Waseda University · 환경과학
Heng Yi Teah 교수의 연구실은 자원 순환, 지속가능성 평가 및 녹색 기술 개발을 중심으로 한 연구를 수행합니다. 특히 인 회수, 녹색 캠퍼스 구현, 나노소재의 안전한 합성, 고성능 촉매 개발, 그리고 농업 현장의 지속가능성 향상을 위한 참가형 의사결정 프레임워크 개발에 초점을 맞추고 있습니다. 환경적 영향과 사회적 영향을 종합적으로 평가하는 생애주기 평가(LCA, SLCA) 및 지속가능성 기반 의사결정 기법을 응용하여 실질적인 정책 및 기술 혁신을 지원합니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Producing phosphorus (P) fertilizers with recycled P is desirable for efficient use of P resource. However, the current cost of P recycling facilities in Japan strongly discourages the government from adopting this practice. To expand consideration for a P recycling policy, the concept of social externality was introduced. Social issues, such as the violation of human rights in P mining in the Western Sahara, have been identified in recent studies; nevertheless, a systematic approach towards acc
The middle reaches of Heihe River are located in the oasis of the Gobi Desert where limited freshwater supply supports more than 1.5 million inhabitants. The intense agricultural activities are depleting the groundwater reserve. Consequently, natural landscapes and habitats are degraded. Though such development improves the livelihood of the local community, long-term sustainability of the ecosystem is at risk. Local authorities must be informed holistically to prepare for adapting to the change
We demonstrated that a green campus initiative can reduce the carbon footprint of a university and improve the disaster resilience of the local community. A project sustainability assessment framework was structured to support the initiative. First, an on-campus solar photovoltaic (PV) system was designed. The project performance in terms of financial cost and greenhouse gas (GHG) emissions was assessed using life cycle cost analysis (LCC) and a life cycle assessment (LCA), respectively. Then, w
Safer and cleaner synthesis methods of silver nanoparticles (AgNPs) are developed through experiments with simplified reactions and minimal toxic reagents. However, their efficacy in environmental improvement must be assessed from a cradle-to-gate system perspective to support meaningful decision-making. Previous life cycle assessment (LCA) studies on AgNPs often overemphasize the contribution of Ag sourcing on the synthesis, rendering the development of alternative synthesis methods insignifica
The high-entropy alloy (HEA) CrMnFeCoNi is a prominent catalyst material. High-specific-surface-area HEA powder can be chemically prepared via a conventional direct etching method or a molten salt synthesis method developed in our group. In this study, we compared the catalytic performance in the hydrogenation of p-nitrophenol using the HEA CrMnFeCoNi powders obtained from the etching method and the molten salt method. The results demonstrated a superior catalytic performance for the HEA prepare
A shrimp farmer in Taiwan practices innovation through trial-and-error for better income and a better environment, but such farmer-based innovation sometimes fails because the biological mechanism is unclear. Systematic field experimentation and laboratory research are often too costly, and simulating ground conditions is often too challenging. To solve this dilemma, we propose a decision support framework that explicitly utilizes farmer experiential knowledge through a participatory approach to
Nanocellulose fibers (CNF) encompass the characteristics of cellulose and nanomaterials, are endowed with great potential for diverse applications. Prior to the extraction of nanocellulose, pretreating biomass to remove lignin and hemicellulose is crucial to ease cellulose isolation at minimal environmental and economic costs. This study presents a comprehensive comparison between acid-chlorite (AC), alkaline peroxide (AP), and hydrogen peroxide-acetic acid (HPAC) treatments, revealing that the
The overarching goal of global energy decarbonization, envisioned to combat climate change, should be coupled with material defossilization, which is just as crucial to target waste accumulation and fossil fuel depletion.
International audience