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Original Articles

Sustainable Measures for Biodiesel Production

, &
Pages 2621-2628 | Received 08 Feb 2011, Accepted 11 Mar 2011, Published online: 11 Nov 2014

REFERENCES

  • Ahmad, M., Khan, M. A., Zafar, M., and Sultana, S. 2010. Environment friendly renewable energy from sesame biodiesel. Energy Sources, Part A: Recov., Utiliz., Environ. Effects 32:189–196.
  • Ahmad, M., Rashid, S., Khan, M. A., Zafar, M., Sultana, S., and Gulzar, S. 2009. Optimization of base catalyzed transesterification of peanut oil biodiesel. African J. Biotechnol. 8:441–446.
  • Bai, Y., Zhou, X., and Smith, D. L. 2003. Crop ecology, management and quality. Enhanced soybean plant growth resulting from coinoculation of Bacillus strains with Bradyrhizobium japonicum. Crop Sci. 43:1774–1781.
  • Bano, A., Khan, N., and Ullah, F. 2009. Nutritive values of Brassica campestris L. oil as affected by growth regulator treatments. J. Chem. Soc. Pakistan 31:819–822.
  • Barnwal, B. K., and Sharma, M. P. 2005. Prospects of biodiesel production from vegetable oils in India. Renew. Sustain. Energy Rev. 9:363–378.
  • Bloemberg, G. V., Wijfijes, A. H. M., Lamers, G. E. M., Stuurman, N., and Lugtenberg, B. J. J. 2000. Simultaneous imaging of Pesudomonas flourescens WCS 3655 populations expressing three different autofluorescent proteins in rizosphere: new perspective for studying microbial communities. Molec. Plant Microbe Interac. 13:1170–1176.
  • Burd, G. I., Dixon, D. G., and Glick, B. R. 2000. Plant growth promoting bacteria that decrease heavy metal toxicity in plants. Can. J. Microbiol. 46:237–245.
  • Canakci, M., and Van Gerpen, J. 2003. A pilot plant to produce biodiesel from high free fatty acid feedstocks. Trans. ASAE 46:945–954.
  • Chakrabarti, M. H., and Ahmad, R. 2008. Transesterification studies on castor oil as a first step towards its use in bio diesel production. Pakistan J. Botany 40:1153–1157.
  • Crabble, E., Nolasco-Hipito, C., Kobayashi, G., Sonomoto, K., and Ishizaki, A. 2001. Biodiesel production from crude palm oil and evaluation of butanol extraction and fuel properties. Process Biochem. 37:65–71.
  • Davies, M., Campbell, M., and Henry, R. 2010. The role of plant biotechnology in bioenergy production. Plant Biotechnol. J. 8:243.
  • Demirbas, A. 2008. Biodiesel: A Realistic Fuel Alternative for Diesel Engines. London: Springer.
  • Divakara, B. N., Upadhyaya, H. D., Wani, S. P., and Gowda, L. C. L. 2010. Biology and genetic improvement of Jatropha curcas L: A review. Appl. Energy 87:732–742.
  • Donaldson, P. A., Anderson, T., Lane, B. G., Davidson, A. L., and Simmonds, D. H. 2001. Soybean plants expressing an active oligomeric oxalate oxidase from the wheat gf-2.8 (germin) gene are resistant to the oxalate-secreting pathogen Sclerotina sclerotiorum. Physiol. Molec. Plant Pathol. 59:297–307.
  • Freedman, B., Butterfield, R. O., and Pryde, E. H. 1986. Transesterification kinetics of soybean oil. J. Am. Oil Chem. Soc. 63:1357–1380.
  • Ghaly, A. E., Dave, D., Brooks, M. S. and Budge, S. 2010. Production of biodiesel by enzymatic transesterification: Review. American J. Biochem. Biotechnol. 6:54–76.
  • Goel, A. K., Laura, R. D. S., Pathak, G., Anuradha, G., and Goel, A. 1999. Use of bio-fertilizers: Potential, constraints and future strategies. Int. J. Trop. Agric. 17:1–18.
  • Hamamci, C., Saydut, A., Tonbul, Y., Kaya, C., and Kafadar, A. B. 2011. Biodiesel production via transesterification from safflower (Carthamus tinctorius L.) seed oil. Energy Sources, Part A: Recov., Utiliz., Environ. Effects 33:512–520.
  • Haye, S., and Hardtke, C. S. 2009. The roundtable on sustainable biofuels: Plant scientist input needed. Trends Plant Sci. 8:409–412.
  • Hill, J., Nelson, E., Tilman, D., and Polasky, S. 2006. Environmental, economic, and energetic costs and benefits of biodiesel and ethanol biofuels. Proc. Natl. Acad. Sci. 103:11206–11210.
  • Kalra, N., Chakraborty, D., Sharma, A., Rai, H. K., Jolly, M., Chander, S., Kumar, P. R., Bhadraray, S., Barman, D., Mittal, R. B., Lal, M., and Sehgal, M. 2008. Effect of increasing temperature on yield of some winter crops in northwest India. Curr. Sci. 94:82–88.
  • Kennedy, I. R., and Tchan, Y. T. 1992. Biological nitrogen fixation in non leguminous field crops: Recent advances. Plant Soil 141:93–118.
  • Khalid, A., Rashad, M. A., and Zahir, Z. A. 2004. Screening plant growth-promoting Rhizobacteria for improving growth and yield of wheat. J. Appl. Microbiol. 96:473–480.
