Artigos de revistas sobre o tema "Pollutants detection"
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Song, Wei. "Abnormal Concentration Detection Method of Chemical Pollutants Based on Multisensor Fusion". Journal of Sensors 2022 (2 de agosto de 2022): 1–10. http://dx.doi.org/10.1155/2022/2936960.
Texto completo da fonteDwi Laksana, Saga Dermawan, Sayekti Wahyuningsih e Ari Handono Ramelan. "MITIGATION EFFORTS FOR QUICK DETECTION OF POLUTAN GAS AT PUTRI CEMPO TPA USING PROTOTYPE ZnOTiO2GO". Azerbaijan Chemical Journal, n.º 2 (7 de maio de 2024): 84–93. http://dx.doi.org/10.32737/0005-2531-2024-2-84-93.
Texto completo da fonteZhang, Jun-Hua, Zi-Tong Zhang, Yang-Jing Ou, Fei Zhang, Jie Meng, Gen Wang, Zhao-Lin Fang e Yan Li. "Red-emitting GSH-Cu NCs as a triplet induced quenched fluorescent probe for fast detection of thiol pollutants". Nanoscale 12, n.º 37 (2020): 19429–37. http://dx.doi.org/10.1039/d0nr04645k.
Texto completo da fontePang, Shaoning, Lei Song, Abdolhossein Sarrafzadeh, Guy Coulson, Ian Longley e Gustavo Olivares. "Indoor Emission Sources Detection by Pollutants Interaction Analysis". Applied Sciences 11, n.º 16 (17 de agosto de 2021): 7542. http://dx.doi.org/10.3390/app11167542.
Texto completo da fonteYu, Jie, Yitong Cao, Fei Shi, Jiegen Shi, Dibo Hou, Pingjie Huang, Guangxin Zhang e Hongjian Zhang. "Detection and Identification of Organic Pollutants in Drinking Water from Fluorescence Spectra Based on Deep Learning Using Convolutional Autoencoder". Water 13, n.º 19 (25 de setembro de 2021): 2633. http://dx.doi.org/10.3390/w13192633.
Texto completo da fonteBadea, Mihaela, Izabela RoxanaVoina, Gheorghe Coman, Lucia Dumitrescu, Camelia Draghici e Mihaela Idomir. "POLLUTANTS DETECTION USING HAPTEN DERIVATIZATION". Environmental Engineering and Management Journal 4, n.º 2 (2005): 223–27. http://dx.doi.org/10.30638/eemj.2005.024.
Texto completo da fonteGorshteyn, Alexander Y., Zinoviy Kataenko, Sigurdur Smarason e Albert Robbat. "Subsurface Detection of Environmental Pollutants". Instrumentation Science & Technology 27, n.º 2 (abril de 1999): 111–21. http://dx.doi.org/10.1080/10739149908085839.
Texto completo da fonteKumar, Vinay, Munish Sharma, Sonica Sondhi, Komalpreet Kaur, Deepak Sharma, Shivali Sharma e Divya Utreja. "Removal of Inorganic Pollutants from Wastewater: Innovative Technologies and Toxicity Assessment". Sustainability 15, n.º 23 (28 de novembro de 2023): 16376. http://dx.doi.org/10.3390/su152316376.
Texto completo da fonteZhang, Kai, Xinlong Song, Meng Liu, Menghua Chen, Jie Li e Jinglong Han. "Review on the Use of Magnetic Nanoparticles in the Detection of Environmental Pollutants". Water 15, n.º 17 (28 de agosto de 2023): 3077. http://dx.doi.org/10.3390/w15173077.
Texto completo da fonteGagliardi, Roberta Valentina, e Claudio Andenna. "Change Points Detection and Trend Analysis to Characterize Changes in Meteorologically Normalized Air Pollutant Concentrations". Atmosphere 13, n.º 1 (30 de dezembro de 2021): 64. http://dx.doi.org/10.3390/atmos13010064.
Texto completo da fonteTong, Jin, Chengxin Song, Tianjian Tong, Xuanjie Zong, Zhaoyang Liu, Songyang Wang, Lidong Tan, Yinwu Li e Zhiyong Chang. "Design and Optimization of Electronic Nose Sensor Array for Real-Time and Rapid Detection of Vehicle Exhaust Pollutants". Chemosensors 10, n.º 12 (22 de novembro de 2022): 496. http://dx.doi.org/10.3390/chemosensors10120496.
