Scientists create framework to guide development and assessment of urban climate action plans

With the world projected to be highly urbanized by 2050, cities are encouraged to take urgent climate actions to mitigate and adapt to the threats of climate change. As climate change intensifies and urbanization increases rapidly, local governments are expected now more than ever to lead climate action planning. However, studies show the limitations of the existing climate action plans (CAPs). So scientists from Hiroshima University have created an Urban Climate Action Planning (UCAP) framework to guide the development of urban CAPs and support the assessment of the level of suitability of these plans.

Their work is published as a critical review in the journal Renewable and Sustainable Energy Reviews on October 22, 2023.

More than half of the world’s population presently resides in urban areas, and this number continues to rise. At the same time, urban areas are the most vulnerable to a changing climate and its associated challenges, including heatwaves, floods, storm surges, and other natural hazards.

Cities are responsible for over 70 percent of global greenhouse gas emissions and consume more than two-thirds of the world’s energy. Scientists know that it is necessary to move beyond the “business as usual” approach to achieving sustainable urban development. The importance of urban CAPs in reducing greenhouse gas emissions and adapting to the impacts of climate change is already well documented. Recent research has highlighted the need for urgent urban climate actions to drastically reduce greenhouse gas emissions and develop systems for climate adaptation.

The Hiroshima University scientists noted the pressing need for a more scholarly criticism of the existing CAPs and their suitability in guiding climate adaptation and mitigation efforts. “Here, we propose the UCAP framework to guide the development of suitable CAPs that are comprehensive and consistent with globally accepted standards and benchmarks. Their study further pilot-tested the UCAP framework with climate plans from 257 cities worldwide,” said Prince Dacosta Aboagye, a doctoral student from Ghana at Hiroshima University.

The framework is intended to guide the development of suitable CAPs. In practice, their goal is for the framework to serve as a tool for developing city-specific CAPs that are consistent with acceptable climate action planning standards and benchmarks. In their UCAP framework, the scientists used approaches in relevant existing climate action planning tools. They also included emerging concepts from academic studies and climate planning reports to enhance the comprehensiveness of the framework.

Their proposed UCAP framework includes 43 globally acknowledged criteria across three stages of climate planning. The suitability analysis shows that more than half of the existing urban CAPs have a medium level of suitability, with almost 40 percent having a weak level of suitability. “We discovered that urban CAPs adopted or published recently (since 2018) are more likely to be suitable than those adopted or published earlier (2015 to 2017). Remarkably, urban CAPs from the Global South are more suitable than those from the Global North, probably due to the influx of consultants and experts in supporting CAP development in Global South cities,” said Ayyoob Sharifi, a professor at Hiroshima University.

The authors hope to see more city governments adopting the UCAP framework to develop suitable climate plans to guide urban climate adaptation and mitigation efforts. This will contribute to reducing the climate risk of urban residents and play an integral role in achieving global climate goals. “In the future, we hope to explore the impacts of suitable CAPs on urban climate mitigation and adaptation efforts. We will build the capacity of city governments and policymakers on the use of the framework for developing and evaluating the suitability status of their CAPs. We will also urge corporate and educational institutions to adopt the UCAP framework in their climate planning,” said Aboagye.

The authors are Prince Dacosta Aboagye from the Graduate School of Humanities and Social Sciences at Hiroshima University and Ayyoob Sharifi from the IDEC Institute at Hiroshima University and the School of Architecture and Design, Lebanese American University.

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A new bacterial species from a hydrothermal vent throws light on their evolution

A new bacterial species discovered at the deep-sea hydrothermal vent site ‘Crab Spa’ provides a deeper understanding of bacterial evolution.

Deep-sea hydrothermal vents are hot springs on the ocean floor. Sea water penetrates into the ocean crust, becomes heated, and rises to the seafloor surface carrying dissolved nutrients. Around these vents, far from any sunlight, vibrant biological communities are found. Here, microbes play the role of primary producers through chemosynthesis — similar to the role that plants play on land through photosynthesis.

Researchers at Hokkaido University, in collaboration with colleagues at Woods Hole Oceanographic Institution, have been working on understanding microbial diversity at deep-sea hydrothermal environments on the East Pacific Rise based on microbe cultivation studies. They isolated a novel campylobacterial strain from a warm-water vent known as ‘Crab Spa’ and named it Hydrogenimonas cancrithermarum, after the site. Their findings were published in the journal International Journal of Systematic and Evolutionary Microbiology.

“Chemolithoautotrophic species of the class Campylobacteria (aka Epsilonproteobacteria) are recognized as an ecologically important bacterial group at hydrothermal vents, contributing to primary production,” explains Assistant Professor Sayaka Mino, first author of the paper and research group leader at the Faculty of Fisheries Sciences, Hokkaido University. “On the other hand, some members of this class, e.g., Helicobacter, Arcobacter, and Campylobacter, are also well known pathogens of humans and animals.”

Hydrogenimonas is known as the thermophilic (adapted to hot temperatures) genus that is most closely related to mesophilic and pathogenic genera in the class Campylobacteria. Yet, only two described species have so far been reported in this genus. The present study revealed that the new strain represents the first mesophilic (adapted to moderate temperatures) and sulfur-oxidizing bacterium in the genus, expanding the physiological and metabolic characteristics of the genus.

