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Artykuły w czasopismach na temat "Lampblack"

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Egan, Moira. "Lampblack". Hopkins Review 9, nr 3 (2016): 324. http://dx.doi.org/10.1353/thr.2016.0068.

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Lawaju, Umesh, i Prakash Joshi. "Dye-Sensitized Solar Cells with Cost-Effective Counter Electrode Based on Soybean Oil Lampblack". Journal of Nepal Physical Society 8, nr 1 (13.12.2022): 1–6. http://dx.doi.org/10.3126/jnphyssoc.v8i1.48279.

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We have used soybean oil lampblack as a low-cost counter electrode (CE) material to replace expensive platinum in dye-sensitized solar cells (DSCs). The lampblack was prepared by obstructing the flame of the soybean oil lamp with a porcelain bowl and characterized with the techniques of X-ray diffraction (XRD) and Raman spectroscopy for structural analysis and scanning electron microscopy for surface morphology. The XRD of the lampblack indicated the presence of graphitic carbon in the lampblack while Raman spectroscopy of the carbonaceous material disclosed that the lampblack consists of both disordered and ordered forms of carbon. The lampblack was used with printer toner to prepare counter electrodes (CEs) of DSCs. The scanning electron microscopy of the film of the lampblack with toner showed that the toner serves as a binder to hold the particles of the lampblack on the CEs. The catalytic ability of the CEs was evaluated with electrochemical impedance spectroscopy (EIS). The charge transfer resistance Rct at the toner-electrolyte interface determined by EIS was extremely high (5.32 x 105 Ωcm2 ). Similarly, Rct at the carbon-electrolyte interface and platinum-electrolyte interface were 13.46 Ωcm2 and 2.29 Ωcm2 , respectively. The DSCs based on soybean oil lampblack achieved the light to electric energy conversion efficiency (η) of 2.58% and the platinum based solar cell achieved η of 3.67%.
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Joshi, Prakash, Umesh Lawaju i Anupam KC. "Lampblack of soybean oil as a low-cost electrode material in supercapacitor application". Scientific World 16, nr 16 (4.08.2023): 94–99. http://dx.doi.org/10.3126/sw.v16i16.56828.

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Lampblack of soybean oil was investigated as a potential low-cost material to make electrodes of supercapacitors. The lampblack carbon was characterized using Scanning Electron Microscopy (SEM) and Energy Dispersive X-ray Spectroscopy (EDS). The electrochemical performance of the lampblack carbon electrode was tested using a three-electrode system, where a platinum wire was used as a counter electrode, a carbon electrode as a working electrode, and Ag/AgCl electrode as a reference electrode. The experiments, Galvanostatic Charge-Discharge (GCD) and Cyclic Voltammetry (CV) were performed in 3M aq. KOH. The specific capacitance of the lampblack carbon electrode from GCD was found to be 49.27 F g-1 at 1 A g-1. The lampblack carbon electrode showed good capacitive behavior at both low and high scan rates. The results indicated that lampblack carbon of soybean oil can be a new efficient alternative material for low-cost high-performance supercapacitors.
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Kong, Huanping, Tao Jiang, Kai Zhao i Changkui Liu. "Failure analysis of smoke lampblack machine crack". Journal of Physics: Conference Series 2268, nr 1 (1.05.2022): 012015. http://dx.doi.org/10.1088/1742-6596/2268/1/012015.

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Abstract The smoke lampblack machine cracked in use. Through macro and micro morphology observation, energy spectrum detection, metallographic examination and finite element simulation calculation and analysis, the failure nature and reason of the smoke lampblack machine were determined. The results showed that the cracking property was corrosion fatigue, and the cracking of the smoke lampblack machine was caused by the damage of the protective layer in the vibration environment. It was suggested that the surface protection of smoke lampblack machine should be strengthened and the structural design of stress concentration should be improved.
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Wang, Yue Ren, Zhi Yang Su i Bo Song. "Residential Platoon Lampblack Machine in Adjustable under Shielded Enclosures Flow Characteristics Experimental Analysis". Advanced Materials Research 518-523 (maj 2012): 4445–48. http://dx.doi.org/10.4028/www.scientific.net/amr.518-523.4445.

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Purpose: Through to the kitchen lampblack machine in additional adjustable covered under the shielded enclosures for experiments, Testing whether it can effectively prevents the burning gas of waste and cooking produces in the process of lampblack diffusion. Through the additional adjustable cover lampblack machine to reduce the exhaust air, In order to save electricity and along with the reducing of the exhaust air, The heat of add fresh air will reduce. Would this easy and effective energy saving. Methods: Through the platoon lampblack machine on both sides of the additional adjustable cover hood, With the method of experimental detection of inside the kitchen CO and CO2 concentration. Results: In additional adjustable covered after cover CO and CO2 concentration decreased, exhaust air reduced. Conclusion: Shielded enclosures effective hindered the spread of lampblack, the new air volume air is reduced, and the heat gets lower, which saves energy.
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Joshi, Prakash, Umesh Lawaju i Binod B.K. "Composite of lampblack and printer toner powder as a low-cost counter electrode material for dye-sensitized solar cells". BIBECHANA 17 (1.01.2020): 58–66. http://dx.doi.org/10.3126/bibechana.v17i0.25598.

