GMP Standard Synthesis Hot Cell for Radiopharmaceutical Production Line with Class A B C Cleanliness and 10mmpb 20mmpb 50mmPb 100mmPb Lead Equivalent

원래 장소 중국
브랜드 이름 Jovi
모델 번호 JVVMED-HC
최소 주문 수량 1 세트
가격 $35000~$95623
포장 세부 사항 나무 상자에서
배달 시간 결제를 받은 후 25일 근무일
지불 조건 미리 T/T
공급 능력 100SETS/YEAR

무료샘플과 쿠폰을 위해 나와 연락하세요.

왓츠앱:0086 18588475571

위챗: 0086 18588475571

스카이프: sales10@aixton.com

만약 당신이 어떠한 관심도 가지면, 우리가 24 시간 온라인 도움말을 제공합니다.

x
제품 상세 정보
청결 클래스 ABC 리드에 해당합니다 10mmpb 20mmpb 50mmpb 100mmpb
재료 스테인레스 스틸 구조, 납 벽돌 운영 시스템 인공 지능 제어
정제 방법 활성 탄소 필터, HEPA 여과, 소독 방법 자외선 및 오존
대체 옵션 수동 디스펜서, 자동 디스펜서 제품 이름 Radiopharmaceutical 생산 라인 GMP 표준을위한 합성 핫 셀
강조하다

GMP Standard Synthesis Hot Cell

,

Real Time Dose Monitoring Hot Cell

,

HEPA Filtration Radiopharmaceutical Production Hot Cell

메시지를 남겨주세요
제품 설명
Synthesis Hot Cell For Radiopharmaceutical Production Line GMP Standard With In Real Time Dose Monitoring With Hepa Filtration Active Carbon Filter Negative Pressure
Key Characteristics of Radiopharmaceutical Synthesis Hot Cells
The synthesis hot cell (also known as a synthesis shielding box or hot cell) serves as the core equipment in radiopharmaceutical production processes. Its design ensures operator safety, environmental protection, and product integrity with these essential features:
1. Radiation Shielding
The most critical safety feature, providing effective shielding against high-energy gamma rays or neutrons emitted by radionuclides.
  • Materials: High-density lead (Pb) bricks/plates as primary shielding, complemented by lead glass (viewing windows) and steel (structural support)
  • Thickness: Precisely calculated based on radionuclide type (F-18, Ga-68, Lu-177) and activity levels, ranging from centimeters to tens of centimeters to maintain external radiation below 2.5 μSv/h
2. Containment, Negative Pressure & HEPA Filtration
  • Containment: Hermetically sealed system prevents radioactive aerosol/volatile substance leakage
  • Negative Pressure System: Maintains lower internal pressure than surrounding environment, ensuring inward airflow to contain contaminants
  • HEPA Filtration: Multi-stage High-Efficiency Particulate Air filters capture radioactive particles, with activated carbon filters for volatile radionuclides (e.g., I-131)
3. Remote Manipulation & Automation
Advanced systems eliminate direct operator contact with radioactive materials:
  • Manipulators: Master-slave systems or electric-powered units controlled via joysticks/touchscreens
  • Full Automation: Computer-controlled synthesizers and Chemical Process Modules (CPM) execute complete synthesis processes (heating, cooling, liquid transfer, purification) with minimal human intervention
4. Product Protection & Aseptic Environment
Ensures radiopharmaceuticals meet sterile, pyrogen-free injection standards:
  • Clean Environment: ISO Class 7 or 5 (Grade C/A) cleanliness standards
  • Transfer Systems: Dedicated pass-through boxes with interlocking mechanisms and UV decontamination
  • Surface Materials: Seamless, cleanable stainless steel resistant to frequent disinfection
5. Shielding Viewing Window
Multi-layered lead glass windows provide visibility while maintaining equivalent radiation shielding to surrounding walls.
6. Utilities Integration
Comprehensive support systems for production processes:
Utility Function
Electrical Powers instruments, manipulators, lighting, and sockets
Pneumatic Supplies compressed air/inert gases for valves and drying
Vacuum Enables filtration and liquid transfer
Cooling/Ventilation Maintains stable temperature via cold traps and circulation fans
7. Monitoring & Safety Systems
  • Radiation Monitoring: Continuous internal radiation level detection
  • Pressure Monitoring: Real-time negative pressure status with alarm triggers
  • Temperature/Smoke Sensors: Prevents overheating and fire incidents
  • Safety Interlocks: Prevents unauthorized access to doors/pass-through boxes
Summary
Modern radiopharmaceutical synthesis hot cells represent sophisticated engineering systems integrating radiation shielding, containment, automation, and sterile control. Designed to meet strict GMP standards, they enable safe, efficient production while protecting personnel and the environment. Current development trends emphasize higher integration, automation, and modularization to reduce operational complexity and radiation exposure risks.