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Safety Data Sheet EN

Iloform PN 415

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01

Identification

Product identifiers, regulatory numbers, and supplier information

Product Information

Product Name
Iloform PN 415
Product Form
Liquid.
Product Code
453378-FR01

Regulatory Identifiers

CAS Number
N/A

Identified Uses

Lubricant

Manufacturers & Suppliers

B

BP France

manufacturer

Immeuble LE CERVIER, 12, Avenue des Béguines, Cergy Saint Christophe, 95866 CERGY PONTOISE Cedex

+33 (0)1 34 22 40 00

Emergency Contacts

ORFILA

01 45 42 59 59

Centre Anti-Poisons de Paris, Hôpital Fernand Widal

01 40 05 48 48

Centre Anti-Poisons de Lyon, Hôpital Edouard Herriot

04 72 11 69 11

Centre Anti-Poisons de Marseille, Hôpital Salvator

04 91 75 25 25

Permanence BP France

01 30 30 49 99

Carechem

+44 (0) 1235 239 670

02

Hazard Identification

GHS classification, signal word, pictograms, and hazard statements

Classified no signal word

GHS Pictograms

Hazard Statements

No known significant effects or critical hazards.

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03

Composition / Information on Ingredients

Chemical components, concentration ranges, and hazardous substance identification

Type mixture

Highly refined base oil (IP 346 DMSO extract < 3%). Proprietary performance additives.

This product does not contain any hazardous ingredients at or above regulated thresholds.

04

First Aid Measures

Emergency procedures for chemical exposure incidents

Inhalation

If inhaled, remove to fresh air. Get medical attention if symptoms appear.

Skin contact

Wash skin thoroughly with soap and water or use recognised skin cleanser. Remove contaminated clothing and shoes. Wash clothing before reuse. Clean shoes thoroughly before reuse. Get medical attention if irritation develops.

Eye contact

In case of contact, immediately flush eyes with plenty of water for at least 15 minutes. Eyelids should be held away from the eyeball to ensure thorough rinsing. Check for and remove any contact lenses. Get medical attention.

Ingestion

Do not induce vomiting unless directed to do so by medical personnel. Get medical attention if symptoms occur.

Immediate Medical Attention

Get medical attention.

Medical Treatment

Treatment should in general be symptomatic and directed to relieving any effects.

05

Firefighting Measures

Extinguishing media, specific hazards, and firefighter protection

Suitable media

In case of fire, use foam, dry chemical or carbon dioxide extinguisher or spray.

Unsuitable media

Do not use water jet.

Specific hazards

Swarf fires - Neat metal working oils may fume, thermally decompose or ignite if they come into contact with red hot swarf. In a fire or if heated, a pressure increase will occur and the container may burst.

Instructions

No action shall be taken involving any personal risk or without suitable training. Promptly isolate the scene by removing all persons from the vicinity of the incident if there is a fire.

Firefighter Protection

Fire-fighters should wear appropriate protective equipment and self-contained breathing apparatus (SCBA) with a full face-piece operated in positive pressure mode. Clothing for fire-fighters (including helmets, protective boots and gloves) conforming to European standard EN 469 will provide a basic level of protection for chemical incidents.

06

Accidental Release Measures

Spill cleanup procedures, containment, and environmental protection

Emergency procedures

No action shall be taken involving any personal risk or without suitable training. Evacuate surrounding areas. Keep unnecessary and unprotected personnel from entering. Do not touch or walk through spilt material. Floors may be slippery; use care to avoid falling. Put on appropriate personal protective equipment.

Small spill

Stop leak if without risk. Move containers from spill area. Absorb with an inert material and place in an appropriate waste disposal container. Dispose of via a licensed waste disposal contractor.

Large spill

Stop leak if without risk. Move containers from spill area. Prevent entry into sewers, water courses, basements or confined areas. Contain and collect spillage with non-combustible, absorbent material e.g. sand, earth, vermiculite or diatomaceous earth and place in container for disposal according to local regulations. Dispose of via a licensed waste disposal contractor.

Environmental

Avoid dispersal of spilt material and runoff and contact with soil, waterways, drains and sewers.

Cleanup methods

Absorb with an inert material and place in an appropriate waste disposal container. Contain and collect spillage with non-combustible, absorbent material.

Materials: inert material, sand, earth, vermiculite or diatomaceous earth

—

Related Products

Similar products with comparable safety profiles

07

Handling and Storage

Safe handling precautions, storage conditions, and workplace requirements

Handling

Put on appropriate personal protective equipment. Concentrations of mist, fumes and vapours in enclosed spaces may result in the formation of explosive atmospheres. Excessive splashing, agitation or heating must be avoided. During metal working, solid particles from workpieces or tools will contaminate the fluid and may cause abrasions of the skin. Where such abrasions result in a penetration of the skin, first aid treatment should be applied as soon as reasonably possible. The presence of certain metals in the workpiece or tool, such as chromium, cobalt and nickel, can contaminate the metalworking fluid, as can bacteria, and as a result may induce allergic and other skin reactions, especially if personal hygiene is inadequate.

