1)reduction roasting还原焙烧
1.Reduced iron powder was obtained by converting copperas to ferrous carbonate with(NH_4)_2CO_3,followed by reduction roasting with anthracite as reducer and CaCO_3 as additive.提出了一种新的绿矾综合利用的途径,即绿矾经碳酸盐转化,然后采用无烟煤作还原剂,CaCO3为添加剂,进行高温还原焙烧制取还原铁粉。
2.Zinc calcine contains a small amount of refractory zinc ferrite that can be reduced by reduction roasting.锌焙砂含有少量难溶的铁酸锌 ,通过还原焙烧可以降低铁酸锌含量。
3.The experiment of reduction roasting of strontium sulphate ore is carried out on a fluidized bed with the cross sectionof 0.3m,处理量为60~70kg/h的流化床装置上进行了还原焙烧硫酸锶矿(天青石)的试验研究,获得焙烧操作的最佳工艺条件,锶矿还原率达75%~78%,吨产晶焙烧煤耗1。
英文短句/例句
1.A SIMULATION STUDY ON THE PRE-REDUCTION AND CALCINATION PROCESS OF LATERITE ORE IN ROTARY KILN回转窑预还原焙烧红土矿工艺模拟研究
2.Research of Magnetic Reduction Roasting of Low Grade Ferromanganese Ore磁化还原焙烧工艺处理贫锰铁矿的研究
3.Abstract: Zinc calcine contains a small amount of refractory zinc ferrite that can be reduced by reduction roasting.文摘:锌焙砂含有少量难溶的铁酸锌,通过还原焙烧可以降低铁酸锌含量。
4.RECOVERY OF RARE-EARTH MINERALS FROM TAILINGS OBTAINED AFTER THE REDUCTION ROAST AND MAGNETIC SEPARATION OF BAO TOU IRON ORES从包头铁矿石还原焙烧磁选尾矿中浮选回收稀土矿物
5.Research on Physicochemical Fundamental and New Technology of Tin, Zinc-Bearing Complex Iron Concentrate Pellets by Weak Reduction Roasting;含锡锌复杂铁精矿球团弱还原焙烧的物化基础及新工艺研究
6.Pelletization,Reducing Roast and Magnetic Separation Tests of Mixture Fine Ore of Qijiang-type Hematite and Siderite綦江式赤菱混合矿粉矿造球还原焙烧磁选试验研究
7.Test research on roasting-low intensity magnetic separation of oolitic hematite ore in Zhangjiakou area张家口地区鲕状赤铁矿还原焙烧-弱磁选试验研究
8.Roasting-Magnetic Separation and Direct Reduction of a Refractory Oolitic-Hematite Ore;难选鲕状赤铁矿焙烧—磁选和直接还原的研究
9.Application of Electricity Heat Rotary Calcine of Cooling Kiln in MnO_2 Reductive Reaction电热式焙烧冷却炉在二氧化锰还原中的应用
10.The Change of hot strength of iron ore pellets during oxidizing roasting and reduction was researched.研究了球团矿在氧化焙烧和还原过程中抗压强度的变化规律。
11.Effect of Calcination Temperature on the Reduction Kinetics of Iron-Based Fischer-Tropsch Catalyst焙烧温度对费托合成铁基催化剂还原动力学的影响
12.Study on Extracting V_2O_5 from Vanadium-containing Stone Coal by Process of Ore Roasting-alkaline Pressure Leaching石煤提钒原矿焙烧-加压碱浸工艺研究
13.SYNTHESIS OF ZSM-5 ZEOLITE FROM CALCINED KAOLIN以焙烧高岭土为原料合成ZSM-5分子筛
14.The strength variation of pellets during oxidizing roast was studied with a high temperature compressive tester with adjustable atmosphere.通过还原反应后的高温抗压强度研究估算了球团矿焙烧中必要的强度。
15.fluosolids roasting流(态)化燃烧, 沸腾焙烧
16.Optimized baking process of anode baking furnace in Huasheng Al. Smelter华圣铝业阳极焙烧炉的焙烧工艺优化
