中国有色金属学报
中國有色金屬學報
중국유색금속학보
THE CHINESE JOURNAL OF NONFERROUS METALS
2015年
1期
241-249
,共9页
易宇%石靖%田庆华%郭学益
易宇%石靖%田慶華%郭學益
역우%석정%전경화%곽학익
高砷烟尘碱浸渣%硫化钠浸出%空气氧化%焦锑酸钠
高砷煙塵堿浸渣%硫化鈉浸齣%空氣氧化%焦銻痠鈉
고신연진감침사%류화납침출%공기양화%초제산납
alkali leaching residue of high arsenic dust%sodium sulfide leaching%air oxidation%sodium pyroantimonate
以高砷烟尘碱浸脱砷渣为研究对象,采用硫化钠浸出?空气氧化法选择性提取锑并制备焦锑酸钠产品。结果表明:在硫化钠浓度为100 g/L、氢氧化钠浓度为40 g/L、反应时间为3.0 h、液固质量比为5:1、反应温度为90℃、搅拌速度为400 r/min条件下,锑的浸出率为84.81%;在空气流量为1.5 L/min、反应时间为9 h、反应温度为60℃、搅拌速度为300 r/min条件下,锑浸出液中锑沉淀率为98.51%;氧化沉淀产物经盐酸溶解、水解、转化后得到焦锑酸钠产品。硫化钠浸出?空气氧化工艺可以有效地分离提取高砷烟尘碱浸渣中的锑,并制备得到焦锑酸钠产品,实验过程简单、清洁,生产成本低,具有产业化前景。
以高砷煙塵堿浸脫砷渣為研究對象,採用硫化鈉浸齣?空氣氧化法選擇性提取銻併製備焦銻痠鈉產品。結果錶明:在硫化鈉濃度為100 g/L、氫氧化鈉濃度為40 g/L、反應時間為3.0 h、液固質量比為5:1、反應溫度為90℃、攪拌速度為400 r/min條件下,銻的浸齣率為84.81%;在空氣流量為1.5 L/min、反應時間為9 h、反應溫度為60℃、攪拌速度為300 r/min條件下,銻浸齣液中銻沉澱率為98.51%;氧化沉澱產物經鹽痠溶解、水解、轉化後得到焦銻痠鈉產品。硫化鈉浸齣?空氣氧化工藝可以有效地分離提取高砷煙塵堿浸渣中的銻,併製備得到焦銻痠鈉產品,實驗過程簡單、清潔,生產成本低,具有產業化前景。
이고신연진감침탈신사위연구대상,채용류화납침출?공기양화법선택성제취제병제비초제산납산품。결과표명:재류화납농도위100 g/L、경양화납농도위40 g/L、반응시간위3.0 h、액고질량비위5:1、반응온도위90℃、교반속도위400 r/min조건하,제적침출솔위84.81%;재공기류량위1.5 L/min、반응시간위9 h、반응온도위60℃、교반속도위300 r/min조건하,제침출액중제침정솔위98.51%;양화침정산물경염산용해、수해、전화후득도초제산납산품。류화납침출?공기양화공예가이유효지분리제취고신연진감침사중적제,병제비득도초제산납산품,실험과정간단、청길,생산성본저,구유산업화전경。
A promising process, including sodium sulfide leaching and air oxidation, was proposed to prepare sodium pyroantimonate from alkali leaching residue of high arsenic dust. The results show that the leaching efficiency of antimony is 84.81% under the conditions of sodium sulfide concentration 100 g/L, sodium hydroxide concentration 40 g/L, time 3.0 h, mass ratio of liquid to solid 5.0, temperature 90℃, stirring speed 400 r/min. The antimony is precipitated from the leaching solution containing antimony. The precipitation efficiency of antimony is 98.51% under the conditions of air flow rate 1.5 L/min, time 3.0 h, temperature 60℃, stirring speed 300 r/min. The sodium pyroantimonate is obtained from oxidation precipitation containing antimony by the processes including HCl dissolution, hydrolyzation and conversion. The antimony can be effectively extracted by sodium sulfide leaching from alkali leaching residue of high arsenic dust, and sodium pyroantimonate product can be made by air oxidation. The experimental process is simple, clean and low cost, which is promising for industrialization in the future.