ROCCOR NB Corrosion Inhibitor
Closed Cooling System corrosion inhibitor
Unique formulation with highly concentrated liquid cooling treatment compound, ferrous & Non ferrous corrosion inhibitors, antiscalants , dispersant and buffer solution of non carbonate.Usefull for use in high or low temperature closed cooling water syste
Key details
| Generic name | Closed Cooling System corrosion inhibitor |
|---|---|
| Active matter (%) | 68 - 75 |
| Standard packing | 25.00 Ltr. |
| Available pack sizes | 5, 20, 35, 50, 210 Ltr Mail us for Factory sale Discounted price of chemically effective corrosion inhibitor. Which is controlling common ferrous and non-ferrous metals in cooling water jacketed systems. Nitrite-borate based. Liquid and alkaline medium. Operates in a high and low-temperature closed system in internal combustion engines. |
| Supply locations | During Circulation of water mainly controlling of 2 factors required : - SCALE CONTROL in closed water cooling systems - Diesel and gas engines releasing high temperature due to that water present in jacket cooling system increases its tendency to deposit scale. To avoid scale formation water softener like Zeolite gradual buildup of scale in cylinders and cylinder heads. Where condensate is available, it is preferred for closed system cooling water makeup. Where condensate is not available, zeolite softening should be applied to the makeup water. CORROSION CONTROL An increase in water temperature causes an increase in corrosion. At high temperature solubility of oxygen in water decreases due to that Corrosion rates increasing inside the system. This occurs because the lower solubility of oxygen with increasing temperatures in a freely vented system decreases the corrosion rate faster than the rise in temperature increases it. However, in many closed systems, the dissolved oxygen entering the system in the makeup water cannot be freely vented, resulting in the release of oxygen at points of high heat transfer, which may cause severe corrosion. Untreated systems can suffer serious corrosion damage from oxygen pitting, galvanic action, and crevice attack. Closed cooling systems that are shut down periodically are subjected to water temperatures that may vary from ambient to 180°F (82°C) or higher. During shutdown, oxygen can enter the water until its saturation limit is reached. When the system is returned to high-temperature operation, oxygen solubility drops and the released oxygen attacks metal surfaces. The three most reliable corrosion inhibitors for closed cooling water systems are chromate, molybdate, and nitrite materials. Generally, the chromate or molybdate types have proven to be superior treatments. ROCCOR NB Corrosion Inhibitor |
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Prolongs the life of equipment by keeping it scale and corrosion free. Since RXSOL-40-4001-025 is alkaline, it will<span style="font-size: 16px"><em> suppress acid corrosion</em></span>, which would otherwise result in sever pittings. It improves cooling efficiency by maintaining clean heat transfer surfaces , from Radiators, DG - sets, Closed Cooling and chiller System.<br />
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FIELDS ::: --- Suitable for use in closed water cooling systems, ice melting systems and transformer cooling systems. The product may be used in all kinds of diesel & petrol engines, compressor or heating cooling water circuits.<br />
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<span style="font-size:16px;"><em>( Used as a corrosion inhibitor for all ferrous and non-ferrous metals found in water systems )</em></span></p>
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Refer to technical datasheet.</p>
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<strong>GENERAL RECOMMENDATION</strong> : ( The dosage chart may be used as a guide to adjust treatment to obtain the optimum level.)</p>
<table border="0" cellpadding="1" cellspacing="1" style="width: 517px; height: 113px">
<tbody>
<tr>
<td style="width: 25%">
Nitrite (as PPM NO2)</td>
<td style="width: 15%">
<span style="background-color: #00ff00">0 </span></td>
<td style="width: 15%">
<span style="background-color: #ffff00">100-200</span></td>
<td style="width: 15%">
<span style="background-color: #ffff00">300-600</span></td>
<td style="width: 15%">
<span style="background-color: #ffff00">700-900</span></td>
<td style="width: 15%">
<span style="background-color: #f00">1100-1300 </span></td>
</tr>
<tr>
<td>
RXSOL-40-4001-025 / 1000L</td>
<td>
<span style="background-color: #00ff00">8.0 </span></td>
<td>
<span style="background-color: #ffff00">7.3</span></td>
<td>
<span style="background-color: #ffff00">7-8 </span></td>
<td>
<span style="background-color: #ffff00">5-7 </span></td>
<td>
<span style="background-color: #f00">1.5-3.5 </span></td>
</tr>
</tbody>
</table>
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NOTE ::: -- <em><span style="font-size: 14px"> If nitrite level becomes 1440-2400 then doses should be ZERO</span></em>.<br />
