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1.
湖北省宜昌硅钙质沉积磷块岩,是难选的中低品位沉积磷块岩,主要磷酸盐矿物为泥晶磷灰石,主要脉石矿物为白云石、石英、玉髓.从获得高品位精矿、高回收率选矿工艺指标的角度,对含泥量较高的中低品位硅钙质沉积磷块岩,进行选矿工艺研究。确定分级-反浮选(常温)最佳选矿工艺路线为:选矿技术指标为磨矿细度-0.074mm(-200目),含量占67.7%,原矿品位P2O5 25.89%,精矿产率58.61%、品位P2O5 35.22%,回收率80.00%.通过工艺流程试验研究的论述,旨在向年轻的选矿工作者传达一种工作思路,同时对于选别同类型磷矿的矿山企业也有一定的参考价值、  相似文献   

2.
针对云南某单一的低品位硫化钼矿,辉钼矿嵌布粒度粗细极不均匀,微细粒含量高的特点,进行了工艺矿物学与浮选回收技术研究.采用原矿粗磨—钼粗精矿再磨的阶段磨浮选矿回收工艺,以水玻璃和硫化钠做脉石矿物的抑制剂,以煤油和2#油分别作辉钼矿的捕收剂和起泡剂,对原矿Mo品位0.22%,全流程浮选闭路试验获得了钼精矿含M050.12%,回收率92.73%的浮选指标,浮选回收工艺流程合理、药剂制度简单环保.  相似文献   

3.
某萤石矿中萤石与石英密切共生.采用磨矿-浮选工艺流程进行选矿试验,虽然所得萤石精矿w(CaF2)达98%以上,但精矿中杂质w(SiO2)>1%.采用阶段磨矿阶段浮选工艺流程,获得了w(CaF2)=98.07%,w(SiO2) =0.77%的优质萤石精矿;粗精矿再磨使萤石充分单体解离,有助于降低浮选精矿中二氧化硅.  相似文献   

4.
几种矿物的超细加工及对建材防氡防辐射性能的影响   总被引:3,自引:0,他引:3  
采用湿法搅拌磨和气流磨,对用作防氡防辐射基元材料原料的重晶石、沸石进行超细加工和激光粒度分布测试,结果表明:重晶石、沸石通过湿法和干法粉磨加工,在一定的时间内都可以超细粉碎到d90小于10μm,从粉磨时间以及粉磨成本来比较干磨法要明显优于湿磨法;重晶石进行超细加工后所制备的水泥砂浆的外照射指数从0.51降到0.23,重晶石所配腻子的氡和放射性屏蔽率提高20%~30%。当沸石的粒度减小时,水泥砂浆对氡的屏蔽率提高的屏蔽率最大达26%。沸石从119μm降到18μm时,腻子的防氡率从37.9%提高到53.1%。防辐射性能从整体上来看是粒度越细性能越好。  相似文献   

5.
雷满奇 《广西地质》2010,(6):27-28,31
文章通过对横县某硫化铜矿的物质组成研究,以及不同试验方案的对比选矿试验、不同药剂用量的条件试验,从而确定出最佳的工艺流程参数。在此基础上进行的闭路试验产品的铜精矿品位为24.23%,回收率达到了95.55%,取得了很好的选矿技术指标。  相似文献   

6.
本研究以四川米易大槽橄榄矿体低品位含铬矿石(Cr2O3平均含量为8.57%)为研究对象,对三种选矿工艺流程进行了对比试验研究,研究结果表明,强磁~摇床~中矿再磨~强磁~摇床选矿工艺流程是处理大槽低品位铬铁矿较为合理的工艺流程,它不但可获得含Cr2O340.75%,回收率78.53%的铬精矿,且占地面积省、生产成本较低。  相似文献   

7.
该试验对低品位镍矿进行了选矿试验研究。结果表明:采用一段磨矿、细度-0.074mm 85%、先反浮选脱泥、脱泥后的尾矿进行粗选,两次粗扫选、三次精选流程;浮选药剂采用碳酸钠、2^#油、CMC、硫酸铜、丁基黄药、J-622;试验指标为:原矿镍品位0.18%、浮选精矿镍品位3.15%、浮选尾矿品位0.11%、反浮选产品镍品位0.19%、精矿镍回收率39.17%。该研究结果为该矿石的可选性评价提供了技术依据。  相似文献   

