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Long-Lasting, Nonfoaming Synthetic Oil Lets You Go Green Without Sacrificing Performance

LE’s Earthwise™ lubricants are specifically formulated to be earth friendly while still meeting the rigorous demands of industrial applications. With these products, you can “go green” – and keep up with the latest environmental regulations – without having to sacrifice performance. Earthwise EAL Syn Hydraulic Oil is a certified Environmentally Acceptable Lubricant (EAL), recommended for use in applications on or near waterways. It meets the specifications required by the EPA’s Vessel General Permit (VGP). It is readily biodegradable, exhibits minimal aquatic toxicity and will not accumulate in the cells of fish and other aquatic life forms. In addition, the base oil used in this full synthetic formulation comes from renewable resources.

A long-lasting, nonfoaming fluid designed to protect the life of hydraulic pumps and motors, it offers excellent protection against cold temperatures and resists oxidation in high temperatures. It also withstands extreme pressure, prevents rust and corrosion, and separates from water.

Unit of Measure

Benefits and Recommendations

Available Container Size

N/A 275 gallon disposable tote

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Beneficial Qualities

N/A VGP Compliant
  • Meets VGP standards for biodegradability, aquatic toxicity & bioaccumulation
  • Formulated with base oil made from renewable resources
  • Helps companies be good environmental stewards
Long-Lasting & High Quality
  • Features full synthetic formula
  • Exhibits extremely low volatility
  • Maintains long oil life
  • Extends oil changes
  • Maintains performance in extreme cold
  • Outperforms vegetable oil-based products in thermal, oxidative & hydrolytic stability tests
Wear & EP Resistant
  • Protects metal components from scuffing, galling & other wear
  • Withstands extreme pressure
  • Minimizes leaks by protecting seals & hoses
  • Minimizes equipment downtime
  • Reduces need for replacement parts and labor
Water, Rust & Oxidation Resistant
  • Separates from water
  • Prevents rust & corrosion
  • Provides superior oxidation resistance in high temps
    • Reduces sludge & varnish formation
    • Prevents plugged orifices & sticking valves
    • Stays in viscosity, even during temp fluctuations
  • Provides smooth power flow
    • Eliminates fade or chatter by breaking up foam
    • Maintains system cleanliness
Available Grades
  • ISO 32 (3332)
  • ISO 46 (3346)
  • ISO 68 (3368)

Performance Requirements Met or Exceeded

N/A
  • AIST 127
  • DIN 51524-2
  • Eaton 694 (formerly M-2950-S and I-865-S)
  • Parker (formerly Denison) HF-0, HF-1, HF-2
  • USDA BioPreferred
  • US EPA VGP 2013

Recommendation

N/A This product should not be used for fire resistant hydraulic fluid applications.

Typical Applications

N/A
  • Hydraulic pumps and motors in marine & offshore applications

Physical Characteristics - Typical

Color

N/A Amber

ISO VG

N/A 32

Performance Test Results

Relative Density @ 60ºF/60ºF, ASTM D1298

N/A 0.83

Viscosity @ 100°C, cSt, ASTM D445

N/A 6.04

Viscosity @ 40°C, cSt, ASTM D445

N/A 34.00

Viscosity Index ASTM D2270

N/A 124

Flash Point °C (°F), (COC), ASTM D92

N/A 239 (462)

Pour Point °C (°F), ASTM D97

N/A -41 (-42)

Rust Test 4 hrs @ 60ºC, Sea H2O, ASTM D665B

N/A Pass

Copper Corrosion 3 hrs @ 100ºC, ASTM D130

N/A 1b

Oxidation by RPVOT @ 150ºC, minutes, ASTM D2272

N/A >1,000

Four-Ball Wear @ 75°C, 1200 rpm, 40 kgf, 60 minutes, mm wear, ASTM D4172

N/A <0.40

Emulsion Characteristics @ 54ºC, oil-water-emulsion/minutes, ASTM D1401

N/A 40-40-0/15

Foaming Characteristics @ 24ºC/93.5ºC/24ºC, 3 sequences, ml of foam / time to break, ASTM D892

N/A 0/0

Air Release 9.0-90.0 cSt @ 40ºC: 50ºC, minutes, ASTM D3427

N/A 2.00

Simulated NOACK TGA Method % loss, ASTM D6375

N/A <9.00

FZG Fail Stage, ASTM D5182

N/A 12

Biobased Content%, ASTM 6866

N/A >50

Readily Biodegradable Content %, OECD 301B

N/A >90

Inherently Biodegradable Content %, OECD 301B

N/A ≤5

Aquatic Toxicity mg/L, OECD 201 & 202

N/A >100

Bioaccumulating Content %, OECD 305

N/A 0