氨和甲醇共同生产的策略
The ability to produce both ammonia and methanol in the same plant allows for synergies in process design as well as spreading market risk for a plant development.
文章氨和甲醇共同生产的策略TopSOE的集成甲醇和氨过程(IMAP™)为您提供了您需要提升并留在那里所需的灵活性。
Imagine a plant that could deliver what the market wants most, whenever the market wants it. No more being locked into a single product, with its ups and downs. No more missing out on opportunities to meet needs outside your main product. And no more having to build two plants to make more than just ammonia or just methanol.
Equally suitable for revamp and grassroots projects and no matter whether you operate a dedicated ammonia plant, methanol plant or fertilizer complex, our co-production plant designs give you unprecedented agility, protection from market fluctuations and profit-making potential.
Topsoe的IMAP™(甲醇和氨生产)技术和Topsoe最新的创新合成枢纽解决方案,适用于大型设施,cost effective同步Plus™, enables the facility to produce multiple products without the prohibitive cost of installing and operating a second plant. Both technology concepts take advantage of the catalysts and technology used making single product facilities
IMAP™技术涵盖氨和甲醇的组合能力,高达3.200 MTPD和同步Plus™高达10.000 mtpd。这两个概念还包括将氨转化为尿素的可能性。
Topsoe合作设施提供两个独立植物的许多优势,包括:
选择产品混合和相应的IMAP™解决方案,为您的植物提供最大的意义。
我们的IMAP™技术使任何设施能够生产多种产品,而无需经常禁止安装和操作第二植物的成本。manbet手机客户端登入包括三个单独的过程设计 -IMAP氨+™,IMAP Methanol+™, 和IMAP UREA +™– our IMAP™ portfolio can add significantly to your bottom line by enabling you to meet multiple and changing market needs as they arise.
IMAP Ammonia+™是一种氨植物,具有有效的加入甲醇部分。该概念可以设计成高达100%的氨和高达35%的甲醇或在该范围内的任何组合,同时观察到总产量为100%。它可以用于草根设施或作为现有氨植物的改造。
IMAP Methanol+™是一种非常高效的共同生产设计,生产65-75%甲醇和25-35%氨。实际产品分裂由饲料气体组成和客户需要决定。
Multiple products offer flexibility toward price fluctuations.
作为植物所有者,您将希望从一开始就确定您想要的灵活性,以确保您的投资成本与您的需求保持一致。除了我们的三个基本IMAP™工艺设计外,我们还可以定制IMAP™解决方案,以满足您的业务和技术需求的具体细节。如果您不确定哪种IMAP™工艺设计将最适合您的工厂,我们很乐意开展您需要做出正确的决定所需的可行性研究。同步Plus™是一个合成气集线概念,Syncor™用作下游合成单元的高效全自动公共合成气发生器,例如氨和甲醇合成,可用于单个Syncor™的任何尺寸高达10.000 MTPD。该概念允许全面转化为尿素。
除甲醇和氨生产外同步Plus™can also be used for a cost-effective production of Fisher Tropsch synthesis, carbon monoxide or hydrogen.
The ability to produce both ammonia and methanol in the same plant allows for synergies in process design as well as spreading market risk for a plant development.
文章氨和甲醇共同生产的策略