is "softened" replacing the undesired minerals with different salts (NaCl). Demineralized water has a higher conductivity than deionized water.

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  • Tube Plate separation

    Tube Plate separation

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    Tube / Plate/ Lamella settlers are modern unconventional solid - liquid separation systems units. These settling units due to higher settling area and effective arrangement of multiple tubular channels sloped at an angle of 55°- 60° and adjacent to each other, increases the rate of settling. These modern settlers provides particle settling depth that is significantly less than the settling depth of a conventional clarifier, reducing settling times. Tube settlers capture the settleable fine floc that escapes the clarification zone beneath the tube settlers and allows the larger floc to travel to the tank bottom in a more settleable form. Why Tube Settlers ? The Tube settler contains inert, non corrosive UV resistant PVC inert media placed in inclined manner and arranged in structured manner with its self interlocking system. The smooth surface ,inclined arrangement and adequately designed void space helps large solids, flocs and particulate matter the move downwards of the settler. The tube setters has sharp conical bottom which enables to effective setting and reduces footprint. Due to such arrangement the extra mechanical scrapping arrangement which is usually and integral part of conventional clarifier is not required. This also provides benefit of choice of geometry of settling unit which is very essential during space planning of compact systems. The tube settler's channel collects solids into a compact mass which promotes the solids to slide down the tube channel. Tube settlers offer an inexpensive method of upgrading existing water treatment plant clarifiers and sedimentation basins to improve performance. They can also reduce the tankage/footprint required in new installations or improve the performance of existing settling basins by reducing the solids loading on downstream filters. Made of lightweight PVC, tube settlers can be easily supported with minimal structures that often incorporate the effluent trough supports. They are available in a variety of module sizes and tube lengths to fit any tank geometry, with custom design and engineering offered by the manufacturer. Advantages of Tube Settlers   The advantages of tube settlers can be applied to new or existing clarifiers/basins of any size: Clarifiers/basins equipped with tube settlers can operate at 2 to 4 times the normal rate of clarifiers/basins without tube settlers. It is possible to cut/ reduce coagulant dosage by up to half while maintaining a lower influent turbidity to the treatment plant filters. Saves electricity as no mechanical and rotating equipment's it also lowers Operational Expenditure(OPEX). Less filter backwashing of downstream units equates to significant operating cost savings for both water and electricity. New installations using tube settlers can be designed smaller because of increased flow capability. Flow of existing water treatment plants can be increased through the addition of tube settlers. Tube settlers increase allowable flow capacity by expanding settling capacity and increasing the solids removal rate in settling tanks. Extended life of unit as no mechanical or rotating units are involved. Inert PVC material has very long life and can be replaced or top-uped easily.

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  • Three Bed Demineralizer

    Three Bed Demineralizer

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    When the process requires water to be of higher purity then 2 bed D M Plant system mixed is included. Mixed bed comprises of both Cation and anion. This mixed bed is used essentially as a extension.

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  • Submerged Aerobic Fixed Film BIO Reactor

    Submerged Aerobic Fixed Film BIO Reactor

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    Submerged Aerobic Fixed Film Reactor (SAFF) is a cost-effective method of waste water treatment and sewage sanitation that is primarily used in residential and commercial complexes. SAFF process is attached growth type aerobic biological process which uses corrugated inert UV stabilized PVC media. Unlike other aerobic processes of suspended growth principally it provides higher mechanical surface area due to corrugation on media surface. This higher surface area helps biomass microbes for rapid digestion of biomass. In the wastewater industry, SAFF Technology is used commonly for commercial and residential sewage sanitation / waste water treatment, particularly for small to medium range flow requirements. The air for process is supplied through mechanical aeration system arrangement which consist of blower and diffusers. The structured SAFF media arranged in reactor is fixed with bottom support arrangement.   Advantage of SAFF process MLSS concentration is much higher than what is normally achieved in aeration system of ASP process. Higher loading of BOD on the media enables to reduce the aeration tank size. SAFF requires 25-40% lesser tank volume as compared to activated sludge process. Cross-corrugation pattern of media ensures that air bubble travels in zigzag fashion, thus increasing the bubble travel path and thereby increasing the oxygen transfer rates. SAFF system takes higher shock loads without reducing the plant performance because of large quantity of MLSS available inside the reactor. Rate of sludge generation is normally lesser as compared to conventional system. Life of SAFF system is long (about 10-15 years) as inert PVC media material is used. Non pressurized system. This process is modification of activated sludge process which have eliminated its limitations. All these process produces better quality treated wastewater than conventional activated sludge process. Easily meets discharge norms. Odour problems, maintenance problems, are eliminated. High MLSS – Less Space required for the treatment. SAFF process able to achieve 95-98% BOD reduction. Due to above advantages the SAFF process is used commonly in package systems where compactness of treatment is key factor.

