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https://www.energy.gov/sites/prod/files/2014/03/f11/delivery_infrastructure_analysis.pdf
Hydrogen Delivery Infrastructure Options Analysis ii TABLE OF CONTENTS . SECTION 1 EXECUTIVE SUMMARY ..... 1-1. 1.1 H. OW THE RESEARCH ADDS TO THE UNDERSTANDING OF THE AREA INVESTIGATED.1-1 1.2 . TECHNICAL EFFECTIVENESS AND ECONOMIC FEASIBILITY OF THE METHODS OR
https://www.hydrogen.energy.gov/pdfs/progress07/iii_a_1_chen.pdf
comparative analysis of various infrastructure options for hydrogen delivery and distribution to refueling stations and stationary power generation facilities from large (>50,000 kg/day) and small (1,500-10,000 kg/day) production facilities. Based on the results of the analysis, the team will recommend to DOE the transition and long-
https://www.hydrogen.energy.gov/pdfs/review07/pd_12_kelly.pdf
Delivery Options. 1: Dedicated pipelines for hydrogen gas delivery. 2: Convert existing natural gas and oil pipelines to hydrogen gas delivery. 3: Blend hydrogen with natural gas for pipeline transmission; separate at city gate. 4: Truck delivery of hydrogen gas. 5: Truck transport of hydrogen liquid. 6: Novel hydrogen carriers. 7: Mixed mode pathways
https://www.energy.gov/eere/fuelcells/downloads/final-report-hydrogen-delivery-infrastructure-options-analysis
Home » Final Report - Hydrogen Delivery Infrastructure Options Analysis This report, by the Nexant team, documents an in-depth analysis of seven hydrogen delivery options to identify the most cost-effective hydrogen infrastructure for the transition and long term.
https://www.hydrogen.energy.gov/pdfs/progress06/iii_c_2_chen.pdf
include new options. Recommend hydrogen delivery strategy to DOE. in terms of a pathway to build a cost effective and energy efficient infrastructure for both the transition and long-term hydrogen deliveries. Assist DOE to plan required R&D efforts to achieve. the performance and cost goals for hydrogen delivery.
https://www.hydrogen.energy.gov/pdfs/progress08/iii_1_chen.pdf
hydrogen delivery. Option 2: Use of existing natural gas or oil pipelines for gaseous hydrogen delivery. Option 3: Use of existing natural gas pipelines by blending in gaseous hydrogen with the separation of hydrogen from natural gas at the point of use. Option 4: Truck or rail delivery of gaseous hydrogen.
https://www.energy.gov/eere/fuelcells/downloads/h2a-hydrogen-delivery-infrastructure-analysis-models-and-conventional
An in-depth comparative analysis of promising infrastructure options for hydrogen delivery and distribution to refueling stations from central, semi-central, and distributed production facilities. H2A Hydrogen Delivery Infrastructure Analysis Models and Conventional Pathway Options Analysis Results - Interim Report.
https://www.energy.gov/sites/prod/files/2014/03/f9/nexant_h2a.pdf
HDSAM then calculates the following: infrastructure system capacities; short term storage capacities (for pipeline delivery pathways); long term storage capacities; delivery system capital cost; delivery system operating costs; levelized cost of hydrogen dispensed, energy efficiencies and …
https://www.hydrogen.energy.gov/h2a_delivery.html
DOE H2A Delivery Analysis. Hydrogen delivery is an essential component of any future hydrogen energy infrastructure. Hydrogen must be transported from the point of production to the point of use and handled within refueling stations or stationary power facilities.
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