Sc dew org12/29/2023 ![]() After two years, Gloninger moved back to Massachusetts to be closer to his family and took a job focused on climate solutions. GLONINGER: You know, you never know what hill somebody is willing to die on. His bosses provided security to trail him to and from work, but Gloninger says he still felt unsafe. In one, the sender asked for his address and said, we conservative Iowans would like to give you an Iowan welcome you will never forget. REMBERT: In summer 2022, Gloninger started receiving a steady flow of harassing emails. GLONINGER: I just didn't expect the magnitude and how quickly it went off the rails. REMBERT: He says, that wasn't surprising. GLONINGER: It was, you know, I don't need to hear your liberal conspiracy theories on our air. REMBERT: In Iowa, it got some viewers grumbling. He was moving from Boston to connect the dots between daily weather and climate change - something he'd honed over more than 15 years, including covering flooding in New Hampshire.ĬHRIS GLONINGER: What's causing it? It's a combination of rising sea level and astronomically high tide. Here is Harvest Public Media's Elizabeth Rembert.ĮLIZABETH REMBERT, BYLINE: Back in 2021, Chris Gloninger was excited to start his new job as chief meteorologist at a TV station in Iowa. Climatologists and meteorologists across the Midwest and Great Plains say they're facing stress, burnout and sometimes even death threats. Read more about how to correctly acknowledge RSC content.Talking about climate change can be a tough job, especially where audiences may be more skeptical. Permission is not required) please go to the Copyright If you want to reproduce the wholeĪrticle in a third-party commercial publication (excluding your thesis/dissertation for which If you are the author of this article, you do not need to request permission to reproduce figuresĪnd diagrams provided correct acknowledgement is given. Provided correct acknowledgement is given. If you are an author contributing to an RSC publication, you do not need to request permission Please go to the Copyright Clearance Center request page. To request permission to reproduce material from this article in a commercial publication, Provided that the correct acknowledgement is given and it is not used for commercial purposes. This article in other publications, without requesting further permission from the RSC, Liu,Ĭreative Commons Attribution-NonCommercial 3.0 Unported Licence. This work provides new understanding about the electrode's interfacial chemistry in different concentrated CH 3COONH 4 electrolytes, establishes a correlation between the electrolyte concentration and the electrode's performances, and demonstrates the superiority of the hybrid ammonium-ion battery design.Ī salt-concentrated electrolyte for aqueous ammonium-ion hybrid batteries Finally, an ammonium-ion hybrid battery is designed, which provides a high average discharge voltage of 1.7 V and good energy density of 368 W h kg (cathode) −1, outperforming most of the state-of-the-art aqueous batteries. Besides, a new partial de-solvation model is also proposed, demonstrating an energy favorable de-solvation process. Experimental and theoretical simulation results indicate that the acetate anion will participate in the construction of the solvated NH 4 + in a highly concentrated electrolyte, facilitating the adsorption of the solvated NH 4 + cluster on the electrode surface. Herein, we aim to understand the impact of CH 3COONH 4 electrolyte concentration on the NH 4 + storage performance of a bimetallic hydroxide material. Yet, few studies focus on the complex electrode–electrolyte interface behaviors in highly concentrated electrolytes, which affect the electrochemical performance of AAIBs significantly. One possible way to improve the performance of AAIBs is increasing the salt concentration in the electrolyte. The development of aqueous ammonium-ion batteries (AAIBs) is currently attracting great attention because of the interesting electrochemical features induced by the charge carrier NH 4 +.
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