广州化工
廣州化工
엄주화공
Guangzhou Chemical Industry
2015年
17期
111-113
,共3页
固定床%穿透曲线%铁离子%螯合树脂
固定床%穿透麯線%鐵離子%螯閤樹脂
고정상%천투곡선%철리자%오합수지
fixed-bed column%breakthrough time%Fe(Ⅲ)%chelating resin
为了探究LSC-500螯合树脂在固定床分离实验中对清洁工艺生产的癸二酸裂解中和液铁离子的去除效果,分别考察了不同初始上样浓度、流速及固定床层高度等因素对固定床分离过程中的影响规律。结果表明:当初始上样浓度为40 mg/L、流速为10 BV/h、固定床填料高度为1.8 cm时,固定床的传质阻力最小,床层的饱和吸附量最大且吸附率最大,树脂的吸附效果最优。同时,在最佳条件下对癸二酸单钠盐中和液进行了处理,最终制得的癸二酸成品,其铁含量由最初的100~300μg/g降低到10μg/g以下。
為瞭探究LSC-500螯閤樹脂在固定床分離實驗中對清潔工藝生產的癸二痠裂解中和液鐵離子的去除效果,分彆攷察瞭不同初始上樣濃度、流速及固定床層高度等因素對固定床分離過程中的影響規律。結果錶明:噹初始上樣濃度為40 mg/L、流速為10 BV/h、固定床填料高度為1.8 cm時,固定床的傳質阻力最小,床層的飽和吸附量最大且吸附率最大,樹脂的吸附效果最優。同時,在最佳條件下對癸二痠單鈉鹽中和液進行瞭處理,最終製得的癸二痠成品,其鐵含量由最初的100~300μg/g降低到10μg/g以下。
위료탐구LSC-500오합수지재고정상분리실험중대청길공예생산적계이산렬해중화액철리자적거제효과,분별고찰료불동초시상양농도、류속급고정상층고도등인소대고정상분리과정중적영향규률。결과표명:당초시상양농도위40 mg/L、류속위10 BV/h、고정상전료고도위1.8 cm시,고정상적전질조력최소,상층적포화흡부량최대차흡부솔최대,수지적흡부효과최우。동시,재최가조건하대계이산단납염중화액진행료처리,최종제득적계이산성품,기철함량유최초적100~300μg/g강저도10μg/g이하。
The LSC-500 chelating resin for removing Fe (Ⅲ) of the sodium sebacic solution was analyzed in this research. Experiments were carried out in fixed-bed column to test the influence of various parameters such as feed concentration, flow rate and bed height on breakthrough and saturation time, which increased with the decrease of flow rate and the increase of the bed depth. The saturate absorption capacity of iron was 32. 45 mg/g. As a result, the optimum condition of feed concentration, flow rate and bed height on the fixed-bed were 40 mg/L, 10 BV/h, 1. 8 cm, respectively. On the basis of the results, the sodium sebacic solution by catalytic cracking of castor oil was studied on this condition. It was showed that the iron content varied from 100~300 μg/g of the inlet content to under the 10 μg/g of the outlet content.