安全与环境学报
安全與環境學報
안전여배경학보
JOURNAL OF SAFETY AND ENVIRONMENT
2010年
1期
45-47
,共3页
闫明星%刘青兰%付煜%孙文彬%谢嫚
閆明星%劉青蘭%付煜%孫文彬%謝嫚
염명성%류청란%부욱%손문빈%사만
环境工程学%电解处理%TNT%电极
環境工程學%電解處理%TNT%電極
배경공정학%전해처리%TNT%전겁
environmental engineering%electrolytic treatment%TNT%electrodes
通过大量试验研究了电解处理TNT废水的条件,尤其是筛选、制备了多种电极材料,在三维电极体系,低电流、短时间条件下电解处理TNT的去除率达到95%以上,pH值提高至6以上,大大节省了能源,为火炸药工业酸性TNT废水的处理提供了一种新型有效的处理方法.用本方法对实际工业"黄水"进行电解处理,获得了较为满意的效果.
通過大量試驗研究瞭電解處理TNT廢水的條件,尤其是篩選、製備瞭多種電極材料,在三維電極體繫,低電流、短時間條件下電解處理TNT的去除率達到95%以上,pH值提高至6以上,大大節省瞭能源,為火炸藥工業痠性TNT廢水的處理提供瞭一種新型有效的處理方法.用本方法對實際工業"黃水"進行電解處理,穫得瞭較為滿意的效果.
통과대량시험연구료전해처리TNT폐수적조건,우기시사선、제비료다충전겁재료,재삼유전겁체계,저전류、단시간조건하전해처리TNT적거제솔체도95%이상,pH치제고지6이상,대대절성료능원,위화작약공업산성TNT폐수적처리제공료일충신형유효적처리방법.용본방법대실제공업"황수"진행전해처리,획득료교위만의적효과.
This paper takes as its research focus on the treatment of acidic TNT sewage by using composite electrode and 3-dimensinal electrolysis system. As a matter of fact, since the selection of electrode is a key step in electrolysis, we have made a considerable study on choosing suitable electrode materials. That is to say, first of all, through electrolyzing the acidic TNT sewage by using different materials for anode, such as stainless steel, Pt, Au, Graphite, activated carbon fibre, a conclusion has been made that the best material for preparing anode should be gained from the activated carbon fibre coating stainless steel mesh. Secondly, experiments with the acidic TNT sewage electrolysis by using different materials for cathode, agreement among the members of the research group has been arrived at that the best cathode should be a composite electrode (I.e. The #3 in the experiments). Thirdly, electrolysis has repeatedly been done of the acidic TNT sewage by the best anode and the best cathode at the same time. Fourthly, the third experiment with the 3-dimensinal electrolysis system has been repeated so as to get the ideal result for the best composite electrodes. Finally, electrolysis of the acidic TNT "yellow water" has been repeatedly done with the best anode and the best cathode at the same time in a 3-dimensinal electrolysis system. The above experiments help us to gain the following results: (1) TNT degradation rate proves to get to 95% with the pH volume coming up to the sewage discharge standard;(2) The use of the above technique helps to improve the electrolysis efficiency of the acidic TNT sewage treating under micro-current density in a short period of time, which leads to a significant reduction of energy consumption. Thus, it proves the possibility of industrialization of treating acidic explosive sewage by electrolysis.