LEADER 05247nam 22007095 450 001 9910383818203321 005 20230704133426.0 010 $a981-13-8637-4 024 7 $a10.1007/978-981-13-8637-4 035 $a(CKB)4100000010770774 035 $a(DE-He213)978-981-13-8637-4 035 $a(MiAaPQ)EBC6144693 035 $a(PPN)243224362 035 $a(EXLCZ)994100000010770774 100 $a20200323d2020 u| 0 101 0 $aeng 135 $aurnn|008mamaa 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aBiofuel Production Technologies: Critical Analysis for Sustainability /$fedited by Neha Srivastava, Manish Srivastava, P. K. Mishra, Vijai Kumar Gupta 205 $a1st ed. 2020. 210 1$aSingapore :$cSpringer Nature Singapore :$cImprint: Springer,$d2020. 215 $a1 online resource (XIII, 342 p. 76 illus., 48 illus. in color.) 225 1 $aClean Energy Production Technologies,$x2662-687X 311 $a981-13-8636-6 320 $aIncludes bibliographical references. 327 $aChapter-1 Biofuels: types and process overview -- Chapter-2 Biofuels generation based on technical process and biomass quality -- Chapter-3 Biogas: An Effective and Common Energy Tool-PART-I -- Chapter-4 Biogas: An Effective and Common Energy Tool-PART-II -- Chapter-5 Biogas: An Effective and Common Energy Tool-PART-III -- Chapter-6 Stoichiometric analysis of biogas production from industrial residues -- Chapter-7 Bioethanol Production; Generation Based Comparative Status Measurements -- Chapter-8 Algal Biomass: Potential Renewable Feedstock for Biofuels Production-PART-I -- Chapter-9 Recent trends in biogas upgrading technologies for biomethane production -- Chapter-10 Efficiency Analysis of Crude Vs Pure Cellulase in Industry -- Chapter-11 Significance of process parameters on fungal cellulase production -- Chapter-12 Modeling and stimulation of pyrolysis of teak (Tectona grandis) Sawdust. . 330 $aProduction and utilization of sustainable energy toward maintaining a clean environment is a major challenge. At the same time, the continued depletion of fossil fuels and the global dependency on non-renewable fuels is a chief concern. Moreover, the long-term economic and environmental issues associated with the high utilization of fossil fuel, such as global warming, are also important, particularly in the context of the predicted increase in the global population to around 5 billion by 2050. In recent years, researchers have been investigating alternative, renewable fuels to replace fossil fuels. Of the various options, biofuels are especially attractive due to their low production costs and the fact that they are pollution free. Also known as transportation fuels, their energy is derived from biological resources or through the biological processes. Biofuels such as biohydrogen, biomethane, biogas, ethanol and butanol offer a number of advantages and can be economically produced from cellulosic biomass. As such, they can play a vital role in sustainably meeting future energy demands. Biofuels have the potential to become a global primary energy source, offering significant reductions in greenhouse gas emissions as well as opportunities to increase economic and social development in rural communities and reduce the problems associated with waste disposal. However, low yields and lack of process technology are some of the aspects that need to be addressed. This book offers an overview of existing biofuels and the technologies to solve the problems associated with their practical implementation. Evaluating the biofuel options and discussing the opportunities and risks in relation to resources, technologies, practices, markets and policy, it provides insights into the development of economically viable bioenergy industries. 410 0$aClean Energy Production Technologies,$x2662-687X 606 $aEnvironmental engineering 606 $aBiotechnology 606 $aBioremediation 606 $aEnvironmental management 606 $aMicrobiology 606 $aBotanical chemistry 606 $aEnvironmental Engineering/Biotechnology 606 $aEnvironmental Management 606 $aMicrobiology 606 $aPlant Biochemistry 615 0$aEnvironmental engineering. 615 0$aBiotechnology. 615 0$aBioremediation. 615 0$aEnvironmental management. 615 0$aMicrobiology. 615 0$aBotanical chemistry. 615 14$aEnvironmental Engineering/Biotechnology. 615 24$aEnvironmental Management. 615 24$aMicrobiology. 615 24$aPlant Biochemistry. 676 $a662.88 702 $aSrivastava$b Neha$4edt$4http://id.loc.gov/vocabulary/relators/edt 702 $aSrivastava$b Manish$4edt$4http://id.loc.gov/vocabulary/relators/edt 702 $aMishra$b P. K$4edt$4http://id.loc.gov/vocabulary/relators/edt 702 $aGupta$b Vijai Kumar$4edt$4http://id.loc.gov/vocabulary/relators/edt 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910383818203321 996 $aBiofuel Production Technologies: Critical Analysis for Sustainability$92022329 997 $aUNINA