“The discovery of a mesophilic Hydrogenimonas species was unexpected. The strain likely provides us with the opportunity to investigate their evolutionary transition from a thermophilic to a mesophilic and from an autotrophic (capable of creating organic compounds) to a heterotrophic (consumes autotrophs to obtain organic compounds) lifestyle,” says Mino.

They further conducted a comprehensive comparative study of the genomes of Campylobacteria, and discovered that the genes responsible for the phosphotransacetylase-acetate kinase (Pta-AckA) pathway tend to be conserved between Hydrogenimonas and the mesophilic species that subsequently diverged from Hydrogenimonas, regardless of their metabolism and pathogenicity.

“The Pta-AkaA pathway has been reported in a pathogenic Campylobacter species to play an important role in colonizing hosts. While we don’t yet understand its specific role in the genus Hydrogenimonas, the acquisition of the genes might represent a key event that enabled their diversification from deep-sea vents to other environments,” says Dr. Stefan Sievert, leader of the research group at the Woods Hole Oceanographic Institution.

“Nowadays, studies of microbial diversity largely rely on cultivation-independent metagenomic sequencing approaches which produce massive amounts of data,” concludes Mino, “Yet, it is vital to remember the significance of cultivation, as shown by the isolation of the new strain that differs markedly from other members of the genus Hydrogenimonas.” The researchers will continue their efforts to discover new culturable species and thus contribute to the understanding of the diversity of Campylobacteria.

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Rise of microplastics discovered in placentas of Hawaii mothers

A placenta (commonly known as the “afterbirth” or “ʻiewe” in Hawaiian) is a temporary organ which connects the mother to the fetus via the umbilical cord. Its purpose is to deliver nutrients and oxygen to the fetus while serving as a barrier to prevent infections or viruses from entering the developing fetus.

A new study by researchers at the John A. Burns School of Medicine (JABSOM) at the University of Hawaiʻi at Mānoa and Kapiʻolani Medical Center for Women & Children examined placentas donated by women who delivered in Hawaiʻi from 2006 to 2021, and found the presence of microplastic particles in the placenta.

Microplastics are visible to the naked eye, and examples can range from the plastic beads once found in exfoliating soaps, to particles from disintegrating plastic bags, to bits of plastic found in microwavable containers which are then inadvertently consumed by humans.

“We were shocked that these little pieces of plastic were getting across the mom’s gut and landing in the placenta,” said Men Jean Lee, an obstetrician and researcher at JABSOM and Kapiʻolani Medical Center. Lee, Rodrigo Weingrill and Johann Urschitz from UH Mānoa’s Institute for Biogenesis Research co-authored the research recently published in Environment International.

The researchers collected and studied 10 placentas in 2006, 2013 and 2021 and found the presence of microplastics grew each year.

  • In 2006, 6 of the 10 placentas contained microplastics.
  • In 2013, microplastics were found in 9 of the 10 placentas.
  • In 2021, researchers found microplastics in all 10 placentas.

“We believe that the plastics may be floating around in food or being inhaled. It’s coming through our digestive fluids or lungs, and the particles are getting absorbed through the gut and traveling through the bloodstream, and then somehow collecting in the placenta during pregnancy,” Lee said. “The big question is, as it’s traveling through the placenta, can it get through the umbilical cord and then to the baby? We don’t know that right now.”

Link to global plastic production

We know that the rise in microplastics found in the placentas of Hawaiʻi mothers corresponds with the skyrocketing levels of global plastic production.

According to the Journal of Hazardous Materials, more than 6,000 megatons of plastic were produced in 2020. Less than 2,000 megatons were produced in 2000.

The big question is, as it’s traveling through the placenta, can it get through the umbilical cord and then to the baby? — Men Jean Lee

Lee believes HHawaiʻi’s remote location creates an added dependency on plastic.

“We’re the world’s most remote population center or island chain. We’re 2,300 miles from California and 4,000 miles from Japan,” Lee said. “For daily conveniences, we commonly use plastic wrap, plastic containers, plastic bags and single use water bottles.”

She suggests Hawaiʻi’s location in the center of the Pacific Ocean, tropical climate, and lack of recycling centers can exacerbate how these plastics are disintegrating or breaking down.

“The incineration of garbage, landfills and marine pollution affect our communities. When trash is being burned, dust particles are released, and can spread into the air we breathe,” Lee said. “In fact, we are concerned about how the debris from the recent Lahaina fires may contain microplastics and other chemical toxins in the remains of the fires. Meanwhile, we already know that sunlight, heat and salt can speed up the breakdown of these everyday plastics. I’ve noticed plastic bags, even shoes, wear out quickly in Hawaiʻi and turn to dust. I never experienced this when I was living back in New York.”

Can microplastics enter the fetus too?

Lee and the JABSOM researchers will continue their research, now focused on seeing if the microplastics can pierce the protection of the placenta and enter the fetus before birth.

“We’re not trying to scare people,” Lee said, but acknowledges there are other questions that still need to be answered. “What are the sources of maternal microplastics? What are the plastics doing in the mother’s body and the placenta? Are they benign, or are they crossing over to the fetal side into the umbilical cord that is connected to the baby? If they are getting to the other side, are they affecting fetal growth and what happens to the baby when he/she grows up?”

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Family plea to ‘take action’ over ambulance delay deaths

Christopher Hart, 50, was found dead in his Suffolk home while waiting eight hours for an ambulance.

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