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1

Zheng, Han, Yue Xu, Min Wang, et al. "The Role of Fertilization on Soil Carbon Sequestration in Bibliometric Analysis." Agriculture 14, no. 10 (2024): 1850. http://dx.doi.org/10.3390/agriculture14101850.

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The soil carbon pool is the largest and most dynamic carbon reservoir in terrestrial ecosystems. Fertilization, an important component of agricultural management, is a significant factor influencing soil carbon sequestration. This study analyzed literature from the Web of Science from 2008 to 2024 using CiteSpace. The results revealed a steady increase in publications on this topic, with a significant surge in the recent four years. The analysis highlighted key collaborations among countries, institutions, and authors, and identified main journal sources and seminal works in the research on th
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Gilbert, Lewis E. "Strategies for Developing Carbon Sequestration Portfolios." Energy & Environment 15, no. 5 (2004): 825–35. http://dx.doi.org/10.1260/0958305042886778.

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Varshney, K., M. P. Zari, and N. Bakshi. "Decarbonisation of the urban built environment through vegetation-based carbon sequestration." IOP Conference Series: Earth and Environmental Science 1101, no. 6 (2022): 062025. http://dx.doi.org/10.1088/1755-1315/1101/6/062025.

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Abstract The impacts of climate change require a strategic improvement in design decision-making. Leading professionals are aiming for carbon-positive buildings that can achieve carbon sequestration by adding vegetation to buildings. Multiple references and case studies explored in this paper suggest that there is theoretical potential for cities to become carbon sinks by constructing carbon-positive buildings. However, determining effective strategies, and quantifying and monitoring carbon sequestration in buildings, requires a standardised approach so that this carbon sequestration potential
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Hettiaratchi, M. H., R. E. Guldberg, and T. C. McDevitt. "Biomaterial strategies for controlling stem cell fate via morphogen sequestration." Journal of Materials Chemistry B 4, no. 20 (2016): 3464–81. http://dx.doi.org/10.1039/c5tb02575c.

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This review explores the role of protein sequestration in the stem cell niche and how it has inspired the design of biomaterials that exploit natural protein sequestration to influence stem cell fate.
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Ameray, Abderrahmane, Yves Bergeron, Osvaldo Valeria, Miguel Montoro Girona, and Xavier Cavard. "Forest Carbon Management: a Review of Silvicultural Practices and Management Strategies Across Boreal, Temperate and Tropical Forests." Current Forestry Reports 7, no. 4 (2021): 245–66. http://dx.doi.org/10.1007/s40725-021-00151-w.

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Abstract Purpose of Review Carbon sequestration and storage in forest ecosystems is often promoted as a solution for reducing CO2 concentrations in the atmosphere. Yet, our understanding is lacking regarding how forest management strategies affect the net removal of greenhouse gases and contribute to climate change mitigation. Here, we present a review of carbon sequestration and stock dynamics, following three strategies that are widely used in boreal, temperate and tropical forests: extensive forest management, intensive forest management and old-growth forest conservation. Recent Findings S
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Murphy, Denis J. "Carbon Sequestration for Global-Scale Climate Change Mitigation: Overview of Strategies Plus Enhanced Roles for Perennial Crops." Crops 5, no. 3 (2025): 39. https://doi.org/10.3390/crops5030039.

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Climatic changes threaten many forms of crop production as well as adversely affecting global ecosystems and human activities. There are two principal ways in which the balance of the global carbon cycle can be restored, firstly by decreasing anthropogenic CO2 emissions and secondly by increasing the rates of carbon sequestration. Even if emissions are successfully reduced to net zero over the coming decades, it will still be essential to reduce atmospheric CO2 concentrations to preindustrial levels. This can only be achieved by global-scale carbon sequestration of the order of gigatonnes (Gt)
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T.J. PURAKAYASTHA, DEBARATI BHADURI, O.P. AISHWATH, and Y.S. SHIVAY. "Soil management strategies to enhance carbon sequestration potential of degraded lands." Indian Journal of Agronomy 61, no. 4 (2001): 407–19. http://dx.doi.org/10.59797/ija.v61i4.4393.