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Lampblack prepared by using a traditional mustard oil lamp was mixed with printer toner in the ratio of 1:1 by weight and the composite was used as a low-cost catalyst for the reduction of tri-iodide ions in dye-sensitized solar cells (DSCs). The X-ray diffraction (XRD) of the lampblack showed that the lampblack contains a carbonaceous material of graphitic form. The adhesion test of the composite film on the counter electrode (CE) of the DSC showed that the composite film is firmly attached on the CE. The DSC with CE based on the composite of lampblack and printer toner yielded the overall light to electricity conversion efficiency of 3.20 % compared with 4.18 % efficiency of the DSC with CE based on platinum when the solar cells were tested in the simulated light of 100 mW/cm2. BIBECHANA 17 (2020) 58-66
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Hu, Wanpeng, Jumei Ye, Xiaozhen Chen, Guoying Wang, Sen Li, Hui Wang, Hong Li i Haiping Zhang. "Dining Lampblack Treatment Processes in China". Processes 9, nr 12 (13.12.2021): 2241. http://dx.doi.org/10.3390/pr9122241.

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The PM2.5 and other small particles produced by cooking oil fumes have contributed up to 25% to the urban atmospheric PM2.5, which has a bad impact on air quality and seriously threatens human health. Aiming at the pollution problem caused by catering oil fume, this article analyzes the threats of air pollution to human health based on the compositions and characteristics of catering oil fume, illustrates the development trend of China′s food and beverage lampblack control policy, and summarizes and points out the current situation and development trend of catering oil fume treatment. In order to provide ideas for the design of more efficient and energy-saving treatment processes in the future, the advantages and disadvantages were reviewed, and the improvement direction of the treatment technology was discussed.
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Chawda, Lucky. "Performance Analysis of Domestic Refrigerators Condenser Coil By Applying Lampblack / Synthetic Black Blend". International Journal for Research in Applied Science and Engineering Technology 11, nr 6 (30.06.2023): 3173–79. http://dx.doi.org/10.22214/ijraset.2023.54270.

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Abstract: Domestic refrigerators are usually used for cooling the bounded space by absorbing the heat through the evaporator and simultaneously rejecting the heat to the surrounding through the condenser coil. The black color coated condenser coil is the main part that rejects heat to the surrounding in the form of radiations. Herein, to increase rejection of the heat from the condenser coil, to increase its performance, a blend of lampblack/ synthetic black (various w/w ratio) was partially painted on. The three different compositions (w/w) are applied on the condenser coil and accordingly, the heat radiating coefficient and coefficient of performance are measured. Optimized composition of lampblack /synthetic black (4:6) provided maximum performance in terms of coefficient of performance 5.51% and with heat transfer coefficient 16.11%. The results show a costeffective approaches to increase the performance as well as the life time.
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Zhang, Cailin, Fengwen Wang i Shuyun Yang. "Differences Research of Particles between Line Smoke and Lampblack". MATEC Web of Conferences 67 (2016): 06104. http://dx.doi.org/10.1051/matecconf/20166706104.

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Qin, Jiarui, i Qian Wei. "Wall-climbing obstacle-avoiding full-automatic lampblack cleaning device". IOP Conference Series: Materials Science and Engineering 793 (10.04.2020): 012036. http://dx.doi.org/10.1088/1757-899x/793/1/012036.

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Książki na temat "Lampblack"

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1945-, Muske-Dukes Carol, red. Lampblack and ash: Poems. Louisville, Ky: Sarabande Books, 2005.

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Peppino, Pablo. Lampblack: Issue Two. Longley, Camille, 2022.

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Palomera, Immar. Lampblack: 2017-2018 Collection. Immarart, 2018.

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The Lampblack Blue of Memory: My Mother Echoes. Tolsun Books, 2019.

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Części książek na temat "Lampblack"

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Gooch, Jan W. "Lampblack". W Encyclopedic Dictionary of Polymers, 419. New York, NY: Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_6768.

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"Lampblack". W Encyclopedic Dictionary of Polymers, 564. New York, NY: Springer New York, 2007. http://dx.doi.org/10.1007/978-0-387-30160-0_6658.

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"Scene 9. Sharing the Lampblack". W Mistress and Maid (Jiohong ji) by Meng Chengshun, 55–61. Columbia University Press, 2001. http://dx.doi.org/10.7312/birc12168-011.

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Streszczenia konferencji na temat "Lampblack"

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Liou, Shiuan-Ling, Chih-Hong Huang i Ping-Wen Lee. "THE DIFFUSION AND IMPROVEMENTS OF LAMPBLACK SUSPENDED PARTICLES IN THE KITCHEN". W DARCH 2022- 2nd International Conference on Architecture & Design. International Organization Center of Academic Research, 2022. http://dx.doi.org/10.46529/darch.202222.

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LI, Ting, i Xupeng WEI. "Lampblack Pollution and Control Measures in the Canteen of a University in Ji'nan". W International Conference on Biological Engineering and Pharmacy 2016 (BEP 2016). Paris, France: Atlantis Press, 2017. http://dx.doi.org/10.2991/bep-16.2017.81.

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