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The initial dosage for an untreated system is 8 liters of product per 1000 liters of water. Such a dose will bring nitrite levels over 1200 ppm. Maximum nitrite level is considered to be 2400 ppm. Frequent tests should be carried out in order to maintain pH values within the limit (8.3-10.0), while levels of chloride should be maximum 50 ppm.<br />
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RX MARINE INTERNATIONAL are continiously working in water treatement sector, And developed many unique product to avoid corrosion and scale depositon in cooling water system. Here I wants to keep our experiment results with you.Corrosion inhibitor for closed cooling systems containing molybdate/phosphonate ( <a href="http://rxmarine.com/Corrosion-inhibitor-closed-cooling-systems-molybdat…; ). <span style="font-family: arial, sans-serif; font-size: small; text-align: justify;">Sodium molybdate has the advantage in that the dosing of lower ppm's of molybdate allow for lower conductivity of the circulating water. Sodium molybdate at levels of 50-100 ppm offer the same levels of corrosion inhibition that sodium nitrite at levels of 800+ ppm. By utilizing lower concentrations of sodium molybdate, conductivity is kept at a minimum and thus galvanic corrosion potentials are decreased.</span></p>
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<span style="font-family: arial, sans-serif; font-size: 12.8px;">Before testing of Nitrite level, Here is some point and guideline, what you need to do. : <strong>1</strong> take the following readings; pH, TDS </span><span style="font-family: arial, sans-serif; font-size: 12.8px;">(uS), and nitrite level.and record. <strong>2</strong> add the Chemical your are using. </span><span style="font-family: arial, sans-serif; font-size: 12.8px;"><strong>3</strong>. wait for a period of time for the sysem to circulate. <minimum 3 -4 </span><span style="font-family: arial, sans-serif; font-size: 12.8px;">hours> <strong>4</strong>. Re check the readings. and record. 5 track these readings</span><br style="font-family: arial, sans-serif; font-size: 12.8px;" />
<span style="font-family: arial, sans-serif; font-size: 12.8px;">for a period of time.</span><br style="font-family: arial, sans-serif; font-size: 12.8px;" />
<br style="font-family: arial, sans-serif; font-size: 12.8px;" />
<span style="font-family: arial, sans-serif; font-size: 12.8px;">If the TDS and Nitrite drop you have a leak/ unknown makeup. if the </span><span style="font-family: arial, sans-serif; font-size: 12.8px;">TDS stays stable and the nitrite drops you have a biological problem. </span><span style="font-family: arial, sans-serif; font-size: 12.8px;">Bacteria that convert nitrite to nitrate.</span><br style="font-family: arial, sans-serif; font-size: 12.8px;" />
<br style="font-family: arial, sans-serif; font-size: 12.8px;" />
<span style="font-family: arial, sans-serif; font-size: 12.8px;">Solution ::: Use DI water in place of general water, And also use. </span><span style="font-family: arial, sans-serif; font-size: 12.8px;">Algaecide to control Bacterial growth inside water system ... </span><a data-saferedirecturl="https://www.google.com/url?hl=en&q=http://rxmarine.com/Biocide-Algaecid…; href="http://rxmarine.com/Biocide-Algaecide" rel="noreferrer" style="color: rgb(17, 85, 204); font-family: arial, sans-serif; font-size: 12.8px;" target="_blank">http://rxmarine.com/Biocide-<wbr>Algaecide</wbr></a></p>
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Initial dosage for an untreated system is 9 litres of RXSOL-40-4001-025 / 1000 litres of untreated distilled water. This will bring the treatment up to the minimum level of 1000 ppm nitrite. For best result and prolonged engine life add RXSOL-40-4001-025 every 500 -6500 km. or 250 to 300 hours of running time or every 2 month interval. Specially designed for use in water systems of internal combustion equipment. pH should be maintained between 8.3 and 10 by the treatment.</p>
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<span style="font-size:14px;"><em>RXSOL-40-4001-025 will react with sludge and in most cases, facilitate sludge gradual removal. On badly fouled systems with oil or scale, a prior degreasing by using DEGREASER HEAVY DUTY or descaling by using DEGREASER HEAVY DUTY, SCALE REMOVER LIQUID or SCALE REMOVER POWDER is highly recommended.</em></span></p>
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• Excellent corrosion inhibitor for cooling water</p>
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• Minimises metal oxide deposits</p>
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• Protects ferrous and non-ferrous metals</p>
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• Compatible with glycol-based antifreeze</p>
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• Reduces cleaning & maintenance costs</p>
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• Cost effective, easy to apply and use</p>
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