1 |
3404 |
Free and intermolecular bonded hidroxyl groups |
Cellulose |
[2727 ARTZ, R.R.E., CHAPMAN, S.J., ROBERTSON, A.H.J., et al. “FTIR spectroscopy can be used as a screening tool for organic matter quality in regenerating cutover peatlands”, Soil Biology & Biochemistry, v. 40, n. 2, pp. 515–527, Feb. 2008.–2929 SILVERSTEIN, R.M., WEBSTER, F., KIEMLE, D.J., Spectrometric Identification of Organic Compounds, 7 ed., New York, Wiley, 2005.] |
2 |
2916 |
Antisymmetric C-H2
|
Fat.wax and lipids |
[2727 ARTZ, R.R.E., CHAPMAN, S.J., ROBERTSON, A.H.J., et al. “FTIR spectroscopy can be used as a screening tool for organic matter quality in regenerating cutover peatlands”, Soil Biology & Biochemistry, v. 40, n. 2, pp. 515–527, Feb. 2008., 2929 SILVERSTEIN, R.M., WEBSTER, F., KIEMLE, D.J., Spectrometric Identification of Organic Compounds, 7 ed., New York, Wiley, 2005.] |
3 |
2845 |
Symmetric C-H2
|
Fat.wax and lipids |
[2727 ARTZ, R.R.E., CHAPMAN, S.J., ROBERTSON, A.H.J., et al. “FTIR spectroscopy can be used as a screening tool for organic matter quality in regenerating cutover peatlands”, Soil Biology & Biochemistry, v. 40, n. 2, pp. 515–527, Feb. 2008., 2929 SILVERSTEIN, R.M., WEBSTER, F., KIEMLE, D.J., Spectrometric Identification of Organic Compounds, 7 ed., New York, Wiley, 2005.] |
4 |
1635 |
C=C stretching and/or asymetric C-O in COO- |
Lignin or other aromatics groups and/or aromatic or aliphatic carboxylates |
[2727 ARTZ, R.R.E., CHAPMAN, S.J., ROBERTSON, A.H.J., et al. “FTIR spectroscopy can be used as a screening tool for organic matter quality in regenerating cutover peatlands”, Soil Biology & Biochemistry, v. 40, n. 2, pp. 515–527, Feb. 2008., 2929 SILVERSTEIN, R.M., WEBSTER, F., KIEMLE, D.J., Spectrometric Identification of Organic Compounds, 7 ed., New York, Wiley, 2005.] |
5 |
1457 |
C-H deformation |
Aliphatic structures |
[2727 ARTZ, R.R.E., CHAPMAN, S.J., ROBERTSON, A.H.J., et al. “FTIR spectroscopy can be used as a screening tool for organic matter quality in regenerating cutover peatlands”, Soil Biology & Biochemistry, v. 40, n. 2, pp. 515–527, Feb. 2008., 2929 SILVERSTEIN, R.M., WEBSTER, F., KIEMLE, D.J., Spectrometric Identification of Organic Compounds, 7 ed., New York, Wiley, 2005.] |
6 |
1125 |
combination of C-O stretching and O-H deformation |
Combination of C-O stretching and O-H deformation |
[2727 ARTZ, R.R.E., CHAPMAN, S.J., ROBERTSON, A.H.J., et al. “FTIR spectroscopy can be used as a screening tool for organic matter quality in regenerating cutover peatlands”, Soil Biology & Biochemistry, v. 40, n. 2, pp. 515–527, Feb. 2008., 2828 GARG, U.K., KAUR, M.P., GARG, V.K., et al. “Removal of hexavalent chromium from aqueous solution by agricultural waste biomass”, Journal of Hazardous Materials, v. 140, n. 1, pp. 60–68,Feb. 2007.] |
7 |
1035 |
combination of C-O stretching and O-H deformation |
Combination of C-O stretching and O-H deformation |
[2727 ARTZ, R.R.E., CHAPMAN, S.J., ROBERTSON, A.H.J., et al. “FTIR spectroscopy can be used as a screening tool for organic matter quality in regenerating cutover peatlands”, Soil Biology & Biochemistry, v. 40, n. 2, pp. 515–527, Feb. 2008., 2828 GARG, U.K., KAUR, M.P., GARG, V.K., et al. “Removal of hexavalent chromium from aqueous solution by agricultural waste biomass”, Journal of Hazardous Materials, v. 140, n. 1, pp. 60–68,Feb. 2007.] |