氯碱工业
氯堿工業
록감공업
Chlor-Alkali Industry
2015年
10期
30-34
,共5页
覃卫国%龙锋%苏通明%秦祖赠
覃衛國%龍鋒%囌通明%秦祖贈
담위국%룡봉%소통명%진조증
废硫酸%三氯乙醛%净化技术%臭氧氧化
廢硫痠%三氯乙醛%淨化技術%臭氧氧化
폐류산%삼록을철%정화기술%취양양화
waste sulfuric acid%trichloroacetaldehyde%purification technology%ozone oxidation
利用臭氧氧化法对硫酸中的三氯乙醛进行氧化去除,采用响应面法优化了工艺,用中心组合设计方法研究了反应时间、臭氧量、反应温度对三氯乙醛降解率的影响,并建立二次响应曲面模型,对臭氧氧化去除三氯乙醛的效果进行预测。三氯乙醛降解率的模型方程高度显著,温度和臭氧量的二次方影响高度显著。对模型进行分析得出最优操作条件:当反应温度为50℃、臭氧量为0.6 g/h、反应时间为102 min时,三氯乙醛降解率为100%。验证试验表明模型预测值和试验值相对误差在±3.20%内,精确度较高,模型具有一定的指导意义。
利用臭氧氧化法對硫痠中的三氯乙醛進行氧化去除,採用響應麵法優化瞭工藝,用中心組閤設計方法研究瞭反應時間、臭氧量、反應溫度對三氯乙醛降解率的影響,併建立二次響應麯麵模型,對臭氧氧化去除三氯乙醛的效果進行預測。三氯乙醛降解率的模型方程高度顯著,溫度和臭氧量的二次方影響高度顯著。對模型進行分析得齣最優操作條件:噹反應溫度為50℃、臭氧量為0.6 g/h、反應時間為102 min時,三氯乙醛降解率為100%。驗證試驗錶明模型預測值和試驗值相對誤差在±3.20%內,精確度較高,模型具有一定的指導意義。
이용취양양화법대류산중적삼록을철진행양화거제,채용향응면법우화료공예,용중심조합설계방법연구료반응시간、취양량、반응온도대삼록을철강해솔적영향,병건립이차향응곡면모형,대취양양화거제삼록을철적효과진행예측。삼록을철강해솔적모형방정고도현저,온도화취양량적이차방영향고도현저。대모형진행분석득출최우조작조건:당반응온도위50℃、취양량위0.6 g/h、반응시간위102 min시,삼록을철강해솔위100%。험증시험표명모형예측치화시험치상대오차재±3.20%내,정학도교고,모형구유일정적지도의의。
Trichloroacetaldehyde contained in sulfuric acid was removed by ozone oxidation .The process was optimized by response surface method .Effects of reaction time , ozone amount and reaction temperature on trichloroacetaldehyde decomposition rate were studied by central composite design method.Aquadratic response surface model was built to predict the effects of trichloroacetaldehyde removal .Model equation of trichloroacetaldehyde decomposition rate was highly significant , and effect of temperature and that of ozone amount’s quadratic were also highly significant .The model was analyzed and the best operation conditions were found: reaction temperature 50 ℃, ozone amount 0.6 g/h, and reaction time 102 min. Trichloroacetaldehyde decomposition rate reached 100% under the above conditions .Verification tests showed that the relative error between prediction value and test value was within ±3 .20%.The model gave accurate prediction , having guiding significance .