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中国科技期刊卓越行动计划推介:IJMMM(2026年第2期)

IJMMM 2026年第2期目录已经上线,本期共出版28篇文章,欢迎各位专家学者阅览!目录速览▐ 墨铜矿的物理化学性质及

IJMMM 2026年第2期目录已经上线,本期共出版28篇文章,欢迎各位专家学者阅览!

目录速览

▐ 墨铜矿的物理化学性质及选矿挑战:综述

蒋旭,徐世红,高志勇

引用本文:Xu Jiang, Shihong Xu, and Zhiyong Gao, Physicochemical properties and beneficiation challenges of valleriite: A review, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 369-381.

https://doi.org/10.1007/s12613-025-3261-0

▐ 绿色矿山水泥充填中尾矿重金属固化/稳定研究进展

焦华喆,葛新宇,王琪,戎涛,阮竹恩,李公成,许军强,常旭,连学文,方圆

引用本文:Huazhe Jiao, Xinyu Ge, Qi Wang, Tao Rong, Zhu’en Ruan, Gongcheng Li, Junqiang Xu, Xu Chang, Xuewen Lian, and Yuan Fang,Solidification/stabilization mechanisms of heavy metal ions in cemented paste backfill for green mine operations: A review, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 382-400.

https://doi.org/10.1007/s12613-025-3231-6

▐ 人工智能辅助的机器学习先进钢材非金属夹杂物分析:文献综述

廉功豪,刘晓明,王强,沈春光,王奕,牟望重

引用本文:Gonghao Lian, Xiaoming Liu, Qiang Wang, Chunguang Shen, Yi Wang, and Wangzhong Mu, Artificial intelligence-assisted non-metallic inclusion particle analysis in advanced steels using machine learning: A review, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 401-416.

https://doi.org/10.1007/s12613-025-3239-y

▐ 用于可持续回收贵金属的金属有机框架:合成、功能化和多尺度机制的进展

周保成,林国,王仕兴,胡途,安云飞,张利波

引用本文:Baocheng Zhou, Guo Lin, Shixing Wang, Tu Hu, Yunfei An, and Libo Zhang, Metal–organic frameworks for sustainable recovery of precious metals: Advances in synthesis, applications, and multiscale mechanisms, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 417-445.

https://doi.org/10.1007/s12613-025-3214-7

▐ 镁稀土合金高温氧化行为及其机理研究进展综述

马羽,曹宇,况昱链,王亚军,龚宇豪,蒋斌,金钟炫

引用本文:Yu Ma, Yu Cao, Yulian Kuang, Yajun Wang, Yuhao Gong, Bin Jiang, and Jonghyun Kim, Recent advances in high-temperature oxidation behavior and underlying mechanisms of Mg–RE alloys: A comprehensive review, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 446-466.

https://doi.org/10.1007/s12613-025-3264-x

▐ 基于增材制造技术的储能材料结构优化与制备

马晓雯,王旭,师浩然,刘永畅,张百成,曲选辉

引用本文:Xiaowen Ma, Xu Wang, Haoran Shi, Yongchang Liu, Baicheng Zhang, and Xuanhui Qu, Structural optimization and fabrication of energy storage materials based on additive manufacturing technology, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 467-478.

https://doi.org/10.1007/s12613-025-3297-1

▐ 倾斜充填采场蠕变围岩时效稳定性研究

王若帆,朱宇杰,刘浪,朱梦博,闫保旭,崔昊

引用本文:Ruofan Wang, Yujie Zhu, Lang Liu, Mengbo Zhu, Baoxu Yan, and Hao Cui, Time-dependent ground stability of inclined backfilled stope characterized by creep behavior, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 479-491.

https://doi.org/10.1007/s12613-025-3236-1

▐ 碳化再生混凝土微粉提升废弃物基超硫水泥性能及其在尾砂胶结充填中的应用

王连成,岳星彤,蒋平,柳小波,张世玉,崔凯,赵英良

引用本文:Liancheng Wang, Xingtong Yue, Ping Jiang, Xiaobo Liu, Shiyu Zhang, Kai Cui, and Yingliang Zhao, Enhancing the performance of waste-derived super-sulfated with carbonated recycled concrete fines for cemented paste backfill applications, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 492-506.

https://doi.org/10.1007/s12613-025-3272-x

▐ 自由基诱导黄铁矿在铜浮选中的选择性氧化与抑制

Richard Li Jie Le,Wen-Da Oh,Zhiyong Gao,Yongjun Peng

引用本文:Richard Li Jie Lee, Wen-Da Oh, Zhiyong Gao, and Yongjun Peng, Radical-induced selective oxidation and depression of pyrite in copper flotation, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 507-517.

