Environmental sustainability challenges of China's edible vegetable oil industry: From farm to factory

2021 ◽  
Vol 170 ◽  
pp. 105606
Author(s):  
Yueyang Bai ◽  
Yijie Zhai ◽  
Changxing Ji ◽  
Tianzuo Zhang ◽  
Wei Chen ◽  
...  
Author(s):  
Marc J. Stern

Social science theory for environmental sustainability: A practical guide makes social science theory accessible and usable to anyone interested in working toward environmental sustainability at any scale. Environmental problems are, first and foremost, people problems. Without better understandings of the people involved, solutions are often hard to come by. This book answers calls for demonstrating the value of theories from the social sciences for solving these types of problems and provides strategies to facilitate their use. It contains concise summaries of over thirty social science theories and demonstrates how to use them in diverse contexts associated with environmental conflict, conservation, natural resource management, and other environmental sustainability challenges. The practical applications of the theories include persuasive communication, conflict resolution, collaboration, negotiation, enhancing organizational effectiveness, working across cultures, generating collective impact, and building more resilient governance of social-ecological systems. Examples throughout the book and detailed vignettes illustrate how to combine multiple social science theories to develop effective strategies for environmental problem solving. The final chapter draws out key principles for enhancing these efforts. The book will serve as a key reference for environmental professionals, business people, students, scientists, public officials, government employees, aid workers, or any concerned citizen who wants to be better equipped to navigate the social complexities of environmental challenges and make a meaningful impact on any environmental issue.


1922 ◽  
Vol 14 (9) ◽  
pp. 809-809 ◽  
Author(s):  
DAVID. WESSON
Keyword(s):  

2021 ◽  
Vol 78 (5) ◽  
Author(s):  
Renata Galhardo Borguini ◽  
Sidney Pacheco ◽  
Davy William Hidalgo Chávez ◽  
Giovana Almeida Couto ◽  
Allan Eduardo Wilhelm ◽  
...  

2021 ◽  
Vol 302 ◽  
pp. 01009
Author(s):  
Chanatip Dejkajorn ◽  
Panawan Suttiarporn ◽  
Hussanai Sukkathanyawat ◽  
Kittisak Wichianwat ◽  
Saichon Sriphan ◽  
...  

Spent bleaching earth (SBE) which is generated from bleaching process is a valuable industrial waste of edible vegetable oil production because of residual edible vegetable oil absorbed. The residual oil in spent bleaching earth can be recovered and reused for application in the industries such as the production of biodiesel and lubricant. Currently, microwave-assisted extraction (MAE) technique is widely used because this method has a shorter extraction time and less solvent consumption when compared with traditional methods. In this study, MAE combined with solvent reflux was optimized using solvent screening experiments and response surface methodology (RSM) to obtain the highest yield of MAE extraction of residual soybean oil from spent bleaching earth. The extraction yield of residual soybean oil obtained from selected solvent were hexane-ethanol mixture (2:1 v/v, 10.19%) > hexane-ethanol mixture (1:1 v/v, 10.00%) >hexane-ethanol mixture (1:2 v/v, 9.98%) > hexane-ethanol mixture (1:3 v/v, 9.83%) > hexane-ethanol mixture (3:1 v/v, 8.59%) > hexane (8.17%) > acetone (7.73%). The regression coefficient (R-squared = 0.9852) expresses the accuracy of the regression and indicates the relationship between experimental data and predicted result, with high regression coefficient close to 1, which is remarkably desired. The experiment conditions for optimal MAE extraction of residual soybean oil from SBE were hexane-ethanol mixture (2:1 v/v), liquid to solid ratio 15.56:1 mL/g, extraction time 12.22 min, and microwave power 350 W. Under such conditions, the highest predicted value of the extraction yield of residual soybean oil was 10.43%.


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