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PAC-PAM复合絮凝剂处理燃煤电厂脱硫废水的研究 被引量:9
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作者 郑铭灏 赵飞 +3 位作者 张净瑞 陈雨王飞 林清锦 苑志华 《现代化工》 CAS CSCD 北大核心 2022年第5期178-182,共5页
考察了现阶段燃煤电厂脱硫废水常用水处理药剂聚合氯化铝(PAC)与聚丙烯酰胺(PAM)联合用于预处理脱硫废水时,药剂的离子形态、絮凝剂选择、药剂投加量、反应转速、溶液pH对絮凝效果的影响及其影响机理。絮凝试验结果表明,非离子形态PAM... 考察了现阶段燃煤电厂脱硫废水常用水处理药剂聚合氯化铝(PAC)与聚丙烯酰胺(PAM)联合用于预处理脱硫废水时,药剂的离子形态、絮凝剂选择、药剂投加量、反应转速、溶液pH对絮凝效果的影响及其影响机理。絮凝试验结果表明,非离子形态PAM在低投加量情况下的絮凝效果优于C-PAM和A-PAM;相较于PAFC、PAFS、PFS等絮凝剂,PAC的絮凝效果较好,且其与PAM质量比为10:1、pH=8、转速为250 r/min条件下,除浊率达99.3%,此时上清液浊度为30.2 NTU,SS值为58 mg/L,可满足脱硫废水水质指标中对SS的出水要求。 展开更多
关键词 脱硫废水 聚合氯化铝 聚丙烯酰胺
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多弧离子镀Zr/ZrN多层膜的力学性能研究 被引量:1
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作者 刘洋 张雅楠 +3 位作者 高晟元 赵祯赟 郑明昊 黄美东 《真空》 CAS 2022年第5期28-31,共4页
采用多弧离子镀膜法制备了Zr N单层膜和不同调制比的Zr/Zr N多层膜,研究了调制比对多层膜力学性能的影响。利用X射线衍射仪、扫描电子显微镜和微米压痕仪分别测试了薄膜的物相结构、表面形貌、硬度和结合力。结果表明:多层膜中Zr N有较... 采用多弧离子镀膜法制备了Zr N单层膜和不同调制比的Zr/Zr N多层膜,研究了调制比对多层膜力学性能的影响。利用X射线衍射仪、扫描电子显微镜和微米压痕仪分别测试了薄膜的物相结构、表面形貌、硬度和结合力。结果表明:多层膜中Zr N有较高的结晶度,膜层表面形貌平整,组织结构致密,分布有球状Zr颗粒;Zr/Zr N多层膜的硬度高于单层Zr N薄膜,并随着调制比的增加先增大后减小,调制比为1∶1时,Zr/Zr N多层膜的硬度达到1541.58Hv,结合力为51.61N。 展开更多
关键词 多弧离子镀 调制比 ZRN Zr/ZrN多层膜 力学性能
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Normal age-related viscoelastic properties of chondrons and chondrocytes isolated from rabbit knee 被引量:4
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作者 DUAN Wang-ping SUN Zhen-we +6 位作者 LI Qi LI Chun-jiang WANG Li CHEN Wei-yi Jennifer Tickner zheng ming-hao WEI Xiao-chun 《Chinese Medical Journal》 SCIE CAS CSCD 2012年第14期2574-2581,共8页
Background The mechanical microenvironment of the chondrocytes plays an important role in cartilage homeostasis and in the health of the joint. The pericellular matrix, cellular membrane of the chondrocytes, and their... Background The mechanical microenvironment of the chondrocytes plays an important role in cartilage homeostasis and in the health of the joint. The pericellular matrix, cellular membrane of the chondrocytes, and their cytoskeletal structures are key elements in the mechanical environment. The aims of this study are to measure the viscoelastic properties of isolated chondrons and chondrocytes from rabbit knee cartilage using micropipette aspiration and to determine the effect of aging on these properties. Methods Three age groups of rabbit knees were evaluated: (1) young (2 months, n=10); (2) adult (8 months, n=10); and (3) old (31 months, n=10). Chondrocytes were isolated from the right knee cartilage and chondrons were isolated from left knees using enzymatic methods. Micropipette aspiration combined with a standard linear viscoelastic solid model was used to quantify changes in the viscoelastic properties of chondrons and chondrocytes within 2 hours of isolation. The morphology and structure of isolated chondrons were evaluated by optical microscope using hematoxylin and eosin staining and collagen-6 immunofluorescence staining. Results In response to an applied constant 0.3-0.4 kPa of negative pressure, all chondrocytes exhibited standard linear viscoelastic solid properties. Model predictions of the creep data showed that the average equilibrium modulus (E~), instantaneous modulus (E0), and apparent viscosity (~) of old chondrocytes was significantly lower than the young and adult chondrocytes (P 〈0.001); however, no difference was found between young and adult chondrocytes (P 〉0.05). The adult and old chondrons generally possessed a thicker pericellular matrix (PCM) with more enclosed cells. The young and adult chondrons exhibited the same viscoelastic creep behavior under a greater applied pressure (1.0-1.1 kPa) without the deformation seen in the old chondrons. The viscoelastic properties (E,, E0, and/~) of young and adult chondrons were significantly greater than that observed in young and adult cells, respectively (P 〈0.001). The adult chondrons were stiffer than the young chondrons under micropipette aspiration (P 〈0.001). Conclusions Our findings provide a theoretical model to measure the viscoelastic properties of the chondrons as a whole unit by micropipette aspiration, and further suggest that the properties of the chondrocytes and PCM have an important influence on the biomechanical microenvironment of the knee joint cartilage degeneration that occurs with aging. 展开更多
关键词 knee chondrocyte chondron micropipette aspiration viscoelastic properties AGE-RELATED
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