Enclosed photobioreactor apparatus based on process mass spectrometer, and alga cell growth process monitoring method
A technology of photobioreactor and process mass spectrometer, which is applied in the direction of photobioreactor, specific-purpose bioreactor/fermenter, bioreactor/fermenter combination, etc. Plant physiological metabolic intensity, lack of methods for rapid and accurate determination of phytoplankton primary productivity or physiological metabolic intensity, etc.
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Embodiment 1
[0080] Observation and Analysis of Indoor Cultivation Process of Cyanobacteria in Taihu Lake
[0081] device:
[0082] like figure 1 The enclosed photobioreactor device of the present invention is constructed as shown. Among them, a 50L fermenter (Shanghai Guoqiang Biochemical) was used, such as figure 2 Assemble as shown; image 3 The exhaust gas analysis pretreatment system is constructed as shown, connected to the downstream of the photoreactor and the upstream of the mass spectrometer (U.S. Extrel MAX300-LG); as Figure 4 The data acquisition and processing system is constructed and connected as shown, the process control system adopts Bioradar (Shanghai Guoqiang Biochemical), and the data acquisition system adopts Biostar (Shanghai Guoqiang Biochemical). Perform parameter setting and operation according to the manufacturer / supplier's instructions of the equipment and software.
[0083] Training method:
[0084] Take water and sediment from Meiliang Bay, Taihu Lake; s...
Embodiment 2
[0092] Observation results of cyanobacteria cultivation at the same Taihu Lake location in different seasons of water intake
[0093] With reference to the description in Example 1, water and mud were taken from Taihu Lake in late March, mid-April, and late April, 2008, respectively, for cultivation and observation of algae cell growth.
[0094] The result is as Image 6 shown.
[0095] Depend on Image 6 A It can be seen that the growth rate of cyanobacteria is significantly affected by the time of water intake. The Taihu Lake water taken in late April began to grow rapidly at about 20 hours, and chlorophyll a reached the highest value at about 90 hours. However, the Taihu Lake water collected in mid-April did not begin to grow rapidly until 50 hours, and the recovery period of Taihu Lake water in late March was the longest, about 70 hours.
[0096] The peak time of chlorophyll a and CFR was also delayed compared with the experiment in late April ( Image 6 B).
Embodiment 3
[0098] Chlorella culture online monitoring results
[0099] Referring to the description in Example 1, in this example, Chlorella was used as the culture object, and the photosynthetic culture was carried out with the inorganic medium, and the culture temperature was 30 degrees.
[0100] The formula of inorganic salt medium is as follows (g / L):
[0101] KNO 3
1.25,
K H 2 PO 4
1.25g,
MgSO 4 ·7H 2 o
1.0g,
CuSO 4 2H 2 o
0.0835g
FeSO 4 ·7H 2 o
0.049g
EDTA
0.05mg
trace elements
10ml
[0102] On-line analysis of CO by mass spectrometry during Chlorella culture 2 Exhaust concentration, then according to this device for CO 2 Constant rate (CFR) for calculation, while sampling optical density (OD 680 ) to analyze the growth density of Chlorella.
[0103] The results of the analysis of the two Figure 7 shown. The results of linear correlation analysis showed that the...
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