Introduction

Electric includes a 50 experiments in biopharma, chemical synthesis, and plant-based compound extraction.

This equipment is essential for solvent evaporation and concentration processes in chemical, pharmaceutical, and food laboratories. It features efficient heat transfer and vacuum control to ensure optimal distillation results while protecting sensitive samples.

Applications

Electric Lifting Rotary Evaporator is an advanced solution for solvent extraction, concentration, and distillation processes. It is widely used in chemical, pharmaceutical, food, and biotechnology industries for large-scale laboratory processes and pilot experiments.

Specifications

Evaporating Flask 50 L
Receiving Bottle 20 L
Rotation Speed 20 to 110 rpm
Rotation Control Electric
Rotation Speed Setting 1 rpm/step
Water Bath Temperature RT to 95°C
Oil Bath Temperature RT to 180°C
Temperature Sensor 2-wire PT100
Ambient Temperature 5 to 35°C
Environment Relative Humidity Less than or equal to 70%
Bath Temperature Setting 0.1°C/step
Heating Capacity 6000 W
Vacuum Leakage Less than or equal to 0.33 kPa/min
Nominal Adjustment Accuracy +/-1.5°C
Maximum Sea Level 2000 m
Bath Size Φ550×320 mm
Protection Grade IP20
Sealing Parts
Glass Material 3.3 borosilicate
Power Consumption 6300 W
Power Supply 3 to 380V,50 Hz
Dimensions (L×W×H) 1345×770×2230 mm
Weight 140 kg

Features

Wide power supply range

Large capacity receiving bottle

Advanced vacuum performance

Superior material compatibility

Enhanced pressure stability

FAQs

1. What are the advantages of using the Electric Lifting Rotary Evaporator in seasonal production labs?

The Electric Lifting Rotary Evaporator offers flexibility that suits operations with fluctuating workloads. Its design allows quick setup and disassembly, helping labs transition between campaigns or product lines without extensive downtime. The adjustable components cater to short-term and long-term use without the need for configuration changes. Its capacity supports both small and mid-volume batches, making it a practical choice for seasonally active production. Built for reliability, it handles shifts in solvent types and extraction goals without frequent recalibration. The structure allows it to be stored away easily during inactive periods. For laboratories that follow seasonal trends, it provides both adaptability and convenience.

2. Why is the Electric Lifting Rotary Evaporator suitable for laboratories processing unfamiliar compounds?

Rotary Evaporator supports research labs dealing with unknown or unpredictable materials by offering customisable operational parameters. Users can finely tune the rotation speed and heating settings without the unit locking them into fixed profiles. This gives room for experimentation across solvents and mixtures that may have never been processed before. The large, clear interface simplifies adjustments mid-process without halting operation. For compounds that may react unpredictably, the system’s build allows for careful handling without compromising integrity. Its layout also helps researchers monitor every stage of the run visually. This adaptability is especially important in exploratory or early-stage formulation work.

3. What makes the Electric Lifting Rotary Evaporator practical for shared laboratory spaces?

Electric Lifting Rotary Evaporator fits into shared laboratory environments where multiple users operate equipment throughout the day. Its structure provides physical safety buffers, reducing risks during handovers. The digital interface can be wiped clean without damaging controls, supporting hygiene and daily use by different teams. The lift mechanism reduces the physical strain on operators of varying heights or strength levels. Built for repeated operation, it doesn’t require long downtime between users. The settings are intuitive, so even users unfamiliar with rotary evaporators can operate it after minimal instruction. Its versatility benefits academic labs and institutions with rotating student or staff access.

4. How does the Electric Lifting Rotary Evaporator help reduce liquid waste in laboratories?

The Electric Lifting Rotary Evaporator promotes solvent reuse by providing a controlled distillation process that reduces uncollected residue. Lab operators can recover usable liquids instead of disposing of them prematurely, cutting down on waste volumes over time. The collection system is shaped to prevent fluid loss during transfer. This lowers overall solvent expenses while also supporting environmental compliance standards. By reducing the amount of material discarded, laboratories may also experience fewer disposal-related safety checks. The structure supports cleaner separations that don’t require additional filtration. Over time, this approach helps improve both operational sustainability and budget efficiency.

5. How does the Electric Lifting Rotary Evaporator support long experimental runs?

Rotary Evaporator is designed for uninterrupted operation, making it ideal for procedures that span several hours. The system is thermally stable, maintaining consistent performance without drops in output over extended durations. The motor doesn’t overheat under continuous use, allowing researchers to carry out full-day trials without risk of interruption. The large flask reduces the need for constant refilling or attention. Built-in digital timers assist in scheduling changes mid-process, reducing the need for operator supervision. This makes it valuable in labs where round-the-clock workflows are necessary. For experiments involving slow solvent removal or staged processing, it provides solid, dependable performance.

6. What considerations make the Electric Lifting Rotary Evaporator a good investment for start-up laboratories?

Electric Lifting Rotary Evaporator is ideal for start-up labs seeking dependable results without excessive complexity. Its straightforward interface means less time spent on staff training and more on real work. The modular design supports future upgrades or adaptations as the lab scales. Operators can perform multiple types of extractions using the same platform without switching devices. It’s a solid option for teams that need durable, long-term tools without recurring service costs. The system is compact enough to fit into smaller workspaces, saving on infrastructure costs. Over time, it offers flexibility and reliability that support both routine and experimental work.

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