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  • Low Temperature Vacuum Drying Machine for Maggots Larvae
  • Low Temperature Vacuum Drying Machine for Maggots Larvae
  • Low Temperature Vacuum Drying Machine for Maggots Larvae
  • Low Temperature Vacuum Drying Machine for Maggots Larvae
  • Low Temperature Vacuum Drying Machine for Maggots Larvae
  • Low Temperature Vacuum Drying Machine for Maggots Larvae
Low Temperature Vacuum Drying Machine for Maggots Larvae

Low Temperature Vacuum Drying Machine for Maggots Larvae

  • >= 1 Sets
    $85,000

Customization:

Customized logo(Min.Order: 1 pieces)
Drying capacity(Min.Order: 1 pieces)
Heat source(Min.Order: 1 pieces)
Power supply(Min.Order: 1 pieces)

Low Temperature Vacuum Drying Machine for Maggots Larvae

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Low-Temperature Drying: Utilizes steam heating in a vacuum environment to gently dry maggots/larvae at controlled temperatures, preserving nutritional integrity and preventing thermal damage.
  • Hygienic Processing: Constructed with stainless steel for the main body and corrosion-resistant materials, ensuring cleanliness and durability in food processing, pharmaceutical, or agricultural settings.

Key features

  • 1. Corrosion-Resistant Material Technology

  • With a stainless steel main body and carbon steel structural framework, you can ensure durability in corrosive or high-humidity environments common in food processing or pharmaceutical industries*.

  • 2. Automated Motor-Driven Operation

  • With an integrated motor and automated valve systems, you can streamline workflows and reduce manual intervention for consistent drying cycles*.

  • 3. Low-Temperature Vacuum Drying Precision

  • With precise low-temperature vacuum drying technology, you can preserve maggot larvae integrity while achieving faster drying times than conventional methods*.

  • 4. High-Capacity Commercial Scalability

  • With modular design and large processing chambers, you can handle high-volume maggot drying demands for commercial-scale operations*.

  • 5. Hygiene-Compliant Construction

  • With food-grade compliant stainless steel components, you can meet strict hygiene standards for applications in agriculture or food waste management*.

Product details

Low Temperature Vacuum Drying Machine for Maggots Larvae

The Low Temperature Vacuum Drying Machine for Maggots Larvae is a robust industrial solution designed for hygienic, energy-efficient drying processes. Built with carbon steel and stainless steel for durability and corrosion resistance, it features steam heating for precise temperature control and vacuum technology to preserve material integrity. Ideal for industries like agriculture, food processing, and pharmaceuticals, this machine combines automation, modularity, and easy maintenance to streamline high-volume production.

Technical specifications

FeatureSpecificationBenefit
MaterialCarbon steel (structure), Stainless steel (main body)Corrosion resistance, easy cleaning, durability
Heating MethodSteam heatingEnergy-efficient, uniform temperature distribution
Voltage380VCompatible with industrial power standards
TypeVacuum drying equipmentLow-temperature drying preserves nutrients and structure
ModularityCustomizable chambers and componentsAdaptable to varying processing needs
AutomationMotor-driven system with valvesReduces manual intervention, improves efficiency
Hygiene DesignStainless steel surfacesMinimizes contamination risks

Customization guide

Adjustable parameters include:

  • Chamber size/volume to match production scale.
  • Heating intensity for optimal drying at low temperatures.
  • Material composition (e.g., stainless steel upgrades) for enhanced corrosion resistance in harsh environments.