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Reclamation of degraded lands has huge potential for carbon(C) sequestration to counteract the climate change. It was estimated that about 1,947 Mha of land is degraded worldwide and in Asia (excluding west Asia), the degraded soils occupied an area of 747 Mha. In India 59.3 Mha of land is degraded. The major land-degrada- tion processes in the World and in Asia are water erosion, wind erosion, salinity and alkalinity, nutrient depletion and metal pollution. Various management strategies like conservation agriculture, integrated nutrient manage- ment, afforestation, alternate land use, plantat
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Liu, Ziyan, Ningjie He, Chenyu Wang, and Chen Qu. "Analysis of the Cutting Strategy of Five Different Tree Species Targeting Carbon Sequestration." Forests 14, no. 2 (2023): 238. http://dx.doi.org/10.3390/f14020238.

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Fully utilizing the carbon sequestration potential of forests will help to further mitigate the aggravation of the greenhouse effect. In this paper, five typical tree species in Xiaoxing'anling are used as research objects. Based on the differences in the carbon dioxide sequestration capacity of different tree species at different growth cycles, a mathematical model of annual carbon sequestration benefits is established, the optimal annual cutting rates of five tree species are calculated, and the carbon sequestration capacity after ten years and economic benefits of the forest are predicted.
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Zhou, Zirun, Chuanqing Sun, Yujie Xiao, and Jiahao Zhang. "Forest Management Strategy Model Based on EPIC and Meta-Analysis." Highlights in Science, Engineering and Technology 23 (December 3, 2022): 256–65. http://dx.doi.org/10.54097/hset.v23i.3276.

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First, to develop a reasonable carbon sequestration model to predict the amount of carbon dioxide sequestered by forests and their products, we constructed an EPIC-based carbon sequestration model to simulate the amount of carbon dioxide sequestered and the actual amount of carbon dioxide sequestered. forest management strategies and find the best strategies. In addition, a meta-analysis-based optimal forest resource utilization model was established, which comprehensively analyzed forests, including carbon dioxide sequestration and other natural, social and economic values.
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Sun, Ziliang, and Yu Zhou. "Trade-offs between forest carbon sinks and multidimensional forest values: from assessment to management strategies." Journal of Physics: Conference Series 2665, no. 1 (2023): 012020. http://dx.doi.org/10.1088/1742-6596/2665/1/012020.

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Abstract Forests are one of the subjects that can effectively mitigate climate change and are important for achieving carbon sequestration. In order to determine the maximum carbon sequestration of forests and the optimal management mode, this paper selected several indicators related to forest carbon sequestration and determined the main influencing indicators and mechanisms through regression significance analysis, and concluded that the selection of forest age and harvesting intensity have an important influence on the carbon sequestration effect and sustainability of forests. Based on the
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MOHANTY, MANORANJAN, and SURENDER SINGH. "Soil Carbon Sequestration Strategies for Climate Resilient Agriculture." Journal of Agrometeorology 24, no. 4 (2022): 333–34. http://dx.doi.org/10.54386/jam.v24i4.1826.

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Phillips, David J. H., and Philip S. Rainbow. "Strategies of trace metal sequestration in aquatic organisms." Marine Environmental Research 28, no. 1-4 (1989): 207–10. http://dx.doi.org/10.1016/0141-1136(89)90226-2.

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Paletto, Alessandro, Paolo Cantiani, Alessandra Lagomarsino, and Isabella De Meo. "Sustainable Forest Strategies as Natural Climate Solutions in Degraded Coniferous Forests." Acta Silvatica et Lignaria Hungarica 20, no. 1 (2024): 9–22. https://doi.org/10.37045/aslh-2024-0001.

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The present research implemented two improved forest management practices in a study area in Central Italy (Monte Morello Forest) to analyze their effects on C-sequestration and C-stock in all C pools (above-ground and below-ground biomass, deadwood, litter, and soil). It also estimated silvicultural treatment effects on two additional ecosystem services — wood production and recreational activity. A thinning from below and a selective thinning were applied in a degraded coniferous forest to increase the C-sequestration in the medium-long term. The results showed that after the two thinnings,
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Zhao, Sixue, Wei Shi, Fuwei Qiao, Chengyuan Wang, Yi An, and Luyao Zhang. "Temporal and Spatial Changes and Trend Predictions of Forest Carbon Sequestration Efficiency in China Based on the Carbon Neutrality Goal." Forests 14, no. 12 (2023): 2387. http://dx.doi.org/10.3390/f14122387.

