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CIP Pump QAR   0 QAR  0
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CIP Pump

Maintenance personnels frequently encounter the problem of build-up deposits on heat transfer surfaces in many applications . We do supply the complete CIP pump system as per the requirement of our customer. The CIP pump can be used for cleaning the equipments without opening the Unit. This can be used for plate heat exchanger, spiral heat exchanger , other welded heat exchanger and shell and tube heat exchangers. Concept : Connect the CIP unit to the heat exchanger Mix the cleaning chemicals in the tank and heat it up. Circulate the cleaning solution for few hours depends on the scale. Drain and rinse thoroughly with water Disconnect the CIP unit All scales shall be removed and the equipment is back to the designed performance. Principle: Complete or partial dissolving or destruction of the deposits due to the chemical reaction. Deposits are removed in the continuous re circulation. Features and Benefits: Connecting directly to the inlet and outlet. This avoids disassembly and assembly .Down time minimized and increases the gasket life in case of gasketted phe. Construction of Pump and tank and all other wetted parts are in AISI304 or as per the preference of customer . Fast cleaning due to the hot liquid . Heating element helps to heat the chemical in the tank. Temperature Indicator to check and plan the required temperature . Reverse direction circulation makes it possible to remove any deposits which is difficult to remove from the heat exchanger.

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Brazed Plate Heat Exchangers QAR   0 QAR  0
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Brazed Plate Heat Exchangers

Brazed plate Heat Exchanger is constructed of a series of Pressed corrugated plates in stainless steel. These plates are stacked one over other with copper foil in between for Joining and kept in oven for brazing together. The plates are stacked in such a way that flow passage one side primary fluid and another channel secondary fluid passage. Features: Small Footprint Lower Hold-up Volume No Gaskets to Replace High and Low Temperaturesv BPHE plates and channel types Certain BPHEs are available with different types of channel plates where the herringbone pattern varies. The benefit of different herringbone patterns is that the hydraulic and thermal characteristics of the BPHE can be modified. For example, two BPHEs can have the same pressure drop on both sides despite different flow rates. The fluids can pass through the heat exchanger in different ways. For parallel flow BPHEs, there are two different flow configurations: co-current or counter-current There are several different versions of the channel plate packages. Examples include: Dual-circuit BPHEDual-circuit BPHE Two-pass BPHE, which corresponds to two units connected in series. Dual-over-two-pass BPHE Material combinations There are different BPHE product categories depending on material combinations and design pressures. The standard plate materials are AISI 316 stainless steel, S, vacuum-brazed with a pure copper filler, C, or a nickel-based filler, N. For demanding applications, the plates can be made of SMO 254, a stainless steel with a higher content of molybdenum.

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Spiral Heat Exchangers QAR   0 QAR  0
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Spiral Heat Exchangers

Manufacturing is done by rolling two sheets around a centre core to form two concentric spiral passage. The sides are welded and forms two passage . one for hot and another for cold fluid. Spacer Studs: The plate gap is maintained by welded studs and this can be tailor made as per the requirement of the applications. Circular design Large surface to volume ratio and hence very compact Easy maintenance Counter current flow Self Cleaning effect in the passage in spiral HX As this single passage and this induce high shear stress and hence any particle in the passage that will be scrub away as they form. Hence reduces fouling,. Application For high viscosity fluid Fouling Liquids, Fibresm Sludges etc As solvent recoverycondenser in Pharma Industry

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