Texto completo da fonteAbdel-Razzaq, Faten Abdel-Wahhab, Ayad Abdul Razzak Dhaigham e Sameer Khudhur Yaseen. "Design and Construction of a Dust Detection System using Infrared Laser: The Case of Dust Storms in Baghdad in the Summer 2022". Iraqi Journal of Physics 21, n.º 1 (1 de março de 2023): 34–41. http://dx.doi.org/10.30723/ijp.v21i1.1077.
Texto completo da fonteGavrilaș, Simona, Claudiu Ștefan Ursachi, Simona Perța-Crișan e Florentina-Daniela Munteanu. "Recent Trends in Biosensors for Environmental Quality Monitoring". Sensors 22, n.º 4 (15 de fevereiro de 2022): 1513. http://dx.doi.org/10.3390/s22041513.
Texto completo da fonteEmara, Ahmed, Amr Yousef e Khaled Elleithy. "Ultra-Sensitive Si-Based Optical Sensor for Nanoparticle-Size Traditional Water Pollutant Detection". Photonics 9, n.º 5 (23 de abril de 2022): 289. http://dx.doi.org/10.3390/photonics9050289.
Texto completo da fonteLi, Zhi, e Mingshan Zhu. "Detection of pollutants in water bodies: electrochemical detection or photo-electrochemical detection?" Chemical Communications 56, n.º 93 (2020): 14541–52. http://dx.doi.org/10.1039/d0cc05709f.
Texto completo da fonteLiu, Junyuan. "Detection, Treatment and Remediation for Organochlorines". MATEC Web of Conferences 386 (2023): 03016. http://dx.doi.org/10.1051/matecconf/202338603016.
Texto completo da fonteMeulenberg, Eline P., Gijsbert O. H. Peelen, Eddie Lukkien e Kees Koopal. "Immunochemical detection methods for bioactive pollutants". International Journal of Environmental Analytical Chemistry 85, n.º 12-13 (15 de outubro de 2005): 861–70. http://dx.doi.org/10.1080/03067310500158180.
Texto completo da fonteSushil, Kumar, Chaudhary Ganga Ram, Chaudhary Savita e Umar Ahmad. "Lanthanide Oxide Nanoparticles for Environmental Remediation: A Review". MatSci Express 01, n.º 01 (1 de março de 2024): 03–20. http://dx.doi.org/10.69626/mse.2024.0003.
Texto completo da fonteBurratti, Luca, Erica Ciotta, Fabio De Matteis e Paolo Prosposito. "Metal Nanostructures for Environmental Pollutant Detection Based on Fluorescence". Nanomaterials 11, n.º 2 (21 de janeiro de 2021): 276. http://dx.doi.org/10.3390/nano11020276.
Texto completo da fonteLiao, Junlin. "Relationship Analysis of AQI and Air Pollutants with Association Rule". Highlights in Science, Engineering and Technology 56 (14 de julho de 2023): 209–15. http://dx.doi.org/10.54097/hset.v56i.10110.
Texto completo da fonteCardone, Barbara, Ferdinando Di Martino e Vittorio Miraglia. "A GIS-Based Fuzzy Model to Detect Critical Polluted Urban Areas in Presence of Heatwave Scenarios". Computers 13, n.º 6 (5 de junho de 2024): 143. http://dx.doi.org/10.3390/computers13060143.
Texto completo da fonteXiong, Jie, Yongqing Bai, Tianliang Zhao, Yue Zhou, Xiaoyun Sun, Jiaping Xu, Wengang Zhang, Liang Leng e Guirong Xu. "Synergistic Effect of Atmospheric Boundary Layer and Regional Transport on Aggravating Air Pollution in the Twain-Hu Basin: A Case Study". Remote Sensing 14, n.º 20 (15 de outubro de 2022): 5166. http://dx.doi.org/10.3390/rs14205166.
Texto completo da fonteYu, Jie, Xiaoyan Zhang, Dibo Hou, Fang Chen, Tingting Mao, Pingjie Huang e Guangxin Zhang. "Detection of Water Contamination Events Using Fluorescence Spectroscopy and Alternating Trilinear Decomposition Algorithm". Journal of Spectroscopy 2017 (2017): 1–9. http://dx.doi.org/10.1155/2017/1485048.
Texto completo da fonteShahzad, Laila, Hamna Zubair e Maryam Ali. "Toxic Toys Threaten the Health of the Children: An Appraisal of Potential Literature". Pakistan Journal of Medical and Health Sciences 16, n.º 2 (26 de fevereiro de 2022): 13–16. http://dx.doi.org/10.53350/pjmhs2216213.