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Forestry’s high-quality development is crucial for China’s sustainable ecological, economic, and social progress. To elevate the efficiency of carbon sequestration in forestry, continuously improve the increment of carbon sinks, and contribute to achieving carbon neutrality, it is crucial to accurately assess the level of carbon sequestration efficiency in China’s forestry and explore its long-term evolution trend. In this paper, a super-efficiency SBM model, which combines the SBM model with the super-efficiency method and considers the relaxation variables, was selected to evaluate the fores
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Deng, Jinbing, and Wentao Hu. "Several Strategies for Tree Growths Under Different Abiotic Stresses." Forests 15, no. 12 (2024): 2142. https://doi.org/10.3390/f15122142.

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Forests, often referred to as the “lungs of the Earth”, provide essential resources such as energy and food while also playing a critical role in carbon sequestration and maintaining biodiversity [...]
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Sharma, Pooja, Ravindra Pratap Singh Jetawat, Rashmi Mohapatra, et al. "Synergistic Effects of Agroforestry on Carbon Sequestration and Climate Adaptation: A Comprehensive Review." Asian Journal of Soil Science and Plant Nutrition 11, no. 1 (2025): 454–71. https://doi.org/10.9734/ajsspn/2025/v11i1495.

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The synergistic effects of agroforestry on carbon sequestration and climate adaptation strategies, emphasizing its role in sustainable agriculture and land management. Agroforestry plays a important role in climate change mitigation and adaptation by integrating trees, crops, and livestock to enhance carbon sequestration, improve soil health, and increase ecosystem resilience. A systematic analysis of recent literature from journals and policy reports to evaluate the impact of agroforestry on carbon sequestration and climate adaptation. Agroforestry systems, including agrisilviculture, silvopa
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Shah, Shachi, V. Venkatramanan, and V. Sah. "Carbon sequestration activities in the forest: Strategies and challenges." Indian Journal of Forestry 32, no. 4 (2009): 533–36. http://dx.doi.org/10.54207/bsmps1000-2009-dh9332.

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Climate change, land use change and the world’s forests are inextricably linked. Forests cover more than 4 billion hectares of the earth’s land surface area and contain huge reservoirs of carbon in their biomass and soils. Understanding the role of forests in carbon cycles and predicting whether they will be carbon sinks or sources in the future are important in the ongoing international dialogue on climate change. Long-term storage of carbon on land provides a solution, by which humans can modify the dynamics of the carbon cycle. Methods include reducing land disturbance, reforestation, affor
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., Reetika, Gurpreet Singh, Ishika ., Shubham ., and Shilpa Kaushal. "Soil management strategies for increasing carbon sequestration: A review." International Journal of Research in Agronomy 7, no. 4 (2024): 496–99. http://dx.doi.org/10.33545/2618060x.2024.v7.i4g.596.

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Tao, Peiyuan, Ye Lin, Xing Wang, et al. "Optimization of Green Spaces in Plain Urban Areas to Enhance Carbon Sequestration." Land 12, no. 6 (2023): 1218. http://dx.doi.org/10.3390/land12061218.

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Global climate change and rapid urbanization have placed enormous pressure on the urban ecological environment worldwide. Urban green spaces, which are an important component of urban ecosystems, can maintain ecological and environmental sustainability and benefits, including biodiversity conservation and carbon sequestration. However, land use changes across urban landscapes, especially in plain urban areas with high development pressure, have significantly impacted the carbon sequestration efficiency of urban green spaces. Nevertheless, research examining the impact of land use change and de
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Tiko, Joël Mobunda, Serge Shakanye Ndjadi, Jémima Lydie Obandza-Ayessa, et al. "Carbon Sequestration Potential in Rubber Plantations: A Complementary Approach to Tropical Forest Conservation Strategies, a Review." Earth 6, no. 2 (2025): 21. https://doi.org/10.3390/earth6020021.

