Microbial utilisation of natural organic wastes
The waste management strategy for the future should meet the benefits of humanity safety, respect principals of planet ecology, and compatibility with other habitability systems. For these purpose the waste management technologies, relevant to application of the biodegradation properties of bacteria...
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Veröffentlicht in: | Acta astronautica 2004-03, Vol.54 (5), p.357-361 |
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Sprache: | eng |
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Zusammenfassung: | The waste management strategy for the future should meet the benefits of humanity safety, respect principals of planet ecology, and compatibility with other habitability systems. For these purpose the waste management technologies, relevant to application of the biodegradation properties of bacteria are of great value.
The biological treatment method is based upon the biodegradation of organic substances by various microorganisms.
The advantage of the biodegradation waste management in general:
•
it allows to diminish the volume of organic wastes,
•
the biological hazard of the wastes is controlled and
•
this system may be compatible with the other systems.
The objectives of our study were:
•
to evaluate effectiveness of microbial biodegradation of non-pretreated substrate,
•
to construct phneumoautomatic digester for organic wastes biodegradation and
•
to study microbial characteristics of active sludge samples used as inoculi in biodegradation experiment.
The technology of vegetable wastes treatment was elaborated in IBMP and BMSTU. For this purpose the special unit was created where the degradation process is activated by enforced reinvention of portions of elaborated biogas into digester. This technology allows to save energy normally used for electromechanical agitation and to create optimal environment for anaerobic bacteria growth. The investigations were performed on waste simulator, which imitates physical and chemical content of food wastes calculated basing on the data on food wastes of moderate Russian city. The volume of created experimental sample of digester is
40
l
. The basic system elements of device are digesters, gas receiver, remover of drops and valve monitoring and thermal control system. In our testing we used natural food wastes to measure basic parameters and time of biodegradation process. The diminution rate of organic gained 76% from initial mass taking part within 9 days of fermentation. The biogas production achieved
46
l
per
1
kg
of substrate. The microbial studies of biodegradation process revealed following peculiarities:
(i)
gradual quantitative increasing of Lactobacillus sp. (from 10
3 to 10
5 colony forming units (CFU) per ml),
(ii)
activation of Clostridia sp. (from 10
2 to 10
4 CFU/ml) and
(iii)
elimination of aerobic conventional pathogens (
Enterobacteriaceae sp., Protea sp., staphylococci).
The obtained results allow to evaluate effectiveness of proposed technology and to determine the leading role of lactobacilli |
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ISSN: | 0094-5765 1879-2030 |
DOI: | 10.1016/S0094-5765(03)00046-8 |