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瓷技术从全盛走向停滞和西方近代陶瓷科学产生的历史,分析了近代陶瓷科学技术在景德镇传播的历程,界定了景德镇古陶瓷技术与其现代陶瓷技术的分界.指出:从清末到20世纪50年代,经过50余年的艰苦奋斗,近代陶瓷科学技术才在景德镇陶瓷业得以传播和推广应用;在这个历程中,一批近代陶瓷教育的先驱们起着巨大的作用;上世纪50年代政府设立的陶瓷科研机构和高等教育机构,才能真正使中国陶瓷技术传统转变为科学.","authors":[{"authorName":"郑乃章","id":"e33c774a-6a9d-4a68-9cd1-e9c3e9982843","originalAuthorName":"郑乃章"},{"authorName":"李原野","id":"6f4ea5b0-61b8-4bb1-b919-a30dc93dc078","originalAuthorName":"李原野"},{"authorName":"郑康妮","id":"99894d33-2381-49db-98fc-80b815801fb1","originalAuthorName":"郑康妮"},{"authorName":"莫云杰","id":"b56e8d8b-1d5c-45c0-b1ad-9285a73c805d","originalAuthorName":"莫云杰"},{"authorName":"苗立峰","id":"95018b9b-ca2a-4a4d-a72d-03bfa7cf652d","originalAuthorName":"苗立峰"}],"doi":"","fpage":"1092","id":"b7aea4be-715a-4731-a91d-8dfcde6a1ea1","issue":"6","journal":{"abbrevTitle":"GSYTB","coverImgSrc":"journal/img/cover/GSYTB.jpg","id":"36","issnPpub":"1001-1625","publisherId":"GSYTB","title":"硅酸盐通报 "},"keywords":[{"id":"cb3ef955-ff09-4a60-ad27-9c8ac865792f","keyword":"近代陶瓷科学","originalKeyword":"近代陶瓷科学"},{"id":"cc367050-1525-472a-bb55-1ccc586ede72","keyword":"传播","originalKeyword":"传播"},{"id":"12116871-ed30-4a96-bcdc-3e37270b537e","keyword":"景德镇","originalKeyword":"景德镇"}],"language":"zh","publisherId":"gsytb201306019","title":"近代陶瓷科学技术在景德镇的传播","volume":"32","year":"2013"},{"abstractinfo":"矿山金属平衡通过矿山金属产量实现了地质资源储量模型与矿山实际生产数据有机的结合,它涉及到储量评估、采矿计划、品位控制、矿山测量、选矿流程和产品销售等各个矿山生产环节.以蔡家营矿为例详细介绍了矿山金属平衡的操作步骤,实施矿山金属平衡不但可以评估矿山生产运作过程中财务现金流的风险,而且更重要的是运用实际品位数据来检验矿体矿块模型对采矿品位预计的可信度.","authors":[{"authorName":"梁涛","id":"4db6c0b4-2849-48c9-8284-1924cd18346c","originalAuthorName":"梁涛"},{"authorName":"卢仁","id":"12f6c54d-476c-4ec6-9349-0d1d5b907b04","originalAuthorName":"卢仁"},{"authorName":"吕胜利","id":"798ec94f-56a6-4a6b-b2b1-4d7b2dba45bf","originalAuthorName":"吕胜利"},{"authorName":"王书军","id":"1eb66d1f-a26a-46ac-bb0f-17754796659f","originalAuthorName":"王书军"},{"authorName":"刘明月","id":"db9462e3-990f-49cc-869b-2eb9e19d8516","originalAuthorName":"刘明月"},{"authorName":"张四维","id":"9704dcd6-3761-42e1-90a9-abd06a6f03c3","originalAuthorName":"张四维"}],"doi":"10.3969/j.issn.1001-1277.2010.09.008","fpage":"33","id":"276f67c7-9926-4144-b980-ca476b438ce6","issue":"9","journal":{"abbrevTitle":"HJ","coverImgSrc":"journal/img/cover/HJ.jpg","id":"44","issnPpub":"1001-1277","publisherId":"HJ","title":"黄金"},"keywords":[{"id":"59adb483-d722-4ab6-a33e-869876754a12","keyword":"矿山金属平衡","originalKeyword":"矿山金属平衡"},{"id":"b70fda73-0fee-4ebe-8ee1-5edf570404b1","keyword":"Micromine软件","originalKeyword":"Micromine软件"},{"id":"5eac0457-2b20-4ee9-9e7b-46993907204e","keyword":"蔡家营矿","originalKeyword":"蔡家营矿"}],"language":"zh","publisherId":"huangj201009008","title":"矿山金属平衡的应用——以蔡家营矿为例","volume":"31","year":"2010"},{"abstractinfo":"在工艺矿物学研究的基础上对含金0.084 g/t、硫2.74%的陕西蔡川铜尾矿进行了金的强化回收技术研究.