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A Solution Against Water Pollution, Zero-Defect Manufacturing, Delays in US Fab Projects

A Solution Against Water Pollution, Zero-Defect Manufacturing, Delays in US Fab Projects
Researchers of the University of Missouri’s Department of Chemistry have developed a method that achieves over 98% efficiency in removing nanoplastics from water. (Credit: Univ. Missouri)

Here are three pieces of news curated across the web. The articles featured in this section have been handpicked for their value and relevance.

“News Curated” is a section where we handpick and feature top stories from various sources across the web. We offer our readers a carefully curated selection of high-quality, relevant news from the industrial world.

1/ Groundbreaking Discovery in the Fight Against Water Pollution

Source: Analytica World

Researchers of the University of Missouri’s Department of Chemistry have developed a method that achieves over 98% efficiency in removing nanoplastics from water. This innovative approach uses a combination of magnetic nanoparticles and a biodegradable polymer to attract and capture nanoplastics, making the water safe for consumption and the environment.

The process is not only highly effective but also environmentally friendly, as it avoids the use of harmful chemicals. This breakthrough could revolutionize water purification systems worldwide, providing a sustainable solution to one of the most pressing environmental issues of our time.

Explore the full article: Scientists achieve more than 98% efficiency removing nanoplastics from water

2/ The openZDM Pioneers Zero-Defect Manufacturing

Source: Insight Media

The openZDM platform, funded by the EU’s Horizon Europe program, aims to eliminate defects before they occur. By integrating advanced ICT solutions, AI, and non-destructive testing, openZDM empowers manufacturers to produce high-quality products efficiently and sustainably. 

Traditional quality control methods often address defects after they happen, leading to waste and inefficiencies. openZDM flips this paradigm by integrating advanced technologies like digital twins, machine learning, and intelligent sensors to predict and prevent defects in real time. This shift from reactive to proactive quality control is crucial for modern manufacturing, helping companies meet high production standards while minimizing waste and energy consumption.

Explore the full article: openZDM: The open platform for zero-defect manufacturing

3/ Delays in U.S. Semiconductor Fab Projects by Major Companies Like TSMC and Intel

Source: GlobalSpec

Despite significant funding from the U.S. government through the Inflation Reduction Act and the CHIPS and Science Act, semiconductor fab projects face setbacks due to various challenges.

TSMC has delayed production at its Arizona fabs, initially planned for this year, with the first fab yet to produce semiconductors and the second fab now scheduled for 2026. The third fab’s timeline remains uncertain, potentially starting production by the late 2030s. 

Intel is also experiencing delays, particularly with its Ohio fab, now expected to begin manufacturing in 2026 instead of 2025, with operations possibly starting as late as 2028. 

Samsung, which had already delayed its fab project in 2023, is also mentioned as part of the broader trend of delays affecting the semiconductor industry

Explore the full article: Report: TSMC, Intel delay US fab projects

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