Artigos de revistas sobre o tema "Soil remediation"
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Veja os 50 melhores artigos de revistas para estudos sobre o assunto "Soil remediation".
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Lin, Mengting, Sairu Ma, Jie Liu, Xusheng Jiang e Demin Dai. "Remediation of Arsenic and Cadmium Co-Contaminated Soil: A Review". Sustainability 16, n.º 2 (12 de janeiro de 2024): 687. http://dx.doi.org/10.3390/su16020687.
Texto completo da fonteMadonna, Sandra, Agus Jatnika Effendi, Edwan Kardena e Syarif Hidayat. "Bioavailability enhancement of petroleum-contaminated soil by electrokinetic remediation". E3S Web of Conferences 485 (2024): 02007. http://dx.doi.org/10.1051/e3sconf/202448502007.
Texto completo da fonteKowalska, Aneta, Jana Růžičková, Marek Kucbel e Anna Grobelak. "Carbon Sequestration in Remediated Post-Mining Soils: A New Indicator for the Vertical Soil Organic Carbon Variability Evaluation in Remediated Post-Mining Soils". Energies 16, n.º 16 (8 de agosto de 2023): 5876. http://dx.doi.org/10.3390/en16165876.
Texto completo da fonteWang, Yu, Feng Pan, Qiong Wang, Jie Luo, Qin Zhang, Yingying Pan, Chenliang Wu e Wei Liu. "The Effect of Different Remediation Treatments on Soil Fungal Communities in Rare Earth Tailings Soil". Forests 13, n.º 12 (24 de novembro de 2022): 1987. http://dx.doi.org/10.3390/f13121987.
Texto completo da fonteLu, Yichang, Jiaqi Cheng, Jieni Wang, Fangfang Zhang, Yijun Tian, Chenxiao Liu, Leichang Cao e Yanmei Zhou. "Efficient Remediation of Cadmium Contamination in Soil by Functionalized Biochar: Recent Advances, Challenges, and Future Prospects". Processes 10, n.º 8 (17 de agosto de 2022): 1627. http://dx.doi.org/10.3390/pr10081627.
Texto completo da fonteShit, Puspendu, Indranil Bhattacharjee, Partha Pratim Chakravorty, Harekrishna Jana e Yuji Sakai. "Pesticide Soil Pollution: An Overview about Advantages and Disadvantages of Different Remediation Technologies". Current World Environment 18, n.º 2 (31 de agosto de 2023): 752–74. http://dx.doi.org/10.12944/cwe.18.2.25.
Texto completo da fonteLee, Sang-Hwan, Soon-Oh Kim, Sang-Woo Lee, Min-Suk Kim e Hyun Park. "Application of Soil Washing and Thermal Desorption for Sustainable Remediation and Reuse of Remediated Soil". Sustainability 13, n.º 22 (12 de novembro de 2021): 12523. http://dx.doi.org/10.3390/su132212523.
Texto completo da fonteAlazaiza, Motasem Y. D., Ahmed Albahnasawi, Gomaa A. M. Ali, Mohammed J. K. Bashir, Nadim K. Copty, Salem S. Abu Amr, Mohammed F. M. Abushammala e Tahra Al Maskari. "Recent Advances of Nanoremediation Technologies for Soil and Groundwater Remediation: A Review". Water 13, n.º 16 (10 de agosto de 2021): 2186. http://dx.doi.org/10.3390/w13162186.
Texto completo da fonteCao, Jian, Chenyang Lv, Chenxu Zhang, Fengxiang Yin, Zhengbo Gao, Long Wei e Lichang Wang. "Asynchronous Synergetic Remediation Strategy for Cd-Contaminated Soil via Passivation and Phytoremediation Technology". Agronomy 14, n.º 9 (26 de agosto de 2024): 1913. http://dx.doi.org/10.3390/agronomy14091913.
Texto completo da fonteSamokhvalova, V., A. Fateev, S. Zuza, Ya Pogromska, V. Zuza, Ye Panasenko e P. Gorpinchenko. "Phytoremediation of technologically polluted soils". Agroecological journal, n.º 1 (5 de março de 2015): 92–100. http://dx.doi.org/10.33730/2077-4893.1.2015.272192.
Texto completo da fontePan, Lixuan, Liangang Mao, Haonan Zhang, Pingping Wang, Chi Wu, Jun Xie, Bochi Yu et al. "Modified Biochar as a More Promising Amendment Agent for Remediation of Pesticide-Contaminated Soils: Modification Methods, Mechanisms, Applications, and Future Perspectives". Applied Sciences 12, n.º 22 (14 de novembro de 2022): 11544. http://dx.doi.org/10.3390/app122211544.
