Metal Brite

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Product Short Description: Rust and Metal Tarnish Remover Specially designed for removal of rust from any steel surface area also acts as rust proofing agent before the application of paint or coatings. It is non-flammable. Prevents further rusting.
Product Technical Specification:
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Silica Gel White Desiccant

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Product Short Description: Silica gel absorbs excess moisture and condensation. Packed as per the specific requirements.
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Wax Based Heavy Duty Corrosion Protection Coating

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Product Short Description: An excellent rust preventive corrosion protection coating Highly water repellant and chemically inert
Product Technical Specification:

RXSOL-25-1005-025 Wax Based Heavy Duty Corrosion Protection Coating Lubrication and Demoulding Cleaning of Injection Mold thimble and Mold Rust Prevention.

Remarks:
RXSOL supply only top quality coating chemicals, additives, and raw material to the industry.
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Enviro Guard Sulfite

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Product Short Description: Removal of chlorine, After 25 seconds of contact, catalyzed sodium sulfite removed the chlorine content in a Ballast Water Treatment System. Most commonly used to reduce the residual chlorine
Product Technical Specification:

 

SODIUM SULFITE
Test Results
Colour
 
white Yellow
Bulk Density  1.3 – 1.5 kg/dm3
Moisture
0.05max
Insolubles, %  0.03max
Sodium Chloride, ppm  50max
Iron (Fe), ppm 3max
Heavy Metals, (Pb) ppm  10max
Selenium, ppm 2max
Arsenic, ppm 1max
PH of 5% Solution (@ 25° C) 9.5-10.6
Ca/Mg NH40H Inso. % 0.50max
Alk. as Na2C03 % w/w 0.15max
Water insolubles (other than Iron compounds) % by wt.
Max. 0.25
 
 
SODIUM SULPHIDE
Test Results
Colour
 
Yellow
Sodium Sulphide (as Na2S) % by wt. 58% to 60%
Sodium Hydro Sulphate (AS NaHS) % by wt. Max. 2.50
Sodium Compounds (AS Na2S2O3) % by wt. Max. 2.00
Sodium Sulphate (AS Na2S2O4) % by wt. Max. 0.20
Sodium Chloride (AS Nz01) Max. 1.00
Water insolubles (other than Iron compounds) % by wt. Max. 0.25
Remarks:

Oxygen Control

Chemical Oxygen Scavengers. The oxygen scavengers most commonly used in boiler systems are sodium sulfite, sodium bisulfite, hydrazine, catalyzed versions of the sulfites and hydrazine, and organic oxygen scavengers, such as hydroquinone and ascorbate.

It is of critical importance to select and properly use the best chemical oxygen scavenger for a given system. Major factors that determine the best oxygen scavenger for a particular application include reaction speed, residence time in the system, operating temperature and pressure, and feedwater pH. Interferences with the scavenger/oxygen reaction, decomposition products, and reactions with metals in the system are also important factors. Other contributing factors include the use of feedwater for attemperation, the presence of economizers in the system, and the end use of the steam. Chemical oxygen scavengers should be fed to allow ample time for the scavenger/oxygen reaction to occur. The deaerator storage system and the feedwater storage tank are commonly used feed points.

In boilers operating below 1,000 psig, sodium sulfite and a concentrated liquid solution of catalyzed sodium bisulfite are the most commonly used materials for chemical deaeration due to low cost and ease of handling and testing. The oxygen scavenging property of sodium sulfite is illustrated by the following reaction:

2Na2SO3 + O2 ® 2Na2SO4
sodium Sulfite   oxygen   sodium sulfate

 

Theoretically, 7.88 ppm of chemically pure sodium sulfite is required to remove 1.0 ppm of dissolved oxygen. However, due to the use of technical grades of sodium sulfite, combined with handling and blowdown losses during normal plant operation, approximately 10 lb of sodium sulfite per pound of oxygen is usually required. The concentration of excess sulfite maintained in the feedwater or boiler water also affects the sulfite requirement.

