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Carbon Research

@carbonresearch.bsky.social
62 followers 123 following 154 posts

The journal from @SpringerNature, on carbonaceous materials associated with ecological and environmental functions, energy generation, and global change. 📖 Discover more: link.springer.com/journal/44246

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Carbon Research @carbonresearch.bsky.social · 06/10/2026
Biochar and maize stover both build soil carbon, but through very different pathways. A 10-year field study shows that biochar favors stable carbon storage, while stover drives active microbial carbon cycling. 🌱🌍 #Biochar #SoilCarbon #CarbonResearch #Climate doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 25/09/2026
🧲 Tiny beads, powerful chemistry. Graphene and cobalt-doped magnetic carbon beads achieved 100% sulfamethoxazole removal in 20 min. Oxygen vacancies drive a superoxide-assisted pathway for faster PMS activation, while the millimeter-scale design supports easy recovery. doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 18/09/2026
🏔️ Rivers on the Tibetan Plateau are active players in the carbon cycle. A new Carbon Research study finds that the Yarlung Tsangpo is a net source of CO₂, CH₄ and N₂O, while microbial activity strongly shapes its dissolved organic matter. 🌊 Learn more 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 12/09/2026
Meta-analysis meets experimental validation 🌱 A new study shows how tailored biochar from Chinese medicine residues can reduce Cd availability in soil and cut plant Cd accumulation by up to 68.6%. A promising path for cleaner soils and waste valorization. #Biochar #Cadmium doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 30/08/2026
Five days of science, conversations, and new connections at #ACSFall2026 in Chicago. 🧪🌎 For the second year in a row, Carbon Research joined researchers from around the world for face-to-face discussions on biochar, carbon science, environment, energy, and more. #ACSFall #ScienceCommunication
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Carbon Research @carbonresearch.bsky.social · 19/08/2026
Black carbon can do more than just store carbon. Its dissolved fraction can shuttle electrons. Higher pyrolysis temperatures greatly accelerate electron transfer, while tannin-like and condensed aromatic molecules help drive the process. #CarbonResearch #BlackCarbon 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 15/08/2026
🌱 Green roofs may do more than manage stormwater. A 5-year field study found that biochar-amended green roofs consistently absorbed more methane, with peak CH₄ uptake nearly 5× higher than controls, without increasing CO₂ emissions. #Biochar #GreenRoofs #Climate 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 12/08/2026
What if pollutants could help power their own removal? Zn single atoms with asymmetric Zn–N₂O₂ sites promote direct electron transfer, degrading contaminants while converting O₂ into valuable H₂O₂ under light. Learn more 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 08/08/2026
🌱 30 years of biochar research, distilled into one talk. Prof. Stephen Joseph reviews how biochar changes in soil, supports nutrient and water retention, reduces contaminants and emissions, and can increase crop yields by 10–42%. 🎥 Watch the full recording on YouTube: youtu.be/RFwIdU-0PWE?...
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Review and Synthesis of 30 Years of Biochar Research and Development | Prof. Stephen Joseph
YouTube video by NEW Community
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Carbon Research @carbonresearch.bsky.social · 06/08/2026
Lignin is more than a pulping by-product. It can become fertilizer coatings, pesticide carriers, soil hydrogels, mulch films, and seed coatings. This review maps its role in greener agriculture and a circular bioeconomy. Full article 📖: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 03/08/2026
Microbial carbon fixation continues beneath the ice of Qinghai Lake. Dark carbon fixation contributed about 61% of total microbial carbon uptake, revealing an overlooked pathway that sustains winter carbon cycling in alpine saline lakes. ❄️🦠🌊 Learn more 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 02/08/2026
Water erosion does more than remove soil carbon. It also reshapes microbial communities and accelerates carbon decomposition. In eroded upper slopes, SOC decomposition was 41%–48% higher, mainly within the top 40 cm of soil. #SoilCarbon #Microbiome #CarbonResearch 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 26/07/2026
Local livestock-free policies may reduce emissions at home while shifting a much larger carbon burden elsewhere. In Guangdong, the spillover effect was 3.14 times the local reduction. #CarbonResearch #ClimatePolicy Learn more 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 20/07/2026
NEW Community made its debut at #Goldschmidt2026 in Montréal, connecting researchers across geochemistry, environmental science, AI, carbon removal, and sustainability. We are building a more open, inclusive, and interdisciplinary scholarly community. #OpenScience
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Carbon Research @carbonresearch.bsky.social · 18/07/2026
From waste stream to soil-carbon resource: field evidence shows that biogas slurry topdressing reshapes dissolved organic carbon across maize growth stages and soil depths, supporting microbial reprocessing, humification, and sustainable dryland farming. #CarbonResearch 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 14/07/2026
Join Zoom meeting: us06web.zoom.us/j/6156725359...
