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突发风险下关键矿产供应链网络节点韧性评估——以镍矿产品为例 被引量:19
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作者 沈曦 郭海湘 成金华 《资源科学》 CSSCI CSCD 北大核心 2022年第1期85-96,共12页
关键矿产资源作为国家产业发展的重要物质基础,其全球贸易网络频繁受到突发风险的冲击,对进口依赖型国家的资源供给安全造成威胁。本文从关键矿产资源全球贸易网络和产业链投入产出角度出发,基于多层复杂网络理论构建关键矿产资源全球... 关键矿产资源作为国家产业发展的重要物质基础,其全球贸易网络频繁受到突发风险的冲击,对进口依赖型国家的资源供给安全造成威胁。本文从关键矿产资源全球贸易网络和产业链投入产出角度出发,基于多层复杂网络理论构建关键矿产资源全球贸易模型,并提出风险传导机制对贸易网络突发风险进行仿真分析,最后运用多风险场景仿真结果对网络节点的风险韧性进行评价。以镍矿资源产业链中6种产品为例,运用2018年全球贸易数据进行实证分析。研究表明:①中国镍矿资源进口结构极不均衡,对供给安全造成了极大的隐患。相对下游产品,中国对镍矿石、镍锍等产业链上游产品需求更为刚性,价格敏感度小。②风险所造成的价格波动对中国进口损失影响并不显著,而对风险韧性影响最大的因素是资源竞争能力,这与进口结构、占风险源出口份额、以及国家产业对于额外成本的转嫁能力有直接的关系。③同一国家在面对不同风险源时表现出不同的风险韧性。当风险源分别为印度尼西亚和菲律宾时,其风险规模每上升1%,中国因此而承受的镍矿资源进口损失规模将分别上升1.74%和1.77%,中国在面对来自菲律宾的突发风险时韧性较低。评价节点国家在关键矿产资源供应链网络中的的风险韧性,对把控资源供给宏观形势,提高资源政策针对性具有重要意义。 展开更多
关键词 多层复杂网络理论 关键矿产 供应链 风险 韧性 镍矿产品
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Pilot scale test of producing nickel concentrate from low-grade saprolitic laterite by direct reduction-magnetic separation 被引量:3
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作者 郑国林 朱德庆 +4 位作者 潘建 李启厚 安月明 朱景和 刘志宏 《Journal of Central South University》 SCIE EI CAS 2014年第5期1771-1777,共7页
The enrichment of Ni from a low-grade saprolitic laterite ore,which has been pre-treated by high pressure grinding roller(HPGR) to be 74% passing 0.074 mm and contains 0.92% Ni,18.47% Fe,10.61% MgO and 42.27% SiO2,w... The enrichment of Ni from a low-grade saprolitic laterite ore,which has been pre-treated by high pressure grinding roller(HPGR) to be 74% passing 0.074 mm and contains 0.92% Ni,18.47% Fe,10.61% MgO and 42.27% SiO2,was conducted by using pelletizing,rotary kiln reduction and magnetic separation process on a semi industrial scale,and the effects of reduction duration,mass ratio of coal to pellets(C/P),the types of magnetic separator,the sections of grinding-separation and the grinding fineness on the recovery of Ni and Fe were examined.It is shown that nickel concentrate containing 3.13 % Ni and 59.20 % Fe was achieved at recoveries of 84.36 % and 71.51% for Ni and Fe,respectively under the following conditions:reducing at (1120±40) ℃ for 120 min,C/P being 1.0,wet grinding of reduced pellets up to 70%-87% passing 0.074 mm and a magnetic field intensity of 238.8 kA/m during the first section of grinding-magnetic separation,and a grinding fineness of 84%-91% passing 0.045 mm and a magnetic intensity of 39.8 kA/m during the second section of grinding-magnetic separation.The enriched Ni containing concentrate has a low content of S and P,and can be used for further processing to produce high-grade ferronickel alloy. 展开更多
关键词 low-grade saprolitic laterite direct reduction magnetic separation PELLETIZATION segmented grinding nickel concentrate
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