17.Simultaneous Determination of Sb and Bi in Roasted Molybdenum Oxide by Hydride Generation-Atomic Fluorescence Spectrometry氢化物发生-原子荧光光谱法同时测定焙烧氧化钼中铋和锑
18.Freeman-Nichols roaster弗里曼-尼科耳型焙烧炉
相关短句/例句
roasting reduction还原焙烧
1.By analyzing and researching utilization of BF dust,a technology of dealing with the BF gas slime adopting the containing carbon pellet direct roasting reduction method was put forward.通过对攀钢高炉粉尘利用的分析研究,提出了采用含碳球团直接还原焙烧法处理高炉瓦斯泥的工艺。
2.The optimal pa-rameters of roasting reduction in reduction atmosphere with a metallization rate up to more than 80% were determined by orthogonal method.在还原气氛下进行了红土贫铁矿的还原焙烧实验,采用正交实验设计方法,以C/O、焙烧时间和焙烧温度为因素,在还原气氛下得到了最佳工艺条件为:C/O是0。
3.The feasibility of roasting reduction method to dezinc the Zn bearing BF dust was proved by energy spectrum analysis and differential thermal(DT) and thermo gravimetric(TG) analysis firstly.通过能谱、差热及热重分析等验证了用还原焙烧的方法脱除高炉含锌粉尘中锌的可行性。
3)Reductive roasting还原焙烧
1.Investigation of extracting iron from pyrite cinder by reductive roasting;用还原焙烧法从硫铁矿烧渣中提取铁的研究
2.Reductive roasting is .采用还原焙烧工艺对内蒙黄岗高锡铁精矿的处理进行了研究,考察了主要工艺参数对脱锡效果的影响。
3.The reductive roasting of carbon-containing laterite by heating in microwave field has been studied.研究了含碳红土矿在微波场中的加热还原焙烧,考察了不同含碳量情况下微波加热焙烧过程中的样品温度和产物的物相组成,以及浮氏体、磁铁矿和赤铁矿等不同价态的铁氧化物在微波场中的加热性能。
4)weak reduction roasting弱还原焙烧
5)roasting-and-reduction焙烧和还原
6)reducing roast还原焙烧<冶>
延伸阅读
还原焙烧还原焙烧reducing roasting huonyuQn be13hao还原焙烧(redueing roasting)矿物原料焙烧的一种方法,即在还原气氛下加热犷物原料,使其中的金属氧化物转变为低价金属氧化物或金属的过程。在此过程中,矿物原料中的金属氧化物被还原。还原焙烧主要用于处理难选的铁、锰、镍、铜、锡等矿物原料如弱磁性铁矿石磁化焙烧,使弱磁性赤铁矿、褐铁矿和针铁矿等转变为强磁性磁铁矿或丫赤铁矿,经磁选获得铁精矿。(见磁化熔烧一磁选)含镍红土矿的还原焙烧,使镍钻氧化物还原成金属,用氨浸出镍、钻和铜,浸渣经磁选产出铁精矿。氧化矿的硫化焙烧和锡中矿烟化也属于还原焙烧。还原焙烧可在竖炉、流态化炉和回转窑等焙烧炉中进行。其中流态化炉较为先进,应用也较多。 焙烧反应由于氧化物的还原反应为吸热反应,还原焙烧需从外部供应反应所需的热量。其化学反应如下式: MO+R一M+RO式中M、MO、R、RO分别为金属、金属氧化物、还原剂和还原剂氧化物。还原过程的标准自由能变化为 户0.(Ro) O弓J-」(1 In— PoZ(Mo)式中p%(Ro)、poZ(。)分别为还原剂氧化物和金属氧化物的分解氧分压。金属氧化物被还原的必要条件是△G。<0,即户02〔。)<户02(珊)。凡与氧的化学亲和力比被还原金属与氧的亲和力大的物质都可作为该金属氧化物的还原剂。金属氧化物的标准生成自由能变量随温度的升高而增大,而一氧化碳的标准生成自由能变量则随温度的升高而显著地降低,在较高温度下,碳可作为许多金属氧化物的还原剂。 还原剂常用的还原剂除粉煤、焦炭外,还有气体还原剂。工业上常用的气体还原剂有高炉煤气、焦炉煤气、混合煤气和水煤气等,它们均含有较高比例的一氧化碳和氢气。在90。~100。℃条件下,固体碳的气化反应C02+C一ZCO较强。用固体碳作还原剂的称为直接还原反应,用一氧化碳作还原剂的称为间接还原反应。还原过程中的气相组成和还原温度对反应有很大的影响。金属氧化物多呈结合态存在,结合态的金属氧化物比简单氧化物稳定,需要较高的温度才能还原。 焙烧工艺还原焙烧一般由预热和还原两个过程组成,采用相应的预热炉和还原炉。无论采用哪种炉型,均要求炉料水分低和有一定的杠度,还原焙烧前一般用圆筒干燥机进行干燥,使炉料水分含量小于4%~5%。采用流态化炉时,在预热炉流态化料层中部侧墙上装有高压油烧嘴,干燥后的物料由螺旋加料器送入预热炉的流态化层中,预热空气经分配板和风帽均匀鼓入炉内,在流态化层内使油燃烧并使炉料保持流态化。加热至一定温度的炉料通过溢流管自动流入还原炉中,在炉内被加热至一定温度的水煤气所还原。还原后的焙砂经排料管和螺旋排料器送至有气氛保护的冷却圆筒中冷却,冷却后的焙砂送后续工序处理。(参见彩图插页第15、16页) (熊志章)
