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| 1 | Comprehensive utilization of corn starch processing by-products:A review显示文摘Corn is a high starchy cereal crop with the highest production and provides over 85%of the starch produced worldwide.Various by-products,differentiated by technological process features such as steep liquor,corn germ,corn bran,gluten,are created largely during corn starch processing.They are inexpensive,nutrient-rich,and vary widely in chemical composition such as proteins,oils,carbohydrates,and minerals.In an increasingly resource-constrained modern world,the utilization approach of these by-products for non-starch industrial processing is attractive widely considering both nutritive value and economic aspects.In fact,at present,applications of these by-products can often be found in feed,fermentation,nutrient extraction and other industries.For example,protein-rich corn gluten can be used as a good animal feed,and corn germ can be used as a raw material for the high-quality edible oil industry.Undoubtedly,increasing utilization means that these by-products will no longer be treated as waste but will be transformed into high value-added products.In this work,the separation process and chemical composition of several main by-products of the corn starch industry is briefly described,and the application in many industrial fields of these by-products over the last ten years are discussed in particular.This review attempts to summarize all aspects of the application and research of these by-products.For the by-products of the corn starch industry,the most promising way is to be utilized in high value and used to produce high value-added products.According to the characteristics of their chemical composition,they have a better application prospect and research significance in the industries directly related to human beings,such as medicine,green food and health care products.In fact,in recent years,some researchers have recognized this and carried out the research.It is clear fromthese studies that the main issues to be faced nowand in the future are how to produce efficiently while maintaining the quality of the product and using it effectively.The retrospective discussions also provide some ideas for other grain and oilseed crops to be fully utilized. | Runyang Zhang Sen Ma Li Li Minghui Zhang Shuangqi Tian Dongying Wang Kunlun Liu Huamin Liu Wenxue Zhu Xuede Wang | 2021 | Grain & Oil Science and Technology2021,4,3: | 3 |
| 2 | Radio frequency identification- enabled real- time manufactur- ing execution system a case study in an automotive part manufacturer显示文摘 | Qingyun Dai Runyang Zhong George Q | 2012 | International Journal of Com- puter Integrated Manufacturing2012,25,: | 1 |
| 3 | Syn- thesis and characterization of nanosilica/polyacrylate composite latex显示文摘 | WANG YAQIANG LI YUPING ZHANG RUNYANG | 2006 | Polymer Composites2006,27,3: | 1 |
| 4 | One-step solution synthesis of monodispersed ZnO nanowhiskers at low-temperature显示文摘 | Weiwei He Yuping Li Zhiqiao Chen Yaqiang Wang Runyang Zhang | 2006 | Materials Letters2006,,17: | 1 |
| 5 | Synthesis and characterization of nanosilica/polyacrylate composite latex 显示文摘 | Wang Yaqiang Li Yuping Zhang Runyang | 2006 | Polymer Composites2006,27,3: | 1 |
| 6 | Potential wells for classical acoustic waves显示文摘The acceleration theorem of Bloch waves is utilized to construct random potential wells for classical acoustic waves in systems composed of alternating‘cavities’and‘couplers’.One prominent advantage of this method is these‘cavities’and‘couplers’are all monolayer structures.It allows forming more compact classical potential wells,which leads to the miniaturization of acoustic devices.We systematically investigate properties of harmonic,tangent,hyperbolic function,and square classical potential wells in quasi-periodic superlattices.Results show these classical potential wells are analogues of quantum potential wells.Thus some technologies and concepts in quantum potential well fields may be generalized to classical acoustic wave fields.In addition,some abnormal cases regarding forming classical potential wells are also found. | CHEN Shi LIN ShuYu MO RunYang FU ZhiQiang | 2014 | Science China(Physics,Mechanics & Astronomy)2014,57,1: | 0 |
| 7 | Identification and Molecular Characterization of the Alkaloid Biosynthesis Gene Family in Dendrobium catenatum显示文摘As one of the main active components of Dendrobium catenatum, alkaloids have high medicinal value. The physicochemicalproperties, conserved domains and motifs, phylogenetic analysis, and cis-acting elements of the genefamily members in the alkaloid biosynthesis pathway of D. catenatum were analyzed by bioinformatics, and theexpression of the genes in different years and tissues was analyzed by qRT-PCR. There are 16 gene families,including 25 genes, in the D. catenatum alkaloid biosynthesis pathway. The analysis of conserved domains andmotifs showed that the types, quantities, and orders of domains and motifs were similar among members ofthe same family, but there were significant differences among families. Phylogenetic analysis indicated that thegene family members showed some evolutionary conservation. Cis-acting element analysis revealed that therewere a large number of light-responsive elements and MYB (v-myb avian myeloblastosis viral oncogene homolog)-related elements in these genes. qRT-PCR showed that expressions of gene family members involved in alkaloidsynthesis were different in different years and tissues of D. catenatum. This study provides a theoretical basisfor further exploration of the regulatory mechanisms of these genes in the alkaloid biosynthesis of D. catenatum. | Liping Yang Xin Wan Runyang Zhou Yingdan Yuan | 2024 | Phyton-International Journal of Experimental Botany2024,93,1: | 0 |