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geology好发表吗

发布时间:2023-12-07 20:22

geology好发表吗

您好,PublishExpert很高兴回答您的问题。
(您可以搜索登陆官网<PublishExpert>了解更多。)

矿床类的主要杂志是《Economic Geology》,《Mineralium Deposita》《Ore geology review》。这些杂志会对矿床的基础情况介绍要求比较高,描述的要比较多。尤其是EG。这三个杂志中,EG,MD相对来说比较慢,周期在一年左右。OGR要相对快一些,Elsevier的期刊最大的好处就是这个。另外矿床类的杂志还有《Journal of Geochemical Exploration》和《Resource Geology》。要说最好发的,应该是Resource geology了。
《International Geology Review》不是矿床类的杂志,基本上地质相关的文章都发。《Chemical Geology》还有《Geochimica et Cosmochimica Acta》上面偶尔也有一些矿床的文章,不过主要偏地球化学的解释。

最关键的还是内容,写评论就发《ore geology review》,如果是国际上比较空白的区域也可以发《international Geology Review》,后者难度比前者小一些,另外,做矿床就看你的功夫怎么样,做了些什么东西,做矿物就发《canadian minerologist》《America minerologist》,矿床的一段特征就发《Economic Geology》,也可以考虑一下《mineralium deposita》,不过这个是比较难发的,做应用地球化学可考虑一下《Chemical Geology》,影响因子比较高,英语要求很不低。

SCI论文发表最关键的还是看您的研究的内容是否新颖或是有突破。
其次就是相关期刊的选择和您整篇论文的英文表述和格式如何。
所以说内容是核心。
而对国内科研人员来说最大的困难就是英文水平无法达到要求。
这就使很多科研人员的论文一次次的被退回来,要求对英语进行润色。
从而国内就产生了很多为学者提供论文评估、翻译、润色、发表等服务的机构和公司。

1、自己的研究方向,研究内容是否新颖或是有突破。
2、自己的研究、论文表述是否充分,各项数据资料是否都准备好。
3、自己的英文水平是否达到母语水平或近母语水平。
以上是自己发表SCI论文的基础。

如果没有达到,那就需要寻找相关的论文服务机构(如:PublishExpert)来帮你实现目标了。
当然服务机构要开具发票,科研机构可以报销的。
以上都需要针对自己的实际情况仔细斟酌。

PS:如果需要相关SCI论文发表方面的服务和帮助,您可以搜索登录我们的官网(PublishExpert)了解一下。
希望可以帮到您~

矿床地球化学方面的国外SCI哪个容易发表

哈哈,那个都不好发,看你做什么了,写评论就发《ore geology review》,如果是国际上比较空白的区域也可以发《international Geology Review》,后者难度比前者小一些,别外,做矿床就看你的功夫怎么样,做了些什么东西,做矿物就发《canadian minerologist》《America minerologist》,矿床的一段特征就发《Economic Geology》,也可以考虑一下《mineralium deposita》,不过这个是比较难发的,做应用地球化学可考虑一下《Chemical Geology》,影响因子比较高,英语要求很不低;但是比较精而专,独到简介也可以考虑一下《Geology》哈哈,要求语言精练,运用到位。还有很多,上网都可以查得到。不过可以考虑找一些不是英语国家的办的英语期刊,相对来说要简单一些,欧洲有一些,找找看,找到了发这里来啊,哈哈!地学类期刊审稿都相对较长,半年审完应该是比较快的,我导师牛人发的,有时候也要等到13个月左右,主要看你的文章了,与审稿人的兴趣一致,很快就完了,有点出入,就要等等,大家都可以理解嘛!

