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Unleash Potential of a Hydrogen-Based Economy

According to experts, green hydrogen is poised to emerge as a sustainable substitute for natural gas, aligning with global initiatives for achieving net-zero emissions.
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Hydrogen produced from water with renewable electricity referred to as green hydrogen. Green hydrogen eco-friendly energy source generated by using water and renewable electricity.
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The hydrogen economy signifies a shift in industrial production, electricity generation, transportation, and the broader societal response to climate change.

A reduction in the costs of renewable energy, policies from both governments and corporations, establishment of regional hydrogen hubs, and a collective societal commitment to addressing climate issues create a favorable landscape for the swift expansion of the hydrogen economy. As the green hydrogen market gains momentum worldwide, the attraction to starting hydrogen production initiatives grows for many organizations with existing energy production infrastructure.

Yet its journey is marked with complexities. 

According to the Clean Hydrogen Project Development report, lack of supportive regulations, market volatility, and slow permitting, are some of the roadblocks countries around the world are facing.

For producers to achieve a share of the blue and/or green hydrogen markets, they also have to contend with producing hydrogen in restricted spaces, the huge unknowns within the market due to the lack of best practices, and the size and costs that currently accompany production.

To accommodate this growth, producers seek knowledgeable partners to help in the effective application of technology, guide project implementation, and adeptly manage associated risks.

The other key to success for advancing efficiency in the hydrogen economy lie in the adoption of technology and maximizing production impact.

Optimizing Green Hydrogen Production
Hydrogen gauge and nozzle on a background of gas tanks. Green hydrogen production concept
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Optimizing Green Hydrogen Production

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First, the strong foundation

Automated chemical-reaction units are the only similarity between blue and green hydrogen production. These modulated units are scalable, easily integrated, safe and reliable. The units also grant operators some comfort in the knowledge that they must be designed for data to flow between critical touchpoints, all pushed into a centralized operation center. Finally, the data must be contextualized to provide usable insights for operators to address issues like pump failures or energy optimization needs.

The adoption of an open standard for these units also allows a producer to choose solutions that fit their needs. Having to deal with long integration times and maintenance issues will also be avoided. Automation and instrumentation vendors, like Rockwell Automation and Endress+Hauser, have already created and proof tested products meant for interoperability and configurability. These offerings can speed up time to market and lower overall lifecycle costs.
 

Three ways to optimize your blue or green hydrogen plant

  • Information-driven operations: Once security is established, there are steps low carbon hydrogen producers can take to optimize their production. The first is creating a process to freely share and access data using an intelligent automation system. The mix of drives, smart instruments and historical data allow staff to evaluate data and gain insight into how operations are performing and evaluate any issues. This data also allows workers to predict device and operations health.

  • Improved risk management: Another optimization technique is ensuring safe operations. Integrated power and control systems can essentially allow workers to check information from any device, even their smartphones, allowing staff to maintain safe distances from potentially hazardous situations, which complements the use of scalable safety instrumented systems designed to meet their own unique requirements. Connected operations also allow for more powerful cybersecurity measures, like threat detection, to be added to help meet the growing cyber threat from bad actors.

  • Connected workers: To work efficiently, workers must be able to access various types of key information. Remote access can negate the challenge of skills shortages. It can also create the ability to tie the information from multiple production sites to see performance trends. Two examples of this are Augmented reality (AR) and Cloud-based Computerized Maintenance Management Systems™ (CMMS). AR can create safer work environments and prevents training from disrupting production. CMMS can allow workers to focus on more important maintenance demands, wasting less time on administrative tasks.

The future of low-carbon hydrogen production

It is no secret that uncertainty and risks accompany the process of low-carbon hydrogen. Industry standards and best practices are still a work in progress. But using these proven modern and innovative techniques will help to ensure safe hydrogen production while helping to overcome workplace challenges.

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