https://doi.org/10.1007/s12613-025-3294-4

▐ 高硫难选金矿微波焙烧低毒无氰自浸金工艺的响应面优化与机理研究

刘政宇,寇珏,郭晓嵩,刘伟,孙春宝,邵安林,刘畅

引用本文:Zhengyu Liu, Jue Kou, Xiaosong Guo, Wei Liu, Chunbao Sun, Anlin Shao, and Chang Liu, Low-toxicity non-cyanide recovering high-sulfur refractory gold ore via microwave roasting self-leaching process: Response surface optimization and mechanism study, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 518-530.

https://doi.org/10.1007/s12613-025-3105-y

▐ 锰对不同焙烧方式钒渣沉钒及V2O5纯度的影响

张兰,姜涛,温婧,余唐霞,李常,安心宇

引用本文:Lan Zhang, Tao Jiang, Jing Wen, Tangxia Yu, Changqing Li, and Xinyu An, Influence of manganese on vanadium precipitation and V2O5 purity based on different roasting methods of vanadium slag, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 531-544.

https://doi.org/10.1007/s12613-025-3192-9

▐ CaO–Al2O3粒子与不同铝和硅含量钢液的瞬时脱硫:高温共聚焦扫描激光显微镜原位观察

佘春洁,张贺军,张彦辉,任英,张立峰

引用本文:Chunjie She, Hejun Zhang, Yanhui Zhang, Ying Ren, and Lifeng Zhang, Instantaneous desulfurization of molten steel with varied aluminum and silicon by CaO–Al2O3 particles: In situ observation using confocal scanning laser microscopy, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 545-554.

https://doi.org/10.1007/s12613-025-3150-6

▐ 基于机器学习与领域知识的精炼渣粘度预报

陈建华,冯一杰,张懿心,栾俊,鲁雄刚,于之刚,周国治

引用本文:Jianhua Chen, Yijie Feng, Yixin Zhang, Jun Luan, Xionggang Lu, Zhigang Yu, and Kuochih Chou, Viscosity prediction of refining slag based on machine learning with domain knowledge, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 555-566.

https://doi.org/10.1007/s12613-025-3189-4

▐ 基于全截面微观组织结构的亚包晶钢连铸过程保护渣渣圈形成特征研究

彭治强,侯自兵,徐淑贤,唐萍,文光华

引用本文:Zhiqiang Peng, Zibing Hou, Shuxian Xu, Ping Tang, and Guanghua Wen, Characterization of the formation of slag rims of mold powder during hypo-peritectic steel continuous casting based on full-sectional microstructures, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 567-578.

https://doi.org/10.1007/s12613-025-3196-5

▐ 多组分纳米析出相对高强度低碳钢模拟热影响区(HAZ)强韧性的作用

尹婷玮,申勇峰,贾楠,孙欣,薛文颖

引用本文:Tingwei Yin, Yongfeng Shen, Nan Jia, Xin Sun, and Wenying Xue, Role of multicomponent nanoprecipitates on strength and low-temperature toughness of simulated heat-affected zone (HAZ) in high-strength low-carbon steel, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 579-594.

https://doi.org/10.1007/s12613-025-3245-0

▐ 多级片层组织Ti6422合金的冲击韧性及裂纹萌生、扩展机制

沈洁,张志豪,谢建新

引用本文:Jie Shen, Zhihao Zhang, and Jianxin Xie, Impact toughness, crack initiation and propagation mechanism of Ti6422 alloy with multi-level lamellar microstructure, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 595-609.

https://doi.org/10.1007/s12613-025-3162-2

▐ 通过Mn固溶与界面调控协同提升Ti2AlC/TiAl的强度与塑性

魏元正,李怡璐,舒世立,杨宏宇,邱丰,姜启川

引用本文:Yuanzheng Wei, Yilu Li, Shili Shu, Hongyu Yang, Feng Qiu, and Qichuan Jiang, Synergistic enhancement of strength and ductility of Ti2AlC/TiAl through Mn solid solution and interface manipulation, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 610-622.

https://doi.org/10.1007/s12613-025-3134-6

▐ 微生物加速AA7075铝合金在模拟燃油-水环境的腐蚀行为与机理

马艺飞,王贺豫,陈果鲜,白帅,刘垚,李中,王福会,徐大可

引用本文:Yifei Ma, Heyu Wang, Guoxian Chen, Shuai Bai, Yao Liu, Zhong Li, Fuhui Wang, and Dake Xu, Microbially accelerated corrosion of AA7075 aluminum alloy in simulated fuel–water conditions, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 623-635.

https://doi.org/10.1007/s12613-025-3305-5

▐ 石墨烯纳米片与ZrB2纳米颗粒增强铝基复合材料热导率的各向异性

关创,怯喜周,钱炜,陶然,陈刚,赵玉涛

引用本文:Chuang Guan, Xizhou Kai, Wei Qian, Ran Tao, Gang Chen, and Yutao Zhao, Anisotropic thermal conductivity of aluminum matrix composites reinforced by graphene nanoplates and ZrB2 nanoparticles, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 636-646.