Texto completo da fonteTaraqqi-A-Kamal, A., Christopher J. Atkinson, Aimal Khan, Kaikai Zhang, Peng Sun, Sharmin Akther e Yanrong Zhang. "Biochar remediation of soil: linking biochar production with function in heavy metal contaminated soils". Plant, Soil and Environment 67, No. 4 (30 de março de 2021): 183–201. http://dx.doi.org/10.17221/544/2020-pse.
Texto completo da fonteTiwari, Mehul, e Divya Bajpai Tripathy. "Soil Contaminants and Their Removal through Surfactant-Enhanced Soil Remediation: A Comprehensive Review". Sustainability 15, n.º 17 (1 de setembro de 2023): 13161. http://dx.doi.org/10.3390/su151713161.
Texto completo da fonteLee, Sang Hwan, Jung Hyun Lee, Woo Chul Jung, Misun Park, Min Suk Kim, Seung Jae Lee e Hyun Park. "Changes in Soil Health with Remediation of Petroleum Hydrocarbon Contaminated Soils Using Two Different Remediation Technologies". Sustainability 12, n.º 23 (3 de dezembro de 2020): 10078. http://dx.doi.org/10.3390/su122310078.
Texto completo da fonteBarbosa Ferreira, Maiara, Aline Maria Sales Solano, Elisama Vieira dos Santos, Carlos A. Martínez-Huitle e Soliu O. Ganiyu. "Coupling of Anodic Oxidation and Soil Remediation Processes: A Review". Materials 13, n.º 19 (27 de setembro de 2020): 4309. http://dx.doi.org/10.3390/ma13194309.
Texto completo da fonteKowalska, Aneta, Bal Ram Singh e Anna Grobelak. "Carbon Footprint for Post-Mining Soils: The Dynamic of Net CO2 Fluxes and SOC Sequestration at Different Soil Remediation Stages under Reforestation". Energies 15, n.º 24 (13 de dezembro de 2022): 9452. http://dx.doi.org/10.3390/en15249452.
Texto completo da fonteIbaba, Ayibanoa L., e Achimota A. Dickson. "Organic Manure Enhanced Phytoremediation of Crude Oil Contaminated Soils in The Niger Delta: The Potentials of Cowpea (Vigna Unguiculata)". Global Journal of Agricultural Research 12, n.º 1 (15 de janeiro de 2024): 16–24. http://dx.doi.org/10.37745/gjar.2013/vol12n11624.
Texto completo da fonteSilva, José Leôncio de Almeida, Sergio Nascimento Duarte, Demetrius David Da Silva e Neyton De Oliveira Miranda. "Reclamation of salinized soils due to excess of fertilizers: evaluation of leaching systems and equations". DYNA 86, n.º 210 (1 de julho de 2019): 115–24. http://dx.doi.org/10.15446/dyna.v86n210.77391.
Texto completo da fonteBaek, Dong-Jun, Ye-Eun Kim, Moon-Young Jung, Hye-On Yoon e Jinsung An. "Feasibility of a Chemical Washing Method for Treating Soil Enriched with Fluorine Derived from Mica". Minerals 11, n.º 2 (29 de janeiro de 2021): 134. http://dx.doi.org/10.3390/min11020134.
Texto completo da fonteLiang, Li. "Numerical Simulation Method for Microbial Remediation Effect of Nano Heavy Metal Contaminated Soil". Journal of Nanomaterials 2022 (4 de agosto de 2022): 1–9. http://dx.doi.org/10.1155/2022/3318917.
Texto completo da fonteRen, Ke, Fangyuan Teng, Shejiang Liu e Xiuli Liu. "Analysis of the Effect of Soil Remediation Processes Contaminated by Heavy Metals in Different Soils". Water 14, n.º 24 (8 de dezembro de 2022): 4004. http://dx.doi.org/10.3390/w14244004.
Texto completo da fonteKim, Jin-Wook, Young-Kyu Hong, Hyuck-Soo Kim, Eun-Ji Oh, Yong-Ha Park e Sung-Chul Kim. "Metagenomic Analysis for Evaluating Change in Bacterial Diversity in TPH-Contaminated Soil after Soil Remediation". Toxics 9, n.º 12 (24 de novembro de 2021): 319. http://dx.doi.org/10.3390/toxics9120319.
Texto completo da fonteXIAO, Huiping, Fangfang LI, Fang ZHANG, Haoyu LONG e Ling LAN. "Mechanisms of electrokinetic technology to remediate different soils contaminated by cadmium". E3S Web of Conferences 194 (2020): 04050. http://dx.doi.org/10.1051/e3sconf/202019404050.
