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Original Articles

Thermal management of newly developed non-noble metal-based catalytic converter to reduce cold start emissions of small internal combustion engine

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Gargee Pise & Milankumar Nandgaonkar. (2022) Thermal management of catalytic converter with heat pipe embedded in thermal energy storage to reduce cold start emissions. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 44:4, pages 9935-9954.
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Articles from other publishers (15)

Zhongwei Meng, Zhongqiang Bao, Daigeng Wu, Meng Deng & Huan Deng. (2024) Emission characteristics and microstructural changes of particulate matter from diesel engine after catalyst preheating under cold start conditions. Process Safety and Environmental Protection 184, pages 1389-1399.
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Zhiqing Zhang, Weihuang Zhong, Dongli Tan, Shuwan Cui, Mingzhang Pan, Ziheng Zhao, Jian Zhang & Jingyi Hu. (2024) Hydrocarbon adsorption mechanism of modern automobile engines and methods of reducing hydrocarbon emissions during cold start process: A review. Journal of Environmental Management 353, pages 120188.
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Kai Li, Bing Xiao, Yanjun Wang, Jianli Jia & Xiaodong Wu. (2024) Applications of Electric Heating Technology in Vehicle Exhaust Pollution Control. Processes 12:2, pages 298.
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Shoaib Raza Khan, Ahsan Masood, Muhammad Zeeshan & Sara Qaisar. (2021) The influence of dual-catalyst bed system of zeolitic and metal oxide catalysts on the production of valuable hydrocarbons during co-pyrolysis of rice straw and waste tire. Biomass Conversion and Biorefinery 13:14, pages 12935-12946.
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Qingsong Zuo, Qiming Li, Xiaomei Yang, Wei Chen, Guohui Zhu, Zhuang Shen, Yong Xie & Yuanyou Tang. (2023) Investigation of electrically heating catalytic converter flow and temperature field performance improvement based on field synergy. Energy 274, pages 127360.
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Li-shuang Duan, Pi-qiang Tan, Jing-tuo Liu, Yang Liu, Ying-jie Chen, Di-ming Lou & Zhi-yuan Hu. (2022) Emission characteristics of a diesel engine with an electrically heated catalyst under cold start conditions. Journal of Cleaner Production 380, pages 134965.
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Jie Hu, Yan Wu, Qinghua Yu, Jianxiong Liao & Zhizhou Cai. (2022) Heating and storage: A review on exhaust thermal management applications for a better trade-off between environment and economy in ICEs. Applied Thermal Engineering, pages 119782.
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Shoaib Raza Khan, Daniel Ciolkosz, Juliana Vasco-Correa & Muhammad Zeeshan. (2022) A techno-economic study to evaluate the impacts of feedstock ratio on commercial scale co-pyrolysis plants of biomass and waste tire. Journal of Analytical and Applied Pyrolysis 167, pages 105699.
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V. N. Lozhkin. (2022) Theory and practice of diagnostics of fire hazardous modes of operation of catalytic converters. Pozharovzryvobezopasnost/Fire and Explosion Safety 31:3, pages 65-74.
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Adil A.M. Omara. (2021) Phase change materials for waste heat recovery in internal combustion engines: A review. Journal of Energy Storage 44, pages 103421.
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Galip Kaltakkıran & Mehmet Akif Ceviz. (2021) The performance improvement of direct injection engines in cold start conditions integrating with phase change material: Energy and exergy analysis. Journal of Energy Storage 42, pages 102895.
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Yuki Omori, Ayaka Shigemoto, Kohei Sugihara, Takuma Higo, Toru Uenishi & Yasushi Sekine. (2021) Electrical promotion-assisted automotive exhaust catalyst: highly active and selective NO reduction to N 2 at low-temperatures . Catalysis Science & Technology 11:12, pages 4008-4011.
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Abdulfatah Abdu Yusuf & Freddie L. Inambao. (2019) Effect of cold start emissions from gasoline-fueled engines of light-duty vehicles at low and high ambient temperatures: Recent trends. Case Studies in Thermal Engineering 14, pages 100417.
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Jianbing Gao, Guohong Tian, Aldo Sorniotti, Ahu Ece Karci & Raffaele Di Palo. (2019) Review of thermal management of catalytic converters to decrease engine emissions during cold start and warm up. Applied Thermal Engineering 147, pages 177-187.
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Li-shuang Duan, Piqiang TAN, Jing-tuo Liu, Yang Liu, Ying-jie Chen, Diming Lou & zhiyuan hu. (2022) Emission Characteristics of a Diesel Engine with Electrically Heated Catalyst Under Cold Start Conditionsemission Characteristics of a Diesel Engine with Electrically Heated Catalyst Under Cold Start Conditions. SSRN Electronic Journal.
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