8.
用加压氰化浸出法提取金和银的工艺试验   总被引:3,自引:0,他引:3  
针对常规氰化浸出提取Au、Ag工艺中浸出时间长,药品消耗大,金、银回收率低等现状,在保持原有选矿工艺流程不变的基础上,在氰化浸出环节上采用自行设计的高压浸出装置,对矿石进行加压氰化浸出提取Au、Ag工艺试验。通过改变浸出过程的压力,增加浸出溶液的O2含量,浸出时间由原来的一个流程24h缩短到45min;Au、Ag浸出率指标达到93.2%和73.0%,分别提高了19.6%和12.0%。  相似文献   

9.
通过对湖北省行唐县霍家庄碎云母矿区的云母分离,提纯等方面的研究,总结出了多碎少磨勤筛的选矿方法。选矿后云母纯度高,回收率也较高。工艺流程简单实用。  相似文献   

10.
河北丰宁招兵沟铁磷矿原生矿选磷工艺探讨   总被引:1,自引:0,他引:1  
河北丰宁招兵沟低品位原生磷矿为嵌布较粗磷灰石类型,对2#和4#矿体中低品位磷的综合回收选矿研究,常温和粗磨条件下均获得较好指标,为工业生产提供了技术依据。  相似文献   

11.
Exploitation of low-grade iron ore would be quite unique in a South African context as South Africa is well endowed with high-grade iron ore resources. Low-grade iron ore, defined as containing between 20 and 47% iron, is thought to be the primary iron-bearing lithology from which most high-grade ore deposits formed, through different processes of enrichment. The low-grade iron ores in the Northern Province represent meta-banded iron formations (BIFs), with an average iron content of about 36%. The main iron-bearing mineral is magnetite. The Northern Province ores have to be milled to sizes smaller than 150 μm in order to liberate the iron minerals from the host rock, and beneficiation is accomplished through a series of magnetic separation processes. Irrespective of the in situ quality of the ore, final concentrates of exceptionally good quality with more than 69% iron and very low contaminant levels can be produced. This, combined with mass yields of between 40 and 50% and iron recoveries greater than 80%, are excellent for this type of iron ore deposit. The beneficiation products are suitable for use in iron- and steel-making processes. Received: 4 July 1996 / Accepted: 7 January 1997  相似文献   

12.
Precambrian iron ores of the Singhbhum-North Orissa region occur in eastern India as part of the Iron Ore Group (IOG) within the broad horse-shoe shaped synclinorium. More than 50% of Indian iron ore reserves occur in this region. Massive-hard, flaky-friable, blue dust and lateritic varieties of iron ores are the major ore types, associated with banded hematite, jasper and shales. These ores could have formed as a result of supergene enrichment through gradual but extensive removal of silica, alumina and phosphorus from banded iron formations and ferruginous shale. Attempts for optimal utilization of these resources led to various ore characterization studies using chemical analysis, ore and mineral petrography, XRD analysis, SEM and electron probe micro analysis (EPMA). The ore chemistry indicates that the massive hard ores and blue dust have high iron, low alumina and phosphorus contents. Because of high quality, these ores do not require any specialized beneficiation technique for up-gradation. However, flaky-friable, lateritised and goethitic ores are low in iron, high in alumina and phosphorus contents, requiring specific beneficiation techniques for up-gradation in quality. XRD, SEM and ore microscopic studies of massive hard ores indicate the presence of hematite and goethite, while flaky and lateritic ores show a higher concentration of goethite, kaolinite, gibbsite and hematite. EPMA studies show the presence of adsorbed phosphorous as fine dust in the hard ores. Sink and float studies reveal that most of the gangue minerals are not completely liberated in the case of goethitic and lateritic ores, even at finer fractions.  相似文献   

13.
福建龙岩中甲铁矿是上世纪60年代探明的海相火山沉积-热液叠加改造型多金属硫化物磁铁矿矿床。随着该矿难选铁矿石选矿技术的突破,最近发现矿石中共(伴)生的分散元素铟、镉含量超过综合利用工业最低品位要求,铟、镉的储量估算均可达大型规模。通过研究铟、镉的赋存状态,认为矿石中尚无铟、镉的独立矿物存在,铟、镉主要与锌呈类质同象存在于闪锌矿的晶格中;铟、镉综合回收经济评价表明,铟、镉在选矿流程中主要走向锌精矿,可在锌的冶炼过程中综合回收,并会获得很好的经济效益。永安—梅县凹陷带内有众多与该矿床类似的铁多金属矿,该矿床共(伴)生铟、镉含量及赋存状态的考察,对区域同类矿床伴生元素的综合利用、提升经济价值有重大意义。  相似文献   