Texto completo da fonteJamil, Norashira, Aziman Madun, Saiful Azhar Ahmad Tajudin e Zaidi Embong. "An Overview of Electrokinetic Remediation Assisted Phytoremediation to Remediate Barren Acidic Soil". Applied Mechanics and Materials 773-774 (julho de 2015): 1476–80. http://dx.doi.org/10.4028/www.scientific.net/amm.773-774.1476.
Texto completo da fonteKho, Brendan Lik Sen, Ang Kean Hua e Mohd Fadzil Ali Ahmad. "Enhancing Soil Health: Nanotechnologies for Effective Remediation and Sustainable Development". Sustainable Environmental Insight 1, n.º 1 (4 de março de 2024): 45–57. http://dx.doi.org/10.53623/sein.v1i1.409.
Texto completo da fonteChen, Chuan Min, Xuan Liu, Tao Chen e Song Tao Liu. "The Detection and Remediation Technologies of PCB-Contaminated Soils". Applied Mechanics and Materials 768 (junho de 2015): 212–19. http://dx.doi.org/10.4028/www.scientific.net/amm.768.212.
Texto completo da fonteChen, Xuejun, Zhemin Shen, Yangming Lei, Bingxin Ju e Wenhua Wang. "Enhanced electrokinetic remediation of Cd and Pb spiked soil coupled with cation exchange membrane". Soil Research 44, n.º 5 (2006): 523. http://dx.doi.org/10.1071/sr05117.
Texto completo da fonteRahman, Alexandre. "Remediation Technology for the Restoration of Polluted Soil". Science Insights 41, n.º 2 (29 de julho de 2022): 593–97. http://dx.doi.org/10.15354/si.22.re071.
Texto completo da fonteCui, Jia-Qi, Qing-Sheng He, Ming-Hui Liu, Hong Chen, Ming-Bo Sun e Jian-Ping Wen. "Comparative Study on Different Remediation Strategies Applied in Petroleum-Contaminated Soils". International Journal of Environmental Research and Public Health 17, n.º 5 (2 de março de 2020): 1606. http://dx.doi.org/10.3390/ijerph17051606.
Texto completo da fonteSHIRATORI, Toshikazu. "Contaminated Soil Remediation". Shigen-to-Sozai 119, n.º 8 (2003): 441–50. http://dx.doi.org/10.2473/shigentosozai.119.441.
Texto completo da fonteYoon, Jung-Hwan, Chan-Gyu Lee, Byung-Jun Park, Seok Soon Jeong, Young Don Lee, Mary Beth Kirkham, Kwon-Rae Kim et al. "Combining Soil Immobilization and Dressing Techniques for Sustaining the Health of Metal-Contaminated Arable Soils". Sustainability 16, n.º 8 (12 de abril de 2024): 3227. http://dx.doi.org/10.3390/su16083227.
Texto completo da fonteAkwenuke, O. M., e U. N. Asibeluo. "Evaluating the effectiveness of various remediation therapies on the engineering properties of oil-contaminated soils". Journal of Engineering Innovations and Applications 2, n.º 2 (30 de agosto de 2023): 15–27. http://dx.doi.org/10.31248/jeia2023.027.
Texto completo da fonteBian, Wen, Yan Yu e Dong Yao Xu. "Advances on Remediation Techniques of Cd in Contaminated Soil". Advanced Materials Research 600 (novembro de 2012): 3–7. http://dx.doi.org/10.4028/www.scientific.net/amr.600.3.
Texto completo da fonteGinocchio, Rosanna, Matías Araya, Jéssica Machado, Luz María de la Fuente, Fabiola Orrego, Eduardo C. Arellano e Loretto Contreras-Porcia. "Seaweed biochar (sourced from marine water remediation farms) for soil remediation: Towards an integrated approach of terrestrial-coastal marine water remediation". BioResources 18, n.º 3 (17 de maio de 2023): 4637–56. http://dx.doi.org/10.15376/biores.18.3.4637-4656.
Texto completo da fonteCui, Fang, e Bo Yuan. "The Remediation Standards and Evaluation Methods for Remediation Effectiveness of Contaminated Soil". Advanced Materials Research 414 (dezembro de 2011): 68–75. http://dx.doi.org/10.4028/www.scientific.net/amr.414.68.
Texto completo da fonteShuang, Cui, Han Qing e Zhang Tianyi. "Overview of leaching remediation of heavy metal contamination in soil". E3S Web of Conferences 245 (2021): 02005. http://dx.doi.org/10.1051/e3sconf/202124502005.
