Method for preparing a sample for laser induced breakdown spectroscopy
A method for preparing a sample of organic material for laser induced breakdown spectroscopy (LIBS) may include obtaining granular organic material, forming a portion of the granular organic material into a sample pellet, and searing the organic material. The searing may include searing only an exposed end surface of the sample pellet on which LIBS analysis is to be performed. The method may include pressing the seared sample pellet to consolidate the material comprising the seared end surface.
1. A method for preparing a sample of organic material for laser induced breakdown spectroscopy (LIBS), the method comprising:
obtaining granular organic material, the granular organic material including an organic matrix;
press-forming a portion of the granular organic material into a sample pellet, the sample pellet having an exposed end surface that is to be subjected to a LIBS analysis;
searing the sample pellet to induce a thermochemical decomposition of the organic matrix, wherein the searing includes searing the exposed end surface of the sample pellet; and
re-pressing the sample pellet, subsequently to searing the exposed end surface of the sample pellet.
2. The method according to claim 1 , wherein the press-forming the portion of the granular organic material into the sample pellet includes pressing the granular organic material based on applying pressure to the granular organic material to form a consolidated mass as the sample pellet.
3. The method according to claim 1 , wherein the granular organic material includes plant material.
4. A method of performing laser induced breakdown spectroscopy (LIBS), the method comprising:
preparing a sample of organic material, the preparing including
obtaining granular organic material, the granular organic material including an organic matrix,
press-forming a portion of the granular organic material into a sample pellet such that the sample pellet has an exposed end surface,
searing the sample pellet to induce a thermochemical decomposition of the organic matrix, wherein the searing includes searing the exposed end surface of the sample pellet to form a seared surface of the sample of organic material, and
re-pressing the sample pellet, subsequently to searing the exposed end surface;
directing a laser beam pulse to the seared surface of the sample of organic material to produce a plasma ablation event; and
performing a spectrometric analysis of light emitted from plasma generated in the plasma ablation event to identify constituent elements of interest in the sample of organic material by their characteristic emission wavelengths.