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  • standalone mixed bed

    standalone mixed bed

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    Mixed bed deionization is a mixture of cation and anion resin combined in a single ion exchange column. With proper pretreatment, product water purified from a single pass through a mixed bed ion exchange column is the purest that can be made. Most commonly, mixed bed demineralizers are used for final water polishing to clean the last few ions within water prior to use. Small mixed bed deionization units have no regeneration capability. Commercial mixed bed deionization units have elaborate internal water and regenerant distribution systems for regeneration. A control system operates pumps and valves for the regenerants of spent anions and cations resins within the ion exchange column. Each is regenerated separately, then remixed during the regeneration process. Because of the high quality of product water achieved, and because of the expense and difficulty of regeneration, mixed bed demineralizers are used only when the highest purity water is required.

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  • softener

    softener

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    Water softening is the removal of calcium, magnesium, and certain other metal cations in hard water. The resulting soft water is more compatible with soap and extends the lifetime of plumbing. Water softening is usually achieved using lime softening or ion-exchange resins. It is widely used in the food & beverage, hydrometallurgy, metals finishing, chemical & petrochemical, pharmaceutical, sugar & sweeteners, ground & potable water, nuclear, softening & industrial water, semiconductor, power, and a host of other industries.

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  • Sequential Batch Reactor

    Sequential Batch Reactor

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    The Sequencing Batch Reactor (SBR) is a derivative of activated sludge process designed to operate under non-steady state conditions. Like extended aeration or other activated sludge process it involves the biological process, microorganisms and mechanical aeration system for aeration along with air distributors and diffusers. However the major difference in involved is in operation of treatment which is carried out in batches in cyclic manner. In SBR configuration all related processes of Aeration, Settling, Decanting are carried out in same basin and eventually this reduces construction cost which is very essential in larger systems. The most important component of SBR process is decanting system. The various type of decanters are used for process like Floating gravity type, rake arm type, floating funnel type and slotted pipe type decanters. The process is operated in batch manner and hence it is vary suitable for industrial wastewater and high flow domestic wastewater. The added advantages are it provides BNR ( biological nutrients removal) and completely digested sludge which makes sludge treatment process easier.SBR is modern wastewater treatment system which involves use of automation in operation. The control of cyclic batch operation is programmed in PLC or SCADA. The instruments involved in process helps to transmit appropriate signal and control the system. The automation of system reduces the number of operator skill and attention requirement and hence improves output quality of treated effluent.

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  • sequencing batch reactor

    sequencing batch reactor

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    The Sequencing Batch Reactor (SBR) is a derivative of activated sludge process designed to operate under non-steady state conditions. Like extended aeration or other activated sludge process it involves the biological process, microorganisms and mechanical aeration system for aeration along with air distributors and diffusers. However the major difference in involved is in operation of treatment which is carried out in batches in cyclic manner. In SBR configuration all related processes of Aeration, Settling, Decanting are carried out in same basin and eventually this reduces construction cost which is very essential in larger systems. The most important component of SBR process is decanting system. The various type of decanters are used for process like Floating gravity type, rake arm type, floating funnel type and slotted pipe type decanters. The process is operated in batch manner and hence it is vary suitable for industrial wastewater and high flow domestic wastewater. The added advantages are it provides BNR ( biological nutrients removal) and completely digested sludge which makes sludge treatment process easier. SBR is modern wastewater treatment system which involves use of automation in operation. The control of cyclic batch operation is programmed in PLC or SCADA. The instruments involved in process helps to transmit appropriate signal and control the system. The automation of system reduces the number of operator skill and attention requirement and hence improves output quality of treated effluent. Sparkle offers unique design of sequential batch reactor decanting system which involves simple automation and gravity based decanting system. The power requirement for decanting operation is eliminated in this design. Advantages: economical construction due to single tank design. The system can absorb higher shock loads. Provides 95-98% removal in BOD.

