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This report presents a techno-economic analysis about 1-Butene production from raffinate-2 in the United States. In this study, a molecular sieve adsorption process similar to the UOP Sorbutene technology is used to extract 1-butene from the raffinate stream.

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In this report, the economic analysis concerns a plant located in the United States, producing 1-Butene using a conventional industrial approach for extractive distillation of raffinate-2, which also generates raffinate-3 as by-product.

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In the process reviewed in this report, raffinate-2 is sent to a fractionation step and further subjected to an isomerization step to produce 1-Butene. The economic analysis is based on a plant located in the United States.

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This feasibility study concers 1-Butene production from raffinate-2. In this study, raffinate-2 is first subjected to a hydrogenation step before fractionation. Raffinate-3 is generated as by-product. The economic analysis is also based on a plant located in the United States.

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This study approaches 1-Butene production from raffinate-2 in the United States using a typical superfractionation process. Raffinate-3 is also generated as by-product in this plant.

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This study presents the costs associated with the construction of an industrial plant producing 1-Butene from ethylene in the United States. This study analyzes a process similar to the Axens/SABIC AlphaButol technology. In the process under analysis, ethylene is dimerized into butenes with high selectivity for 1-Butene. Gasoline (C6+ stream) is generated as by-product.

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This report presents the economics of Butenes production from ethylene using a dimerization process similar to Lummus process. In the process under analysis, gasoline and fuel oil are generated as by-products. The economic analysis assumes a plant constructed in the United States.

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This report shows the economics of Butenes production from propylene via a metathesis process. In the process examined, propylene is converted to butenes and ethylene is generated as by-product. The economic assessment assumes a plant located in the United States.

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