Texto completo da fonteLi-Destri, Giovanni, Dario Menta, Carmelo Menta e Nunzio Tuccitto. "Effect of Unmanned Aerial Vehicles on the Spatial Distribution of Analytes from Point Source". Chemosensors 8, n.º 3 (25 de agosto de 2020): 77. http://dx.doi.org/10.3390/chemosensors8030077.
Texto completo da fonteLionetto, Maria G., Roberto Caricato e Maria E. Giordano. "Pollution Biomarkers in Environmental and Human Biomonitoring". Open Biomarkers Journal 9, n.º 1 (31 de janeiro de 2019): 1–9. http://dx.doi.org/10.2174/1875318301909010001.
Texto completo da fonteKara, Gülnihal, e Mehmet Emin Aydın. "Indoor Air Pollutants and Methods of Detection". European Journal of Basic Medical Sciences 1, n.º 1 (1 de dezembro de 2011): 39–49. http://dx.doi.org/10.21601/ejbms/9166.
Texto completo da fonteShamirzaev, V. T., V. A. Gaisler e T. S. Shamirzaev. "Luminescence detection of petroleum pollutants in water". Bulletin of the Russian Academy of Sciences: Physics 79, n.º 2 (fevereiro de 2015): 165–68. http://dx.doi.org/10.3103/s1062873815020264.
Texto completo da fontevan der Meer, Jan Roelof, Davide Merulla e Siham Beggah. "Synthetic bioreporters for detection of environmental pollutants". New Biotechnology 31 (julho de 2014): S36—S37. http://dx.doi.org/10.1016/j.nbt.2014.05.1695.
Texto completo da fonteAkkam, Yazan, Derar Omari, Hassan Alhmoud, Mohammad Alajmi, Nosaibah Akkam e Islam Aljarrah. "Assessment of Xenoestrogens in Jordanian Water System: Activity and Identification". Toxics 11, n.º 1 (9 de janeiro de 2023): 63. http://dx.doi.org/10.3390/toxics11010063.
Texto completo da fonteChen, Xingang, Lei Zhu, Zhipeng Ma, Meilin Wang, Rui Zhao, Yueyue Zou e Yijie Fan. "Ag Nanoparticles Decorated ZnO Nanorods as Multifunctional SERS Substrates for Ultrasensitive Detection and Catalytic Degradation of Rhodamine B". Nanomaterials 12, n.º 14 (13 de julho de 2022): 2394. http://dx.doi.org/10.3390/nano12142394.
Texto completo da fonteFu, Huiping, Ning Ding, Dan Ma, Qing Xu, Bingyong Lin, Bin Qiu, Zhenyu Lin e Longhua Guo. "Green Synthesis of Three-Dimensional Au Nanorods@TiO2 Nanocomposites as Self-Cleaning SERS Substrate for Sensitive, Recyclable, and In Situ Sensing Environmental Pollutants". Biosensors 13, n.º 1 (22 de dezembro de 2022): 7. http://dx.doi.org/10.3390/bios13010007.
Texto completo da fonteBarbillon, Grégory, e Hélène Cheap-Charpentier. "Advances in Surface-Enhanced Raman Scattering Sensors of Pollutants in Water Treatment". Nanomaterials 13, n.º 17 (25 de agosto de 2023): 2417. http://dx.doi.org/10.3390/nano13172417.
Texto completo da fonteSentic, Milica, Ivana Trajkovic, Dragan Manojlovic, Dalibor Stankovic, Maria Vesna Nikolic, Neso Sojic e Jasmina Vidic. "Luminescent Metal–Organic Frameworks for Electrochemiluminescent Detection of Water Pollutants". Materials 16, n.º 23 (4 de dezembro de 2023): 7502. http://dx.doi.org/10.3390/ma16237502.
Texto completo da fonteChen, Bin, Darui Gao, Junhai Yang e Zongshuai Li. "Design of an active detection system for ice and snow pollutants and freezing temperature on runway". Measurement Science and Technology 34, n.º 10 (29 de junho de 2023): 105102. http://dx.doi.org/10.1088/1361-6501/acdff4.
Texto completo da fonteWang, Binhui, Da Huang e Zuquan Weng. "Recent Advances in Polymer-Based Biosensors for Food Safety Detection". Polymers 15, n.º 15 (30 de julho de 2023): 3253. http://dx.doi.org/10.3390/polym15153253.
Texto completo da fonteSun, Xubo, e Jing Wei. "Inorganic Comparison of Inorganic Element Detection Technology in Soil". Frontiers in Sustainable Development 3, n.º 12 (22 de dezembro de 2023): 69–72. http://dx.doi.org/10.54691/dh84bm90.
