Term

Ngai Yin Yip

Overview

最終更新: 2026年7月9日

Ngai Yin Yipは、コロンビア大学工学部地球環境工学科の准教授。持続可能な水処理技術やエネルギー回収、資源抽出の研究に従事しており、本記事ではリチウム抽出の新手法であるS3E技術の開発を主導した人物として紹介されている。

Mentioned Articles

1 件

Research Papers

5 件
  • Desalination and reuse of high-salinity shale gas produced water: drivers, technologies, and future directions.

    D. Shaffer, Laura H Arias Chavez, M. Ben-Sasson, Santiago Romero-Vargas Castrillón, Ngai Yin Yip, M. Elimelech

    2013749 件引用Semantic Scholar
  • Thin-film composite pressure retarded osmosis membranes for sustainable power generation from salinity gradients.

    Ngai Yin Yip, A. Tiraferri, W. Phillip, Jessica D. Schiffman, Laura A. Hoover, Y. Kim, M. Elimelech

    2011539 件引用Semantic Scholar
  • High performance thin-film composite forward osmosis membrane.

    Ngai Yin Yip, A. Tiraferri, W. Phillip, Jessica D. Schiffman, M. Elimelech

    2010524 件引用Semantic Scholar
  • A method for the simultaneous determination of transport and structural parameters of forward osmosis membranes

    A. Tiraferri, Ngai Yin Yip, Anthony P. Straub, S. Castrillon, M. Elimelech

    2013453 件引用Semantic Scholar
  • Pathways and challenges for efficient solar-thermal desalination

    Zhangxin Wang, Thomas Horseman, Anthony P. Straub, Ngai Yin Yip, Deyu Li, M. Elimelech, Shihong Lin

    2019426 件引用Semantic Scholar

    We review recent advances, limitations, and prospects of solar-thermal desalination for sustainable, low-cost water production. Solar-thermal desalination (STD) is a potentially low-cost, sustainable approach for providing high-quality fresh water in the absence of water and energy infrastructures. Despite recent efforts to advance STD by improving heat-absorbing materials and system designs, the best strategies for maximizing STD performance remain uncertain. To address this problem, we identify three major steps in distillation-based STD: (i) light-to-heat energy conversion, (ii) thermal vapor generation, and (iii) conversion of vapor to water via condensation. Using specific water productivity as a quantitative metric for energy efficiency, we show that efficient recovery of the latent heat of condensation is critical for STD performance enhancement, because solar vapor generation has already been pushed toward its performance limit. We also demonstrate that STD cannot compete with photovoltaic reverse osmosis desalination in energy efficiency. We conclude by emphasizing the importance of factors other than energy efficiency, including cost, ease of maintenance, and applicability to hypersaline waters.