简介:与黄金和氧化铁nanoparticles并且与silibinin装载的PEGylated-PLGA随机的nanofibrous膜被electrospinning免职准备。nanofibrous膜能遥远地被控制并且由一盏激光灯或磁场激活在需求上释放生物代理人。nanosystems用扫描电子显微镜学被描绘,红外线的光谱学,原子磁性的回声光谱学,和thermogravimetric分析的Fourier变换。装载效率和药内容百分比的药被紫外力的光吸收光谱学决定。nanofibrous膜由相对低紧张的激光照耀或由一个磁场刺激了为至少60h显示出持续silibinin版本,没有爆炸效果。建议便宜electrospinning过程能够集合,经由一个一步舞过程,有外部地为控制的药交货要激活的金属性的nanoparticles的刺激应答的装载药的nanosystem。
简介:FenanowirearraywithstrongshapeanisotropywasemployedasthesoftphaseinNd-Fe-Bbasednanocomposites.TheeffectsoftheFenanowiredistributiononmagneticpropertiesofthenanocompositeswereinvestigatedbymicromagneticsimulation.TheresultsindicatethattheshapeanisotropyofFewiresaddedinthesamedirectionastheuniaxialmagnetocrystallineanisotropyofthehardphasecannotincreasethecoercivityofthenanocomposite.Whenthenanowiresaredistributedperpendiculartotheeasyaxisofthehardphase,theshapeanisotropyofsoftphasecanretardthemomentsfromrotatingtothefullreverseddirection,leadingtoenhancedcoercivity.Inaddition,withincreasingthenanowirediameter,thecoercivityofthenanocompositedecreases,butthedipolarinteractionshowsdifferentrolesinmagneticreversalofnanocompositefordifferentdistributionsofnanowires.ThecurrentresultssuggestthatthecoercivityoftheNd2Fe14B/α-Fenanocompositecanbeenhancedbyintroducingthesoftmagneticnanowirearraywiththediameterlessthantheexchangelengthandwiththelongaxisalongthedirectionotherthantheeasyaxisofhardphase.
简介:为解决芬顿技术在中性条件下氧化性能较低的问题,以浓缩池污泥为研究对象,应用Fe^3+/EDTA-2Na类芬顿技术处理污泥,对污泥脱水性能(污泥/泥饼含水率、污泥比阻(SRF)、毛细吸水时间(CST))、沉降性能(污泥沉降比(SV)、污泥容积指数(SVI))及破解性能(污泥质量浓度、溶解性COD(SCOD)、胞外聚合物(EPS))的改善情况进行了研究。结果表明,Fe^3+/EDTA-2Na类芬顿反应能起到强氧化作用调理污泥,且在原污泥pH值条件下效果优于传统芬顿法。Fe^3+/EDTA-2Na类芬顿反应后污泥/泥饼含水率分别降至97.94%和77.87%,CST仅为17s,SV和SVI分别降至29%和49.15mL/g,MLSS和MLVSS较原污泥分别降低41.35%和40.91%,且污泥上清液中SCOD、蛋白质、多糖溶出最多,对污泥脱水、沉降、破解性能的改善效果明显。
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