OPTICAL-PROPERTIES OF DENSE ALGAL CULTURES OUTDOORS AND THEIR APPLICATION TO REMOTE ESTIMATION OF BIOMASS AND PIGMENT CONCENTRATION IN SPIRULINA-PLATENSIS (CYANOBACTERIA)

被引:32
作者
GITELSON, AA
LAORAWAT, S
KEYDAN, GP
VONSHAK, A
机构
[1] BEN GURION UNIV NEGEV, JACOB BLAUSTEIN INST DESERT RES, MICROALGAL BIOTECHNOL LAB, IL-84990 SEDE BOQER, ISRAEL
[2] BEN GURION UNIV NEGEV, JACOB BLAUSTEIN INST DESERT RES, WATER RESOURCES RES CTR, IL-84990 SEDE BOQER, ISRAEL
关键词
ATTENUATION COEFFICIENT; BIOMASS; CHLOROPHYLL; CYANOBACTERIA; DENSE ALGAL CULTURES; PHYCOCYANIN; REMOTE SENSING; SPIRULINA PLATENSIS;
D O I
10.1111/j.0022-3646.1995.00828.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Reflectance and vertical attenuation coefficient spectra from 400 to 1100 nm were investigated in detail on dense algal cultures of Spirulina in order to create algorithms for remote estimation of pigment and biomass concentration. Reflectance and the vertical attenuation coefficients were compared with biomass and pigment concentration in outdoor algal cultures. For assessing biomass concentration, The sum of reflectance above the base line from 670 to 950 nm was used. This allows the estimation of biomass with an error of less than 0.06 g . L(-1). For chlorophyll a and phycocyanin estimation, vertical attenuation coefficients at the wavelengths 440 nm (or 676 nm) and 624 nm, respectively, were employed. The developed algorithms were tested by using independent data sets in the range of chlorophyll a from 0.2 to 20 mg . L(-1) and biomass from 0.15 to 1.2 g . L(-1). An error of pigment estimation of less than 0.80 mg . L(-1) was achieved. The potential use of the algorithms in algal biotechnology is further discussed.
引用
收藏
页码:828 / 834
页数:7
相关论文
共 23 条
[1]   CHLOROPHYLL-A ESTIMATION IN NEW-JERSEY COASTAL WATERS USING THEMATIC MAPPER DATA [J].
BAGHERI, S ;
DIOS, RA .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1990, 11 (02) :289-299
[2]  
Davies B. H., 1976, CHEM BIOCH PLANT PIG
[3]  
Dekker A.G., 1993, THESIS FREE U AMSTER
[4]  
DEKKER AG, 1992, REMOTE SENS ENVIRON, V41, P211
[5]  
ELACHI C, 1987, INTRO PHYSICS TECHNI, P65
[6]  
GIELSON A, 1993, WATER RES, V7, P1185
[7]   QUANTITATIVE REMOTE-SENSING METHODS FOR REAL-TIME MONITORING OF INLAND WATERS QUALITY [J].
GITELSON, A ;
GARBUZOV, G ;
SZILAGYI, F ;
MITTENZWEY, KH ;
KARNIELI, A ;
KAISER, A .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1993, 14 (07) :1269-1295
[8]   ALGORITHMS FOR REMOTE-SENSING OF PHYTOPLANKTON PIGMENTS IN INLAND WATERS [J].
GITELSON, A .
ADVANCES IN SPACE RESEARCH-SERIES, 1993, 13 (05) :197-201
[9]   THE USE OF HIGH-SPECTRAL-RESOLUTION RADIOMETER DATA FOR DETECTION OF LOW CHLOROPHYLL CONCENTRATIONS IN LAKE KINNERET [J].
GITELSON, A ;
MAYO, M ;
YACOBI, YZ ;
PARPAROV, A ;
BERMAN, T .
JOURNAL OF PLANKTON RESEARCH, 1994, 16 (08) :993-1002
[10]   THE PEAK NEAR 700 NM ON RADIANCE SPECTRA OF ALGAE AND WATER - RELATIONSHIPS OF ITS MAGNITUDE AND POSITION WITH CHLOROPHYLL CONCENTRATION [J].
GITELSON, A .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1992, 13 (17) :3367-3373