Mirch Technologies Limited
Kemps Corner, Mumbai, Maharashtra
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Heat Transfer Equipment

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Heat Transfer Equipment

Types: Double pipe, Fixed Tube Sheet, Packed Floating Head, Floating Head with Split -Ring, 'U' tube and Finned Tube Type.

Materials of Construction:

Tubes: Carbon Steel, Stainless Steel, Copper, Admiralty Brass, Aluminium Brass, Aluminium Monel, Cupro Nickel, Ferrous Alloy.

Shells: Carbon Steel, Stainless, Aluminium, Copper, Brass.

Channels: Carbon Steel, Stainless Steel, Gun Metal, Cast Iron, Brass Steel.

Sizes:

Tubes: 9.5mm, 12.5mm, 16mm, 19mm, 25mm, 32mm, 40mm O.D. Tubes of any length.

Shells: 10 cms, to 244 cms. in steps of 5 cms.

Codes: TEMA (BC & R), B.S. 3274, DIN, IS 4503, IS 2825, ASME. Sec. VIII Code Stampings or Lloyds certificate can be provided.

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Oil Coolers

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Oil Coolers

Our Coolers are specially designed with 9.5 mm O.D. tubes, with packed floating head. This takes care of thermal expansion, the removable tube bundle enables periodic outside cleaning. All our Coolers are designed for pressures upto
20 kg. / cm2. In special cases, Lantern type with weep holes can be provided to detect leakage through the packing, other special features assure trouble-free operation and convenient maintenance.

Uses:
Our Coolers can be used for cooling transformer oil, quenching oil, lubricating oil, water or any other process fluids.

Material of Construction of Tubes:
Mild Steel, Carbon Steel, Aluminium, Aluminium Brass, Stainless Steel, Copper, Monel, Cupronickel, Admiralty Brass, Nickel.

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Pressure Filter Ki Type

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Pressure Filter Ki Type

Construction Features:

  • Hydraulic Control of unclamping and clamping of the cover by rotation of the bayonet ring.
  • Electrically - controlled conveyance of the filter pack on the mono - wheel track.
  • Automatic stopping devices for the filtering pack in the opening and closing operations.
  • Built-up automatic safety device for the opening and closing of the cover.
  • Choice of filter cloth includes textile in cotton or Synthetic fibre or special metallic STRAINERS.
  • Jackets for heating and cooling could be provided if desired.

Application Features:

  • High ratio of filtering surface to floor space used.
  • Irrespective of Filter size, one operator is adequate to carry out the operations of unloading of the cake and cleaning of the filter.
  • Maintenance costs negligible.
  • Suitable for suspensions which require to be filtered in hot condition or at temperatures lower than room temperature.
  • Suitable for molten sulphur, varnishes, lacquers, oils, organic and inorganic salts and pigments; phthalic anhydride; elemental sulphur, boric acid, food products etc.
  • Suitable for solutions which require filtration in completely enclosed equipment.
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Heatless Dryers

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Heatless Dryers

THN Model For Air / Gas Our Heatless Dryer supply super dry air or gases to dew points of -40°C as well as -80°C or lower without costly heating elements that can burn out, controls that fail and valves that leak, Our Heatless dryers assure dependable and economical operation.

Process Description:

Drying:
The process is completely automatic, The wet gas is passed through one drying chamber, The moisture from the wet gas is adsorbed on the desiccant and the dry gas leaves the chamber. A pre-filter is recommended for all dryer installations to protect desiccant from contaminants such as oil, pipescale, liquid water and dirt and an after filter to give dust free dry air.

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No Loss Purge Dryers

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No Loss Purge Dryers

TPC-Model For Air / Gas Model dryers consist of dual adsorbtion and a blower reactivation service with external heater, The towers are adequately filled with suitable desiccant, While one tower is drying the process air / gas the othe tower is under reactivation.

Process Description:

Drying:
The wet gas to be dried enters at the top of the tower under adsorbtion, While the moisture from the wet gas is adsorbed on the desiccant, the dried gas leaves through the outlet.

Reactivation:

  • Dryers are almost free from maintenance as the only moving part is 4-way valves changeover linkage through 4-way solenoid once in every 8 hrs / 6 hrs adsorbtion cycle.
  • Desiccant dusting is also eliminated as adsorbtion and regeneration takes place at nearing same pressure-no desiccant bed disturbance.
  • It has high turn down ratio compared to other dryer models resulting in increased operational flexibility.
  • Our units are skid mounted, fully wired and insulated including control panel having annunciation system.
  • Manual, Semi Automatic and fully automatic.
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Purge Dryers

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Purge Dryers

TPU Models For Air / Gas Drying The Dryer consists of dual adsorbing towers and a purge reactivating system, The towers contain a granular desiccant such as silica gel, activated alumina or molecular sieves. While one tower is drying the process air gas, the other tower is under reactivation.

Process Description: The process takes place in two cycles:

Drying:
The wet gas to be dried enters at the top of the tower under adsorbtion. While moisture from the wet gas is adsorbed on the desiccant, the dried gas leaves through the outlet.

Reactivation:

  • Repressurisation and depressurisation of the towers from a part of supply for dryers above 500 NM3/hr capacity and it is optional for dryers from SO NM3 / hr capacity, This eliminates desiccant crumbling and downstream line surges
  • Units are designed and fabricated in accordance with construction code like 152825, BS & ASME
  • We have taken proper care to prevent desiccant dusting.
  • Proper care taken for excellent accessubility to all parts.
  • Low operation & Maintenance cost.
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Blower Reactivated Dryers

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Blower Reactivated Dryers

TB-Models For Air / Gas TB Model dryers consist of dual adsorption and a blower reactivation service with external heater. The towers are adequately filled with suitable desiccant. While one tower is drying the process gas, the other tower is under reactivation.

Process Description:

Drying:
The wet gas to be dried enters at the top of the tower under adsorbtion, While the moisture from the wet gas is adsorbed on the desiccant, the dried gas leaves through the outlet.

Reactivation:
The reactivation air is carried out by heating the flow of reactivating air to drive off the moisture from the desiccant bed.

The reactivating air is provided by means of a centrifugal blower, Heating may be accomplished. with either steam or electricity as desired, After the heating period the heater is switched off and the desiccant bed is cooled.

Design Features:
Repressurisation and depressurisation of the towers from a part of supply for dryers above 500 NM3 / hr capacity and it is optional for dryers upto 500 NM3 / hr capacity. This eliminates desiccant crumbling and downstream line surges.

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Filters

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Pressure Filters

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Rotary Vacuum Filters

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Mirch Technologies Limited Delstar, 1st Floor, N.S. Patkar Marg, Kemps Corner,
MumbaiMaharashtra, India

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