  • Khan, N. A., Ansari, H. R., and Samiullah. 1997. Effect of gibberellic acid spray and basal nitrogen and phosphorus on productivity and fatty acid composition of rapeseed mustard. J. Agron. Crop Sci. 179:29–33.
  • Knothe, G., Krahl, J., and Gerpen, V. J. 2005. The Biodiesel Handbook. Champaign, IL: AOCS Press.
  • Kulkarni, M. G., and Dalai, A. K. 2006. Waste cooking oil an economical source for biodiesel. A review. Indus. Eng. Chem. Res. 45:2901–2913.
  • Lee, D., Chenn, A., and Nair, R. 2008. Genetically engineered crops for biofuel production: Regulatory perspectives. Biotechnol. Genetic Eng. Rev. 25:331–362.
  • Meher, L. C., Vidya Sagar, D., and Naik, S. N. 2006. Technical aspects of biodiesel production by transesterification—A review. Renew. Sustain. Energy Rev. 10:248–268.
  • Nosheen, A., Bano, A., and Ullah, F. 2009. Comparative study for the effect of biofertilizers and chemical fertilizers on Soybean oil content and its potential for biodiesel production. Pak. J. Sci. Ind. Res. 52:264–269.
  • Nosheen, A., Bano, A., and Ullah, F. 2013a. Optimization of biodiesel production from yellow sarson (Brassica campestris L.) oil. Energy Sources, Part A: Recov., Utiliz., Environ. Effects 35:278–281.
  • Nosheen, A., Bano, A., and Ullah, F. 2013b. Role of plant growth promoting rhizobacteria on oil yield and Biodiesel production of canola (Brassica napus L.). Energy Sources, Part A: Recov., Utiliz., Environ. Effects 35:1574–1581.
  • Nosheen, A., Ullah, F., and Bano, A. 2010. Role of PGPR on oil yield and biodiesel production of sesame. 2nd Annual Technical Report. Islamabad, Pakistan: Higher Education Commission.
  • Pan, B., and Xu, Z. 2010. Benzyladenine treatment significantly increases the seed yield of the biofuel plant Jatropha curcas. J. Plant Growth Regul. 30:166–174.
  • Pant, K. S., Khosla, V., Kumar, D., and Gairola, S. 1996. Seed oil content variation in Jatropha curcas Linn. in different altitudinal ranges and site conditions in H.P India. Lyonia 11:31–34.
  • Patil, B. N., Lakkineni, K. C., and Bhargava, S. C. 1996. Seed yield and yield contributing characters as influenced by N supply in rapeseed-mustard. J. Agron. Crop Sci. 177:197–205.
  • Pavlista, A. D., and Baltensperger, D. D. 2007. Phenology of oilseed crops for bio-diesel in the high plains. In: Issues in New Crops and New Uses. Janick, J. and Whipkey, A. (eds.). Alexandria, VA: ASHS Press.
  • Ramos, J., Fernández, C. M., Casas, A., Rodríguez, L., and Pérez, Á. 2009. Influence of fatty acid composition of raw materials on biodiesel properties. Biores. Technol. 100:261–268.
  • Shrivastava, V., and Kant, T. 2010. Micropropagation of Pongamia pinnata (L.). Pierre—A Native Indian biodiesel tree from cotyledonary node. Int. J. Biotechnol. Biochem. 6:555–560.
  • Silva, N. L., Batistella, C. B., Maciel, M. R. W., and Filho, R. M. 2006. Optimization of biodiesel production from castor oil. Appl. Biochem. Biotechnol. 129:129–132.
  • Tayal, D., Srivastava, P. S., and Bansal, K. C. 2004. Transgenic Crops for Abiotic Stress Tolerance: Plant Biotechnology and Molecular Markers. New Delhi, India: Anamaya Publishers, pp. 347–365.
  • Ullah, F., Bano, A., and Nosheen, A. 2010a. Role of plant growth regulators on oil yield and biodiesel production of linseed (Linum usitatissimum L.). J. Chem. Soc. Pakistan 32:668–671.
  • Ullah, F., Nosheen, A., and Bano, A. 2010b. Role of drought stress and plant growth regulators on oil yield and quality of canola pertaining to biodiesel production. 2nd Annual Technical Report. Islamabad: Pakistan: Higher Education Commission.
  • Ullah, F., Nosheen, A., and Bano, A. 2010c. Role of climatic factors on biodiesel production of sesame. Energy Sources, Part A: Recov., Utiliz., Environ. Effects 35:1657–1662.
  • Ullah, F., Nosheen, A., Hussain, I., and Bano, A. 2009. Base catalyzed transesterification of wild apricot kernel oil for biodiesel production. African J. Biotechnol. 8:3309–3313.
  • Vinocur, B., and Altman, A. 2005. Recent advances in engineering plant tolerance to abiotic stress: Achievements and limitations. Curr. Opin. Biotechnol. 16:123–132.
  • Yamaguchi-Shinozaki, K., and Shinozaki, K. 1994. A novel cis-acting element in an Arabidopsis gene is involved in responsiveness to drought, low-temperature, or high-salt stress. Plant Cell 6:251–264.

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