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  • Saff Media

    Saff Media

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    Submerged Aerobic Fixed Film Reactor (SAFF) is a cost-effective method of waste water treatment and sewage sanitation that is primarily used in residential and commercial complexes. SAFF process is attached growth type aerobic biological process which uses corrugated inert UV stabilized PVC media. Unlike other aerobic processes of suspended growth principally it provides higher mechanical surface area due to corrugation on media surface. This higher surface area helps biomass microbes for rapid digestion of biomass. The structured SAFF media arranged in reactor is fixed with bottom support arrangement.

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  • Ro Plant

    Ro Plant

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    A Reverse Osmosis plant comprises of membranes made of polyaaid, etc. The spirally bound membranes are subjected to pressure to complete the process of Reverse Osmosis. They are typically used whenever salt removal or deionization is required. Reverse osmosis removes more than 97%-99% of the total dissolved solids along with organics, bacteria and other particulates. Reverso Osmosis is becoming more and more popular viz a viz ion exchange process because of input TDS restrictions in ion exchange and ease of operation.

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  • Sand Bed Filter

    Sand Bed Filter

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    A sand bed filter is a kind of depth filter used to separate small amounts (

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  • Ozonator

    Ozonator

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    Ozone is an unstable molecule which readily gives up one atom of oxygen providing a powerful oxidizing agent which is toxic to most waterborne organisms. It is a very strong, disinfectant that is widely used. It is a very good disinfectant. Ozone is made by passing oxygen through ultraviolet light or a "cold" electrical discharge. To use ozone as a disinfectant, it must be created on-site and dosed in to the water. As compared to chlorine the issue of odour and smell is lesser. Ozone though is a very good disinfectant does not leave any disinfectant in residual water. This may be termed as advantage as well as disadvantage. It is applied as an anti-microbiological agent for the treatment, storage, and processing of foods.

    Country of Origin : India

    Type : Ozonator

    Certification : CE Certified

    Weight : 100-1000kg, 3000-4000kg

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  • Oil Skimmer

    Oil Skimmer

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    An oil skimmer is a device that separates free and floating type oil from wastewater/ effluent. A common application is removing oil floating on water. Oil skimmers are different from oil water separators and the primary intension of skimmer is to skim-off the oil layer which is separated by phase separation process which is similar to oil water separators. The skimming units are broadly available in two types i.e. Manual skimmers and mechanical skimmers. The manual skimmers are generally available in SS 304, CI or MS EP construction MOC or can be customized as per requirement in civil - RCC. Mechanical oil skimmers are units attached with various form of skimming unit like Belt type, Tube type, Rotating Disc type, Funnel type, slotted pipe type, floating suction type, and drum type etc. The type of skimmer is selected as per adequate application and type of oil.

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  • nano filtration

    nano filtration

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    Nano filtration is a stage of filtration between UF and RO where semi permeable membrane rejects high molecular weight salts. Nano filtration is essentially used for removal of hardness i.e., calcium and magnesium salts from water. It finds its utility as prefiltration to RO Systems and filtration for boiler feed water. The Principle used is same as that of Reverese Osmosis.