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The adverse effects of climate change, which are associated with the rise in greenhouse gases, impact all nations worldwide. In this context, tropical forests play a critical role in carbon sequestration. However, the significant anthropogenic pressure on these forests contributes to accelerated deforestation and a decrease in their capacity to regulate the climate. This study uses a comprehensive review of 176 published scientific articles and reports to assess the carbon sequestration capacity of rubber plantations, comparing their effectiveness with that of natural tropical forests. The fin
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Yu, X., H. Wang, W. Cai, and Y. Han. "ANALYSIS OF URBAN FOREST CARBON SEQUESTRATION CAPACITY: A CASE STUDY OF ZENGDU, SUIZHOU." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-2/W7 (September 14, 2017): 1423–26. http://dx.doi.org/10.5194/isprs-archives-xlii-2-w7-1423-2017.

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Carbon-fixing and oxygen-releasing is an important content of forest ecosystem serving in city. Analysis of forest ecosystem carbon sequestration capacity can provide scientific reference for urban forest management strategies. Taking Zengdu of Suizhou as an example, CITYGREEN model was applied to calculate the carbon sequestration benefits of urban forest ecosystem in this paper. And the carbon sequestration potential of urban forest ecosystem following the returning of farmland to forest land is also evaluated. The results show that forest area, percent tree cover, and the structure of fores
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Huang, Zhisheng. "Analysis of Carbon Sequestration Capacity in Land Remediation Projects." Frontiers in Sustainable Development 3, no. 9 (2023): 1–5. http://dx.doi.org/10.54691/fsd.v3i9.5594.

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This article aims to explore the carbon sequestration capacity in land remediation projects and study how to effectively increase soil and biological carbon sequestration through these projects to address the challenges of global climate change. It introduces the basic concept of carbon sequestration and its influencing factors, with particular attention to the impact of key factors such as soil quality and water resource management on carbon sequestration capacity. It assesses the potential of soil carbon sequestration in land remediation projects and emphasizes the significance of rational l
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Maltman, James C., Nicholas C. Coops, Gregory J. M. Rickbeil, Txomin Hermosilla, and A. Cole Burton. "Climate change mitigation through woodland caribou (Rangifer tarandus) habitat restoration in British Columbia." Environmental Research: Ecology 4, no. 2 (2025): 025004. https://doi.org/10.1088/2752-664x/adc0aa.

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Abstract Climate change poses a significant global threat, requiring rapid and effective mitigation strategies to limit future warming. Tree planting is a commonly proposed and readily implementable natural climate solution. It is also a vital component of habitat restoration for the threatened woodland caribou (Rangifer tarandus). There is potential for the goals of caribou conservation and carbon sequestration to be combined for co-benefits. We examine this opportunity by estimating the carbon sequestration impacts of tree planting in woodland caribou range in British Columbia (BC), Canada.
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Sekaranom, A. B., L. W. Santosa, C. Musafirah, M. R. Tadubun, and R. A. Nugraini. "Rapid Assessment of Spatial Variation of Carbon Sequestration in Coastal Landscapes of Bantul Regency, Indonesia: Implications for Land Management and Climate Mitigation." IOP Conference Series: Earth and Environmental Science 1443, no. 1 (2025): 012031. https://doi.org/10.1088/1755-1315/1443/1/012031.

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Abstract This study investigates the spatial variation of carbon sequestration across the coastal area of Bantul Regency – Yogyakarta, Indonesia, based on rapid assessment of carbon sequestration based on land use data. The land use classification is conducted by utilizing unsupervised classification Sentinel-2 classification data. Each land use is assingned carbon sequestration factor obtained from a number of literature studies. The analysis reveals distinct patterns of carbon sequestration linked to varying land use types and vegetation cover. The southern coastal zone exhibits lower carbon
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Murphy, Denis J. "Carbon Sequestration by Tropical Trees and Crops: A Case Study of Oil Palm." Agriculture 14, no. 7 (2024): 1133. http://dx.doi.org/10.3390/agriculture14071133.

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Carbon sequestration by photosynthetic organisms is the principal mechanism for the absorption of atmospheric CO2. Since the 1950s, however, the global carbon cycle has been distorted as increased anthropogenic CO2 emissions have greatly outstripped rates of carbon sequestration, with a 50% increase in atmospheric CO2 levels in less than a century, leading to perturbation of global climate systems and threatening food production and social stability. In order to address the current imbalance in CO2 flux, it is important to both reduce net emissions and promote sequestration. To address the lat
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Mathew, Thomas, and Shanmuga Priya Gnanasekaran. "Assessing the Impacts of land Use Change on Carbon Sequestration: A Comprehensive Analysis for Kochi City, India." Proceedings of the International Conference of Contemporary Affairs in Architecture and Urbanism-ICCAUA 7, no. 1 (2024): 845–50. http://dx.doi.org/10.38027/iccaua2024in0434.

