Author:
Kulichkova Ganna I.,Ivanova Tetiana S.,Köttner Mihael,Volodko Oleksiy I.,Spivak Svitlana I.,Tsygankov Sergiy P.,Blume Yaroslav B.
Abstract
Introduction:
Nowadays, organic waste utilization and replacement of fossil energy sources with their renewable alternatives pose a challenging problem both for industrially developed and developing countries. Anaerobic digestion of organic biomass into biogas is considered an efficient technology for bioenergy production. Over the period from 2009 to 2018, the global biogas production capacities have more than doubled and are continuing to grow. The composition and the amount of biogas depend strongly on the type of the substrate. Various types of feedstock can be used for the production of biogas such as animal wastes, agricultural residues, and dedicated energy crops.
Objective:
To review biogas production potentials of energy crops and plant processing raw materials.
Results:
In the background of historical development and present state, the paper reviews the potential of different plant raw materials to be utilized for biogas production purposes. The potential of energy crops, agricultural residues, and wastes for biogas production is analyzed. International projects concerning energy crops grown on marginal lands are presented and commented on in the article. The approach of implementing crop rotation systems for industrial energy crop cultivation is described and recommended as beneficial for various purposes. The anaerobic degradability of biomass constituents, optimal process parameters, and biomass treatment for biogas production are discussed. C/N ration and lignocelluloses content in the substrate are considered among the most decisive parameters for AD and methane production. Various concepts of biogas bioreactor technologies have been studied depending on the substrate type.
Conclusion:
Plant feedstock may play a decisive role in biogas production as a renewable energy source. To avoid GHG release into the atmosphere, biogas facilities should be built within the closest vicinities to the places of existing garbage dumps, and waste management practice involving organic fraction separation in households and in the industry should be applied. Construction of biogas facilities is beneficial for environmental, economic, and social reasons.
Publisher
Bentham Science Publishers Ltd.
Subject
Soil Science,Agronomy and Crop Science,Animal Science and Zoology
Reference134 articles.
1. Abderezzak B.
An innovative simulation tool for waste to energy generation opportunities.
Med J Model Simul
2017;
7
: 38-47.
2. Abderezzak B, Khelidj B, Kellaci A, Tahar Abbes M.
The smart use of biogas: Decision support tool.
AASRI Procedia
2012;
2
: 156-62.
3. Walekhwa PN, Mugisha J, Drake L.
Biogas energy from family-sized digesters in Uganda: Critical factors and policy implications.
Energy Policy
2009;
37
: 2754-62.
4. Nevzorova T, Kutcherov V.
Barriers to the wider implementation of biogas as a source of energy: A state-of-the-art review.
Energy Strateg Rev
2019;
26
100414
5. Seadi T, Rutz D, Prassl H, Köttner M, Finsterwalder T, Volk S, Eds.
Biogas handbook
2008.
Cited by
27 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献