Sustainability Analysis on Rapeseed Wax DJ1017, redefining sustainable materials
Version: SNV25DJ1017SA101849
Date: 18-10-2025
Rapeseed (Canola) vegetable wax is one more eco-friendly choice with a lower carbon footprint than other natural waxes like palm,coconut,carnauba,candelilla. Oilseed Rape is widely and commonly grown in China and other continents between 30°-55° N latitude. Unlike Palm and coconut, it is grown locally and in a logic of crop rotation, has a low environmental impact. Furthermore, the bees love the rapeseed flower and growing more rapeseed helps the bees.
Sustainability Comparison of Rapeseed Vegetable Wax with Other Similar Vegetable Waxes Environmental Costs of Traditional Waxes:
Oil Palm Planting → Deforestation of Tropical Rainforests
Coconut Monoculture → Island Ecological Imbalance
Beeswax Collection → Increased Desertification
Paraffin Refining → Dependence on Fossil Fuels
Supply Chain Truth: Hidden Costs of Traditional Waxes
Palm Wax: Loss of 0.8 hectares of rainforest biodiversity
Coconut Wax: Consumes 18m³ of freshwater resources
Paraffin: Produces 2.3 tons of CO₂ equivalent
Sustainability Value of Rapeseed Vegetable Wax Compared to Other Similar Vegetable Waxes:
Carbon Footprint Comparison (kgCO₂e/ton)
Rapeseed (Canola) Wax: 820
Palm Wax: 2210
Paraffin: 2850
Circular Economy Indicators of Rapeseed Vegetable Wax:
Agricultural Waste Utilization Rate: 92%
Production Water Reuse Rate: 85%
Bioenergy Proportion: 64%
Rapeseed Wax, Vegetable Wax Geographic Adaptability vs. Traditional Wax Sources
Major Wax Source Planting Area Concentration:
Palm Wax: 86% Southeast Asia
Coconut Wax: 92% Tropical Islands
Beeswax: 78% Mexico
Rapeseed (Canola) Wax: Global 12
Major Production Areas with Multi-Climate Adaptability
Cross-Latitude Advantages:
Achievable large-scale planting between 30°-55° N latitude
Resistance Breakthrough: Tolerates frost down to -15℃ and high temperatures up to 35℃
Soil Compatibility: Strong adaptability in pH range 5.5-8.0
DJ1017 Rapeseed Vegetable Wax in Candle Manufacturing Solutions
Container Candle Optimization:
Low Melting Point Characteristics Perfectly Adapted to Glass/Ceramic Containers, Achieving:
100% Side Wall Adhesion Rate
Zero Edge Cavities
Gradual Melting Pool Expansion
Fragrance Synergy System:
Porous Crystal Structure Provides:
40% Increase in Fragrance Release in the First Hour
82% Fragrance Retention Rate over 72 Hours
Compatible with ISO 9235 Certified Fragrance Systems
Thermodynamic Advantages of DJ1017 Rapeseed Vegetable Wax
Melting Range: 42-52, achieves Threefold Application Advantages:
Can be filled at 55℃ (10℃ lower than beeswax)
Maintains Structural Stability at Room Temperature (25℃ Hardness 28 Shore D)
Safe Contact Threshold for Humans (Skin Tolerance Temperature ≤ 42℃)
Combustion Kinetics Optimization of DJ1017 Rapeseed Vegetable Wax
A[Porous Structure] → B(Oxygen Penetration ↑30%)
A → C(Melting Pool Uniformity ↑25%)
D[Crystal Arrangement] → E(Carbon Soot Generation ↓40%)
D → F(Stable Thermal Gradient)
Performance Indicators | DJ1017 Rapeseed Wax | Soy Wax | Paraffin |
Burning Time (h/g) | 8.2 | 7.1 | 6.3 |
Fragrance Load Rate | 12% | 9% | 6% |
Cold Scent Volatility | ≤0.5% | 1.2% | 2.8% |
Shrinkage Rate | 3.2% | 5.8% | 8.4% |
Rapeseed Vegetable Wax Opens a New Paradigm for Personal Care Formulations
Texture Engineering Applications:
A [Rapeseed (Canola) Wax Base Material] → B{Phase Control}
B →|25℃| C[Paste Structure]
B →|35℃| D[Emulsion Stability]
B →|42℃| E[Skin Penetration]
Rheological Characteristics:
25℃ Viscosity: 3,500±200 mPa·s
Shear Thinning Index: 0.63
Thixotropic Recovery Rate: 92%
Rheological Characteristics Optimization Temperature (℃)
Temperature (℃) | Viscosity (mPa·s) | Application Scenarios |
25 | 3500 | Paste Shaping |
32 | 1200 | Skin Extension |
42 | 280 | Active Substance Penetration |
Synergistic Effects with Common Base Materials:
Compatible Materials | Synergy Index | Application Scenarios |
Shea Butter | 0.89 | Lip Balm Base |
Ceramides | 0.93 | Barrier Repair Cream |
Hyaluronic Acid | 0.78 | Water-Feeling Emulsion |
Disclaimer: The information contained in this document is given in good faith and based on Sinova Development's current knowledge. This information is not a substitute for necessary prior tests, which alone can ensure that a product is suitable for a given use. Users are responsible for ensuring compliance with local legislation and for obtaining the necessary certifications and authorizations.
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