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5篇 您的检索式:作者名="R.Tan"
    题名 作者 年代 出处 被引量
1Accounting Choices and Director Interlocks: A Social Network Approach to the Voluntary Expensing of Stock Option Grants显示文摘EugeneKang Brian R.Tan 2008Journal of Business Finance & Accounting . 2008 (9‐1)2008,,9:2
2Right and Left Ventricular Outflow Tract Tachycardias: Evidence for a Common Electrophysiologic Mechanism显示文摘SEIIWAI DANIEL J.CANTILLON ROBERT J.KIM STEVEN M.MARKOWITZ SUNEETMITTAL KENNETH M.STEIN BINDI K.SHAH RAVI K.YARLAGADDA JIM W.CHEUNG VIVIAN R.TAN BRUCE B.LERMAN 2006Journal of Cardiovascular Electrophysiology2006,,10:1
3Effectiveness of Microporous Polysaccharide Hemospheres for Achieving Hemostasis in Mohs Micrographic Surgery显示文摘Stephen R.Tan Whitney D.Tope 2004Dermatologic Surgery2004,,6:1
4Gemcitabine with carboplatin for advanced biliary tract cancers: a phase II single institution study显示文摘Kerry J.Williams JoelPicus KimTrinkhaus Chloe C.Fournier RamaSuresh Joan S.James Benjamin R.Tan 2010HPB2010,,6:1
5Optimization of enhanced weathering networks with alternative transportation modes显示文摘Enhanced weathering of alkaline rocks and minerals is a negative emissions technology (NET) that is potentiallyscalable to deliver gigaton-level carbon dioxide removal (CDR) for climate change mitigation. This techniquerelies on the acceleration of naturally occurring weathering reactions with water and carbon dioxide by reducingthese substances into a fine powder with high specific surface area. The ex situ enhanced weathering processchain consists of the acquisition of suitable natural or synthetic materials, grinding to a fine particle size,transportation, and application on suitable sites. Future enhanced weathering systems can be envisioned assupply chain-like networks which have to be optimized to deliver maximum CDR given physical constraints.There is a notable research gap in the literature on decision support for such systems. To address this gap, amixed integer linear programming (MILP) model is developed in this work to optimize enhanced weatheringnetworks for CDR. The model also incorporates the availability of multiple transportation options and constraintson network topology. Two test cases are used to demonstrate the model capability to determine optimal andnear-optimal networks. The top ten solutions in these two scenarios yield total CDR levels of 3.4316–3.4363 Mtand 15.27017–15.27960 Mt.Raymond R.Tan Beatriz A.Belmonte Michael Francis D.Benjamin Viknesh Andiappan Kathleen B.Aviso 2022Carbon Resources Conversion2022,5,2:0
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