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1. Environmental and occupational exposure to bisphenol compounds in Finland.

2. HBM4EU E-waste study: Assessing persistent organic pollutants in blood, silicone wristbands, and settled dust among E-waste recycling workers in Europe.

3. HBM4EU e-waste study: Occupational exposure of electronic waste workers to phthalates and DINCH in Europe.

4. HBM4EU chromates study - PFAS exposure in electroplaters and bystanders.

5. How to use human biomonitoring in chemical risk assessment: Methodological aspects, recommendations, and lessons learned from HBM4EU.

6. The HBM4EU chromates study - Outcomes and impacts on EU policies and occupational health practices.

7. Occupational Exposure and Health Impact Assessment of Diisocyanates in Finland.

8. HBM4EU chromates study - the measurement of hexavalent and trivalent chromium in exhaled breath condensate samples from occupationally exposed workers across Europe.

9. HBM4EU chromates study - Usefulness of measurement of blood chromium levels in the assessment of occupational Cr(VI) exposure.

10. HBM4EU Diisocyanates Study-Research Protocol for a Collaborative European Human Biological Monitoring Study on Occupational Exposure.

11. HBM4EU Chromates Study: Determinants of Exposure to Hexavalent Chromium in Plating, Welding and Other Occupational Settings.

12. HBM4EU chromates study - Overall results and recommendations for the biomonitoring of occupational exposure to hexavalent chromium.

13. HBM4EU Occupational Biomonitoring Study on e-Waste-Study Protocol.

14. Biomonitoring of occupational exposure to bisphenol A, bisphenol S and bisphenol F: A systematic review.

15. HBM4EU chromates study - Reflection and lessons learnt from designing and undertaking a collaborative European biomonitoring study on occupational exposure to hexavalent chromium.

16. Non-occupational exposure to phthalates in Finland.

17. Biomonitoring of occupational exposure to phthalates: A systematic review.

18. Occupational Exposure of Plastics Workers to Diisononyl Phthalate (DiNP) and Di(2-propylheptyl) Phthalate (DPHP) in Finland.

19. Setting up a collaborative European human biological monitoring study on occupational exposure to hexavalent chromium.

20. Environmental and occupational exposure to resorcinol in Finland.

21. Assessment of Occupational Exposure to Bisphenol A in Five Different Production Companies in Finland.

22. Jagua blue derived from Genipa americana L. fruit: A natural alternative to commonly used blue food colorants?

23. Bisphenol A exposure via thermal paper receipts.

24. Electromigration of a heteroconjugated imidazole-acetate complex in ACN.

25. Capillary zone electrophoresis of some extremely weak bases in acetonitrile.

26. Comparison of methanol and acetonitrile as solvents for the separation of sertindole and its major metabolites by capillary zone electrophoresis.

27. Capillary electrophoresis in N,N-dimethylformamide.

28. Are the asserted advantages of organic solvents in capillary electrophoresis real? A critical discussion.

29. Nitromethane as solvent in capillary electrophoresis.

30. Analyte and system eigenpeaks in nonaqueous capillary zone electrophoresis: theoretical description and experimental confirmation with methanol as solvent.

31. Formamide as solvent for capillary zone electrophoresis.

32. Capillary zone electrophoresis in non-aqueous solutions: pH of the background electrolyte.

33. Comparison of gas chromatography-mass spectrometry and capillary electrophoresis in analysis of phenolic compounds extracted from solid matrices with pressurized hot water.

34. Peak dispersion and contributions to plate height in nonaqueous capillary electrophoresis at high electric field strengths: ethanol as background electrolyte solvent.

35. Peak dispersion and contributions to plate height in nonaqueous capillary electrophoresis at high electric field strengths: propanol as background electrolyte solvent.

36. The principles of migration and dispersion in capillary zone electrophoresis in nonaqueous solvents.

37. Influence of solvent on temperature and thermal peak broadening in capillary zone electrophoresis.

38. Medium effect (transfer activity coefficient) of methanol and acetonitrile on beta-cyclodextrin/benzoate complexation in capillary zone electrophoresis.

39. Capillary electrophoresis of methyl-substituted phenols in acetonitrile.

40. Capillary electrophoresis of anionic analytes in methanol: effect of counter-ions on electrophoretic mobility.

41. Nonaqueous capillary electrophoresis with alcoholic background electrolytes: separation efficiency under high electrical field strengths.

42. Novel dynamic polymer coating for capillary electrophoresis in nonaqueous methanolic background electrolytes.

43. Resolution in capillary electrophoresis with nonaqueous methanol as solvent: theoretical prediction and experimental confirmation.

44. Electrophoretic mobilities of cationic analytes in non-aqueous methanol, acetonitrile and their mixtures. Influence of ionic strength and ion-pair formation.

45. Extremely high electric field strengths in non-aqueous capillary electrophoresis.

46. Capillary zone electrophoresis of basic analytes in methanol as non-aqueous solvent mobility and ionisation constant.

47. Non-aqueous capillary electrophoresis.

48. Modified liquid junction interface for nonaqueous capillary electrophoresis-mass spectrometry.

49. Compensation of the siphoning effect in nonaqueous capillary electrophoresis by vial lifting.

50. Alcohols and wide-bore capillaries in nonaqueous capillary electrophoresis.

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