Sodium sulfite must be fed continuously for maximum oxygen removal. Usually, the most suitable point of application is the drop leg between the deaerator and the storage compartment. Where hot process softeners are followed by hot zeolite units, an additional feed is recommended at the filter effluent of the hot process units (prior to the zeolite softeners) to protect the ion exchange resin and softener shells.

As with any oxygen scavenging reaction, many factors affect the speed of the sulfite-oxygen reaction. These factors include temperature, pH, initial concentration of oxygen scavenger, initial concentration of dissolved oxygen, and catalytic or inhibiting effects. The most important factor is temperature. As temperature increases, reaction time decreases; in general, every 18°F increase in temperature doubles reaction speed. At temperatures of 212°F and above, the reaction is rapid. Overfeed of sodium sulfite also increases reaction rate. The reaction proceeds most rapidly at pH values in the range of 8.5-10.0.

Certain materials catalyze the oxygen-sulfite reaction. The most effective catalysts are the heavy metal cations with valences of two or more. Iron, copper, cobalt, nickel, and manganese are among the more effective catalysts.
 
Removal of oxygen using commercial sodium sulfite and a catalyzed sodium sulfite makes great difference. After 25 seconds of contact, catalyzed sodium sulfite removed the oxygen completely. Uncatalyzed sodium sulfite removed less than 50% of the oxygen in this same time period. In a boiler feedwater system, this could result in severe corrosive attack.

The following operational conditions necessitate the use of catalyzed sodium sulfite:

  • low feedwater temperature
  • incomplete mechanical deaeration
  • rapid reaction required to prevent pitting in the system
  • short residence time
  • use of economizers

High feedwater sulfite residuals and pH values above 8.5 should be maintained in the feedwater to help protect the economizer from oxygen attack.

Some natural waters contain materials that can inhibit the oxygen/sulfite reaction. For example, trace organic materials in a surface supply used for makeup water can reduce speed of scavenger/oxygen reaction time. The same problem can occur where contaminated condensate is used as a portion of the boiler feedwater. The organic materials complex metals (natural or formulated catalysts) and prevent them from increasing the rate of reaction.

Sodium sulfite must be fed where it will not contaminate feedwater to be used for attemporation or desuperheating. This prevents the addition of solids to the steam.

At operating pressures of 1,000 psig and higher, hydrazine or organic oxygen scavengers are normally used in place of sulfite. In these applications, the increased dissolved solids contributed by sodium sulfate (the product of the sodium sulfite-oxygen reaction) can become a significant problem. Also, sulfite decomposes in high-pressure boilers to form sulfur dioxide (SO2) and hydrogen sulfide (H2S). Both of these gases can cause corrosion in the return condensate system and have been reported to contribute to stress corrosion cracking in turbines. Hydrazine has been used for years as an oxygen scavenger in high-pressure systems and other systems in which sulfite materials cannot be used. Hydrazine is a reducing agent that removes dissolved oxygen by the following reaction:

N2H4 + O2 ® 2H2O + N2
hydrazine   oxygen   water   nitrogen

 

Because the products of this reaction are water and nitrogen, the reaction adds no solids to the boiler water. The decomposition products of hydrazine are ammonia and nitrogen. Decomposition begins at approximately 400°F and is rapid at 600°F. The alkaline ammonia does not attack steel. However, if enough ammonia and oxygen are present together, copper alloy corrosion increases. Close control of the hydrazine feed rate can limit the concentration of ammonia in the steam and minimize the danger of attack on copper-bearing alloys. The ammonia also neutralizes carbon dioxide and reduces the return line corrosion caused by carbon dioxide.