Texto completo da fonteZhang, Kai, Meng Liu, Xinlong Song e Dongyu Wang. "Application of Luminescent Bacteria Bioassay in the Detection of Pollutants in Soil". Sustainability 15, n.º 9 (28 de abril de 2023): 7351. http://dx.doi.org/10.3390/su15097351.
Texto completo da fonteChachuła, Krystian, Tomasz Michał Słojewski e Robert Nowak. "Multisensor Data Fusion for Localization of Pollution Sources in Wastewater Networks". Sensors 22, n.º 1 (5 de janeiro de 2022): 387. http://dx.doi.org/10.3390/s22010387.
Texto completo da fonteMu, Yunyun, Miao Liu, Jiajun Li e Xinping Zhang. "Multifold Enhanced Raman Detection of Organic Molecules as Environmental Water Pollutants". Biosensors 13, n.º 1 (21 de dezembro de 2022): 4. http://dx.doi.org/10.3390/bios13010004.
Texto completo da fonteHe, Xiaoyu, Xiaojian Xu e Zheng Zheng. "Optimal Band Analysis of a Space-Based Multispectral Sensor for Urban Air Pollutant Detection". Atmosphere 10, n.º 10 (19 de outubro de 2019): 631. http://dx.doi.org/10.3390/atmos10100631.
Texto completo da fonteMajder-Łopatka, Małgorzata, Wioletta Rogula-Kozłowska e Wiktor Wąsik. "The application of stand-off infrared detection to identify air pollutants". E3S Web of Conferences 44 (2018): 00104. http://dx.doi.org/10.1051/e3sconf/20184400104.
Texto completo da fonteWang, Chenyong, Chao Yang, Hongpeng Zhang, Shengzhao Wang, Zhaoxu Yang, Jingguo Fu e Yuqing Sun. "Marine-Hydraulic-Oil-Particle Contaminant Identification Study Based on OpenCV". Journal of Marine Science and Engineering 10, n.º 11 (21 de novembro de 2022): 1789. http://dx.doi.org/10.3390/jmse10111789.
Texto completo da fonteStanciu, Gabriela, e Magdalena Mititelu. "DETECTION OF SOME POLLUTANTS FROM BLACK SEA MUSSELS". Environmental Engineering and Management Journal 3, n.º 4 (2004): 701–6. http://dx.doi.org/10.30638/eemj.2004.069.
Texto completo da fonte郭, 满姣. "Detection and Protection of Radioactive Pollutants in Groundwater". Advances in Environmental Protection 09, n.º 06 (2019): 842–47. http://dx.doi.org/10.12677/aep.2019.96110.
Texto completo da fonteLima, G. R., M. S. Sthel, J. R. Tavares, D. U. Schramm, M. G. da Silva e H. Vargas. "Detection of gaseous pollutants by VNG-Powered vehicles". Procedia Environmental Sciences 4 (2011): 61–70. http://dx.doi.org/10.1016/j.proenv.2011.03.008.
Texto completo da fonteSá, Acelino C. de, Simone C. Barbosa, Paulo A. Raymundo-Pereira, Deivy Wilson, Flávio M. Shimizu, Maria Raposo e Osvaldo N. Oliveira. "Flexible Carbon Electrodes for Electrochemical Detection of Bisphenol-A, Hydroquinone and Catechol in Water Samples". Chemosensors 8, n.º 4 (17 de outubro de 2020): 103. http://dx.doi.org/10.3390/chemosensors8040103.
Texto completo da fonteAnsari, Saniya. "Water Pollution Management and detection techniques: a Review". International Journal of Computer Communication and Informatics 3, n.º 1 (30 de maio de 2021): 66–76. http://dx.doi.org/10.34256/ijcci2116.
Texto completo da fonteZhang, Feng Ying, e Yun Hua Gao. "Study on Green Gas Data Detection System". Advanced Materials Research 722 (julho de 2013): 322–27. http://dx.doi.org/10.4028/www.scientific.net/amr.722.322.
Texto completo da fonteDi Tinno, Alessio, Rocco Cancelliere, Pietro Mantegazza, Antonino Cataldo, Alesia Paddubskaya, Luigi Ferrigno, Polina Kuzhir et al. "Sensitive Detection of Industrial Pollutants Using Modified Electrochemical Platforms". Nanomaterials 12, n.º 10 (23 de maio de 2022): 1779. http://dx.doi.org/10.3390/nano12101779.
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