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2篇 您的检索式:作者名="XU Ruinian"
    题名 作者 年代 出处 被引量
1A novel testing approach for SSRF digital power supply controllers显示文摘Digital power supply controller is one of the key parts of SSRF high resolution high stability magnet power supply system. It is very essential to keep any degradation of these excellent properties by any stages as small as possible via careful testing when the controller is developed. In this study,a novel testing approach was presented,with which a novel closed control loop without actual power converter was constructed,and the new developed SSRF Digital Controller can work well in it.KE Xinhua LU Songlin LI Rui XU Ruinian SHEN Tianjian 2008Nuclear Science and Techniques2008,19,4:1
2Disposal methods for used passenger car tires: One of the fastest growing solid wastes in China显示文摘With the rapid growth in the number of passenger cars(PCs)in China over the past decades,more than ten million tons of used tires have already become solid wastes and subsequently caused serious environmental issues.Due to the presence of synthetic rubber in PC tires,waste PC tires cannot be disposed through rubber reclaiming technology.Thus,waste PC tires have become one of fastest growing solid wastes in China.First,the current disposal capacity of the pyrolysis method,regarded as a promising technology for the disposal of waste PC tires,is surveyed and compared with other disposal methods mentioned in previous papers.Second,this work establishes a model to predict the total number of waste PC tires in the next five years depending on the rate of PC growth and current waste tire disposal capacity.Moreover,pyrolysis is evaluated on 15 collected waste PC tires selected from the most representative tire brands in the Chinese market.The corresponding results imply that~68.5%of S was into oil and~44.3%N and large amount of heavy metals resided in solid carbon which severely limit further applications.Finally,a new pyrolysis technology is introduced that may represent a solution to the limits in the application of tire disposal methods and relief for the coming waste tire crisis.Biaohua Chen Dahai Zheng Ruinian Xu Shuai Leng Lili Han Qianqian Zhang Ning Liu Chengna Dai Bin Wu Gangqiang Yu Jie Cheng 2022Green Energy & Environment2022,7,6:0
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