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  • Moving Bed Bioreactor

    Moving Bed Bioreactor

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    MBBR (Moving bed biofilm reactor) as the name suggests is a high rate attached growth aerobic treatment system wherein the bacterial growth takes place on a inert PP media. MBBR process uses the floating type plastic media for the attached growth process. Treatment units based on MBBR are operating successfully worldwide, as the technology is rugged and simple to operate. Units can be pre-assembled for rapid on-site installation. The major advantages include a compact, efficient design (less than a half of conventional plants), low sludge generation, low odor and low visual impact, and simple maintenance requirements. Like SAFF process the basic principle of treatment is attached growth which is carried out on media surface which is extensively corrugated specialized structure. Sparkle offers various grades of MBBR reactor media i.e. cylindrical, Spiral, Spiral media, etc.   Advantage of MBBR process MLSS concentration is much higher than what is normally achieved in aeration system of ASP process. Higher loading of BOD on the media enables to reduce the aeration tank size. MBBR requires 60 % lesser tank volume as compared to activated sludge process. Based on attached growth process, where media is floating in aeration tank, hence it provides maximum surface area. MBBR system takes higher shock loads without reducing the plant performance because of large quantity of MLSS available inside the reactor. Rate of sludge generation is normally lesser as compared to conventional system. Life of MBBR system is long (about 10-15 years) as inert PVC media material is used. Non pressurized system. All these process produces better quality treated wastewater than conventional activated sludge process. Easily meets discharge norms. Space requirement is less. Treatment units can be accommodated in smallest available area. Treated waste water can be reused for various applications like: flushing in toilets, gardening, road washing, car washing, construction activities after softening treatment it can reused for cooling towers makeup etc. Odor problems, maintenance problems, are eliminated. High MLSS – Less Space required for the treatment. Due to use of diffused aeration power consumption is less. Small reactor size also helps to reduce power requirement, maintenance problems Treatment is principally based on most proven activated sludge process. MBBR process able to achieve 95-98% BOD reduction. Due to above advantages the SAFF process is used commonly in package systems where compactness of treatment is key factor.  

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  • Micron Catridge filter

    Micron Catridge filter

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    Micron Catridge filters restricts, as per its rating, up to 0.2 microns of particulate matter in water. Catridges could be of inert polymer material or of steel. Catridge filters are of two types, absolute filters and nominal filters. Absolute rating filters 99.9% are of particulate matter above the rated microns. Nominal Filter between 80 - 90 % of particulate matter above the rated micron. The major use of Micron Catradige filters is that of pre / guard filter of ultra filteration and Reverse Osmosis. For removal of bacteria and pyrogens for high purity water utilised for pharmaceutical industry.

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  • Micron Cartridge Filter

    Micron Cartridge Filter

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    Micron Catridge filters restricts, as per its rating, up to 0.2 microns of particulate matter in water. Catridges could be of inert polymer material or of steel. Catridge filters are of two types, absolute filters and nominal filters. Absolute rating filters 99.9% are of particulate matter above the rated microns. Nominal Filter between 80 - 90 % of particulate matter above the rated micron. The major use of Micron Catradige filters is that of pre guard filter of ultra filteration and Reverse Osmosis. For removal of bacteria and pyrogens for high purity water utilised for pharmaceutical industry.

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  • Membrane Bio Reactor

    Membrane Bio Reactor

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    Membrane Bio Reactor (MBR) is a combination of two basic processes i.e. biological degradation and membrane separation in to a single process where suspended solids and microorganisms responsible for biodegradation are separated from the treated water by membrane filtration unit. Filtration based on UF or MF membranes is key for solid liquid seperation in MBR process. The Concentration of biomass is maintained very high in MBR systems. due to high MLSS the process reaction time is considerably low and optimum. Usually filtration is carried out by two different methods which defines the types of MBR process i.e. Side stream MBR and submerged MBR. Both types of MBR's have their unique advantages and sparkle can offer both types of MBR configurations. The systems configurations are chosen by considering the customer requirements and waster characteristics. The MBR system is considered as most effiecient and modern wastewater treatment technology and known for various advantages over other treatment processes   Compact design with smallest footprint. MBR process involves higher MLSS hence reaction tank is 75 % smaller than conventional extended aeration process tank. Less treatment units required. Low space requirement Treated water quality after MBR is excellent as it is directly filtered through ultra filtration or microfiltration membranes. No separate tertiary treatment required. Rate of sludge generation is normally lesser as compared to conventional system. BOD values of treated water is very low and hence waste water can be reused easily. Negligible (almost zero) sludge production Rapid Startup Modular/ Retrofit , system can be enhanced for capacity expansion easily.

