Haochen Zhu
Tongji University
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Publication
Featured researches published by Haochen Zhu.
Waste Management | 2016
Yang Guo; Feng Li; Haochen Zhu; Guangming Li; Juwen Huang; Wenzhi He
Spent lithium-ion batteries (LIBs) are considered as an important secondary resource for its high contents of valuable components, such as lithium and cobalt. Currently, studies mainly focus on the recycling of cathode electrodes. There are few studies concentrating on the recovery of anode electrodes. In this work, based on the analysis result of high amount of lithium contained in the anode electrode, the acid leaching process was applied to recycle lithium from anode electrodes of spent LIBs. Hydrochloric acid was introduced as leaching reagent, and hydrogen peroxide as reducing agent. Within the range of experiment performed, hydrogen peroxide was found to have little effect on lithium leaching process. The highest leaching recovery of 99.4wt% Li was obtained at leaching temperature of 80°C, 3M hydrochloric acid and S/L ratio of 1:50g/ml for 90min. The graphite configuration with a better crystal structure obtained after the leaching process can also be recycled.
Waste Management | 2014
Luling Yu; Wenzhi He; Guangming Li; Juwen Huang; Haochen Zhu
The consumption of electrical and electronic equipment is surging, so is the generation of waste electrical and electronic equipment (WEEE). Due to the large quantity, high potential risk and valuable capacity of WEEE, many countries are taking measures to regulate the management of WEEE. The environmental pollution and human health-harming problems caused by irregular treatment of WEEE in China make the government pay more and more attention to its management. This paper reviews the development of WEEE management in China, introduces the new policy which is established for WEEE recycling and especially analyzes the effectiveness of the policy, including huge recovery, formation of new recycling system, strict supervision to related enterprises, and the stimulation to public awareness. Based on the current achievement, some recommendations are given to optimize the WEEE management in China.
Waste Management & Research | 2014
Ying An; Guangming Li; Wenqing Wu; Juwen Huang; Wenzhi He; Haochen Zhu
With respect to waste sorting, Shanghai sets an example for other Chinese cities on the standardized treatment of kitchen waste (KW) in China. According to the results of investigation, about 560 kilo tons of KW from different sources in Shanghai were produced in 2011. Of this, 45.6% (255.6 kilo tons) was collected and transported properly by a comprehensive and formal collection and transportation system. Landfilling and incineration, which are the traditional treatment technologies used, show downward trends because of increasing environmental awareness and land restrictions. Feed production, composting and biodiesel refining play increasingly important roles in the recycling of KW. Safe disposal, reduced KW quantity, public education, and technological innovation are still problematic issues and need to be considered in future waste management in Shanghai.
Materials | 2018
Min Zhao; Michael Johnson; Wenzhi He; Guangming Li; Chen Zhao; Luling Yu; Juwen Huang; Haochen Zhu
This paper presents the design, development and realization of a fast and novel process for the synthesis of 3C silicon carbide (β-SiC) nanorods and submicron powder. Using SiO2 (or Si) and activated carbon (AC), this process allows β-SiC to be synthesized with almost 100% purity in timeframes of seconds or minutes using multimode microwave rotary tube reactors under open-air conditions. The synthesis temperature used was 1460 ± 50 °C for Si + AC and 1660 ± 50 °C for SiO2 + AC. The shortest β-SiC synthesis time achieved was about 20 s for Si + AC and 100 s for SiO2 + AC. This novel synthesis method allows for scaled-up flow processes in the rapid industrial-scale production of β-SiC, having advantages of time/energy saving and carbon dioxide emission reduction over comparable modern processes.
Environmental Science and Pollution Research | 2017
Chengjian Xu; Wenxuan Zhang; Wenzhi He; Guangming Li; Juwen Huang; Haochen Zhu
With the increasing adoption of EVs (electric vehicles), a large number of waste EV LIBs (electric vehicle lithium-ion batteries) were generated in China. Statistics showed generation of waste EV LIBs in 2016 reached approximately 10,000 tons, and the amount of them would be growing rapidly in the future. In view of the deleterious effects of waste EV LIBs on the environment and the valuable energy storage capacity or materials that can be reused in them, China has started emphasizing the management, reuse, and recycling of them. This paper presented the generation trend of waste EV LIBs and focused on interrelated management development and experience in China. Based on the situation of waste EV LIBs management in China, existing problems were analyzed and summarized. Some recommendations were made for decision-making organs to use as valuable references to improve the management of waste EV LIBs and promote the sustainable development of EVs.
Journal of Material Cycles and Waste Management | 2014
Linhui Zeng; Haochen Zhu; Yan Ma; Juwen Huang; Guangming Li
Procedia environmental sciences | 2016
Min Zhao; Chen Zhao; Luling Yu; Guangming Li; Juwen Huang; Haochen Zhu; Wenzhi He
Research on Chemical Intermediates | 2018
Wenxuan Zhang; Zhanpeng Liu; Chengjian Xu; Wenzhi He; Guangming Li; Juwen Huang; Haochen Zhu
Powder Technology | 2017
Min Zhao; Michael Johnson; Wenzhi He; Guangming Li; Chen Zhao; Juwen Huang; Haochen Zhu
Chemical Engineering Journal | 2017
Luling Yu; Yue Cao; Wenzhi He; Guangming Li; Juwen Huang; Haochen Zhu