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Journal articles on the topic '柴油化'

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1

李, 双江. "浅析大容量锅炉重油燃烧." 财经与管理 1, no. 4 (November 9, 2017): 408. http://dx.doi.org/10.26549/cjygl.v1i4.473.

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2

李, 昂., 增辉 闫, 庆祝 颜, 名芳 盖, and 夏. 程. "原油采购策略优化与成品油销售新模式探究." 工程技术与管理 2, no. 1 (February 3, 2018): 24. http://dx.doi.org/10.26549/gcjsygl.v2i1.667.

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3

傅, 维标. "乳化油柴油机中不存在微爆现象." Chinese Science Bulletin 51, no. 9 (May 1, 2006): 1117–20. http://dx.doi.org/10.1360/csb2006-51-9-1117.

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4

LIU, FuDong, WenPo SHAN, and Hong HE. "柴油车尾气中氮氧化物的催化净化." Chinese Science Bulletin 59, no. 26 (September 1, 2014): 2540–49. http://dx.doi.org/10.1360/n972013-00067.

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5

董, 彬., 凤鹏 鲁, 开崇 张, 成余 杨, and 杰. 周. "建设无氢、油、氨本质安全型燃煤机组的实践与探索." 水电科技 4, no. 1 (February 28, 2021): 124. http://dx.doi.org/10.33142/hst.v4i1.3440.

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以某350MW超临界燃煤火电机组为例,通过研究其如何按照本质安全型企业的标准推进项目建设,从提高企业环境安全可靠性着手,控制存在于生产作业中的危险源,降低现场作业环境的各种风险;燃煤机组取消氢站、柴油罐、氨区,可以减少企业内部重大危险源数量,助力本质安全型企业建设;同时有利于电力企业减少土地使用面积;取消氢站、燃油库,可以降低发电企业建设成本,减少发电企业经营、维护成本。本篇文章以通过调查研究,得出建成“无氢、无油、无氨”电力企业的必要条件,使建成“无氢、无油、无氨”电力企业具有可复制性,为350MW机组优化先型建设提供参考,提升350MW燃煤机组本质型安全环境。
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6

苏, 万华, and 翔. 汪. "利用双流体模型研究柴油高压喷嘴内部的空化流动." Chinese Science Bulletin 53, no. 15 (August 1, 2008): 1864–70. http://dx.doi.org/10.1360/csb2008-53-15-1864.

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7

王, 虹., 坚. 刘, 志校 吕, 震. 赵, and 春明 徐. "纳米La-Mn-O钙钛矿型氧化物催化剂上柴油机尾气碳颗粒催化燃烧性能的研究." Chinese Science Bulletin 50, no. 4 (February 1, 2005): 336–39. http://dx.doi.org/10.1360/csb2005-50-4-336.

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8

黄, 震., and 新令 李. "柴油机排气稀释过程中挥发性纳米颗粒形成和变化特性." Chinese Science Bulletin 57, no. 2-3 (January 1, 2012): 194–200. http://dx.doi.org/10.1360/csb2012-57-2-3-194.

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9

吴, 志军, 成杰 黄, 理光 李, 威. 冯, and 俊. 邓. "活化热氛围下柴油喷雾多点自燃特性及影响因素的实验研究." Chinese Science Bulletin 51, no. 22 (November 1, 2006): 2699–704. http://dx.doi.org/10.1360/csb2006-51-22-2699.

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10

Zhao Hui, 赵卉, 赵昆 Zhao Kun, and 田璐 Tian Lu. "Correlation between Terahertz Absorption Spectra and Cetane Number of Biodiesel and Diesel." Laser & Optoelectronics Progress 48, no. 11 (2011): 113001. http://dx.doi.org/10.3788/lop48.113001.

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11

黄, 建红, 先锋 谭, 承吉 程, 泽民 李, 丽娟 马, 海丽 张, and 颜雄 吴. "花岗质基岩风化壳结构特征及油气地质意义:以柴达木盆地东坪地区基岩风化壳为例." Earth Science-Journal of China University of Geosciences 41, no. 12 (2016): 2041. http://dx.doi.org/10.3799/dqkx.2016.528.

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12

吴, 志庄. "Study on Strategy and Problem of Industrialization of Biodiesel in China." Sustainable Energy 03, no. 04 (2013): 75–79. http://dx.doi.org/10.12677/se.2013.34012.

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13

阎, 存仙, 文峰 上官, 光辉 刘, and 震. 黄. "利用微粒过滤器同时催化去除柴油机微粒和NO<sub><italic>x</italic></sub>." Chinese Science Bulletin 47, no. 21 (November 1, 2002): 1620–23. http://dx.doi.org/10.1360/csb2002-47-21-1620.

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14

高, 金森, 爱军 段, 桂元 姜, E. Wachs Israel, 春明 徐, Lin Wenyong, 坚. 刘, and 震. 赵. "TiO<sub>2</sub>和ZrO<sub>2</sub>担载的钒氧化物对柴油炭黑催化燃烧的原位紫外激光拉曼光谱研究." Science in China Series B-Chemistry (in Chinese) 38, no. 3 (March 1, 2008): 238–47. http://dx.doi.org/10.1360/zb2008-38-3-238.

