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Technology

Novel design for east-west solar parks reduces soil deterioration

Researchers from the TNO in the Netherlands have proposed two novel east-west PV plant designs that are claimed to increase soil quality underneath the solar panels. Both approaches are said to provide a 77% ground coverage ratio, which compares to a 90% ratio in conventional east-west oriented projects.

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Solar challenging nuclear as potential climate change solution

Research suggests that we can power 80% of the United States with wind, solar, and 12 hours of energy storage, but the replacement of nuclear power plants hasn’t been financially viable. Is that about to change?

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Chinese PV Industry Brief: Xinte raises funds for 100,000 MT polysilicon factory, Bbetter plans new EVA solar film factory

Xinte’s parent company – TBEA – has agreed to buy new shares issued by the company for RMB2.3 billion and these funds will be used to implement its 100,000 MT expansion plan. Furthermore, EVA solar film manufacturer Bbetter Century and 8 GW factory in the Shaanxi Province.

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The Hydrogen Stream: Gazprom makes a move, Italian consortium develops solution for port areas, and more

Gazprom said it will participate in projects to develop technologies for the production, transportation, storage, and use of hydrogen, as well as the utilization of carbon dioxide. Furthermore, Italy’s Fincantieri and Enel are developing an integrated solution for the production, supply, management, and use of green hydrogen for port areas and long-range maritime transport.

Ever heard of photovoltachromics, the new tech for solar windows?

Researchers in China have developed a smart solar window tech based on a photovoltachromic device that is able to achieve a high pristine transmittance and to be self-adaptable to control indoor brightness and temperature. The device was assembled via a full solution process in an architecture incorporating glass, a fluorine-doped tin oxide (FTO) layer, a perovskite-based PV cell, an electrochromic gel, another FTO layer, and glass.

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Zinc-iron redox flow battery with zero dendrite growth

Scientists in India fabricated a redox flow battery based on zinc and iron that showed strong storage characteristics and no signs of degradation over 30 charge-discharge cycles. The battery also showed no signs of dendrite formation, overcoming one of the key hurdles for redox-flow batteries based on these low-cost, abundant materials.

Sandia researchers develop new grid-scale energy storage battery

The battery operates at 230 degrees Fahrenheit, opening what researchers said could be “a whole cascading cost savings” including everything from less expensive materials to less insulation.

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Four-terminal heterojunction perovskite tandem solar cell with 30.09% efficiency

Developed by a Vietnamese-Korean research group, the complex PV device was built with a bottom bifacial crystalline silicon perovskite-filtered heterojunction sub-cell that is able to absorb all solar spectra in the short-wavelength range.

Cutting Europe‘s energy costs through interconnection

A new study from Stanford University professor Mark Jacobson models energy grids powered by 100% wind, water and sunlight across Western Europe. The study finds that in such a scenario, increased interconnection between countries would lead to lower energy costs and better grid stability, as well as a hedge against sudden loss of supply due to extreme weather or other events.

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Crystal arrangement results in 1,000x more power from ferroelectric solar cells

German researchers developed a lattice arrangement of three different layers of ferroelectric crystals that created a powerful photovoltaic effect.

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