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Carbon Research @carbonresearch.bsky.social · 13/07/2026
One porous platform, three strategic gases. A new review in Carbon Research explores how next-generation MOFs can capture CO₂, store CH₄, and support H₂ integration, while addressing stability, regeneration, cost, and scale-up challenges. 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 07/07/2026
Join the Forum on Biochar Research on July 14, 2026, featuring Prof. Stephen Joseph and hosted by Prof. Jianying Shang. Explore 30 years of biochar research, from soil health and crop resilience to carbon storage and climate-smart agriculture. Zoom ID: 615 672 5359 Passcode: 123456
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Carbon Research @carbonresearch.bsky.social · 05/07/2026
Iron-modified biochar turns pig manure composting into a cleaner, more nitrogen-efficient process. Adding 5% FeBC reduced NH₃ emissions by 46.68%, N₂O emissions by 41.69%, and total nitrogen loss by 34.61%, combining chemical adsorption with microbial regulation. 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 03/07/2026
Turning biogas slurry from a by-product into a soil carbon ally. New research in Carbon Research shows that biogas slurry topdressing improved soil quality, reshaped bacterial networks, and enhanced microbial carbon fixation pathways in maize cropland. 🌱🦠 #SoilHealth 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 28/06/2026
From eggshell waste to carbon capture membranes 🥚➡️🌍 A new Carbon Research study upcycles eggshell-derived CaO into PVDF mixed matrix membranes for CO₂/CH₄ separation, achieving high CO₂ permeability and selectivity for natural gas and biogas upgrading. 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 27/06/2026
Biochar meets hydrogel chemistry for cleaner water. A new review in Carbon Research explores how biochar-hydrogel composites can be engineered with surface functional groups to capture heavy metals, dyes, and pharmaceutical pollutants more effectively. 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 21/06/2026
Karst reservoirs may be doing more than storing water. A new study shows how the biological carbon pump drives sedimentary carbon burial by transforming dissolved inorganic carbon into autochthonous organic carbon and stabilizing it as recalcitrant organic carbon. ⬇️ doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 21/06/2026
China’s first Ecological and Environmental Code marks a major step toward green governance. A new editorial in Carbon Research highlights how the Code brings climate action, biodiversity protection, pollution control, and low-carbon development into one legal framework. 🔗: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 15/06/2026
Tiny carbon dots, big impact on safer rice. A new field study in Carbon Research shows that foliar-applied carbon dots increased rice yield by 18% while cutting cadmium accumulation in grains by up to 46% under Cd-contaminated paddy conditions. Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 11/06/2026
A new Carbon Research study shows that size dependent biochar fractions drive ROS hotspots in the charosphere and may weaken biochar’s ability to reduce N₂O emissions. #Biochar #CarbonResearch #SoilScience #ClimateChange Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 06/06/2026
Beneath our crops lies one of Earth’s overlooked climate allies: deep soil carbon. A new Carbon Research review shows why looking beyond the top 30 cm of soil could reshape how we measure, protect, and manage carbon in agricultural systems. #ClimateAction Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 04/06/2026
Carbon Research reaches a new milestone in the latest Scopus CiteScore performance. 2025 CiteScore Tracker: 19.2 2024 CiteScore: 14.0 New subject rankings: Environmental Sciences: 7/307 Engineering: 8/300 Earth and Planetary Sciences: 2/184
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Carbon Research @carbonresearch.bsky.social · 03/06/2026
A new Perspective in Carbon Research explores how heterocyclic-linked covalent organic frameworks can boost photocatalytic uranium extraction through stronger light absorption, faster charge separation, tunable electronic structures, and improved stability. Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 01/06/2026
Food waste can become more than a disposal challenge. In this recorded forum, NUS Prof. Yen Wah Tong shares how biochar can supercharge decentralized anaerobic digestion, helping turn organic waste into renewable energy and more resilient waste treatment systems. youtu.be/sMGgKYWB4uc?...
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How Biochar Supercharges Food Waste Treatment | NUS Prof. Yen Wah Tong
YouTube video by NEW Community
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Carbon Research @carbonresearch.bsky.social · 30/05/2026
Prof. Armando T. Quitain from Kumamoto University shared insights on microwave-carbon synergy for biomass valorization, highlighting how carbon-based catalysts and microwave heating can reduce reaction time, lower energy use, and support greener biorefinery processes. youtu.be/cbEt6oj2xdk?...
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Unlock the Future of Biomass with Microwave Technology
YouTube video by NEW Community
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Carbon Research @carbonresearch.bsky.social · 27/05/2026
Corrosion costs the world about USD 2.5 trillion every year. How can carbon-based additives help protect mild steel while reducing reliance on toxic coating ingredients? Watch the recording: youtu.be/Z8glVCDT5XU?...
