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55. B. Stenberg, R.A. Viscarra Rossel, A.M. Mouazen, J. Wetterlind, Visible and Near Infrared
Spectroscopy in Soil Science, 1st edn (Elsevier Inc., 2010)
56. D.F. Malley, P.C. Williams, Use of near-infrared reflectance spectroscopy in prediction of heavy
metals in freshwater sediment by their association with organic matter. Environ. Sci. Technol.
31(12), 3461–3467 (1997)
57. T. Inagaki, Y. Shinozuka, K. Yamada, H. Yonenobu, A. Hayashida, S. Tsuchikawa, A. Yoshida,
Y. Hoshino, K. Gotanda, Y. Yasuda, Rapid prediction of past climate condition from lake
sediments by near-infrared (NIR) spectroscopy. Appl. Spectrosc. 66(6), 673–679 (2012)
58. T. Kleinebecker, M.D.M. Poelen, A.J.P. Smolders, L.P.M. Lamers, N. Hölzel, Fast and inexpensive detection of total and extractable element concentrations in aquatic sediments using
near-infrared reflectance spectroscopy (NIRS). PLoS ONE 8(7), e70517 (2013)
59. D.F. Malley, H. Rönicke, D.L. Findlay, B. Zippel, Feasibility of using near-infrared reflectance
spectroscopy for the analysis of C, N, P, and diatoms in lake sediments. J. Paleolimnol. 21(3),
295–306 (1999)
60. E.J. Pearson, S. Juggins, J. Tyler, Ultrahigh resolution total organic carbon analysis
using Fourier Transform Near Infrared Reflectance Spectroscopy (FT-NIRS). Geochemistry.
Geophys. Geosyst. 15(1), 292–301 (2014)
61. T. Korsman, M.B. Nilsson, K. Landgren, I. Renberg, Spatial variability in surface sediment
composition characterised by near-infrared (NIR) reflectance spectroscopy. J. Paleolimnol.
21(1), 61–71 (1999)
62. Q. Ding, B.L. Boyd, G.W. Small, Determination of organic contaminants in aqueous samples
by near-infrared spectroscopy. Appl. Spectrosc. 54(7), 1047–1054 (2000)
63. T. Pan, Z. Chen, J. Chen, Z. Liu, Near-infrared spectroscopy with waveband selection stability
for the determination of COD in sugar refinery wastewater. Anal. Methods 4(4), 1046–1052
(2012)
64. C. Quintelas, D.P. Mesquita, E.C. Ferreira, A.L. Amaral, Quantification of pharmaceutical
compounds in wastewater samples by near infrared spectroscopy (NIR). Talanta 194(1), 507–
513 (2019)
65. T. Lindgren, U. Edlund, Prediction of lignin content and pulp yield. Nord. Pulp Pap. Res. J.
13(1), 76–80 (2007)
66. A.C. Sousa, M.M.L.M. Lucio, O.F.B. Neto, G.P.S. Marcone, A.F.C. Pereira, E.O. Dantas, W.D.
Fragoso, M.C.U. Araujo, R.K.H. Galvão, A method for determination of COD in a domestic
wastewater treatment plant by using near-infrared reflectance spectrometry of seston. Anal.
Chim. Acta 588(2), 231–236 (2007)
67. J.P. Reed, D. Devlin, S.R.R. Esteves, R. Dinsdale, A.J. Guwy, Performance parameter prediction
for sewage sludge digesters using reflectance FT-NIR spectroscopy. Water Res. 45(8), 2463–
2472 (2011)
68. L. Galvez-Sola, J. Morales, A.M. Mayoral, C. Paredes, M.A. Bustamante, F.C. MarhuendaEgea, J.X. Barber, R. Moral, Estimation of parameters in sewage sludge by near-infrared
reflectance spectroscopy (NIRS) using several regression tools. Talanta 110(15), 81–88 (2013)
69. P.A. Martin, Near-infrared diode laser spectroscopy in chemical process and environmental air
monitoring. Chem. Soc. Rev. 31(4), 201–210 (2002)
70. D.C. Scott, R.L. Herman, C.R. Webster, R.D. May, G.J. Flesch, E.J. Moyer, Airborne Laser
Infrared Absorption Spectrometer (ALIAS-II) for in situ atmospheric measurements of N 2 O,
CH 4 , CO, HCL, and NO 2 from balloon or remotely piloted aircraft platforms. Appl. Opt.
38(21), 4609–4622 (1999)
71. G. Durry, G. Megie, Atmospheric CH 4 and H 2 O monitoring with near-infrared InGaAs laser
diodes by the SDLA, a balloonborne spectrometer for tropospheric and stratospheric in situ
measurements. Appl. Opt. 38(36), 7342–7354 (1999)
72. H. Yonenobu, S. Tsuchikawa, Near-Infrared Spectroscopic. 57(11), 1451–1453 (2003)
73. A. Sandak, J. Sandak, M. Zborowska, W. Pra, Near infrared spectroscopy as a tool for
archaeological wood characterization. J. Archaeol. Sci. 37(9), 2093–2101 (2010)
74. J. Linderholm, P. Geladi, C. Sciuto, Field-based near infrared spectroscopy for analysis of
Scandinavian Stone Age rock paintings. J. Near Infrared Spectrosc. 23(4), 227–236 (2015)
T. Ma et al.
55. B. Stenberg, R.A. Viscarra Rossel, A.M. Mouazen, J. Wetterlind, Visible and Near Infrared
Spectroscopy in Soil Science, 1st edn (Elsevier Inc., 2010)
56. D.F. Malley, P.C. Williams, Use of near-infrared reflectance spectroscopy in prediction of heavy
metals in freshwater sediment by their association with organic matter. Environ. Sci. Technol.