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Land use typologies play a pivotal role in determining the carbon sequestration capacity of urban ecosystems. Ashuman activities continue to reshape landscapes, understanding the impact of different land uses on carbon storageis crucial for developing effective climate change mitigation strategies for cities. This paper aims to analyse therelationship between land use typologies and carbon sequestration. Carbon sequestered in the selected city i.e., Kochiis quantified using the InVEST Carbon Storage and Sequestration model (Integrated Valuation of Ecosystem Servicesand Tradeoffs), coupled with
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Li, Wenwen, Zhen Yang, Jie Jiang, and Guoxin Sun. "Spatial Variation and Stock Estimation of Soil Organic Carbon in Cropland in the Black Soil Region of Northeast China." Agronomy 14, no. 11 (2024): 2744. http://dx.doi.org/10.3390/agronomy14112744.

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Soil organic carbon (SOC) sequestration in cropland is not only instrumental in combating climate change, but it also significantly enhances soil fertility. It is imperative to precisely and accurately quantify the SOC sequestration potential and assess the relative significance of various multiple explanatory factors in a timely manner. We studied 555 soil samples from the cropland topsoil (0–15 cm) across the black soil region in Northeast China between the years 2021 and 2022, and we identified 16 significant impact factors using one-way ANOVA and Pearson correlation coefficient analysis. I
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Xu, Sutie, Sindhu Jagadamma, and Jason Rowntree. "Response of Grazing Land Soil Health to Management Strategies: A Summary Review." Sustainability 10, no. 12 (2018): 4769. http://dx.doi.org/10.3390/su10124769.

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Grazing land ecosystem services including food provision and climate regulation are greatly influenced by soil health. This paper provides a condensed review of studies on the response of three important soil properties related to soil health to grazing land management: water infiltration, carbon (C) sequestration, and nitrogen use efficiency (NUE). Impacts of management strategies that are often used in grazing lands are discussed in this review including vegetation composition, grazing methods, and other factors such as fertilizer use and climatic conditions. In general, proper grazing manag
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Hinzpeter, Florian, Filipe Tostevin, and Ulrich Gerland. "Regulation of reaction fluxes via enzyme sequestration and co-clustering." Journal of The Royal Society Interface 16, no. 156 (2019): 20190444. http://dx.doi.org/10.1098/rsif.2019.0444.

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Experimental observations suggest that cells change the intracellular localization of key enzymes to regulate the reaction fluxes in enzymatic networks. In particular, cells appear to use sequestration and co-clustering of enzymes as spatial regulation strategies. These strategies should be equally useful to achieve rapid flux regulation in synthetic biomolecular systems. Here, we leverage a theoretical model to analyse the capacity of enzyme sequestration and co-clustering to control the reaction flux in a branch of a reaction–diffusion network. We find that in both cases, the response of the
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Guo, Qiong. "Thoughts on Promoting Carbon Sink Trading in Zhuzhou City under the Background of Urban Integration." Scientific and Social Research 7, no. 2 (2025): 12–17. https://doi.org/10.26689/ssr.v7i2.9670.

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Carbon sequestration trading, as an important market mechanism to address global climate change, is based on the provisions of the United Nations Framework Convention on Climate Change and the Kyoto Protocol. It aims to promote the stability of the global ecological environment by verifying and constraining greenhouse gas emissions. This paper discusses the basic background, practical value, and trading methods of carbon sequestration trading, and puts forward strategies and suggestions for promoting carbon sequestration trading in Zhuzhou City based on its actual situation. Carbon sequestrati
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Zhang, Weitian, Hanqin Shao, Haitao Sun, Wei Zhang, and Qinglun Yan. "Optimizing Carbon Sequestration in Forest Management Plans Using Advanced Algorithms: A Case Study of Greater Khingan Mountains." Forests 14, no. 9 (2023): 1785. http://dx.doi.org/10.3390/f14091785.

