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8篇 您的检索式:作者名="Peter Weidler"
    题名 作者 年代 出处 被引量
1Seed selections for crystallization of calcium phosphate for phosphorus recovery显示文摘种子导致并且支持恢复的磷(P) .In 顺序的钙磷酸盐,和 actsas 搬运人的结晶化为 P 恢复 fromwastewater 选择合适的种子,三粒种子包括磷灰石( AP ), Juraperle ( JP )和 weretested 和 compared.Batch 和改正床列 calciumphosphate 的播种结晶化试验的修改磷酸盐的 Juraperle ( M-JP )被使用合成废水, 10 mgP/L.It 出现了承担那 AP 在结晶化过程有 badenduring 性质,SONG Yong-hui Dietfried DONNERT Ute BERG Peter G. WEIDLER Rolf NUEESCH 2007Journal of Environmental Sciences2007,19,5:16
2Effect of humic substances on the precipitation of calcium phosphate显示文摘For phosphorus (P) recovery from wastewater, the effect of humic substances (HS) on the precipitation of calcium phosphate was studied. Batch experiments of calcium phosphate precipitation were undertaken with synthetic water that contained 20 mg/L phosphate (as P) and 20 mg/L HS (as dissolved organic carbon, DOC) at a constant pH value in the range of 8.0—10.0. The concentration variations of phosphate, calcium (Ca) and HS were measured in the precipitation process; the crystalline state and compositions of the precipitates were analysed by powder X-ray diffraction (XRD) and chemical methods, respectively. It showed that at solution pH 8.0, the precipitation rate and removal efficiency of phosphate were greatly reduced by HS, but at solution pH ≥9.0, the effect of HS was very small. The Ca consumption for the precipitation of phosphate increased when HS was added; HS was also removed from solution with the precipitation of calcium phosphate. At solution pH 8.0 and HS concentrations ≤ 3.5 mg/L, and at pH ≥ 9.0 and HS concentrations ≤ 10 mg/L, the final precipitates were proved to be hydroxyapatite (HAP) by XRD. The increases of solution pH value and initial Ca/P ratio helped reduce the influence of HS on the precipitation of phosphate.SONG Yong-hui Hermann H. HAHN Erhard HOFFMANN Peter G. WEIDLER 2006Journal of Environmental Sciences2006,18,5:11
3Calcite-seeded crystallization of calcium phosphate for phosphorus recovery显示文摘Yonghui Song Peter G. Weidler Ute Berg Rolf Nüesch Dietfried Donnert 2005Chemosphere2005,,2:2
4Calcite -seeded crystallization of calcium phosphate for phosphorus recovery 显示文摘Song Yonghui Weidler Peter G Berg Ute 2005Chemosphere2005,63,2:1
5The structural comparison between Al-MCM-41 and B-MCM-41显示文摘Mehdi Adjdir Tewfik Ali-Dahmane Peter G. Weidler 2008Comptes rendus - Chimie2008,,6:1
6Calcite-seeded crystallization of calcium phosphate for phosphorus recovery显示文摘Yonghui Song Peter G. Weidler Ute Berg Rolf Nüesch Dietfried Donnert 2005Chemosphere2005,,2:1
7pHospHorus removal and recovery from wastewater by tobermorite-seeded crystallization of calcium pHospHate显示文摘Berq.Ute Donnet.Dietfried Weidler Peter G ect 0,,03:1
8Surface-Oriented Assembly of Cyclodextrin Metal-Organic Framework Film for Enhanced Peptide-Enantiomers Sensing显示文摘Oriented metal-organic framework(MOF)films are attracting great attention due to their fascinating physicochemical properties and unique functionalities.Here,we report an[110]-oriented biomolecularγ-cyclodextrin(γCD)MOF film with arrayed CD channels running perpendicular to the substrate surface.This sophisticated architecturewas realized by combining liquid phase epitaxial layer-by-layer(lbl)methods with aγCD-based thiol self-assembled monolayer(SAM)functionalized surface.This first demonstration of the lbl method for MOF growth from aqueous conditions yielded oriented,highly homogeneous,and chiralγCD-SURMOFs(surfacecoordinated MOFs)with tunable thickness.Using a quartz crystal microbalance(QCM)to monitor adsorption of biomolecules,we demonstrated thatγCD-SURMOF provides highly-efficient recognition of tripeptide enantiomers(Tyr-(L-Ala)-Phe vs Tyr-(D-Ala)-Phe),clearly outperformingγCD(SH)_(8) SAMs as well as polycrystalline,mixed-orientationsγCDMOF film.The presence of well-alignedγCD-channels enables highly efficient transport channels with large adsorption capacity and fast loading,along with high enantioselectivity.In addition,the fast and highly specific loading rates allow for the realization of highly specific sensors for biomolecules with short response times.Li-Mei Chang Qiao-hong Li Peter Weidler Zhi-Gang Gu Christof Wöll Jian Zhang 2022CCS Chemistry2022,4,11:0
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