Commercial application of LPH-1 heavy oil feed atomizing nozzle LPH-1型重油进料雾化喷嘴的工业应用
Application of CS Type Feed Nozzle in FCC Unit CS喷嘴在催化裂化装置的工业应用
Commercial application of CS-ⅱ type heavy oil FCC feed atomizing nozzle CS-Ⅱ型重油催化裂化进料喷嘴的工业应用
The main points are to represent the utilization ratio of energy as a series of functions of the grain size of feed material and the fineness of discharge al well as the nozzle form. 研究的主要内容是给料粒度与粉碎产物细度和能量效率的关系,以及喷嘴形状与能量效率的关系。
Its structure of outside is the same as the LPC-1 type feed nozzle, therefore it is compatible. 其外型结构与LPC&1型相同,故可兼容。
Development of New Type Feed Nozzle and Its Application in Catalytic Cracking Heavy Oil 重油催化裂化新型进料喷嘴的开发应用
Development and commercial test of a novel target-type FCCU feed nozzle 催化裂化新型靶式进料喷嘴的研制和工业试验
The atomizing mechanism and performance characteristics of a new CCK type feed nozzle and its application in a 400kt/ a resid FCCU are briefly introduced. 简要介绍CCK型催化裂化进料喷嘴的雾化机理、性能特点以及在延炼实业集团公司400kt/a重油催化裂化装置上的工业应用情况。
This paper puts emphasis on the introduction of application and disseminations for the new model of cyclone, high efficiency feed nozzle and cold-wall sliding Valve. 本文重点对新型旋风分离器、新型高效进料喷嘴及电液冷壁滑阀的推广应用作了介绍。
The revamp adopted many new technologies, such as newly designed riser, closed rapid separation system, high efficiency feed atomizing nozzle, coking prevention measures, oxygen enrichment regeneration, and using proprietary catalyst DVR 1, etc. 改造采用重新设计的提升管反应器、高效雾化喷嘴、封闭式旋流快分系统、高效汽提段、系统的防焦技术、富氧再生和DVR1专用催化剂等技术。
CCK type feed nozzle for FCC and its commercial application CCK型催化裂化进料喷嘴及其工业应用
The LPC-2 type nozzle is new feed nozzle for processing heavy oil, especially for residuum of inferior quality. The cause that produces inferior quality ship in inland river and their countermeasure 催化裂化进料喷嘴对重油加工尤为重要。LPC&2型喷嘴是为重油加工,特别是为劣质渣油加工开发的新型进料喷嘴。内河低质量船舶产生的原因及其对策思考
Induced by the high-speed feed jet flow, the solid particles above the feed nozzle tended to flow down, and a reverse flow zone was formed along the riser wall. 受喷嘴区高速射流的影响,喷嘴上方固体颗粒呈向下流动趋势,形成一个诱导回流区域。