Hydrazine is a toxic material and must be handled with extreme care. Because the material is a suspected carcinogen, federally published guidelines must be followed for handling and reporting. Because pure hydrazine has a low flash point, a 35% solution with a flash point of greater than 200°F is usually used. Theoretically, 1.0 ppm of hydrazine is required to react with 1.0 ppm of dissolved oxygen. However, in practice 1.5-2.0 parts of hydrazine are required per part of oxygen.

The factors that influence the reaction time of sodium sulfite also apply to other oxygen scavengers.  Rate of reaction as a function of temperature and hydrazine concentration. The reaction is also dependent upon pH (the optimum pH range is 9.0-10.0)

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Electrosol plus low evaporation rate

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Product Short Description: Excellent Cleaner for Electric Parts Having super Degreasing power with slow evaporation rate
Product Technical Specification:
Remarks:

RXSOL-16-1077-020 must be used in open or  sufficiently ventilated areas. RXSOL-16-1077-020 should always be used concentrate (without mixing with other solvent.) For best results apply with either by brush, swab, or as  a fine spray using suitable hand held spray  equipment. Small components may be cleaned by brief immersion in a bath of RXSOL-16-1077-020.  Never use RXSOL-16-1077-020 on a running generator or motor. RXSOL-16-1077-020  can be used to clean virtually all electrical equipment  & components although  is it possible it may affect some types of rubber &  plastic .  Either  remove  rubber  &  plastic  parts  from  component  or test on small area for any reaction before cleaning. 

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Neutralizing Amine Corrosion Inhibitor

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Product Short Description: Concentrated liquid neutralising agent for corrosion control in condensate and feed water systems, contain blends of low, medium and high volatility amines that provide great protection and neutralization of acidic gases, such as CO2
Product Technical Specification:

We carry a complete line of condensate treatment chemicals.  Condensate treatment chemicals are used to increase the condensate pH, thus reducing corrosion to the entire boiler steam system.  The most common product is a tri-blend amine of cyclohexylamine, morpholine, and diethylaminoethanol (DEAE) neutralizing amines, although we do have standard RXSOL products or we can custom blend to your needs.
RXSOL-50-5005-DCM1          10% DEAE, 10% Cyclo, 10% Morpholine   
RXSOL-50-5005-DCM2          20% DEAE, 20% Cyclo, 20% Morpholine   
RXSOL-50-5005-C                  20% Cyclohexylamine    
RXSOL-50-5005-D                  20% DEAE    
RXSOL-50-5005-M                  20% Morpholine   
RXSOL-50-5005-C5                50% Cyclohexylamine    
RXSOL-50-5005-D                  50% DEAE  
RXSOL-50-5005-M5                50% Morpholine    
  

PRODUCT INTRODUCTION
Pure anisole or methoxybenzene, is an organic compound. CAS NO: 100-66-3
HANDLING & STORAGE
Keep away from heat and sources of ignition.
Store in a sealed condition at ambient temperature or below. Keep containers in tightly closed condition.
Use proper PPE during handling.
PRODUCT APPLICATION
Used as solvent, as an intermediate in making of dyes, pharmaceuticals, fragrances and as an insect pheromones.
PROPERTIES
Appearance
Clear Colorless Liquid
Purity ( by GC ) , %
99.8 Min
Specific Gravity @25°C
0.9995 ± 0.05
Moisture (by KF) , %
0.3 Max
PACKAGING
Packed in drums or in ISO TANKS on request.

 
 

Remarks:

RXSOL-50-5005-025 alkaline and the vapors are irritating to eyes and lungs. Avoid contact with eyes and skin. Do not take internally. Observe safety regulations wear Goggles, PVC gloves and Apron when handling Provide ample ventilation Avoid contact with skin in case of contacts wash with cupious amount of water immediately. If eyes are splashed give immediate and prolonged irrigation with clean running water and obtain medical attention.

Not for internal use :-
If swallowed do not induce vomiting give plenty of water or milk and call a doctor immediately.

Packing. GENERAL REMARKS:-Do not store  RXSOL-50-5005-025  near a heating equipment.