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Carbon-based additives in organic coatings for the corrosion protection of mild steel
YouTube video by NEW Community
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Carbon Research @carbonresearch.bsky.social · 26/05/2026
Iron minerals may quietly decide which soil carbon microbes can “eat.” A new Carbon Research study shows that goethite reshapes dissolved organic matter, enriching more biodegradable compounds and changing microbial succession. Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 21/05/2026
🌍 Forests are carbon banks. But in Bangladesh’s Chittagong Hill Tracts, that bank is shrinking. A new Carbon Research study uses satellite data + AI modeling to show deep forest loss and a projected drop in carbon storage by 2043. Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 12/05/2026
Corrosion costs the world about USD 2.5 trillion each year. In this Forum, Dr. Ren Chong LIM explores how carbon-based additives such as nanocellulose can improve mild steel corrosion protection while supporting more sustainable coating technologies. Zoom Meeting ID:615 672 5359 Passcode: 123456
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Carbon Research @carbonresearch.bsky.social · 07/05/2026
Watch the recording of the International Forum, featuring Prof. Wan Azlina Wan Abdul Karim Ghani, on biochar-based materials for CO₂ capture, pollutant removal, and sustainable industrial applications. Now available on YouTube: youtu.be/TBMer2HX_tQ
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Carbon Research @carbonresearch.bsky.social · 06/05/2026
A new review in Carbon Research explores how engineered biochar, especially nitrogen-doped biochar, can be designed to capture CO2 more efficiently by tuning its pores, surface chemistry, and adsorption sites. #Biochar #CarbonCapture #CCUS #ClimateTech Read more: doi.org/10.1007/s442...
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Recent advances in the development of engineered biochar for CO2 adsorption: Research on heteroatom-doped biochar - Carbon Research
With rising atmospheric CO2 levels driving global warming, carbon capture and storage (CCS) technologies are critical. Biochar, an eco-friendly and cost-effective carbon material, has gained attention for low-temperature CO2 capture due to its sustainable adsorption properties. However, raw biochar’s limited pore structure and surface chemistry hinder its efficiency. Among modification strategies, heteroatom doping is particularly effective. By enriching functional groups and tuning the carbon framework, this approach significantly improves CO2 capture performance. This review explores recent advancements in the development of engineered biochar for CO2 adsorption, with a focus on heteroatom doping techniques. Additionally, key quantitative performance metrics were compiled and compared, including adsorption capacities and isosteric heats of adsorption (Qst) (and, where available, selectivity/working capacity), to quantify how different doping strategies alter gas uptake and binding strength and to establish structure-performance relationships. Among various dopants (such as nitrogen, sulfur, phosphorus, and boron), nitrogen doping has attracted much attention due to its significant enhancement in the ability to capture CO2. This is mainly because nitrogen atoms can more effectively regulate the electronic structure and pore structure of the material in a coordinated manner, thereby enhancing the dual effects of physical and chemical adsorption on CO2. A critical comparison is made between pre-modification doping (incorporating heteroatoms during biomass carbonization) and post-modification doping (treating already-formed biochar), revealing that pre-modification generally offers superior doping efficiency and structural stability. Moreover, the review examines co-doping strategies, where synergistic effects between multiple elements, as exemplified by nitrogen-phosphorus co-doping or nitrogen-sulfur co-doping of biochar, further optimize the adsorption capacity. Finally, critical barriers to industrialization, including techno-economic feasibility and regeneration energy costs, are discussed. Future perspectives emphasize the integration of machine learning for rational design, standardized characterization protocols, and life-cycle assessments (LCA) to accelerate the deployment of biochar in practical CCUS applications. The review highlights the mechanisms of CO2 capture, emphasizing the balance between physical adsorption and chemisorption. The challenges for development of engineered biochar for CO2 capture are prospected. Further research on improving chemical adsorption performance while preserving physical adsorption properties is still required to improve biochar’s application in sustainable CO2 capture technologies. Graphical Abstract
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Carbon Research @carbonresearch.bsky.social · 04/05/2026
5 years of nitrogen addition in a subtropical forest: bacterial assembly starts stochastic, turns deterministic over time. New study shows DOM quality drives network stability. Stochastic processes dominate, but time flips the script. #MicrobialEcology Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 27/04/2026
We often say biochar, compost, and manure help store carbon. But what if they also become a source of emissions? This talk reveals the science behind that paradox and what it means for sustainable agriculture. 🎥 Full recording available now: youtu.be/O74-UoQnRvY?...