结果表明,含金铜尾矿经过一次粗选、一次精选、一次扫选闭路流程可获得硫品位43.34%、回收率44.30%的硫精矿,其中金品位为1.26g/t、回收率为42.06%,达到计价标准.另外矿石中的银和镓元素也得到了一定程度的回收.理论分析结果显示,组合药剂的使用可大幅度提高含金矿物的选别效果,Y-89和丁基铵黑药的组合属于正—负型协同药剂,药剂基团中硫原子的Mulliken电荷分布是影响捕收剂选别性能的关键因素.","authors":[{"authorName":"刘明宝","id":"56fb3e34-3b54-4489-9bf7-82c08366462d","originalAuthorName":"刘明宝"},{"authorName":"杨超普","id":"e833885d-42ff-4dd3-a39e-666936e47fe5","originalAuthorName":"杨超普"},{"authorName":"阎赞","id":"1bea5843-bdd1-4e40-96d2-d451a868d4ee","originalAuthorName":"阎赞"},{"authorName":"印万忠","id":"c641e8f4-946b-41d9-94d4-78e7fb636315","originalAuthorName":"印万忠"}],"doi":"10.3969/j.issn.2095-1744.2016.05.013","fpage":"61","id":"0e228049-8998-421c-9974-9b7ac7be17a9","issue":"5","journal":{"abbrevTitle":"YSJSGC","coverImgSrc":"journal/img/cover/YSJSGC.jpg","id":"76","issnPpub":"2095-1744","publisherId":"YSJSGC","title":"有色金属工程"},"keywords":[{"id":"a81e098e-e47c-4fb2-8b06-a6e17609a946","keyword":"铜尾矿","originalKeyword":"铜尾矿"},{"id":"3deeda17-63a5-42a6-b747-abf688732cc2","keyword":"协同药剂","originalKeyword":"协同药剂"},{"id":"8c0e1c8f-f808-4870-91e6-fa75ff442474","keyword":"Mulliken电荷","originalKeyword":"Mulliken电荷"}],"language":"zh","publisherId":"ysjs201605013","title":"陕西蔡川铜矿含金铜尾矿中金的回收","volume":"6","year":"2016"},{"abstractinfo":"本课题以景德镇明清以来低温黄釉样品为研究对象,采用电子探针-能谱组合、透射电镜等仪器对样品断面进行显微结构分析,研究了景德镇低温黄釉的显微结构演变情况,发现景德镇低温黄釉主要有黄釉下施底釉和黄釉下无底釉两大类,并进一步分析了底釉的存在对黄釉品质的影响情况.研究得出黄釉与底釉、胎的中间层所析出晶体主要为铅长石,白釉、底釉与胎中间层所析出晶体主要为钙长石;同时,还发现民国黄釉表面存在一层细小的烧绿石型黄色Pb2Fe0.5Sb1.5O6.5晶体.","authors":[{"authorName":"","id":"035d81a2-d4c2-4799-b60a-e5693f8e1e79","originalAuthorName":""},{"authorName":"孙加林","id":"ddbd70f4-c5fd-445a-bd3b-4dc4e271230f","originalAuthorName":"孙加林"},{"authorName":"","id":"7a7c9394-fdf1-4e58-b9fa-1989dac9001c","originalAuthorName":""},{"authorName":"吴隽","id":"edfd6e79-a2af-4f87-b24c-ea9188853adc","originalAuthorName":"吴隽"},{"authorName":"","id":"a5ec5a42-2675-4897-9cbe-88ddd5044684","originalAuthorName":""}],"doi":"","fpage":"981","id":"daea6ed6-63b1-4b51-9567-9761814c1c14","issue":"4","journal":{"abbrevTitle":"RGJTXB","coverImgSrc":"journal/img/cover/RGJTXB.jpg","id":"57","issnPpub":"1000-985X","publisherId":"RGJTXB","title":"人工晶体学报"},"keywords":[{"id":"24c3d644-37fa-4261-ac37-75b98330cde8","keyword":"景德镇","originalKeyword":"景德镇"},{"id":"4d80284b-b621-4e0f-bc02-9d69345e88f9","keyword":"低温黄釉","originalKeyword":"低温黄釉"},{"id":"15409915-9b7d-43af-87c8-a10cc02535fb","keyword":"显微结构","originalKeyword":"显微结构"}],"language":"zh","publisherId":"rgjtxb98200804042","title":"景德镇明清以来低温黄釉的显微结构","volume":"37","year":"2008"}],"totalpage":10,"totalrecord":99}