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Insecticide Fluid

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Product Short Description: Available in 5 Ltr also IMPA Code: 550607. Excellent Fluid with quick effects.
Product Technical Specification:

 

TECHNICAL DATA:

pH (as is) 11.5 – 12.0
Density (20°C) 1.028 g/cc
Colour Fluorescent yellow
Fragrance Lemon scent
Biodegradability Complete
Freezing Stability Stable
Degradability determined
in accordance with OECD
no. 301D.
-
Remarks:
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Pet Coke Remover

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Product Short Description: Innovative, concentrated liquid product specifically engineered to attack, penetrate and remove Coal Carbon, pet coke, lime deposition
Product Technical Specification:

PROPERTIES

Pet Coke Remover is a concentrated liquid solution containing powerful surface active agents, a corrosion inhibitor and aqueous chemical agents.
Appearance / Color : Clear, light yellow liquid.
Specific gravity        : 1.1–1.2 gr/cm3 at 20°C
pH                           : 11.5–12.5

Remarks:

Pet Coke STAIN removal concept
Coal and petcoke leaves stain,  its removal is important task during hold cleaning operation. Our expert has 2 suggestion for removal of such stain from the surface. 

1st one to use RX Tuff heavy-duty alkaline cleaner, which can apply as an emulsion, need time to take effect and are rinsed away with seawater. More than one application will be needed to remove stubborn stains. 

2nd one solution is much more effective than 1st one step. Here our expert suggests using New ORG on the spotted area where the residue is tightly deposited on the surface. " New ORG -RXSOL-20-2020-025 " this product is specialized to react with oily residue where any alkaline cleaner fails to emulsify. Uses of New ORG  chemicals for stain removal/cleaning principally dissolve and emulsify OIL RESIDUE stain completely which is resulting stain-free surface, Then without flushing with water follow 1st step.

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Ice Machine Cleaner and Sanitizer

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Product Short Description: Nickel Safe Ice Machine Cleaner is Suitable to clean deposits of black mildew by killing bacteria & spores as well as mineral scale deposits.
Product Technical Specification:

 

Appreance : Clear Liquid
Odour : Neutral
pH : <1.0
Soecific Gravity : More than 1
Viscocity : 25 cps
Boiling Point : 108 °C
Flash Point : Not Applicable
Solubility in Water : 100 % in any ratio
 
Remarks:
How to Cleane Ice Maker Machine?

1st for Ice Maker Component Cleaning: Dip BATH process.
Takes 100 ml of  RXSOL Ice Machine Cleaner for 3 Ltr  of warm water in plastic container and immerse components in solution. Soak the components until they are free of deposits; for stubborn or thick deposits use a soft brush to help the dissolving action

2nd for Circulation system Cleaning: Recirculation Method.

Use 100 to 150 ml of RXSOL Ice Machine Cleaner in 3 Ltr water in the machine. Allow cleaning solution to circulate for up to 10-20 minutes; it may be necessary to recirculate the solution for longer than 10 minutes to remove heavier and thicker scale deposits. Be sure all distribution and weep holes are clear.

How Scale formed in Ice Maker Machine?

Dissolved Mineral or presence of mineral present in water is cause of SCALE FORMATION in ICE MAKER. Water tries to freeze in its pure state, while mineral present in water getting precipitate. As the cycle continues and more water is made into ice, the minerals over concentrate and eventually precipitate as a lime scale deposit.

Why Regular Cleaning of SCALE is essential from Ice Maker?

Continiue deposition of minearal scale, obstracting water flow from holes, which causes reduction of ICE HARVEST. Extra deposition of scale makes ICE MAKER jam eventually the machine will shut down. This is reason why Once the machine is scaled up, it must be cleaned.
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EASYKLEEN GALLEY PACK RX

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Product Short Description: This PACK content is an average volume of the chemical required for a quarter of a year for a vessel carrying up to 25 people on board.
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