Texto completo da fonteMazarji, Mahmoud, Muhammad Tukur Bayero, Tatiana Minkina, Svetlana Sushkova, Saglara Mandzhieva, Andrey Tereshchenko, Anna Timofeeva et al. "Realizing United Nations Sustainable Development Goals for Greener Remediation of Heavy Metals-Contaminated Soils by Biochar: Emerging Trends and Future Directions". Sustainability 13, n.º 24 (14 de dezembro de 2021): 13825. http://dx.doi.org/10.3390/su132413825.
Texto completo da fonteBurlakovs, J., M. Klavins e A. Karklina. "Remediation of Soil Contamination with Heavy Metals by Using Zeolite and Humic Acid Additives". Latvian Journal of Chemistry 51, n.º 4 (1 de dezembro de 2012): 336–41. http://dx.doi.org/10.2478/v10161-012-0019-6.
Texto completo da fonteYi, Yong Min, e Kijune Sung. "Soil quality assessment of remediated soils". Korean Ecological Engineering Society 9, n.º 1 (30 de dezembro de 2022): 11–16. http://dx.doi.org/10.33214/kees.2022.9.1.11.
Texto completo da fonteKowalska, Aneta, Marek Kucbel e Anna Grobelak. "Potential and Mechanisms for Stable C Storage in the Post-Mining Soils under Long-Term Study in Mitigation of Climate Change". Energies 14, n.º 22 (15 de novembro de 2021): 7613. http://dx.doi.org/10.3390/en14227613.
Texto completo da fonteLi, Chun Rong, Abao Wei e Tao Chen. "Phytoremediation of Petroleum-Contaminated Soil". Advanced Materials Research 356-360 (outubro de 2011): 2737–40. http://dx.doi.org/10.4028/www.scientific.net/amr.356-360.2737.
Texto completo da fonteZheng, Haozhe. "Microbial Electrochemical-based Biofuel Cell System for Remediation of Oil Contaminated Soil". Highlights in Science, Engineering and Technology 26 (30 de dezembro de 2022): 87–93. http://dx.doi.org/10.54097/hset.v26i.3655.
Texto completo da fonteGwon, Yeseul, Seong Ryeol Kim e Eun Jung Kim. "Effect of Soil Washing Using Oxalic Acid on Arsenic Speciation and Bioaccessibility in Soils". Journal of Korean Society of Environmental Engineers 42, n.º 4 (30 de abril de 2020): 218–27. http://dx.doi.org/10.4491/ksee.2020.42.4.218.
Texto completo da fonteCampillo-Cora, Claudia, Diego Soto-Gómez, Manuel Arias-Estévez e David Fernández-Calviño. "Assessment of Polluted Soil Remediation Using Bacterial Community Tolerance to Heavy Metals as an Indicator". Agronomy 12, n.º 10 (23 de setembro de 2022): 2280. http://dx.doi.org/10.3390/agronomy12102280.
Texto completo da fonteMangkoedihardjo, Sarwoko, e Harida Samudro. "Preventive remediation methods minimize soil pollution". International Journal of Advances in Applied Sciences 12, n.º 1 (1 de março de 2023): 60. http://dx.doi.org/10.11591/ijaas.v12.i1.pp60-65.
Texto completo da fonteBertin, Henri, Estefania Del Campo Estrada e Olivier Atteia. "Foam placement for soil remediation". Environmental Chemistry 14, n.º 5 (2017): 338. http://dx.doi.org/10.1071/en17003.
Texto completo da fonteKpakol, N. N., T. Osasere-Omoruyi, D. C. Belonwu e S. E. Okoro. "Efficiency of cow horn-powder in the remediation of crude oil impacted soil". Scientia Africana 23, n.º 1 (30 de março de 2024): 59–72. http://dx.doi.org/10.4314/sa.v23i1.5.
Texto completo da fonteYan, Yunxian, Lingqing Wang e Jun Yang. "The Willingness and Technology Preferences of Farmers and Their Influencing Factors for Soil Remediation". Land 11, n.º 10 (17 de outubro de 2022): 1821. http://dx.doi.org/10.3390/land11101821.
Texto completo da fonteItam, Daniel Hogan, Ngozi Uzor Udeh e Ejikeme Ugwoha. "Modelling and Optimizing the Effect of pH on Remediation of Crude Oil Polluted Soil with Biochar Blend: RSM Approach". Advances in Research 24, n.º 3 (15 de março de 2023): 56–73. http://dx.doi.org/10.9734/air/2023/v24i3942.
Texto completo da fonteZhao, Lei, Cong Lyu e Yu Li. "Analysis of Factors Influencing Plant–Microbe Combined Remediation of Soil Contaminated by Polycyclic Aromatic Hydrocarbons". Sustainability 13, n.º 19 (26 de setembro de 2021): 10695. http://dx.doi.org/10.3390/su131910695.
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