李建威的发表论文

60多篇,代表性论文如下:Li JW et al.,2012, Giant Mesozoic gold provinces related to the destruction of the North China and Planetary Science Letters,349–350:26–37Li JW et al.,2012, The Early Cretaceous Yangzhaiyu Lode Gold Deposit, North China Craton: A Link Between Craton Reactivation and Gold ic Geology,107:43-79Li JW, Zhao XF, Zhou MF, Ma CQ, Souza ZS, Vasconcelos, PM, Deng XD, Zhao YX, Wu G, 2009. Late Mesozoic magmatism from Daye, eastern China: U-Pb age, petrogenesis and geodynamic implications. Contributions to Mineralogy and Petrology, 157: JW, Zhao XF, Zhou MF, Ma CQ, Vasconcelos, PM., Deng XD, Souza ZS., Zhao YX, 2008. Origin of the Tongshankou porphyry and skarn copper-molybdenum deposit, Daye district, eastern Yangtze craton, eastern China.: geochronological, geochemical, and Sr-Nd-Hf isotopic constraints. Mineralium Deposita, 43: 315-336Li JW, Vasconcelos P, Duzgoren-Aydin N., Yan DR, Zhang W, Deng X.D., Zhao X.F., Zeng ZP, Hu, MA, 2007. Neogene weathering and supergene manganese enrichment in subtropical South China: an 40Ar/39Ar approach and paleoclimatic significance. Earth and Planetary Science Letters, 256: JW, Vasconcelos, PM, Zhang W, Deng XD, 2007. Timing and duration of supergene mineralization at the Xinrong manganese deposit, western Guangdong Province, South China: cryptomelane 40Ar/39Ar dating. Mineralium Deposita, 42:361–383Li JW, Vasconcelos PM, Zhou MF, Ma CQ. 2006, Geology and geochronology of the Pengjiakuang deposits from the Jiaodong gold province, eastern China. Economic Geology, 101: 1023-1038Li JW, Vasconcelos PM, Zhang J, 2003. 40Ar/39Ar constraints on a temporal link between gold mineralization, magmatism, and continental margin transtension in the Jiaodong gold province, eastern China. Journal of Geology, 111: 741-751Li JW, Vasconcelos PM, 2002. Cenozoic continental weathering and its implications for palaeoclimate: evidence from 40Ar/39Ar geochronology of supergene K-Mn oxides at Mt Tabor, central Queensland, Australia. Earth and Planetary Science Letters, 200: 223-239Li JW, Zhou MF, Li XF, Li ZJ 2002. Origin of a large breccia vein system in the Sanerlin uranium deposit, southern China. Mineralium Deposita, 37: 213-225Li JW, Zhou MF, Fu ZR, Li XF, Li ZJ, 2002. Structural control on uranium mineralization in south China: implications for fluid flow in continental strike slip faults. Science in China (series D), 45: JW, Zhang J, Vasconcelos PM, 2002. Behavior of argon gas release from manganese oxide minerals as revealed by 40Ar/39Ar laser incremental heating analysis, Chinese Science Bulletin, 47: 1502-1510Li JW, Fu ZR, Zhou MF, Li XF, Li ZJ, 2001. The Hunan-Jiangxi strike slip fault system: southern termination of the Tan-Lu fault. Journal of Geodynamics, 32: 333-354Li JW, Vasconcelos PM, 2004. Growth rate estimates of supergene manganese nodule revealed by 40Ar/39Ar isotopic dating. Journal of China University of Geosciences, 15: Q, Li JW, Jian P, Zhao ZH, Xiong XL, Bao ZW, Xu JF, Li CY, Ma JL, 2005. Alkaline syenites in eastern Cathaysia (South China): link to the P-T boundary transtension. Earth and Planetary Science Letters, 230: 339-354.