https://doi.org/10.1007/s12613-025-3156-0

▐ 揭示单原子钴催化剂与空心碳球的协同作用以提升锂硫电池性能

杜伟,蒙延双,祁东明,冯佳伟,向强,朱福良

引用本文:Wei Du, Yanshuang Meng, Dongming Qi, Jiawei Feng, Qiang Xiang, and Fuliang Zhu, Revealing the synergy of single-atom cobalt catalysts with hollow carbon spheres for enhanced lithium–sulfur battery performance, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 647-656.

https://doi.org/10.1007/s12613-025-3143-5

▐ 光伏硅废料熔盐电化学合成NiSi2–SiNRs负极材料研究

刘昊博,王良太,乔桐皆,席风硕,陈秀华,陆继军,李秀凤,马文会,李绍元

引用本文:Haobo Liu, Liangtai Wang, Tongjie Qiao, Fengshuo Xi, Xiuhua Chen, Jijun Lu, Xiufeng Li, Wenhui Ma, and Shaoyuan Li, Molten salt electrochemical synthesis of NiSi2–SiNRs anodes from photovoltaic waste silicon, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 657-668.

https://doi.org/10.1007/s12613-025-3250-3

▐ 通过在镁电极上将ZIF-8与碳纳米管复合进行可控的原位生长以提高镁电池的电化学性能

黄文字,林波文,张颜宾晖,刘金玉,尚伟,姜吉琼,温玉清

引用本文:Wenzi Huang, Bowen Lin, Yanbinhui Zhang, Jinyu Liu, Wei Shang, Jiqiong Jiang, and Yuqing Wen, ZIF-8 composited with carbon nanotubes via controllable in situ growth on magnesium anodes for improved electrochemical performance of magnesium batteries, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 669-682.

https://doi.org/10.1007/s12613-025-3142-6

▐ “惰性阻挡层”镍对浸渍型阴极电子发射性能的影响

刘政,杨韵斐,刘鹏,孙俊浩,刘赫雄,蔡永丰,王金淑

引用本文:Zheng Liu, Yunfei Yang, Peng Liu, Junhao Sun, Hexiong Liu, Yongfeng Cai, and Jinshu Wang, Effect of “inert barrier layer” Ni on electron emission performance of dispenser cathode, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 683-692.

https://doi.org/10.1007/s12613-025-3164-0

▐ 基于配位键与氢键构建的双网络结构设计用于高性能多功能柔性凝胶基吸波器

解新悦,李子靖,王树声,陈庚,张利民,吴宏景

引用本文:Xinyue Xie, Zijing Li, Shusheng Wang, Geng Chen, Limin Zhang, and Hongjing Wu, Design of dual-network structure based on coordination bonds and hydrogen bonds for high-performance multifunctional flexible gel absorbers, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 693-703.

https://doi.org/10.1007/s12613-025-3139-1

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▐ 以大豆废渣和电解锰渣为原料制备具有优异电磁波吸收性能的多孔Fe3O4/C复合材料

刘梓灏,向楷雄,聂宇佳,程艺婷,蒋少华,陈晗,周伟

引用本文:Zihao Liu, Kaixiong Xiang, Yujia Nie, Yiting Cheng, Shaohua Jiang, Han Chen, and Wei Zhou, Facile synthesis of porous Fe3O4/C composites derived from waste residues of soybean and electrolytic manganese for superior electromagnetic wave absorption, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 704-715.

https://doi.org/10.1007/s12613-025-3122-x

▐ 基于脱毒纯化废石墨化阴极炭块孔隙陷阱优势制备低膨胀高性能硅碳复合材料的研究

于国庆,谢明壮,郑志豪,吴泽港,王艺,赵洪亮,刘风琴

引用本文:Guoqing Yu, Mingzhuang Xie, Zhihao Zheng, Zegang Wu, Yi Wang, Hongliang Zhao, and Fengqin Liu, Preparation of low-expansion high-performance Si–C composites based on porous advantage of detoxified and purified waste cathode graphite blocks, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 716-726.

https://doi.org/10.1007/s12613-025-3186-7

▐ 煤燃烧合成二氧化硅多孔材料

李雨婷,王杰,唐馥,高峻珩,李立东

引用本文:Yuting Li, Jie Wang, Fu Tang, Junheng Gao, and Lidong Li, Synthesis of silica-based porous material through coal combustion, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 727-736.

https://doi.org/10.1007/s12613-025-3181-z

▐ 纳米结构Lu2Si2O7环境障涂层在1400°C下与CMAS熔体的高温相互反应

郭东辉,金润泽,徐宝升

引用本文:Donghui Guo, Runze Jin, and Baosheng Xu, High-temperature interaction of nanostructured Lu2Si2O7 environmental barrier coatings with CMAS melts at 1400°C, Int. J. Miner. Metall. Mater., 33(2026), No. 2, pp. 737-748.

https://doi.org/10.1007/s12613-025-3126-6