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Carbon Research @carbonresearch.bsky.social · 21/04/2026
What happens when aquatic plants die? Not just decay. Not just pollution. They may actually HELP lock carbon in lakes. New research reveals that plant decline triggers microbial processes that transform fresh organic matter into long-lasting carbon storage. Read more: doi.org/10.1007/s442...
doi.org
Mechanisms of carbon sequestration via interactions between dissolved organic matter (DOM) and bacteria during floating-leaf macrophyte decline - Carbon Research
Given the global decline in aquatic vegetation, the fate and ecological effects of persistent plant-derived dissolved organic matter (DOM) in shallow lakes remain poorly understood. Through mesocosm experiments combined with Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR-MS) and ecological network analysis, we show that bacterial communities mediate DOM migration and transformation while the floating-leaved macrophyte Trapa bispinosa shifts from health to decay stages, thereby modulating lake carbon storage and eutrophication risk. As T. bispinosa declined, substantial amounts of total nitrogen (TN) and total phosphorus (TP) were released back into the aquatic ecosystem. This transition from plant health to decay, characterized by higher chromophoric DOM content (a355) and greater DOM aromaticity (SUVA254), coincided with the accumulation of recalcitrant DOM. Concurrently, bacterial diversity and niche breadth declined, whereas anaerobic biomarkers such as Campylobacterota and Desulfobacterota became enriched. Ongoing DOM release was consistent with MCP-like processing, whereby microbes such as Polynucleobacter and Rhodobacterales transformed low-molecular-weight, labile compounds (e.g., proteins and lipids) into recalcitrant forms (e.g., lignin-like and tannins). Our findings elucidated the fate and transformation of plant-derived DOM during macrophyte decline and its interactions with bacterial communities, providing a scientific basis for the management and restoration of floating-leaved plants in shallow lakes. Graphical Abstract
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Carbon Research @carbonresearch.bsky.social · 21/04/2026
Join our upcoming forum on engineered biochar for carbon capture & resource recovery 🔬 From CO₂ adsorption to energy applications 🏭 Bridging science and real-world industry 🎤 Featuring Prof. Wan Azlina 📅 April 24 | 14:00 (China/MY) | 07:00 (London) 🔗 Zoom ID: 615 672 5359 | Passcode: 123456
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Carbon Research @carbonresearch.bsky.social · 15/04/2026
A study turns sediment cores into a “time machine” to track toxic PAHs in Mongolia. Surprise: Petroleum leaks now outweigh coal burning as the dominant source. Economic growth, energy use, and traffic are all written into the mud. Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 10/04/2026
More trees ≠ more carbon storage 🌳 A 48-year study in India shows: Tree plantation expansion barely changed total soil carbon (~2%) Why? Gains in some areas were canceled by losses elsewhere. #SoilCarbon #ClimateScience #NatureBasedSolutions Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 09/04/2026
Hydrochar boosts plant-available phosphorus. Microplastics also increase it… but by reshaping microbial networks. This study reveals how soil DOM and microbes quietly control P cycling. #SoilScience #Biochar #Microplastics #Agriculture #CarbonResearch Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 06/04/2026
Micro–nano bone char doesn’t just “adsorb” arsenic, it rewires the rhizosphere. ↓ As(V) reduction genes (arsC, arsR) ↑ As methylation gene (arsM) Result: enhanced soil fertility AND reduced As stress. #SoilMicrobiome #Biochar #EnvironmentalScience Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 04/04/2026
This study shows methane can be converted into microbial protein with: 🌱 88% less ecosystem damage than soy ❤️ 41% lower health impacts than fish meal 💰 51% ROI The future of protein might not come from farms or oceans. It might come from microbes. Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 04/04/2026
When cyanobacteria die, they can release far MORE greenhouse gases than aquatic plants. 🌱 Methane up to 1.89× higher 🌊 Nutrients up to 7× higher Restoring submerged plants could help cut emissions from lakes. #ClimateChange #WaterQuality #Methane #Eutrophication Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 02/04/2026
More growth ≠ less emissions. In fact: • Industrialization & globalization boost GDP • But they also raise carbon emissions Only ONE factor consistently reduces CO₂: → Renewable energy This is the real path to carbon neutrality. #ClimateAction #NetZero #Energy Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 02/04/2026
The digital economy is a climate solution. 📊 +1% digital growth → measurable gains in carbon efficiency 🌍 Effects spill across cities ⚠️ Surprise: industrial restructuring matters far more than green tech innovation #NetZero #ClimateTech #Sustainability Read more: doi.org/10.1007/s442...
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Carbon Research @carbonresearch.bsky.social · 24/03/2026
What if climate policy worked like a synchronized system? New research shows: ✔ Policy alignment cuts pollution costs ✔ Renewables are the strongest driver ❗ Policy rollbacks hurt MORE than progress helps #ClimatePolicy #RenewableEnergy #Sustainability #Economics Read more: doi.org/10.1007/s442...
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