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慧力:生物产业创新路
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《职业时空》 北大核心 2005年第5期60-60,共1页
大连美罗慧力生物国际集团是一家集科研、生产、销售、服务于一体的高科技生物产业,公司下设嘉兴俐乡慧力生物保健品有限公司,总部设在有北方香港之称的海变城市——大连。位于高科技域区的生产,办公面积近4000平方米,固定资产3000... 大连美罗慧力生物国际集团是一家集科研、生产、销售、服务于一体的高科技生物产业,公司下设嘉兴俐乡慧力生物保健品有限公司,总部设在有北方香港之称的海变城市——大连。位于高科技域区的生产,办公面积近4000平方米,固定资产3000多万元,技术力量雄厚,拥有医学、药学,微生物、营销管理等方面的专业技术人才。 展开更多
关键词 大连市 美罗慧力生物国际集团 高科技生物产业 专业技术人才
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抓住行业热点促进行业健康发展
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《中国集体经济》 2004年第9期15-16,共2页
中国发酵工业协会自1999年底换届以来,新一届协会负责人实现了年轻化和专业化,在工作中,我们本着全心全意为企业服务、为行业服务、为政府服务的精神,踏实工作,积极开拓,为行业着想,逐步在行业中树立起了威信,同时也得到了行业的大力支... 中国发酵工业协会自1999年底换届以来,新一届协会负责人实现了年轻化和专业化,在工作中,我们本着全心全意为企业服务、为行业服务、为政府服务的精神,踏实工作,积极开拓,为行业着想,逐步在行业中树立起了威信,同时也得到了行业的大力支持.经过几年的深入工作,认真研究,不断总结,我们逐渐认识了行业发展和行业管理的规律,有针对性地开展了丰富多彩的活动,协助有关政府部门制定了相应的政策,为促进行业的健康发展作出积极的努力,得到行业的认可和领导的好评. 展开更多
关键词 中国 发酵工业协会 行业技术交流 高科技生物产业 柠檬酸行业
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Combustion Irreversibilities: Numerical Simulation and Analysis
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作者 Valter Silva Abel Rouboa 《Journal of Thermal Science》 SCIE EI CAS CSCD 2012年第4期377-383,共7页
An exergy analysis was performed considering the combustion of methane and agro-industrial residues produced in Portugal (forest residues and vines pruning). Regarding that the irreversibilities of a thermodynamic pro... An exergy analysis was performed considering the combustion of methane and agro-industrial residues produced in Portugal (forest residues and vines pruning). Regarding that the irreversibilities of a thermodynamic process are path dependent, the combustion process was considering as resulting from different hypothetical paths each one characterized by four main sub-processes: reactant mixing, fuel oxidation, internal thermal energy exchange (heat transfer), and product mixing. The exergetic efficiency was computed using a zero dimensional model developed by using a Visual Basic home code. It was concluded that the exergy losses were mainly due to the internal thermal energy exchange sub-process. The exergy losses from this sub-process are higher when the reactants are preheated up to the ignition temperature without previous fuel oxidation. On the other hand, the global exergy destruction can be minored increasing the pressure, the reactants temperature and the oxygen content on the oxidant stream. This methodology allows the identification of the phenomena and processes that have larger exergy losses, the understanding of why these losses occur and how the exergy changes with the parameters associated to each system which is crucial to implement the syngas combustion from biomass products as a competitive technology. 展开更多
关键词 EXERGY Combustion paths Combustion sub-processes Exergetic efficiency Visual Basic SYNGAS
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