Quality Assessment of Biogas-Producing Macroalgae from Azov Sea and Sventoji River

被引:0
作者
Zagorskis, Alvydas [1 ]
Gotovskiene, Akvile [1 ]
Monin, Vladimir [2 ]
机构
[1] Vilnius Gediminas Tech Univ, Res Inst Environm Protect, LT-10223 Vilnius, Lithuania
[2] Pryazovskyi State Tech Univ, Inst Modern Technol, Dept Primary Sci, UA-87555 Mariupol, Ukraine
关键词
biogas; cattle manure; energy potential; macroalgae; methane; MECHANICAL PRETREATMENT; METHANE PRODUCTION; FUCUS-VESICULOSUS; DIGESTION; SEAWEED;
D O I
10.3390/su151914542
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The decline of fossil fuels, the increase in greenhouse gases, and the global demand for energy are driving the search for alternative energy sources. Anaerobic digestion is a promising technology because it can convert organic biomass into biogas. As the climate warms, there is an increase in the biomass of plant origin in water bodies, and ecosystems are unable to clean themselves. The novelty of the work is that it determines the energetic values of macroalgae growing in the Sea of Azov and freshwater bodies using theoretical and experimental methods. This work aims to show that macroalgae and aquatic plants can be an excellent raw material for biogas production. By mixing them with co-substrates such as cattle manure, higher biogas and methane yields can be obtained. When Cladophora glomerata and Enteromorpha intestinalis macroalgae are mixed with cattle manure, the biogas yield is up to 458.8 mL/gVS and 397.9 mL/gVS, respectively. Methane concentration remained high and reached 62.4-64.1%. The obtained research results show the high energy value of biogas and the energy potential of biomass. Macroalgae increased the energy potential of biogas to 22.9 MJ/m3, and the energy potential of biomass reached 2.40 MJ/Kg. Due to its high energy value, biogas produced from the considered substrates can be an excellent alternative to fossil fuels. Integrating aquatic macroalgae into anaerobic digestion is a promising approach for a waste-free marine and freshwater system.
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页数:17
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