石油炼制与化工 ›› 2026, Vol. 57 ›› Issue (10): 91-97.

• 加工工艺 • 上一篇    下一篇

Access Western Blend 原油加工探索与实践

刘立志,高云停,王治龙,刘保花,尹光龙   

  1. 浙江石油化工有限公司
  • 收稿日期:2026-04-02 修回日期:2026-07-02 出版日期:2026-10-12 发布日期:2026-09-20
  • 通讯作者: 刘立志 E-mail:2696385649@qq.com

EXPLORATION AND PRACTICE OF Access Western Blend CRUDE OIL PROCESSING

  • Received:2026-04-02 Revised:2026-07-02 Online:2026-10-12 Published:2026-09-20

摘要: 加拿大跨山输油管道扩建项目(TMX)投运后,国内某石化公司采购的首船Access Western Blend原油(简称AWB原油)于2024年8月交付其位于沿海的炼油厂。基于常减压蒸馏装置加工AWB原油的工业实践,探讨其对后续二次加工装置的适用性并分析经济效益。结果表明:常减压蒸馏装置可稳定掺炼30%(w)比例的AWB原油,此时轻油收率下降2.84百分点、总拔出率下降3.92百分点;混合原油经常减压蒸馏后,硫、氮集中于减压渣油,酸值集中于减压蜡油,需针对性防腐;固定床渣油加氢氮负荷上升,催化剂运行温度升高;延迟焦化生焦率上升,产品结构调整;浆态床渣油加氢原料硫、氮、金属、沥青质及黏度显著升高,反应器平均轴向温升达6.4 ℃,化学氢耗(w)增至3.87%。AWB原油增效显著,效益比基准原油高317元/t。本次实践验证了AWB原油在国内装置的加工适应性,为原料劣质化背景下的结构调整提供了支撑。

关键词: AWB原油, 常减压蒸馏, 固定床渣油加氢, 延迟焦化, 浆态床渣油加氢

Abstract: Following the commissioning of the Trans Mountain Expansion (TMX) in Canada, the first cargo of Access Western Blend (AWB) crude oil was delivered in August 2024 to a coastal refinery of a petrochemical company in China. Based on the industrial practice of processing AWB crude oil in the atmospheric and vacuum distillation unit, this study investigates its adaptability to the downstream secondary processing units and analyzes the economic benefits. The results show that the atmospheric and vacuum distillation unit can stably process AWB crude oil at a blending ratio of 30%(w), with light oil yield decreasing by 2.84 percentage points and total distillate yield decreasing by 3.92 percentage points. Sulfur and nitrogen are concentrated in the vacuum residue, while acid value is concentrated in the wax distillate, requiring targeted anti-corrosion measures. The nitrogen load increases in the fixed-bed residue hydrotreating unit, leading to a rise in catalyst operating temperature. The coking rate increases in the delayed coking unit, necessitating product slate adjustments. In the slurry-bed residue hydrocracking unit, feedstock sulfur, nitrogen, metals, asphaltenes, and viscosity increase significantly, with the reactor axial temperature rise reaching 6.4 ℃ and the chemical hydrogen consumption increasing to 3.87%. AWB crude oil delivers significant economic benefits, with a per-ton margin 317 Yuan higher than that of the baseline crude. This practice validates the processability of AWB crude oil in domestic refining units and provides data support for crude slate optimization amid the trend toward heavier, poorer-quality feedstocks.

Key words: AWB crude oil, atmospheric and vacuum distillation, fixed-bed residue hydrotreating, delayed coking, slurry-bed residue hydrogenation