Get inspired

With its vacuum drying technology and low-temperature operation, this machine ensures delicate materials like maggots larvae retain their nutritional value and structural integrity. The modular design allows seamless integration into existing production lines, while automated processes and easy maintenance access panels boost uptime and productivity.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Temperature Precision±3°C±1.5°C (+50%)±0.5°C (+83%)
Processing Capacity500 kg/batch1,000 kg/batch2,000 kg/batch
Energy EfficiencyStandard steam use20% lower能耗35% lower能耗
Corrosion ResistanceCarbon steel baseStainless steel coreFull stainless steel
Automation LevelBasic valve controlSmart sensor systemAI-driven optimization

Supplier's note

  1. Technical Breakthroughs:

    • Low-Temperature Vacuum Tech: Preserves larvae viability with minimal heat damage.
    • Modular Design: Reduces downtime by enabling quick component swaps.
    • AI-Driven Pro Model: Achieves 35% lower energy use via optimized steam cycles.
  2. Optimal Version Selection:

    • Base Model: Ideal for small-scale farms or labs needing cost-effective drying (e.g., 500 kg batches).
    • Advanced Model: Suitable for medium-sized operations requiring precise temperature control (e.g., pharmaceutical byproduct processing).
    • Pro Model: Best for large-scale industrial users in corrosive environments (e.g., chemical-resistant stainless steel for marine feed production). With its tripled corrosion resistance compared to industry benchmarks, the Pro ensures longevity even in harsh conditions.

Frequently asked questions

  • Which model of low temperature vacuum drying machine is best suited for small-scale insect farming operations?

  • How do I clean the access panels of a maggot larvae drying machine to maintain hygiene?

  • What’s the difference between carbon steel and stainless steel in vacuum drying machines for maggot processing?

  • Can this vacuum drying equipment be customized for simultaneous drying of multiple maggot batches?

  • Is the low temperature vacuum drying machine for maggots FDA or CE certified?

  • Why choose steam heating over electric heating for maggot larvae drying?

  • Does the 380V voltage of this drying machine work with standard agricultural power supplies?

  • How does automation reduce labor in maggot drying processes?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionFood Processing, Pharmaceutical LabsIndustry Standard: Carbon Steel (ASTM A36)
Our Base: Carbon Steel (ASTM A36)
Our Advanced: 304 Stainless Steel (ASTM A240) ▲▲
Base: Cost-effective for basic use.
Advanced: Resists corrosion in biological waste (▲▲ over Base)
Base: Prone to rust in humid environments.
Advanced: Higher upfront cost
Heating MethodInsect Farming, Heat-Sensitive Material DryingIndustry Standard: Electric Heating (IEC 60038)
Our Base: Steam Heating (ISO 5610) ▲
Our Advanced: Steam + Smart Thermostat (▲▲)
Base: 15% faster drying than electric (▲ over Industry).
Advanced: ±1°C temperature control (▲▲)
Industry: Higher energy consumption.
Advanced: Requires steam infrastructure
Vacuum Drying TechnologyBiopharma, Lab ResearchIndustry Standard: Atmospheric Drying
Our Base/Advanced: Vacuum Drying (ISO 7720) ▲▲
Reduces drying time by 40% (▲▲ over Industry).
Preserves material integrity
Higher initial investment compared to basic dryers
Power RequirementIndustrial Scales, Manufacturing PlantsIndustry Standard: 220V (IEC 60038)
Our Base/Advanced: 380V (IEC 60038) ▲▲
Supports high-capacity operations (▲▲ over Industry).
Compatible with industrial grids
Requires 3-phase power infrastructure
Automation LevelLarge-Scale Insect Farms, Automated FacilitiesIndustry Standard: Manual Controls
Our Base: Semi-Automatic (ISO 13849) ▲
Our Advanced: Fully Automated (IEC 61131) ▲▲
Base: Reduces labor by 30% (▲ over Industry).
Advanced: IoT monitoring (▲▲)
Advanced: Requires training for operators
Maintenance AccessibilityHigh-Cleaning-Need EnvironmentsIndustry Standard: Fixed Panels
Our Base/Advanced: Modular Access Panels (ISO 14757) ▲▲
Easy cleaning and part replacement (▲▲ over Industry).
Reduces downtime
Base/Advanced: Slightly heavier design due to modular components

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