Development of Brazilian Biodiesel Sector from the Perspective of Stakeholders
Abstract
:1. Introduction
2. National Program of Biodiesel Production and Use (NPBP)
3. Methodology
3.1. Factor Analysis
3.2. Data Collection
- X1: Technical assistance to raw material producers, which includes the level of mechanization and agricultural raw material productivity; and technical assistance to agricultural raw material producers.
- X2: Diversification, purchasing from family farming and supply guarantee, which is included to ensure production and constant supply of biodiesel; diversification of the type of raw material used in the biodiesel production; and acquisition of raw material from family farming.
- X3: Production technologies, which includes development of technological innovations of processes and products; development of technologies that reduce greenhouse gas emission and negative environmental impacts during the biodiesel production process; development of technologies that reduce water waste during the biodiesel production process; development of technologies that reduce the generation of waste during the biodiesel production process; and use of advanced technology in the biodiesel production process.
- X4: Growth strategies, which includes development of storage capacity and resolution of problems related to transportation; establishment of partnerships with raw material suppliers; establishment of partnerships with research institutions; establishment of vertical integration; and industrial marketing promotion.
- X5: Differentiation in the biodiesel production, which includes improvement of production techniques; physicochemical analysis of biodiesel; investing in process improvement; and investing in product development.
- X6: Differentiation in the biodiesel plants, which includes patents on new biodiesel production processes; acquisition of certification for biodiesel; investment in research and development (R & D); and obtaining support from research institutions.
- X7: Incentives for biodiesel production, which includes a minimum biodiesel blend mandate; subsidy for raw material production; subsidy for biodiesel production; and investment in infrastructure.
- X8: General national policies, which includes social policy influence; economic policy influence; and environmental policy influence.
- X9: Specifics policies on biofuels, which includes influence of national policies on biofuels; and influence of international policies on biofuels.
- X10: Labour union and biodiesel associations, which includes labour unions; and associations that represent biodiesel plants.
- X11: Tax and international trade, which includes Mercosur influence; current tax on biodiesel; current biodiesel legislation; customs barriers for the purchase and sale of raw materials and/or biodiesel; and tariff policies influence.
- X12: Biodiesel plant competitiveness, which involves ensuring the quality and productivity of human resources; competitive prices for biodiesel sale; competitive costs of biodiesel production; feedstock quality; and biodiesel quality.
- X13: Support organizations, which includes obtaining support from financial credits institutions; supporting organizations (agricultural cooperatives); consumer acceptance; and obtaining support from universities.
4. Results and Discussion
5. Conclusions and Policy Implications
Acknowledgments
Author Contributions
Conflicts of Interest
References
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Tests | Values | |
---|---|---|
KMO | 0.67 | |
Bartlett’s sphericity | Χ2 = 93,390 | p-value = 0.000 |
Cronbach’s alpha | 0.67 |
Variables | X2 | X3 | X4 | X6 | X7 | X8 | X9 | X10 | X11 | X12 |
---|---|---|---|---|---|---|---|---|---|---|
X2 | 0.618 | −0.014 | −0.112 | 0.051 | −0.114 | 0.031 | −0.009 | −0.085 | 0.030 | −0.045 |
X3 | −0.014 | 0.664 | 0.026 | 0.029 | 0.084 | −0.251 | −0.065 | 0.022 | −0.178 | −0.256 |
X4 | −0.112 | 0.026 | 0.603 | −0.073 | 0.056 | 0.115 | 0.098 | 0.077 | −0.239 | −0.343 |
X6 | 0.051 | 0.029 | −0.073 | 0.716 | 0.020 | −0.096 | −0.089 | −0.152 | 0.047 | −0.327 |
X7 | −0.114 | 0.084 | 0.056 | 0.020 | 0.609 | −0.087 | −0.199 | 0.058 | −0.120 | −0.156 |
X8 | 0.031 | −0.251 | 0.115 | −0.096 | −0.087 | 0.662 | −0.072 | −0.178 | 0.001 | −0.009 |
X9 | −0.009 | −0.065 | 0.098 | −0.089 | −0.199 | −0.072 | 0.736 | −0.054 | −0.059 | −0.083 |
X10 | −0.085 | 0.022 | 0.077 | −0.152 | 0.058 | −0.178 | −0.054 | 0.668 | 0.095 | −0.159 |
X11 | 0.030 | −0.178 | −0.239 | 0.047 | −0.120 | 0.001 | −0.059 | 0.095 | 0.674 | −0.070 |
X12 | −0.045 | −0.256 | −0.343 | −0.327 | −0.156 | −0.009 | −0.083 | −0.159 | −0.070 | 0.674 |
Variables/Factors | F1 | F2 | F3 | F4 | Communalities |
---|---|---|---|---|---|
X4 | 0.793 | 0.134 | −0.123 | −0.220 | 0.711 |
X11 | 0.681 | −0.251 | 0.220 | 0.230 | 0.628 |
X12 | 0.616 | 0.520 | 0.184 | 0.067 | 0.688 |
X10 | −0.150 | 0.763 | 0.062 | 0.025 | 0.609 |
X6 | 0.272 | 0.684 | 0.021 | 0.068 | 0.547 |
X7 | 0.118 | −0.051 | 0.794 | −0.122 | 0.661 |
X9 | −0.006 | 0.161 | 0.667 | 0.186 | 0.506 |
X2 | 0.141 | 0.203 | 0.347 | −0.602 | 0.544 |
X3 | 0.394 | 0.169 | 0.159 | 0.591 | 0.558 |
X8 | −0.108 | 0.375 | 0.300 | 0.573 | 0.570 |
Eigenvalues | 2.415 | 1.388 | 1.141 | 1.078 | - |
Variance explained (%) | 17.695 | 16.391 | 14.124 | 12.007 | - |
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Cardoso, B.F.; Shikida, P.F.A.; Finco, A. Development of Brazilian Biodiesel Sector from the Perspective of Stakeholders. Energies 2017, 10, 399. https://doi.org/10.3390/en10030399
Cardoso BF, Shikida PFA, Finco A. Development of Brazilian Biodiesel Sector from the Perspective of Stakeholders. Energies. 2017; 10(3):399. https://doi.org/10.3390/en10030399
Chicago/Turabian StyleCardoso, Bárbara Françoise, Pery Francisco Assis Shikida, and Adele Finco. 2017. "Development of Brazilian Biodiesel Sector from the Perspective of Stakeholders" Energies 10, no. 3: 399. https://doi.org/10.3390/en10030399
APA StyleCardoso, B. F., Shikida, P. F. A., & Finco, A. (2017). Development of Brazilian Biodiesel Sector from the Perspective of Stakeholders. Energies, 10(3), 399. https://doi.org/10.3390/en10030399