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The Paris Agreement aims to combat climate change by reducing greenhouse gas emissions, with bioenergy identified as a potential solution. However, concerns remain about its impact on carbon stocks and the optimal timing for implementation. To address these challenges, we propose a comprehensive multi-objective optimization model for forest management that maximizes carbon sequestration and economic benefits. Our model integrates three key components: (1) a sophisticated carbon-sequestration model encompassing living plants, wood forest products, and soil and microbial carbon uptake, (2) dynam
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Rong, Xia, Haonian Fang, and Chunlin He. "Renovation Strategies for Green Spaces in Aging Residential Communities in Cold Regions to Enhance Carbon Sequestration and Wellness." Buildings 15, no. 8 (2025): 1257. https://doi.org/10.3390/buildings15081257.

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This study explores renovation strategies for green spaces in aging residential communities in cold regions, with a particular focus on enhancing carbon sequestration capacity and residents’ well-being. Under the framework of the “dual carbon” goals, a combination of literature analysis and resident surveys reveals that (1) the existing layouts of green spaceand plant selections have not fully considered their carbon sequestration potential, leaving significant room for optimization; (2) low outdoor temperatures, the lack of heating facilities, and monotonous winter landscapes contribute to re
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Li, Xiao-Kun, Jing Luo, Wen-Jie Wu, et al. "Effect of different therapeutic strategies on the clinical outcome of asymptomatic intralobar pulmonary sequestration." Interactive CardioVascular and Thoracic Surgery 29, no. 5 (2019): 706–13. http://dx.doi.org/10.1093/icvts/ivz152.

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Abstract OBJECTIVES Pulmonary sequestration is a rare congenital pulmonary malformation. The aim of this study was to explore the effect of different therapeutic strategies on the clinical outcome of asymptomatic intralobar pulmonary sequestration. METHODS We retrospectively reviewed the clinical data of 37 patients diagnosed with intralobar sequestration. All the patients were asymptomatic. Seventeen patients underwent video-assisted thoracoscopic surgery (VATS) once diagnosed and 20 patients chose to undergo observation. Of these 20 patients, 16 patients developed symptoms during the observa
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Peng, Yuanying, Sean C. Thomas, and Dalung Tian. "Forest management and soil respiration: Implications for carbon sequestration." Environmental Reviews 16, NA (2008): 93–111. http://dx.doi.org/10.1139/a08-003.

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It is recognized that human activities, such as fossil fuel burning, land-use change, and forest harvesting at a large scale, have resulted in the increase of greenhouse gases in the atmosphere since the onset of the industrial revolution. The increasing amounts of greenhouse gases, particularly CO2 in the atmosphere, is believed to have induced climate change and global warming. With the ability to remove CO2 from the atmosphere through photosynthesis, forests play a critical role in the carbon cycle and carbon sequestration at both global and local scales. It is necessary to understand the r
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Qiu, Mingli, Yuxin Zhao, and Dianfeng Liu. "Assessing Forest Carbon Sequestration in China Under Multiple Climate Change Mitigation Scenarios." Land 14, no. 3 (2025): 571. https://doi.org/10.3390/land14030571.

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Understanding how climate policies impact forest carbon sequestration is crucial for optimizing mitigation strategies. This study evaluated forest carbon sequestration in China from 2020 to 2060 under three climate scenarios: SSP1-2.6 (high mitigation), SSP3-7.0 (limited mitigation), and SSP5-8.5 (no mitigation). We integrated the land-use harmonization (LUH2) and patch-generating land-use simulation (PLUS) models to project forest cover change, and the Lund–Potsdam–Jena managed land (LPJmL) model to simulate carbon dynamics. The results showed stronger mitigation efforts led to higher sequest
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Johnson, Trevor D., and Donna Mitchell-McCallister. "Agricultural Carbon Sequestration: Incentives, Contracts, and Impacts on Water Resources in the Texas High Plains." Journal of Natural Resources and Agricultural Ecosystems 3, no. 2 (2025): 53–68. https://doi.org/10.13031/jnrae.16207.