31(12), 3461–3467 (1997)
57. T. Inagaki, Y. Shinozuka, K. Yamada, H. Yonenobu, A. Hayashida, S. Tsuchikawa, A. Yoshida,
Y. Hoshino, K. Gotanda, Y. Yasuda, Rapid prediction of past climate condition from lake
sediments by near-infrared (NIR) spectroscopy. Appl. Spectrosc. 66(6), 673–679 (2012)
58. T. Kleinebecker, M.D.M. Poelen, A.J.P. Smolders, L.P.M. Lamers, N. Hölzel, Fast and inexpensive detection of total and extractable element concentrations in aquatic sediments using
near-infrared reflectance spectroscopy (NIRS). PLoS ONE 8(7), e70517 (2013)
59. D.F. Malley, H. Rönicke, D.L. Findlay, B. Zippel, Feasibility of using near-infrared reflectance
spectroscopy for the analysis of C, N, P, and diatoms in lake sediments. J. Paleolimnol. 21(3),
295–306 (1999)
60. E.J. Pearson, S. Juggins, J. Tyler, Ultrahigh resolution total organic carbon analysis
using Fourier Transform Near Infrared Reflectance Spectroscopy (FT-NIRS). Geochemistry.
Geophys. Geosyst. 15(1), 292–301 (2014)
61. T. Korsman, M.B. Nilsson, K. Landgren, I. Renberg, Spatial variability in surface sediment
composition characterised by near-infrared (NIR) reflectance spectroscopy. J. Paleolimnol.
21(1), 61–71 (1999)
62. Q. Ding, B.L. Boyd, G.W. Small, Determination of organic contaminants in aqueous samples
by near-infrared spectroscopy. Appl. Spectrosc. 54(7), 1047–1054 (2000)
63. T. Pan, Z. Chen, J. Chen, Z. Liu, Near-infrared spectroscopy with waveband selection stability
for the determination of COD in sugar refinery wastewater. Anal. Methods 4(4), 1046–1052
(2012)
64. C. Quintelas, D.P. Mesquita, E.C. Ferreira, A.L. Amaral, Quantification of pharmaceutical
compounds in wastewater samples by near infrared spectroscopy (NIR). Talanta 194(1), 507–
513 (2019)
65. T. Lindgren, U. Edlund, Prediction of lignin content and pulp yield. Nord. Pulp Pap. Res. J.
13(1), 76–80 (2007)
66. A.C. Sousa, M.M.L.M. Lucio, O.F.B. Neto, G.P.S. Marcone, A.F.C. Pereira, E.O. Dantas, W.D.
Fragoso, M.C.U. Araujo, R.K.H. Galvão, A method for determination of COD in a domestic
wastewater treatment plant by using near-infrared reflectance spectrometry of seston. Anal.
Chim. Acta 588(2), 231–236 (2007)
67. J.P. Reed, D. Devlin, S.R.R. Esteves, R. Dinsdale, A.J. Guwy, Performance parameter prediction
for sewage sludge digesters using reflectance FT-NIR spectroscopy. Water Res. 45(8), 2463–
2472 (2011)
68. L. Galvez-Sola, J. Morales, A.M. Mayoral, C. Paredes, M.A. Bustamante, F.C. MarhuendaEgea, J.X. Barber, R. Moral, Estimation of parameters in sewage sludge by near-infrared
reflectance spectroscopy (NIRS) using several regression tools. Talanta 110(15), 81–88 (2013)
69. P.A. Martin, Near-infrared diode laser spectroscopy in chemical process and environmental air
monitoring. Chem. Soc. Rev. 31(4), 201–210 (2002)
70. D.C. Scott, R.L. Herman, C.R. Webster, R.D. May, G.J. Flesch, E.J. Moyer, Airborne Laser
Infrared Absorption Spectrometer (ALIAS-II) for in situ atmospheric measurements of N 2 O,
CH 4 , CO, HCL, and NO 2 from balloon or remotely piloted aircraft platforms. Appl. Opt.
38(21), 4609–4622 (1999)
71. G. Durry, G. Megie, Atmospheric CH 4 and H 2 O monitoring with near-infrared InGaAs laser
diodes by the SDLA, a balloonborne spectrometer for tropospheric and stratospheric in situ
measurements. Appl. Opt. 38(36), 7342–7354 (1999)
72. H. Yonenobu, S. Tsuchikawa, Near-Infrared Spectroscopic. 57(11), 1451–1453 (2003)
73. A. Sandak, J. Sandak, M. Zborowska, W. Pra, Near infrared spectroscopy as a tool for
archaeological wood characterization. J. Archaeol. Sci. 37(9), 2093–2101 (2010)
74. J. Linderholm, P. Geladi, C. Sciuto, Field-based near infrared spectroscopy for analysis of
Scandinavian Stone Age rock paintings. J. Near Infrared Spectrosc. 23(4), 227–236 (2015)
