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Updates every hour. Last Updated: 18-May-2026 02:16 ET (18-May-2026 06:16 GMT/UTC)
China's forestry sector charts a course for carbon neutrality amidst ambitious climate goals
Biochar Editorial Office, Shenyang Agricultural UniversityChina’s ambitious “Dual Carbon” initiative, aiming for carbon dioxide emissions to peak before 2030 and achieve carbon neutrality by 2060, necessitates a profound transformation across all sectors. A recent perspective paper explores the significant role of forestry in this national endeavor, detailing its potential to enhance carbon sequestration while addressing developmental challenges. The analysis, conducted by researchers at Foshan University, University of Western Australia, and the Guangdong Academy of Sciences, offers a strategic blueprint for leveraging forest resources as a low-cost carbon sink for global climate change mitigation.
- Journal
- Carbon Research
- Funder
- Higher Education Department of Guangdong Province, Science and Technology Department of Guangdong Province, Guangdong Foundation for Program of Science and Technology Research, China
Profile distribution and edaphic controls of soil organic carbon in dominant soil orders of Chitwan, Nepal
Biochar Editorial Office, Shenyang Agricultural UniversityTerrestrial ecosystems represent a significant global carbon reservoir, with soils holding the largest fraction, influencing both agricultural productivity and climate feedback mechanisms. Comprehending how soil organic carbon (SOC) distributes across various soil depths and types, along with the factors governing its accumulation, remains essential for effective land management decisions. A recent study, published in Carbon Research, investigated the profile distribution of SOC in the predominant soil orders of Chitwan district, Nepal, addressing a critical gap in horizon-based analyses for the region. This work by researchers from Agriculture and Forestry University and the National Soil Science Research Center offers valuable insights into the intricate dynamics of soil carbon, especially pertinent to a landscape facing pressures from extensive agriculture and nutrient mining.
- Journal
- Carbon Research
Unlocking agricultural potential: New meta-analysis reveals biochar’s role in restoring salt-affected soils
Biochar Editorial Office, Shenyang Agricultural UniversityUnlocking Agricultural Potential: New Meta-Analysis Reveals Biochar’s Role in Restoring Salt-Affected Soils
New research provides critical insights into optimizing biochar application for enhancing crop yields and reducing soil salinity in challenged agricultural lands.
A major concern for global food security involves the increasing prevalence of salt-affected soils, which currently encompass an estimated one billion hectares worldwide. Conventional methods for mitigating salt stress can be costly and less effective in the long run. Scientists have focused attention on biochar, a carbon-rich material, as a promising organic soil amendment to improve soil properties and bolster agricultural resilience. A recent meta-analysis, conducted by Baolin Wu, Heng Yang, Siyuan Li, and Jun Tao from Beijing Normal University, delivers the first comprehensive quantitative assessment of biochar's impact on crop productivity and soil salinity in these compromised environments. This analytical effort considered a wide array of experimental conditions, offering a roadmap for tailored biochar applications.
- Journal
- Carbon Research
- Funder
- National Key Research and Development Program of China
Unraveling grassland health: New model deciphers long-term and short-term drivers of biomass in northern China
Biochar Editorial Office, Shenyang Agricultural UniversityThe vitality of grassland ecosystems, central to the global carbon cycle and nutrient exchange, is often gauged by their aboveground biomass (AGB). Variations in AGB reflect grassland productivity and overall health. Accurately assessing the diverse factors influencing AGB, particularly distinguishing between influences that play out over decades versus those with immediate effects, has remained an analytical hurdle. Researchers at the Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, among other institutions, confronted this challenge by developing an advanced statistical framework.
- Journal
- Carbon Research
- Funder
- National Natural Science Foundation of China, National Key Research and Development Program of China, Special Funding for the Modern Agricultural Technology System from the Chinese Ministry of Agriculture, The Fundamental Research Funds of the Central Nonprofit Scientific Institution
Unraveling Africa's carbon footprint: How tech, green energy, and trade shape emissions
Biochar Editorial Office, Shenyang Agricultural UniversityClimate change presents an escalating global challenge, demanding concerted efforts to mitigate its widespread effects. For Africa, a continent striving for economic advancement, understanding the interplay between development, technology, energy, and environmental impact holds particular significance. A recent analysis addresses this by examining how factors like information and communication technologies (ICT), renewable energy consumption, the import of goods and services, and economic growth influence carbon emissions across the continent. This work aims to provide actionable insights for achieving low-carbon development aligned with sustainable development goals.
Researchers from Alex Ekwueme Federal University, Imo State University, and the University of Ghana employed a Panel autoregressive distributed lag (PARDL) model to investigate these complex relationships. Their approach utilized extensive data spanning 2001 to 2020 from 29 African countries, sourcing variables such as per capita carbon dioxide emissions, GDP per capita, renewable energy usage, various ICT indicators, and trade imports from the World Development Indicators (WDI) database. This rigorous methodology accounted for unique cross-country dynamics, ensuring robust and reliable findings.
- Journal
- Carbon Research
Advanced materials promise cleaner nuclear future through radionuclide separation
Biochar Editorial Office, Shenyang Agricultural UniversityThe expansion of nuclear energy and historical nuclear weapons testing have led to the release of substantial amounts of radionuclides into the environment, posing significant risks to both ecological systems and human health. Simultaneously, the continuous demand for nuclear fuel necessitates efficient methods for extracting valuable uranium from spent fuel, wastewater, or seawater. Addressing this dual challenge, a recent perspective explores the remarkable capabilities of covalent organic frameworks (COFs) as highly selective materials for radionuclide separation.
- Journal
- Carbon Research
- Funder
- National Natural Science Foundation of China, National Natural Science Foundation of China, Beijing Outstanding Young Scientist Program
Downward drift: Biochar colloids mobilize soil organic matter, impacting carbon cycling
Biochar Editorial Office, Shenyang Agricultural UniversityIn an era marked by increasing wildfire frequencies and widespread agricultural use of biochar, the accumulation of biochar colloids in soils has become a growing concern. These microscopic particles possess high mobility and reactive surfaces, prompting scientists to investigate their potential influence on the release of dissolved organic matter (DOM) from soils. Such interactions are profoundly important, as DOM quantity and composition directly affect the carbon cycle, the mobility of pollutants, and overall water quality. A recent investigation, conducted by Kang Zhao and Jianying Shang from China Agricultural University, meticulously explores this dynamic, providing critical optical and molecular insights into how both pristine and environmentally aged biochar colloids interact with various soil types.
- Journal
- Carbon Research
- Funder
- National Natural Science Foundation of China, “20 New Items of Universities” funding project of Jinan, Guangdong Provincial Key Laboratory of Environmental Health and Land Resource
Hidden value in Omani honey: Rare varieties outperform others in antioxidants
Sultan Qaboos University- Journal
- Sultan Qaboos University Journal for Science [SQUJS]