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반도체 - 폐수 재생

NOVEL APPROACH FOR RECLAIMING SEMICONDUCTOR WASTEWATER SAVES OPERATIONAL COSTS

Gradiant was uniquely qualified to deliver a resilient solution to treat and reuse wastewater for one of the largest global semiconductor manufacturers. The custom-designed system combined proprietary and conventional technologies to ensure robust treatment and reliable recovery. The client is also realizing higher recovery and additional capacity as the system is optimized.

요약 정보

위치: Taiwan

최종 사용자: One of the World’s Largest Semiconductor Manufacturers

솔루션: 산업 폐수 및 재활용

산업: Semiconductor

급수 공급원: Combined Wastewater from semiconductor manufacturing

기술: Bio-Infinity: BioCapture MBBR and Anaerobic Fluidized Bed (AFB) SCE: Fluidized Bed Crystallization (FBC)

시스템 용량: 35,000 m3 /day

시스템 복구: Up to 65%

온라인 날짜: Commissioning (2021), Fully Online (2022)

배달 모델: 디자인-빌드(DB)

도전 과제

One of the world’s largest global semiconductor manufacturer contemplated numerous approaches to achieve water reuse targets issued by the local Science Park in Taiwan. Not only did the wastewater contain variable concentrations of total organic carbon, ammonia, and nitrates, but the space available for implementing a new treatment plant was minimal. This combination of design challenges, along with the intricacy of managing the project without disrupting ongoing operations proved to be too onerous for several providers, except for Gradiant.

솔루션

Gradiant and the client partnered to complete bench-scale testing of a multi-stage solution, demonstrating proof of concept and achieving treatment objectives. Knowing that the process would need to endure the variability of influent conditions (i.e., flow, concentrations), Gradiant conducted a pilot of the customized solution to validate its efficacy and resilience. This effort would also need to ensure that the plant could recover 55-65% of the influent flow of 35,000 m3 /day.

The elegant, compact solution for the complex wastewater incorporated several proprietary technologies, including:

  • BioCapture for the removal of total organic carbon, ammonia, and urea, which can handle low biological loading yet unpredictable incoming wastewater flows
  • FBC for the removal of hardness and phosphates, minimizing sludge production and overall solution footprint
  • AFB for denitrification and total suspended solids removal, with a unique capability to handle low biological loading, yet highly variable, influent

혜택

With the optimized flowsheet for reuse, the client could recover roughly 20,000 m3 /day or 57% of this wastewater stream, potentially increasing further once the process is fully optimized.

By single-sourcing the solution with Gradiant, the client made quick, definitive design changes to enable more timely and efficient project delivery. The client anticipates being able to further increase capacity at the plant, where freshwater availability had previously been a constraint on production.

Due to the project’s overwhelming success, Gradiant has established itself as the partner of choice for future water reclamation projects. Gradiant will collaborate with the client at a new fab, where the goal will also be to recycle wastewater for beneficial reuse and to achieve critical sustainability goals.

영향력 통계

65%

Wastewater Recovery

50%

Waste Reduction using FBC over traditional technologies

10

years Experience in semiconductor wastewater treatment

20,000

매일 생성되는 담수의 m³

10-30%

Operational Cost Savings compared to Conventional Technologies

그림 및 이미지

반도체 제조업체의 LSR 공정 흐름도

법적 면책 조항

본 문서는 일반적인 정보 제공만을 목적으로 합니다. 어떠한 보증이나 보장도 제공되거나 묵시적으로 제공되지 않으며 Gradiant는 여기에 포함된 정보에 대해 구속되거나 이에 대한 책임을 지지 않습니다. 고객은 실제 현장, 지리적 및 공장 조건, 사양, 요구 사항, 폐기, 관련 법률 및 규정을 포함하여 본 문서의 정보가 고객의 사용에 적합한지 여부를 결정할 전적인 책임이 있습니다. 본 문서는 본 문서에 포함된 모든 특허 또는 상표를 포함하되 이에 국한되지 않는 Gradiant의 지적 재산입니다. 본 문서의 배포는 Gradiant의 지적 재산의 이전을 의미하지 않으며, 이를 의미하지도 않습니다.

 

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