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某公司锂离子电池正极材料及前体材料项目职业病危害因素检测及防护设施整改效果分析 被引量:2
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作者 梁泳梅 聂新强 +1 位作者 林英钊 廖明亮 《中国卫生工程学》 CAS 2014年第5期368-370,共3页
目的了解某公司锂离子电池正极材料及前体材料项存在的职业病危害因素及其危害程度。方法按照国家相关标准的要求,对该企业工作场所职业病危害因素进行检测并分析结果,针对超标岗位进行整改并进行效果分析。结果本次检测化学因素115点次... 目的了解某公司锂离子电池正极材料及前体材料项存在的职业病危害因素及其危害程度。方法按照国家相关标准的要求,对该企业工作场所职业病危害因素进行检测并分析结果,针对超标岗位进行整改并进行效果分析。结果本次检测化学因素115点次,合格99点次,合格率为86.1%。物理因素检测30点次,25点次合格,合格率为83.3%。经过整改,超标的粉尘、锰及其无机化合物、镍及其无机化合物浓度符合国家职业接触限值。噪声工作岗位整改效果同样明显,但部分岗位噪声强度仍超过国家职业接触限值。结论该企业针对超标工作岗位的整改措施可行,防护效果较好,但仍需要关注存在锰及其无机化合物、镍及其无机化合物工作岗位。 展开更多
关键词 锂离子 正极材料 前体材料 职业病危害 整改
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Preparation of MgO whisker from magnesite tailings and its application 被引量:8
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作者 王楠 陈敏 +1 位作者 李月圆 倪红卫 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第9期2061-2065,共5页
Magnesium carbonate whisker as precursor was prepared from the low-grade magnesite tailings by the route of calcination, hydration, carbonation and thermal decomposition, and then MgO whisker was prepared by calcining... Magnesium carbonate whisker as precursor was prepared from the low-grade magnesite tailings by the route of calcination, hydration, carbonation and thermal decomposition, and then MgO whisker was prepared by calcining the precursor. In addition, the effect of MgO whisker addition on sintering and thermal shock resistance of refractory was also investigated. The results show that the thermal decomposition product is MgCO3·3H2O and its morphology is remarkably influenced by the types of additives, and magnesium carbonate whisker with the length of 10-60 μm and length-diameter ratio of 10-20 is successfully prepared when a type of soluble magnesium salt is added. MgO whisker with the length of 10-40 μm is derived from precursor with the heating rate of 1 ℃/min. The thermal shock resistance of refractory is significantly improved by the addition of MgO whisker due to its effect on binding and preventing crack expanding, and the proper amount of whisker addition is around 3%. 展开更多
关键词 MgO whisker PRECURSOR magnesium carbonate whisker REFRACTORY thermal shock resistance
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Preparation of LiFePO_4 for lithium ion battery using Fe_2P_2O_7 as precursor 被引量:1
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作者 胡国荣 肖政伟 +2 位作者 彭忠东 杜柯 邓新荣 《Journal of Central South University of Technology》 2008年第4期531-534,共4页
In order to obtain a new precursor for LiFePO4, Fe2P2O7 with high purity was prepared through solid phase reaction at 650 ℃ using starting materials of FeC2O4 and NH4H2PO4 in an argon atmosphere. Using the as-prepare... In order to obtain a new precursor for LiFePO4, Fe2P2O7 with high purity was prepared through solid phase reaction at 650 ℃ using starting materials of FeC2O4 and NH4H2PO4 in an argon atmosphere. Using the as-prepared Fe2P2O7, Li2CO3 and glucose as raw materials, pure LiFePO4 and LiFePO4/C composite materials were respectively synthesized by solid state reaction at 700 ℃ in an argon atmosphere. X-ray diffractometry and scanning electron microscopy(SEM) were employed to characterize the as-prepared Fe2P2O7, LiFePO4 and LiFePO4/C. The as-prepared Fe2P2O7 crystallizes in the Cl space group and belongs to β-Fe2P2O7 for crystal phase. The particle size distribution of Fe2P2O7 observed by SEM is 0.4-3.0 μm. During the Li^+ ion chemical intercalation, radical P2O7^4- is disrupted into two PO4^3- ions in the presence of O^2-, thus providing a feasible technique to dispose this poor dissolvable pyrophosphate. LiFePO4/C composite exhibits initial charge and discharge capacities of 154 and 132 mA·h/g, respectively. 展开更多
关键词 lithium ion battery cathode material PREPARATION PRECURSOR LIFEPO4 Fe2P2O7
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Potential of acoustic emissions from three point bending tests as rock failure precursors 被引量:8
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作者 Agioutantis Z. Kaklis K. +3 位作者 Mavrigiannakis S. Verigakis M. Vallianatos F. Saltas V. 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第1期155-160,共6页
Development of failure in brittle materials is associated with microcracks,which release energy in the form of elastic waves called acoustic emissions. This paper presents results from acoustic emission measurements o... Development of failure in brittle materials is associated with microcracks,which release energy in the form of elastic waves called acoustic emissions. This paper presents results from acoustic emission measurements obtained during three point bending tests on Nestos marble under laboratory conditions.Acoustic emission activity was monitored using piezoelectric acoustic emission sensors,and the potential for accurate prediction of rock damage based on acoustic emission data was investigated. Damage localization was determined based on acoustic emissions generated from the critically stressed region as scattered events at stresses below and close to the strength of the material. 展开更多
关键词 Acoustic emissionsThree point bending testIndirect tensile strengthCrack localizationNestos marble
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Single crystal metal-organic framework constructed by vertically self-pillared nanosheets and its derivative for oriented lithium plating
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作者 Xiaomin Jia Shaowen Li +12 位作者 Tu Sun Yanzhi Wang Yaqi Fan Chaochao Zhang Yang Xu Zuozhong Liang Haitao Lei Wei Zhang Yuye Zhou Yanhang Ma Haoquan Zheng Yue Ma Rui Cao 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第9期1553-1560,共8页
This vertically self‐pillared(VSP)structure extends the application range of traditional porous materials with facile mass/ion transport and enhanced reaction kinetics.Here,we prepare a single crystal metal‐organic ... This vertically self‐pillared(VSP)structure extends the application range of traditional porous materials with facile mass/ion transport and enhanced reaction kinetics.Here,we prepare a single crystal metal‐organic framework(MOF),employing the ZIF‐67 structure as a proof of concept,which is constructed by vertically self‐pillared nanosheets(VSP‐MOF).We further converted VSP‐MOF into VSP‐cobalt sulfide(VSP‐CoS2)through a sulfidation process.Catalysis plays an important role in almost all battery technologies;for metallic batteries,lithium anodes exhibit a high theoretical specific capacity,low density,and low redox potential.However,during the half‐cell reaction(Li++e=Li),uncontrolled dendritic Li penetrates the separator and solid electrolyte interphase layer.When employed as a composite scaffold for lithium metal deposition,there are many advantage to using this framework:1)the VSP‐CoS2 substrate provides a high specific surface area to dissipate the ion flux and mass transfer and acts as a pre‐catalyst,2)the catalytic Co center favors the charge transfer process and preferentially binds the Li+with the enhanced electrical fields,and 3)the VSP structure guides the metallic propagation along the nanosheet 2D orientation without the protrusive dendrites.All these features enable the VSP structure in metallic batteries with encouraging performances. 展开更多
关键词 Vertically self‐pillared structure Metal organic framework Pre‐catalyst preparation Lithium plating orientation Metallic battery
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