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HighlightsThe broad scope of CSA may hinder the development of projects that include agricultural mitigation strategies.The state of soil carbon contracts and offset markets could limit engagement in carbon initiatives by THP producers.Climate-smart practices aimed at carbon sequestration in the THP may offer co-benefits for water conservation, helping to alleviate pressures on limited water resources.Mitigation initiatives should consider regional climatic and economic conditions in future development.ABSTRACT. Agricultural production in the Texas High Plains (THP) has the potential to seques
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Brown, Stephen C., FCPaed Dch, Mark De Laat, et al. "Treatment strategies for pulmonary sequestration in childhood: resection, embolization, observation?" Acta Cardiologica 67, no. 6 (2012): 629–34. http://dx.doi.org/10.1080/ac.67.6.2184664.

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Dey, Pradip, S. R. Singh, and B. S. Sekhon. "Systems approach vis-à-vis carbon sequestration: issues and strategies." Current Science 127, no. 12 (2024): 1420. https://doi.org/10.18520/cs/v127/i12/1420-1426.

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Kopitha, Kirushnapillai, Pathmanathan Rajeev, Jay Sanjayan, and Yogarajah Elakneswaran. "CO2 sequestration and low carbon strategies in 3D printed concrete." Journal of Building Engineering 99 (April 2025): 111653. https://doi.org/10.1016/j.jobe.2024.111653.

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Herzog, Howard J. "CO2 Mitigation Strategies: Perspectives on the Capture and Sequestration Option." Energy & Environment 7, no. 2 (1996): 223–36. http://dx.doi.org/10.1177/0958305x9600700209.

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Kätterer, T., M. A. Bolinder, K. Berglund, and H. Kirchmann. "Strategies for carbon sequestration in agricultural soils in northern Europe." Acta Agriculturae Scandinavica, Section A - Animal Science 62, no. 4 (2012): 181–98. http://dx.doi.org/10.1080/09064702.2013.779316.

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Harp, Dylan R., Philip H. Stauffer, Daniel O’Malley, et al. "Development of robust pressure management strategies for geologic CO2 sequestration." International Journal of Greenhouse Gas Control 64 (September 2017): 43–59. http://dx.doi.org/10.1016/j.ijggc.2017.06.012.

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Liu, Xueliang, Baoxin Zhang, Xuehai Fu, Jielin Lu, Manli Huang, and Fanhua (Bill) Zeng. "Potential, Efficiency, and Leakage Risk of CO2 Sequestration in Coal: A Review." Processes 13, no. 6 (2025): 1680. https://doi.org/10.3390/pr13061680.

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CO2 sequestration in coal is effective for reducing carbon emissions, but related projects have encountered challenges in sustained CO2 injection, highlighting the need for a comprehensive understanding of CO2 sequestration in coal. This study reviews variations in the properties of coal/rock during/after CO2 injection, demonstrating the potential and stability of CO2 sequestration in coal. The coal with a high VL-CO2/VL-CH4 is accompanied by high CO2 sequestration capacity. The matrix swelling and acid corrosion restrict CO2 sequestration efficiency, which can be enhanced by employing coating
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Wang, Cong, Huifeng Sun, Xianxian Zhang, Jining Zhang, and Sheng Zhou. "Optimal Straw Retention Strategies for Low-Carbon Rice Production: 5 Year Results of an In Situ Trial in Eastern China." Agronomy 13, no. 6 (2023): 1456. http://dx.doi.org/10.3390/agronomy13061456.

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Crop straw retention in the rice-based rotation cropland has been widely accepted as an effective method to improve soil quality in China. Rice–wheat rotation cropland is one the most prevalent rice-based rotation patterns, where it only exploits a small proportion of the total agricultural land yet feeds the majority of the Chinese population. Previous studies indicated that the incorporation of fore-rotating crop straw can effectively facilitate soil carbon sequestration in rice paddy fields. However, the application of crop straw may increase methane (CH4) emissions from rice paddies due to
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Parrow, Nermi L., Robert E. Fleming, and Michael F. Minnick. "Sequestration and Scavenging of Iron in Infection." Infection and Immunity 81, no. 10 (2013): 3503–14. http://dx.doi.org/10.1128/iai.00602-13.

