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High-Performance HMS 6500 LC-TQMS by China Suppliers | Advanced Liquid Chromatography Mass Spectrometer Factory
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High-Performance HMS 6500 LC-TQMS by China Suppliers | Advanced Liquid Chromatography Mass Spectrometer Factory

The HMS 6500 is a cutting-edge high-performance liquid chromatography-triple quadrupole mass spectrometer (LC-TQMS) developed independently by Beijing BIIC-Tech Huazhi Scientific Instruments Co., Ltd. This exceptional instrument seamlessly combines the efficient separation capabilities of liquid chromatography with the high sensitivity and precise quantification of triple quadrupole technology. It is specifically designed to address the challenges of analyzing complex matrix samples, making it a preferred choice among suppliers and laboratories in China, Key technical features of the HMS 6500 include a dual ionization source (ESI/APCI) design, which ensures comprehensive coverage of polar, non-polar, and semi-polar analytes. Its innovative curved collision cell effectively filters out neutral matrix interference, significantly reducing background noise. Additionally, the mass analyzer utilizes a ceramic gold-plated quadrupole that offers remarkable corrosion resistance and thermal stability, with an impressive maximum heating temperature of 750℃ for the ion source, overcoming traditional technical limitations, With its wide mass range, rapid scanning speed, and stable performance, the HMS 6500 is ideally suited for ultra-low concentration quantitative analysis of target compounds. The intelligent operating system facilitates automated tuning, mass calibration, and method optimization. Moreover, with a built-in MRM parameter library for thousands of compounds, users can generate compliant reports with a single click, greatly enhancing laboratory analysis efficiency, For those seeking reliable scientific instruments, the HMS 6500 from Beijing BIIC-Tech Huazhi Scientific Instruments Co., Ltd. stands out as a top choice from a leading manufacturer in the Chinese market

    Application Fields

    Case Study

    Food Safety Testing Industry

    Case: Detection of 40+ veterinary drugs in foods, with the detection meeting the requirements of GB 31650.1—2022.

    Case Study

    Environmental Monitoring Industry

    Case: Quantitative analysis of persistent organic pollutants (POPs) and pharmaceutical and personal care products (PPCPs) in surface water samples, realizing accurate detection of ng/L level pollutants.

    Case Study

    Clinical Testing Industry

    Case: Therapeutic drug monitoring (TDM) of anti-tumor drugs (such as everolimus) in plasma samples, with a detection limit of 0.1 pg/mL, supporting personalized treatment plans.

    Case Study

    Traditional Chinese Medicine Quality Control Industry

    Case: Simultaneous determination of ginsenosides in ginseng, tolerating interference from tannins and alkaloids.

    Case Study

    Dairy Product Testing Industry

    Case: Detection of melamine and β-lactam antibiotics in infant milk powder.

    Case Study

    Agricultural Product Supervision Industry

    Case: Rapid screening of veterinary drug residues (such as clenbuterol and ractopamine) in livestock and poultry products, completing 100+ samples per day.

    Case Study

    Cosmetics Safety Testing Industry

    Case: Analysis of prohibited hormones (such as estrogen and cortisol) in skin care products.

    Case Study

    Petrochemical Industry

    Case: Detection of polycyclic aromatic hydrocarbons (PAHs) in crude oil and refined products, with high selectivity and anti-interference ability.

    Case Study

    Biopharmaceutical R&D Industry

    Case: Quantitative analysis of monoclonal antibody drugs in cell culture supernatants, supporting process optimization and quality control.

    Case Study

    Soil Pollution Investigation Industry

    Case: Determination of pesticide metabolites in contaminated soil, providing data support for soil remediation.

    Case Study

    Feed Additive Detection Industry

    Case: Identification of illegal additives in aquatic feeds.

    Case Study

    Drinking Water Safety Testing Industry

    Case: Detection of disinfection by-products (such as trihalomethanes) in tap water, ensuring drinking water quality compliance.

    Frequently Asked Questions

    Q What types of industries can benefit from this detection technology?

    This detection technology is applicable across a wide range of industries, including food safety testing, environmental monitoring, clinical diagnostics, traditional Chinese medicine quality control, dairy product testing, agricultural supervision, cosmetics safety, petrochemical analysis, biopharmaceutical R&D, soil pollution investigation, feed additive detection, and drinking water safety testing.

    Q What is the detection sensitivity of this technology in clinical testing applications?

    In clinical testing applications, such as therapeutic drug monitoring (TDM) of anti-tumor drugs like everolimus in plasma samples, the technology achieves a detection limit as low as 0.1 pg/mL. This ultra-high sensitivity supports personalized treatment plans and precise dosage management for patients.

    Q Can this technology handle complex sample matrices with potential interferences?

    Yes. The technology is designed with high selectivity and strong anti-interference capabilities. For example, in traditional Chinese medicine quality control, it can simultaneously determine ginsenosides in ginseng while tolerating interference from tannins and alkaloids. Similarly, in petrochemical applications, it detects polycyclic aromatic hydrocarbons (PAHs) with high accuracy despite complex matrix backgrounds.

    Q How efficient is the technology for high-throughput sample screening?

    The technology supports high-throughput operations. In the agricultural product supervision industry, it enables rapid screening of veterinary drug residues — such as clenbuterol and ractopamine — in livestock and poultry products, with the capability of processing 100+ samples per day. This makes it highly suitable for large-scale regulatory and quality control workflows.

    Q Does this technology comply with national food safety standards?

    Yes. In food safety testing applications, the technology has been validated for the detection of 40+ veterinary drugs in foods, with results fully meeting the requirements of the Chinese national standard GB 31650.1—2022. This ensures regulatory compliance and provides reliable data for food safety authorities and testing laboratories.

    Q Is this technology suitable for environmental trace-level pollutant detection?

    Absolutely. The technology excels in environmental monitoring applications, enabling accurate quantitative analysis of persistent organic pollutants (POPs) and pharmaceutical and personal care products (PPCPs) in surface water samples. It achieves precise detection at ng/L concentration levels, making it ideal for environmental research, regulatory compliance testing, and pollution source tracing.