Academic literature on the topic 'LPG incineration'

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Journal articles on the topic "LPG incineration"

1

Zhou, Chilou, Haojun Lin, Guohua Chen, et al. "Experimental and numerical investigation on temperature uniformity of LPG cylinder in incineration test." Thermal Science, no. 00 (2022): 127. http://dx.doi.org/10.2298/tsci220418127z.

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The liquefied petroleum gas (LPG) cylinder incineration test is an important part of the cylinder periodic inspection to clean up the residual gas and ensure the safety of subsequent inspection items. However, the cylinder needs to be incinerated several times due to the uneven temperature distribution of the cylinder, leading to low incineration efficiency and waste of energy. In this study, a cylinder incineration test is experimentally investigated and a computational fluid dynamics (CFD) model is established to analyze the influence of incinerator structure parameters and cylinder types on
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2

Costa, R. C., and M. A. Martins. "PROTOTYPE OF A HEAT RECOVERY FOR COOLING OF GASES FROM INCINERATION OF HAZARDOUS WASTE." Revista de Engenharia Térmica 13, no. 1 (2014): 80. http://dx.doi.org/10.5380/reterm.v13i1.62074.

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This paper presents the stages of development and construction of a prototype of a shell and tube heat recovery for reuse heat energy of the products generated by combustion of hazardous waste incinerator class I. The performance and energy recovered by this system were calculated. It was transported the values found for a typical plant for the incineration of 1,000 kg h-1. Thus, to preheat the combustion air and drying the waste was obtained a reduction in the consumption of LPG 46 and 45%, respectively. Considering the complexity of the process, it was found that the preheating system is sim
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3

Fujii, Shin, Takaaki Furubayashi, and Toshihiko Nakata. "Design and Analysis of District Heating Systems Utilizing Excess Heat in Japan." Energies 12, no. 7 (2019): 1202. http://dx.doi.org/10.3390/en12071202.

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District heating systems (DHSs) which utilize excess heat play an important role in energy infrastructure in many European countries. In contrast to Europe, the DHS is not common and excess heat is not reused effectively in Japan. Almost all the DHSs in Japan were designed as first-generation district heating (1GDH) systems or 2GDH systems. No 4GDH systems have been introduced in Japan. The present study designs a 4GDH system utilizing excess heat from a wide area of Northern Japan and evaluates its feasibility. First, available heat amounts from two excess heat resources were calculated: wast
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Ni, Yuan Min, and Lei Li. "Garbage Incineration and Intelligent Fusion Strategy of Secondary Pollution Control." Advanced Materials Research 853 (December 2013): 323–28. http://dx.doi.org/10.4028/www.scientific.net/amr.853.323.

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To control the secondary atmosphere pollution produced by exhaust gas in process of garbage incineration, the paper presented a sort of intelligence fusion control strategy in city garbage incineration. In the paper, aimed at the running properties of garbage incinerator and combined the mechanism of garbage combustion and contamination generation, it studied the characteristic of controlled combustion process, proposed a sort of fusion control strategy based on human simulated intelligence for controlled process, constructed the corresponding control algorithm. Finally it took a two order mod
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5

Pheakdey, Dek Vimean, Nguyen Van Quan, and Tran Dang Xuan. "Economic and Environmental Benefits of Energy Recovery from Municipal Solid Waste in Phnom Penh Municipality, Cambodia." Energies 16, no. 7 (2023): 3234. http://dx.doi.org/10.3390/en16073234.

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This study assessed the energy potential, economic feasibility, and environmental performance of landfill gas (LFG) recovery, incineration, and anaerobic digestion (AD) technologies for Phnom Penh municipality in Cambodia, from 2023 to 2042. The economic analysis utilized the levelized cost of electricity (LCOE), payback period (PBP), and net present value (NPV) to evaluate the feasibility of each technology. Additionally, environmental performance was assessed following the IPCC 2006 guidelines. The results indicate that incineration produced the highest energy output, ranging from 793.13 to
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6

Lee, Joong Kee, Kyu Young Cho, Sang Deuk Lee, Hwa Young Lee, Won Young Chang, and Jong Choo Lim. "Process Feasibility Study on Thermal-Plasma System for HFC-23 Decomposition." Materials Science Forum 658 (July 2010): 137–40. http://dx.doi.org/10.4028/www.scientific.net/msf.658.137.

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A feasibility study on the use of a thermal plasma process for the destruction of HFC-23 is carried out in comparison with an incineration process. The material and energy balances for both processes are calculated using the commercial simulator, Pro/II (ver. 8.0). Based on the computational analysis, the volume of the plasma process and NOx and CO2 emissions in the plasma process are 25, 10 and 40% of those in the incineration process, respectively. Therefore, more compact units can be employed in the plasma process. However, the operating cost of the plasma process would be higher than that
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7

Alam, Samina, Kazi Sajedur Rahman, Md Rokonuzzaman, et al. "Selection of Waste to Energy Technologies for Municipal Solid Waste Management—Towards Achieving Sustainable Development Goals." Sustainability 14, no. 19 (2022): 11913. http://dx.doi.org/10.3390/su141911913.

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The Sustainable Development Goals (SDGs) play an essential role, emphasizing responsible resource use, production, and consumption, including waste management. In addition, SDG 3, 7, 11, 12, and 13 are directly/indirectly related to waste management. This study aims to determine a suitable waste-to-energy (WtE) technology in Chittagong City, Bangladesh, focusing on cleaner technology. Anaerobic digestion, gasification, incineration, and landfill gas (LFG) recovery were considered as possible alternatives. Technical, economic, environmental, and social issues have been considered as necessary c
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8

Miyazaki, T., Y. T. Kang, A. Akisawa, and T. Kashiwagi. "A combined power cycle using refuse incineration and LNG cold energy." Energy 25, no. 7 (2000): 639–55. http://dx.doi.org/10.1016/s0360-5442(00)00002-5.

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9

Kuosa, Markku, and Riku Kopra. "A solution for a treatment of bottom sludge from a log-soaking pond for separation of sand." Nordic Pulp & Paper Research Journal 34, no. 1 (2019): 128–32. http://dx.doi.org/10.1515/npprj-2018-0008.

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Abstract Nowadays in many countries legislation places stringent limits on the dumping of untreated sludge as land fill. One option for handling sludge is incineration. However, log-soaking bottom sludge contains a remarkable amount of sand, which hinders its use as fuel. This gives rise to the need for an appropriate means for separating sand from sludge. A pilot apparatus for the separation of sand from log-soaking bottom sludge was designed. The pilot apparatus consisted of a drum washer and gravity settling. The water consumption of the process was very low. The separation of sand was rema
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10

Markphan, Wattananarong, Chonticha Mamimin, Wantanasak Suksong, Poonsuk Prasertsan, and Sompong O-Thong. "Comparative assessment of single-stage and two-stage anaerobic digestion for biogas production from high moisture municipal solid waste." PeerJ 8 (August 19, 2020): e9693. http://dx.doi.org/10.7717/peerj.9693.

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Background Anaerobic digestion (AD) is a suitable process for treating high moisture MSW with biogas and biofertilizer production. However, the low stability of AD performance and low methane production results from high moisture MSW due to the fast acidify of carbohydrate fermentation. The effects of organic loading and incineration fly ash addition as a pH adjustment on methane production from high moisture MSW in the single-stage AD and two-stage AD processes were investigated. Results Suitable initial organic loading of the single-stage AD process was 17 gVS L−1 at incineration fly ash (IF
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