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ABSTRACTThe proliferative capability of many invasive pathogens is limited by the bioavailability of iron. Pathogens have thus developed strategies to obtain iron from their host organisms. In turn, host defense strategies have evolved to sequester iron from invasive pathogens. This review explores the mechanisms employed by bacterial pathogens to gain access to host iron sources, the role of iron in bacterial virulence, and iron-related genes required for the establishment or maintenance of infection. Host defenses to limit iron availability for bacterial growth during the acute-phase respons
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Keerthi, Murugesan Mohana. "Innovative Approaches To Carbon Sequestration Emerging Technologies And Global Impacts On Climate Change Mitigation." Environmental Reports 6, no. 2 (2024): 15–18. https://doi.org/10.51470/er.2024.6.2.15.

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Carbon sequestration is emerging as a crucial strategy to mitigate the effects of climate change by reducing atmospheric carbon dioxide (CO2) concentrations. While natural processes such as forests and oceans contribute to carbon storage, engineered approaches have gained significant attention due to their potential to enhance sequestration on a global scale. This review explores innovative carbon sequestration technologies, including Direct Air Capture (DAC), Bioenergy with Carbon Capture and Storage (BECCS), soil carbon sequestration, ocean fertilization, and carbon mineralization. Each of t
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Xiang, Yun, Man Cheng, Yongli Wen, and Frédéric Darboux. "Soil Organic Carbon Sequestration under Long-Term Chemical and Manure Fertilization in a Cinnamon Soil, Northern China." Sustainability 14, no. 9 (2022): 5109. http://dx.doi.org/10.3390/su14095109.

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To mitigate climate change and improve food security, it is essential to understand how fertilizer strategies impact the dynamics of soil organic carbon and its fractions. The soil organic carbon (SOC), light fraction organic carbon (LFOC), and particulate organic carbon (POC) were investigated every five years in a corn (Zea mays L.) cropping system with chemical fertilization and manuring over twenty-four years (1992–2016) in a semiarid area of northern China. There were four treatments with chemical fertilizer (i.e., N1P1, N2P2, N3P3, N4P4), three treatments with chemical fertilizer plus ma
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Ansari, Haya, Tisha Patel, Chetana Roat, Syed Zaheer Hasan, and Flory Kothari. "Study of Biological CO2 Sequestration on Microalgae Species." Current Research in Environmental Science and Ecology Letters 1, no. 2 (2024): 01–06. https://doi.org/10.33140/cresel.01.02.04.

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Microalgae represent efficient photosynthetic microorganisms with the potential to serve as natural air purifiers by generating oxygen and reducing CO2 levels. They utilize dissolved carbonate and bicarbonate from CO2 in the culture medium to support their growth. As they proliferate, the pH of the medium increases, creating favorable conditions for microalgae growth. This study focuses on characterizing microalgae for their efficiency in CO2 fixation and biomass production within a closed system. Optical density, pH, and dissolved CO2 levels were measured. Optimization of extraction methods f
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Si, Mingqian, Yan Mu, and Youting Han. "Road Landscape Design: Harmonious Relationship Between Ecology and Aesthetics." Forests 15, no. 11 (2024): 2008. http://dx.doi.org/10.3390/f15112008.

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In view of global climate and environmental challenges, exploring sustainable urban vegetation management and development is crucial. This study aims to investigate the design strategies of urban road green space plants under the guidance of the dual theories of carbon sequestration and cooling eco-efficiency and aesthetics. In this study, Yangling, a representative small- and medium-sized city, was selected as the study area, and road green space plants were identified as the research objects. The assimilation method was employed to ascertain the carbon sequestration and oxygen release, as we
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Jamil, Muhammad Rahat. "Integrated Approaches to Urban Energy Efficiency and Carbon Sequestration: A Framework for Implementing Urban Digital Twins." Smart Design Policies 2, no. 1 (2025): 73–91. https://doi.org/10.38027/smart.v2n1-5.

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Energy efficiency and carbon sequestration are fundamental components of sustainable urban development, as cities account for majority of global energy consumption and carbon emissions. This research explores Urban Digital Twins (UDTs) as an innovative approach to optimizing operational energy use and enhancing carbon sequestration in urban environments. UDTs integrate real-time data processing, simulation models, and public participation to drive sustainable energy management and emissions reduction. The study examines two pilot buildings in Thailand and Vietnam, using energy data to evaluate
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