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  • Iron Removal Filter

    Iron Removal Filter

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    Iron can be removed from water, either in its soluble form or insoluble form. As soluble ferrous ions, iron removal can be carried out by the following process : (1) Ion exchange using a metal selective (chelating) strong acid cation resin. (2) Reverse osmosis provided the total iron in the feed water is < 0.05 mg/l. There are several main types of processes that can achieve removal of total iron from water, via its insoluble forms : (1) Chemical oxidation - Strong oxidants such as ozone, hydrogen peroxide and chlorine can be dosed to fully oxidise soluble iron to insoluble ferric hydroxide for its removal by clarification or filtration. (2) Media adsorption - Various active medias can be used in presence of chlorine which acts as catalyse for oxidation reactions. The media also serves to filter out the suspended particles of ferric hydroxide produced. (3) pH adjustment - The pH can be adjusted to above 8 by aeration and/or dosing caustic. Flocculation is then carried out to maximise particle size, before removal by either clarification or filtration. The above processes are all capable of achieving total iron reductions down to the 0.3 mg/l limit set for potable water.

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  • ion exchange plant

    ion exchange plant

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    Ion exchange is a resin based process, the inner bids of resin carry either positive or negative ion which can be exchanged with the ion of incoming water. The dissolved salt or solids comprising of positive or negative ions are passed through cation and anion resins to achieve desired results.

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  • High Rate Solid Contact Clarifier

    High Rate Solid Contact Clarifier

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    HRSCC uses turbulence and high velocity to reduce silica load in the water apart from deduction of suspended impurities and turbidity. HRSCC requires lesser area and process time and thereby, reduces the initial civil cost of the plant.

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  • Extended Aeration

    Extended Aeration

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    Extended aeration is aerobic biological treatment process used in wastewater treatment. This process is principally modified version of most commonly used and proven technology i.e. activated sludge process. Extended aeration systems are simpler in construction and operation. The wastewater is brought directly to the aeration basin after screening and grit removal. In aeration basin the aeration is carried out for extended period of time thus mineralizing the sludge solids sufficiently hence the sludge produced is completely digested. Extended aeration is a method of sewage treatment using acclimatized active biomass, the oxygen for bioprocess is provided from mechanical aeration system of blowers and fine bubble diffusers. The suitable ratio of food to microorganism (F : M) is maintained for effective process operation. The microorganisms maintained in reactor carries out digestion of oxygen demanding impurities present in wastewater and hence the treated water is with very low concentration of biological and chemical oxygen demand. The clarifier or tube settler downstream is used to carrying out solid- liquid separation, settled sludge at bottom of reactor is partly recycled back for process, excessive sludge is sent for sludge dewatering treatment. The ability of absorbing flow and qualitative shock loads due to higher detention time makes it preferred and reliable treatment process. This type of treatment process is very commonly used worldwide and in major industrial applications of wastewater/ effluent treatment.

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About the Company

  • Primary Business Retailer
  • Secondary Business Type Manufacturer / Exporters / Wholesale Suppliers

Opening Hours

  • SUN : Closed
  • MON : 9:30 AM - 6:30 PM
  • TUE : 9:30 AM - 6:30 PM
  • WED : 9:30 AM - 6:30 PM
  • THU : 9:30 AM - 6:30 PM
  • FRI : 9:30 AM - 6:30 PM
  • SAT : 9:30 AM - 6:30 PM
Sparkle Clean Tech offers end to end water treatment solutions across the globe. While our intention is to reach in terms of both geographical spread as well as in-depth reach in within each community we aim to serve.
Our office locations in India, Singapore, and Philippines add to our overall capabilities to offer customized research solutions irrespective of where you are based or which water management solution you wish to explore. Having such phenomenal expertise, we have served more than 700 projects worldwide. Check out our reach in India as well as Internationally.
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Contact Information

Sparkle Clean Tech Pvt. Ltd.

  • Gautam
  • #89 Gautam Complex, Sector - 11, C.B.D Belapur, Navi -, CBD Belapur, Navi Mumbai, Maharashtra
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