后勤工程学院学报
後勤工程學院學報
후근공정학원학보
JOURNAL OF LOGISTICAL ENGINEERING UNIVERSITY
2013年
1期
10-15
,共6页
管金发%邓松圣%曾兴钢%房修梁
管金髮%鄧鬆聖%曾興鋼%房脩樑
관금발%산송골%증흥강%방수량
模型乳化油废水%稳定性%静置时间%粒径分布
模型乳化油廢水%穩定性%靜置時間%粒徑分佈
모형유화유폐수%은정성%정치시간%립경분포
model emulsified oil wastewater%stability%standing time%droplet size distribution
以模型乳化油废水从静置开始至实现油水分离所需静置时间Ts的大小作为表征模型乳化油废水稳定性的标准,研究了粒径分布、表面活性剂类型、表面活性剂质量浓度和油分质量浓度对模型乳化油废水稳定性的影响规律.结果表明:其他参数相同时,模型乳化油废水的稳定性随平均粒径D()3,2的增大而降低,随油分质量浓度的增大而增加;以阳离子表面活性剂C16H33(CH3)3NBr、非离子表面活性剂C64H124O26和阴离子表面活性剂C18H29SO3Na为乳化剂的3种模型乳化油废水稳定性依次递增;当表面活性剂质量浓度处于较小范围内,模型乳化油废水的稳定性随表面活性剂质量浓度的增大而增加,但当表面活性剂质量浓度过大,超过临界胶束浓度,模型乳化油废水的稳定性反而降低.
以模型乳化油廢水從靜置開始至實現油水分離所需靜置時間Ts的大小作為錶徵模型乳化油廢水穩定性的標準,研究瞭粒徑分佈、錶麵活性劑類型、錶麵活性劑質量濃度和油分質量濃度對模型乳化油廢水穩定性的影響規律.結果錶明:其他參數相同時,模型乳化油廢水的穩定性隨平均粒徑D()3,2的增大而降低,隨油分質量濃度的增大而增加;以暘離子錶麵活性劑C16H33(CH3)3NBr、非離子錶麵活性劑C64H124O26和陰離子錶麵活性劑C18H29SO3Na為乳化劑的3種模型乳化油廢水穩定性依次遞增;噹錶麵活性劑質量濃度處于較小範圍內,模型乳化油廢水的穩定性隨錶麵活性劑質量濃度的增大而增加,但噹錶麵活性劑質量濃度過大,超過臨界膠束濃度,模型乳化油廢水的穩定性反而降低.
이모형유화유폐수종정치개시지실현유수분리소수정치시간Ts적대소작위표정모형유화유폐수은정성적표준,연구료립경분포、표면활성제류형、표면활성제질량농도화유분질량농도대모형유화유폐수은정성적영향규률.결과표명:기타삼수상동시,모형유화유폐수적은정성수평균립경D()3,2적증대이강저,수유분질량농도적증대이증가;이양리자표면활성제C16H33(CH3)3NBr、비리자표면활성제C64H124O26화음리자표면활성제C18H29SO3Na위유화제적3충모형유화유폐수은정성의차체증;당표면활성제질량농도처우교소범위내,모형유화유폐수적은정성수표면활성제질량농도적증대이증가,단당표면활성제질량농도과대,초과림계효속농도,모형유화유폐수적은정성반이강저.
Taking the standing time Ts that denotes a period from the beginning of standing to the realization of the separation of oil and water for model emulsified oil wastewater as the criterion that evaluates the stability of model emulsified oil wastewater,in?fluences of droplet size distribution,surfactant category,surfactant mass concentration and oil mass concentration on the stability of model emulsified oil wastewater are studied. The results show that the stability of model emulsified oil wastewater decreases with the increase of the average droplet size D(3,2)and increases with the increase of oil concentration when other conditions keep all the same. The stabilities of three kinds of model emulsified oil wastewater whose emulsifiers are cationic surfactant C16H33(CH3)3NBr, nonionic surfactant C64H124O26 and anionic surfactant C18H29SO3Na respectively increase in turn. The stability increases with the in?crease of surfactant mass concentration when surfactant mass concentration is little relatively and decreases when surfactant mass concentration is bigger than that of the critical micelle mass concentration(CMMC).