14.
The Snake River iron ore deposit, in the northern Yukon, Canada, is an enormous, potentially valuable natural resource. Conservative estimates indicate that the deposit contains some thirty thousand million tons of ore. Unfortunately the chemical quality of the mine-run ore falls significantly below established industrial specifications, in particular the phosphorus content is not acceptable. Previous mineralogical examination of the deposit has indicated that the gangue constituents are finely disseminated throughout the ore.An outline is given for the selective agglomeration of the ore to concentrate the phosphorus minerals during grinding. The ground ore is then further treated to agglomerate selectively the iron fraction, which can then be separated from the remaining gangue constituents by differential settling. Successful beneficiation has been achieved on both the crude Snake River ore and a jig concentrate, with some concentrates assaying 69.0% Fe and <0.03% P (iron-ore specification is 0.07% P max.). The effects of various parameters on efficiency of separation are discussed.  相似文献   

15.
在汞丹山凸起中分布的基性一超基性岩体,其磁铁矿含量高者可构成矿体。利用高精度磁测、钻探等方法开展了沂水县杏山官庄铁矿的普查工作,大致查明了该矿体的规模、形态和产状,认为该矿床具有低品位、工程地质条件简单的特点,综合分析矿床成因属岩浆分异型磁铁矿矿床。  相似文献   

16.
金刚石原生矿和砂矿的选矿方法各有异同,但总体来说可分为粗选和精选两个阶段.粗选主要是利用重选跳汰法来进行,精选采用多种方法联合进行.而质量则是整个选矿过程的关键,质量检查应采取多种方法进行,每个工序和各个级别有不同的质量要求.金刚石总的回收率应不低于95%.  相似文献   

17.
辽宁本溪大台沟铁矿地质特征   总被引:4,自引:1,他引:3       下载免费PDF全文
本溪大台沟铁矿床位于本溪市桥头镇,是近年来发现的最大的鞍山式铁矿床。该矿床为隐伏的超大型铁矿床,埋深1100~1200m,已控制矿体延长2000m,最大延深840m,最宽处1100m。矿体总体为近直立的厚板状体,夹石很少,为单一矿体。矿石类型为磁铁石英岩(磁铁矿石)、赤铁石英岩(赤铁矿石)及其过渡类型的磁铁赤铁石英岩(混合矿石)。矿石品位较均匀,矿床有害杂质含量低。初步估算333+332类资源量约34亿t。  相似文献   

18.
为保证云南钢铁工业可持续发展,解决矿石资源的不足,从分析截止2002年底保有资源量数据入手,研究尚未上表的铁矿资源现状,发现全省上表98处产地保有的35.52亿t储量中,仅有7.91亿t为当前可应用储量。应从补勘升级上表D级储量(3亿t)、择优勘查未上表的矿区(2亿t)、试验-研究3类矿石的选矿回收(菱铁矿石1亿t,鲕状高磷赤铁矿石1亿t,高磷非鲕状赤铁矿石0.5亿t),合计可新增可应用矿石7.5亿t,加上已有的7.91亿t,可应用矿石最终达15.41亿t。再加上第二轮国土资源大调查铁矿的新发现,立足省内,扩大进口,必将缓解云南铁矿资源紧缺的现状。  相似文献   

19.
对澳大利亚某地高磷铁矿石中磷的赋存状态研究结果表明,铁矿石中的磷主要以胶体状态存在,采用物理选矿方法很难将磷降低.研究中采用化学选矿方法,通过焙烧-酸浸工艺取得了理想的铁矿石降磷效果.  相似文献   

20.
西北某矿石属低硫含磷的酸性低品位原生钒钛磁铁矿矿石,通过镜下鉴定、X射线衍射分析和扫描电镜分析等多种手段对原矿的化学成分、矿物组成及含量、矿物的产出形式、矿石的结构构造、主要目的矿物的嵌布粒度等进行了详细的工艺矿物学研究,查明矿石的工艺学特性.研究结果表明,该矿石具浸染状构造和交代构造,其中铁矿物主要是钛磁铁矿和赤铁矿,钛矿物包括钛铁矿、金红石和榍石等.钛磁铁矿和钛铁矿均属不均匀细粒—微细粒嵌布特征,在-400目占95%左右的磨矿细度条件下,通过选矿可获得铁精矿和钛精矿两种产品.  相似文献   

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