Storage

Store in a dry, cool and well-ventilated area, away from incompatible materials (see Section 10). Keep away from heat and direct sunlight. Keep container tightly closed and sealed until ready for use. Containers that have been opened must be carefully resealed and kept upright to prevent leakage.

Hygiene

Eating, drinking and smoking should be prohibited in areas where this material is handled, stored and processed. Wash thoroughly after handling. Remove contaminated clothing and protective equipment before entering eating areas. See also Section 8 for additional information on hygiene measures.

08

Exposure Controls / PPE

Occupational exposure limits, engineering controls, and protective equipment

Engineering

Provide exhaust ventilation or other engineering controls to keep the relevant airborne concentrations below their respective occupational exposure limits. All activities involving chemicals should be assessed for their risks to health, to ensure exposures are adequately controlled. Personal protective equipment should only be considered after other forms of control measures (e.g. engineering controls) have been suitably evaluated.

Hands

Recommended: Nitrile gloves. Breakthrough time: Breakthrough time data are generated by glove manufacturers under laboratory test conditions and represent how long a glove can be expected to provide effective permeation resistance. It is important when following breakthrough time recommendations that actual workplace conditions are taken into account. Always consult with your glove supplier for up-to-date technical information on breakthrough times for the recommended glove type. Our recommendations on the selection of gloves are as follows: Continuous contact: Gloves with a minimum breakthrough time of 240 minutes, or >480 minutes if suitable gloves can be obtained. If suitable gloves are not available to offer that level of protection, gloves with shorter breakthrough times may be acceptable as long as appropriate glove maintenance and replacement regimes are determined and adhered to. Short-term / splash protection: Recommended breakthrough times as above. It is recognised that for short-term, transient exposures, gloves with shorter breakthrough times may commonly be used. Therefore, appropriate maintenance and replacement regimes must be determined and rigorously followed. Glove Thickness: For general applications, we recommend gloves with a thickness typically greater than 0.35 mm. It should be emphasised that glove thickness is not necessarily a good predictor of glove resistance to a specific chemical, as the permeation efficiency of the glove will be dependent on the exact composition of the glove material. Therefore, glove selection should also be based on consideration of the task requirements and knowledge of breakthrough times. Glove thickness may also vary depending on the glove manufacturer, the glove type and the glove model. Therefore, the manufacturers’ technical data should always be taken into account to ensure selection of the most appropriate glove for the task. Note: Depending on the activity being conducted, gloves of varying thickness may be required for specific tasks. For example: Thinner gloves (down to 0.1 mm or less) may be required where a high degree of manual dexterity is needed. However, these gloves are only likely to give short duration protection and would normally be just for single use applications, then disposed of. Thicker gloves (up to 3 mm or more) may be required where there is a mechanical (as well as a chemical) risk i.e. where there is abrasion or puncture potential. Standards: EN 420, EN 374.

Eyes

Safety glasses with side shields. Standards: EN 166.

Respiratory

In case of insufficient ventilation, wear suitable respiratory equipment. For protection against metal working fluids, respiratory protection that is classified as “resistant to oil” (class R) or oil proof (class P) should be selected where appropriate. Depending on the level of airborne contaminants, an air-purifying, half-mask respirator (with HEPA filter) including disposable (P- or R-series) (for oil mists less than 50mg/m3), or any powered, air-purifying respirator equipped with hood or helmet and HEPA filter (for oil mists less than 125 mg/m3). Where organic vapours are a potential hazard during metalworking operations, a combination particulate and organic vapour filter may be necessary. The correct choice of respiratory protection depends upon the chemicals being handled, the conditions of work and use, and the condition of the respiratory equipment. Safety procedures should be developed for each intended application. Respiratory protection equipment should therefore be chosen in consultation with the supplier/manufacturer and with a full assessment of the working conditions. Standards: EN 529, EN 149, EN 405, EN 140 plus filter, EN 136 plus filter, EN 143, EN 14387.

Skin/Body

Use of protective clothing is good industrial practice. Personal protective equipment for the body should be selected based on the task being performed and the risks involved and should be approved by a specialist before handling this product. Cotton or polyester/cotton overalls will only provide protection against light superficial contamination that will not soak through to the skin. Overalls should be laundered on a regular basis. When the risk of skin exposure is high (e.g. when cleaning up spillages or if there is a risk of splashing) then chemical resistant aprons and/or impervious chemical suits and boots will be required.

