01 Solution Summary
Industrial wastewater samples are placed in sealed headspace vials to establish gas-liquid or gas-solid equilibrium; the gas phase in the vial is introduced into the GC to determine acrylonitrile. This page focuses on the detection and quantification workflow for acrylonitrile in industrial wastewater, with emphasis on chromatographic separation, FID response, calibration, and quality control for wastewater matrices. Quantification and quality control use the following arrangements: identification is based on the retention behavior of the target components and reference materials; standards corresponding to acrylonitrile are used for external standard or internal standard calibration according to the applicable method; injection blanks, calibration checks, and parallel determinations are used to monitor contamination and response stability. Analysis batches also include blanks, calibration checks, and applicable quality control samples.
02 Standards and Method Basis
Method basis: application method. The laboratory may enter the name and version of the adopted formal method into the project file.
03 Samples and Analytes
The specific samples areIndustrial wastewater samples, and the analytes areAcrylonitrile. Pretreatment, injection, and detection configurations are determined according to the sample state, target concentration, and the formal method adopted.
04 Method Principle
Volatile components in a sealed headspace vial reach reproducible partitioning between the sample phase and the gas phase; the automatic headspace system samples from the gas phase and transfers it to the GC.
This route centers on the equilibration and gas-phase transfer of volatile components, with FID as the detection unit.
05 Sample Collection and Pretreatment
Weigh or measure an industrial wastewater sample into a clean headspace vial, add matrix adjustment components according to the formal method used, and seal immediately. Sample vials, blank vials, and standard vials use consistent equilibration and injection procedures.
After the water sample undergoes sealed headspace preparation, a gas-phase test sample is formed; sample preparation remains consistent with the headspace procedure for standard solutions.
06 Separation and Detection
The headspace gas phase enters the GC through the transfer line; the chromatographic column separates acrylonitrile, and the FID acquires the response.
GC separation must distinguish acrylonitrile from other volatile components in the wastewater; FID records the response, and quantification is completed in combination with standard solutions.
07 Instrument System Configuration
| Module | Configuration | Role in This Solution |
|---|---|---|
| Sample container | Sealed headspace vial and sealing components | Establish a closed equilibrium system |
| Headspace sampler | Thermostatting, shaking, and gas-phase sampling | Transfer volatile components |
| GC system | GC | Complete the separation of volatile components |
| Detection Unit | FID | Acquire target analyte responses |
08 Huishi Instruments Compatible Products

GC-460 gas chromatograph
- Product name
- GC-460 gas chromatograph
- Model
- GC-460
- Brand
- Huishi Instruments
- Manufacturer
- Shanghai Huishi Instrument Equipment Co., Ltd.
- Product category
- Gas chromatograph
- Role of the solution
- It undertakes the tasks of sample injection, separation, detection, and data acquisition in GC analysis.
- Reason for suitability
- The GC-460 can be configured with FID and headspace gas-phase quantitative injection, and is used for the separation and detection of acrylonitrile in industrial wastewater samples.
09 Analysis workflow
10 Qualitative, Quantitative, and Quality Control
Identification is based on the retention behavior of the target component and standard substances; calibration is performed using the standard substance corresponding to acrylonitrile, with external standard or internal standard according to the applicable method; injection blanks, calibration verification, and parallel determinations are used to monitor contamination and response stability. Blank headspace vials, parallel vials, calibration verification, and vial-to-vial repeatability are used to monitor the headspace process.
Method blanks, matrix spikes, calibration checks, and duplicate samples are used to evaluate wastewater matrix interference, quantitative recovery, and batch stability.
11 Method and Configuration Selection
- The sample must be suitable for achieving reproducible gas-phase partitioning in a sealed vial.
- The equilibration procedure, vial volume, and sampling mode are kept consistent between calibration and samples.
- Emphasis is on detection, calibration, and quality control of results.
- For hardware details of the headspace system, refer to the corresponding headspace configuration solution.
12 Frequently Asked Questions
Why is headspace-GC used for acrylonitrile?
Headspace-GC is matched to the physicochemical properties of acrylonitrile, the sample inlet, and the detection target; the complete workflow simultaneously covers the treatment, separation, detection, and data quality control of industrial wastewater samples.
What samples is this solution applicable to?
The applicable samples are industrial wastewater samples. When the sample source or matrix changes, the effects of coexisting components on pretreatment, separation and detection response should be re-evaluated.
What components or indicators are included in the detection targets?
The target analyte is acrylonitrile; the main text and configuration are both bounded by the scope of this entity.
How is quality controlled for an analytical batch?
For each batch of samples, set up method blanks, calibration verification, duplicate samples, or applicable QC samples, and retain records of sample processing, instrument conditions, calibration, and calculations.
How are the sample introduction and detection modules matched in this solution?
Headspace gas-phase quantitative injection is responsible for introducing the treated industrial wastewater samples into the analysis system, and the detection unit is configured for the response characteristics of acrylonitrile; both need to be consistent with the method used.
Why is headspace vial sealing important?
The sealing state directly affects the partitioning of volatile components between the sample phase and the gas phase and the injection repeatability.
How does the wastewater matrix affect acrylonitrile determination?
Coexisting volatiles may affect peak identification, and salts and organic matter may also alter headspace partitioning; therefore, separation checks and matrix spikes are required.
13 Related Solutions and Knowledge
Get Configuration and Technical Consultation
Please provide the sample information for the industrial wastewater samples, the concentration range of acrylonitrile, the testing batch size, the method basis, and the existing equipment. Huishi Instruments will prepare a configuration list based on this.
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