*Wang JZ, Li JW, Zhao XF, Ma CQ, Qu WJ, Du AD, 2008. Re-Os dating of pyrrhotite from the Chaoshan gold skarn, eastern Yangtze craton, eastern China. International Geology Review, 50: 392-406*Wang JZ, Li JW, Zhao XF, Qian ZZ, Ma CQ, 2008. Genesis of the Chaoshan gold skarn gold deposit and its host intrusion: constraints from 40Ar/39Ar ages, elemental and Sr-Nd-O-C-S isotope geochemistry. Acta Petrologica Sinica, 24: 1875-1888.*Zhao XF, Li JW, Ma CQ, Lang YS, 2007. Geochronology and geochemistry of the Gubei granodiorite, North Huaiyang: Implications for tectonic transition of the Dabie Orogen. Acta Petrologica Sinica, 23 (6): XF, Zhou MF, Li JW, Wu FY, 2008. Association of Neoproterozoic A- and I-type granites in South China: Implications for generation of A-type granites in a subduction-related environment. Chemical Geology, 257:1-15Zhao XF, Zhou MF, Li JW, Sun M, Gao JF, Sun WH, Yang JH, 2010. Late Paleoproterozoic to early Mesoproterozoic Dongchuan Group in Yunnan, SW China: Implications for tectonic evolution of the Yangtze Block. Precambrian Research, 182: WH, Zhou MF, Yan DP, Li JW, Ma YX, 2008. Provenance and tectonic setting of the Neoproterozoic Yanbian Group, western Yangtze Block(SWChina). Precambrian Research, 167: 213-236,Zhou MF, Yan DP, Vasconcelos, PM, Li JW, Hu RZ, 2008. Structural and geochronological constraints on the tectono-thermal evolution of the Danba domal terrane, eastern margin of the Tibetan plateau. Journal of Asian Earth Sciences, 33: 413-427She ZB, Ma CQ, Mason, R, Li JW, Wang GC, Lei YH, 2006. Provenance of the Triassic Songpan-Ganzi flysch, west China, 2006. Chemical Geology, 231: 159-175Zhou MF, Lesher CM, Yang ZX, Li JW, Sun M, 2004. Geochemistry and petrogenesis of 270 Ma Ni–Cu–(PGE) sulfide-bearing mafic intrusions in the Huangshan district, Eastern Xinjiang, Northwest China: implications for the tectonic evolution of the Central Asian orogenic belt. Chemical Geology, 209: 233-257.李建威,毕诗健, 2010. 胶东苏鲁地体范家埠金矿成矿作用与矿床成因浅析:兼与胶北地体对比. 高校地质学报,16: 125-142.李建威,Vasconcelos, PM, 2002。表生锰氧化物的氩去气行为:来自40Ar/39Ar激光阶段加热分析的证据。科学通报,47: 1050-1058.李建威,颜代蓉,Vasconcelos PM, Duzgoren-Aydin NS, 胡明安,陈木宏,2004。表生钾锰矿物40Ar/39Ar年代学及其古气候意义。地学前缘,11: 389-398.李建威,颜代蓉,邓晓东,等,2008. 华南氧化锰矿晚新生代大规模成矿。矿物岩石地球化学通报, 27: 226-231.李建威,李先福,1999. 湘赣边中新生代走滑断裂带的流体-岩石相互作用. 地球科学,24: 480-483李建威,李先福,李紫金,傅昭仁,1999. 走滑变形过程中的流体包裹体研究—以湘东地区为例. 大地构造与成矿学,23: 240-247*李占轲,李建威,陈蕾,张素新,郑曙,2010. 豫西沙沟Pb-Zn-Ag矿床银的赋存形式和成矿机理。地球科学,35: 1-16.*毕诗健,李建威,李占轲,2010. 华北克拉通南缘小秦岭金矿区基性脉岩时代及地质意义. 地球科学,出版中.*赵新福,李建威,马昌前,2006. 鄂东南铁铜矿集区铜山口铜(钼)矿床40Ar/39Ar年代学及对区域成矿作用的指示。地质学报,80 (6): 849-862.*朗银生,李建威,邓晓东,2007. 广西钦州-防城地区次生氧化锰矿床矿物学和地球化学研究及矿床成因意义. 矿床地质,26:527-540颜代蓉,李建威,Nurdan Duzgoren-Aydin,胡明安,郎银生,2006,广西下雷氧化锰矿床矿石特征及成因分析。地质科技情报,25 (3): 61-67.徐启东,李建威,2003。云南兰坪北部铜多金属矿化区成矿流体流动与矿化分带—流体包裹体和稳定同位素证据。矿床地质,22:366-376

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