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Figure 3 PETS tanking sizing tool
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Resiliency of fossil-based feedstocks … Catalysis Q&A ... Incorporating new technology and tools for catalyst development … FCC co-processing of biogenic and recyclable feedstocks: Part I … Passivating vanadium in FCC operations … Hybrid catalyst loading reduces fill cost and carbon footprint … Catalyst rejuvenation offers circular solution for hydroprocessing catalysts … Catalyst technology for maximum light olefins and ultra-low emissions … Experimental study on diesel fuel haziness … Troubleshooting low or high regenerator temperatures … Zeopore is making its mark in green applications through zeolite modification. Q1 2024 Issue of PTQ
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A step change in feed nozzle design How Shell’s Max Atomisation Feed Nozzle technology can improve FCC unit margins with minimal capital investment, including audited results from three ... Be future forward (ERTC) Respond To Market Conditions. As market conditions, regulations and technologies change, UOP continues to redefine the future of refining. We are helping ... Catalysts for maximising middle distillates Collaboration in catalyst development and application, from laboratory scale to commercial operation, enabled a refiner to achieve production objectives ... Refining refiners’ spent catalysts Spent catalyst is the raw material for a recycling operation that delivers fresh catalyst and specialist metals
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Figure 4 PETS net positive suction head (NPSH)
of five minutes residence time at maximum flow rate was the tank sizing criteria. The net positive suction head (NPSH) tool was used to determine the NPSH available for the effluent pump (see Figure 4 ). Conclusion Having equipment sizing tools can improve the efficiency and productivity of the project design team. In this case study, the project team was able to locate all the equip - ment needed for the trial in a short period of time. The waste water treatment unit (WWTU) solids separation pilot trial successfully led the project to the next design phase.
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