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15

刘, 佳. "Catalyst Preparation on NOx Removal from Diesel Exhaust." Hans Journal of Chemical Engineering and Technology 07, no. 01 (2017): 38–42. http://dx.doi.org/10.12677/hjcet.2017.71006.

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16

Tan Wendan, 谭雯丹, 庞铭 Pang Ming, 江国业 Jiang Guoye, 付威 Fu Wei, 张啸寒 Zhang Xiaohan, 胡定云 Hu Dingyun, 崔静 Cui Jing, and 杨广峰 Yang Guangfeng. "Numerical Simulation of Temperature Field in Laser Phase-Transformation Hardening of Highly-Enhanced Diesel Engine Valve Seats." Laser & Optoelectronics Progress 55, no. 11 (2018): 111601. http://dx.doi.org/10.3788/lop55.111601.

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17

朱, 峰. "Experimental Research and Teaching Practice on Preparation of High Value Added Biodiesel from Bio-Oil Catalyzed by Alkali." Creative Education Studies 08, no. 05 (2020): 676–82. http://dx.doi.org/10.12677/ces.2020.85110.

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18

YAN Wende, 闫文德, 梁小翠 LIANG Xiaocui, 郑威 ZHENG Wei, 田大伦 TIAN Dalun, 朱凡 ZHU Fan, and 王光军 WANG Guangjun. "Remediation of soils contaminated with polycyclic aromatic hydrocarbons (PAHs) using four greening tree species." Acta Ecologica Sinica 32, no. 7 (2012): 2279–87. http://dx.doi.org/10.5846/stxb201103250383.

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19

万, 岳瞻. "Study of Biodiesel Production Catalyzed by Nano KF/γ-Al2O3 Using Blending Method." Sustainable Energy 07, no. 03 (2017): 61–68. http://dx.doi.org/10.12677/se.2017.73007.

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20

刘, 东波. "船舶柴油机的节能减排技术运用." 生态环境与保护 2, no. 8 (August 31, 2019). http://dx.doi.org/10.32629/eep.v2i8.398.

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21

鹏, 崔. "提高柴油发电机快速投入可靠率." 电力技术研究 1, no. 1 (December 25, 2018). http://dx.doi.org/10.18686/dljsyj.v1i1.22.

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柴油发电机组保证在火电厂的全厂停电事故中,快速自起动带载运行。呼和浩特热电厂现有柴油发电机接起动指令后在22秒内一次启动成功,在60秒内实现两个自起动循环,若自起动连续三次失败,则发出停机信号,并闭锁自起动回路。柴油发电机在额定电压下稳定运行2~3秒,并具备首次加载条件视为启动成功。以此确保重要的机组辅助系统能够启动运行,确保机组的可靠、安全停运,但是柴油发电机启动时间长,并且易失败,对此呼和浩特热电厂对柴油发电机进行了硬件及软件优化,逻辑进行了优化,从而加快了启动速度,提高了可靠性.
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22

高, 杰. "阿尔及利亚项目油基钻井液HSE风险管控探讨." 工程建设 2, no. 1 (January 18, 2019). http://dx.doi.org/10.33142/ec.v2i1.83.

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23

库尔班, 艾尼. "柴油机典型故障的诊断与排除." 城市建设理论研究—施工技术 1, no. 2 (August 11, 2016). http://dx.doi.org/10.18686/ct.v1i2.2401.

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<div style="left: 165.413px; top: 267.237px; font-size: 13.3333px; font-family: serif; transform: scaleX(1.03899);" data-canvas-width="769.893333333334">问题总会有相对应的解决办法,柴油机的故障诊断给寻找方法提供了方便。许多对应的方法与物理应用有很大的联系,柴油机启动</div><div style="left: 85.0395px; top: 287.237px; font-size: 13.3333px; font-family: serif; transform: scaleX(1.03792);" data-canvas-width="850.0533333333328">困难从声音判断,通过观察知道柴油机产生异常烟气,从温度变化判断柴油机过热。从更多的角度寻找故障的根源,有原则和技巧地去探索故障</div><div style="left: 85.0395px; top: 307.237px; font-size: 13.3333px; font-family: serif; transform: scaleX(1.03792);" data-canvas-width="850.0533333333328">排除方法,在解决故障的同时也要考虑人身安全和机器的有效利用。在传统方法和现代方法的结合下,未来的故障诊断和排除会更有创造力,更</div><div style="left: 85.0395px; top: 327.237px; font-size: 13.3333px; font-family: serif; transform: scaleX(1.02564);" data-canvas-width="426.66666666666663">有效率。鉴于此,本文对柴油机典型故障的诊断与排除进行了分析探讨。</div>
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李, 文君, 斌扬 邬, and 万华 苏. "防爆柴油机排气格栅计算流体动力学分析." 工程技术研究 2, no. 1 (January 31, 2020). http://dx.doi.org/10.36012/etr.v2i1.1023.

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