Integrated processing of soybean in a circular bioeconomy

2022 ◽  
pp. 189-216
Author(s):  
Susan Grace Karp ◽  
Luciana Porto de Souza Vandenberghe ◽  
Maria Giovana Binder Pagnoncelli ◽  
Zulma Sarmiento Vásquez ◽  
Walter José Martínez-Burgos ◽  
...  
2003 ◽  
Vol 16 (3) ◽  
pp. 457-467 ◽  
Author(s):  
Emiliana R Simon-Thomas ◽  
Kim Brodsky ◽  
Cammy Willing ◽  
Rashmi Sinha ◽  
Robert T Knight

Author(s):  
Freek J. Van Leijen ◽  
Hans Van der Marel ◽  
Ramon F. Hanssen

Author(s):  
Chih-Hung Yeh ◽  

This paper explores and brings forth a persistent resilient self-motivated or self-growth-driven rural poverty alleviation model based on the commercializing-based rural poverty alleviation (CBRPA) model. The CBRPA model encompasses systems or mechanisms of integrated contract farming, regional integrated processing, and agricultural association. Although China has made brilliant achievements in rural poverty alleviation since opening-up in 1978, it still lacks a self-growth-driven rural poverty alleviation system or mechanism. Thus, this paper discusses the rural poverty alleviation achievements and policies of China. It explores various solutions, formulates proper structure, and proposes a CBRPA model. Implementation of the CBRPA model requires the establishment of the agricultural association, integrated contract farming companies (ICFCs), and regional integrated processing companies (RIPCs). The paper also discussed the importance and contribution of rural poverty alleviation to economic growth as well as China’s major economic strategy of double cycle growth. As the CBRPA Model generates a self-growth-driven rural poverty alleviation pattern that is implemented all over the country, it makes an important strategy for internal cycle growth to mutually facilitate external cycle growth.


2021 ◽  
Vol 13 (2) ◽  
pp. 170-178
Author(s):  
Elena OZHOGINA ◽  
◽  
Olga KOTOVA ◽  

The development of mineral resources of solid mineral resources goes mainly together with problems because of natural factors, which determines current position of modern technological mineralogy. We paid particular attention to problems of mineralogical study of refractory ores of natural and technogenic genesis, associated with technical, technological and economic factors. We showed that many provisions of “Strategy for the development of Russian industry for the processing, utilization and disposal of industrial and consumer wastes for the period up to 2030” are related to the field of technological mineralogy. Intensive development and improvement of physical methods of mineralogical analysis resulted in need for their metrological support. Creation of a strict metrological basis for quality control of mineralogical works ensures the reliability of results of performed researches. The formation of new methods and techniques, both research tools and technologies for studying the composition, structure and properties of solid minerals, contribute to understanding interrelationships of mineral phases and resulting spatial and temporal patterns of coexistence of minerals in rocks, ores and other natural and technogenic formations. We considered achievements, problems and prospects for the development of technological mineralogy, an algorithm for the application of its methods and approaches in the management of complex processing of mineral raw. The main emphasis is placed on the development of scientific and methodological prerequisites for solving problem of rational development of mineral raw, the maximum possible extraction and integrated use of all minerals (both main and accompanying), expansion and strengthening of the mineral resource base in the light of the global challenges of the economic and environmental doctrines of modern civilization. The studies of complex mineral systems increasingly use information technologies “big data”. For the best solution of complex tasks of geological and technological mapping and mineragenic research, methods of remote sensing using the Landsat program are becoming popular. We emphasized importance of interactive forms and methods of teaching mineralogical research for specialists from organizations of different departmental affiliation.


2011 ◽  
Vol 11 (4) ◽  
pp. 429-435 ◽  
Author(s):  
Sanja Martens ◽  
Sven-Oliver Borchert ◽  
Bart W. Faber ◽  
Gesine Cornelissen ◽  
Reiner Luttmann

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