Environmental

Emissions from ventilation or work process equipment should be checked to ensure they comply with the requirements of environmental protection legislation. In some cases, fume scrubbers, filters or engineering modifications to the process equipment will be necessary to reduce emissions to acceptable levels.

09

Physical and Chemical Properties

Appearance, physical state, melting point, boiling point, and material characteristics

Physical State
Liquid.
Physical State Data
liquid
State Under Standard Conditions
---
Appearance
Liquid. Brown. [Dark]
Colour
Brown. [Dark]
Colour Intensity
---
Form
---
Odor
Not available.
Odor Threshold
Not available.
Ph
Not available.
Melting Point
Not available.
Boiling Point
Not available.
Flash Point
Closed cup: 230°C (446°F) [Pensky-Martens. Estimated.]
Freezing Point
-12 °C
Softening Point
---
Solidification Point
---
Cloud Point
---
Crystallisation Point
---
Relative Evaporation Rate
---
Evaporation Rate
Not available.
Vapor Pressure
Not available.
Vapor Density
Not available.
Relative Density
Not available.
Bulk Density
---
Density
<1000 kg/m³ (<1 g/cm³) at 15°C
Flammability
Not available.
Upper Explosive Limit
Not available.
Lower Explosive Limit
Not available.
Explosive Limits
---
Auto Ignition Temperature
Not available.
Decomposition Temperature
Not available.
Solubility
insoluble in water.
Partition Coefficient
Not available.
Solubility In Water
insoluble in water.
Solubility In Fat
---
Molecular Weight
---
Voc Content
---
Metal Corrosion
---
Dynamic Viscosity
---
Kinematic Viscosity
Kinematic: 68 mm²/s (68 cSt) at 40°C; Kinematic: 9 to 10 mm²/s (9 to 10 cSt) at 100°C
Properties Status
---
10

Stability and Reactivity

Chemical stability, hazardous reactions, and incompatible materials

Stability

The product is stable.

Reactivity

No specific test data available for this product. Refer to Conditions to avoid and Incompatible materials for additional information.

Hazardous reactions

Under normal conditions of storage and use, hazardous reactions will not occur. Under normal conditions of storage and use, hazardous polymerisation will not occur.

Avoid

Avoid all possible sources of ignition (spark or flame).

Incompatible

oxidising materials

Decomposition

Under normal conditions of storage and use, hazardous decomposition products should not be produced.

12

Ecological Information

Environmental toxicity, biodegradation, and bioaccumulation data

12.1 Toxicity

Environmental hazards: Not classified as dangerous

12.2 Persistence and degradability

Expected to be biodegradable.

12.3 Bioaccumulative potential

This product is not expected to bioaccumulate through food chains in the environment.

12.4 Mobility in soil

Soil/water partition coefficient (KOC): Not available. Mobility: Spillages may penetrate the soil causing ground water contamination.

12.5 Results of PBT and vPvB assessment

PBT: Not applicable. vPvB: Not applicable.

The substance does not meet the criteria for PBT or vPvB assessment.

12.6 Other adverse effects

Other ecological information: Spills may form a film on water surfaces causing physical damage to organisms. Oxygen transfer could also be impaired.

Spills may form a film on water surfaces causing physical damage to organisms and impair oxygen transfer.

13

Disposal Considerations

Waste treatment methods, disposal recommendations, and waste codes

Treatment

Where possible, arrange for product to be recycled. Dispose of via an authorised person/ licensed waste disposal contractor in accordance with local regulations.

Disposal

Where possible, arrange for product to be recycled. Dispose of via an authorised person/ licensed waste disposal contractor in accordance with local regulations.

Waste Codes

13 02 05* mineral-based non-chlorinated engine, gear and lubricating oils EWC
15 01 10* packaging containing residues of or contaminated by hazardous substances EWC
14

Transport Information

UN numbers, shipping names, transport classes, and regulatory requirements

15

Regulatory Information

Chemical regulations, safety assessments, and compliance status

Conforms to Regulation (EC) No. 1907/2006 (REACH), Annex II, as amended by Commission Regulation (EU) 2015/830

Chemical Safety Assessment Not performed
?

Frequently Asked Questions

Common questions about safety, handling, and properties

What is the hazard signal word for Iloform PN 415?

The signal word is no signal word.

What is the physical form of Iloform PN 415?

Iloform PN 415 is a liquid. appearing as liquid. brown. [dark] with brown. [dark] color. It has not available. odor.

What is the solubility of Iloform PN 415?

insoluble in water.

What is Iloform PN 415 used for?

Lubricant

What are the hazard statements for Iloform PN 415?

This substance has 1 hazard statement:

  • No known significant effects or critical hazards.

What is the melting point of Iloform PN 415?

The melting point is Not available. and the boiling point is Not available..