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Method and System for Producing Inorganic Nutrient Salt Solutions from Industrial CO₂-Containing Flue-Gas.

Our invention uses industrial CO₂-containing flue-gas as a carbon source and, via a high-efficiency RPB gas absorption unit, directly produces a utilizable inorganic nutrient salt solution instead of merely separating and storing CO₂, which are not good options.

Technology

Overview

FEED GAS

CO₂-containing flue-gas at about 5–70 vol% CO₂ is fed without complex pretreatment directly into a gas absorption unit.

ABSORBENT

An aqueous alkali hydroxide solution (e.g., NaOH, KOH) at about 5–20 wt% is using currently/co-currently with the GHG flue-gas.

PRODUCT STREAM

The absorption step yields an inorganic liquid solution containing one or more of NaHCO₃, Na₂CO₃, KHCO₃, or K₂CO₃.

USE AS NUTRIENT

This liquid stream is defined as an “inorganic nutrient source” and can be directly utilized for algal cultivation, agricultural applications, or other systems requiring an inorganic carbon source.

Integrated Fly Ash Washing and Waste-Heat Distillation System Enabled by Our RPB CO₂ Capture System

飛灰水洗與碳捕捉整合技術

技術核心為一套整合式處理系統,結合穩碳自主開發的 RPB 旋轉填充床 CO₂ 捕捉技術,將焚化飛灰水洗程序與廢熱驅動蒸餾系統進行整合。

系統主要針對都市垃圾焚化爐產生的飛灰進行處理,由焚化單元、供水單元、水洗單元、蒸餾單元、冷凝單元、回收單元及 CO₂ 補充單元所組成,透過水洗、熱能回收與碳捕捉程序的整合,提升飛灰處理與資源循環利用的效率。
Technology
 
焚化爐的飛灰首先進入水洗單元,利用水相捕捉飛灰中的氯鹽與金屬分子,使污染物由固相轉移至洗滌廢水中,並取得經水洗處理的飛灰。
 
含鹽分與重金屬的廢水隨後導入蒸餾單元,利用焚化爐產生的廢熱作為熱源進行蒸餾,以降低額外能源需求。
 
蒸餾所產生的水蒸氣經由冷凝單元轉化為較高純度的冷凝水,並重新回到水洗程序作為洗滌用水,形成封閉式水循環再利用系統。
 
水洗後的飛灰,透過過濾設備進行脫水,取得回收飛灰。經處理後,可進一步作為水泥、冶煉或製磚等製程的二次原料,提升飛灰的資源化利用價值。
 
除此之外,系統可整合穩碳的 RPB 超重力 CO₂ 捕捉單元,依製程需求引入 CO₂,產物可用於 pH 值調控或生產碳酸鹽產品,實現 CO₂ 的捕捉與再利用。

SELF-SUCTIONING GAS CAPTURE DEVICE

Technology

We have developed a self-induced (self-suction) gas capture device comprising an outer cylinder, rotor, stator, fan, and drive assembly to effect intensive gas–liquid contact and absorption inside the unit. With a single motor as the only prime mover, the device draws gas autonomously and vigorously mixes it with the absorbent to capture gases such as CO₂.

Technology

Gas is automatically induced from the bottom of the device by the internal fan, without any external blower. Liquid enters from the top, is discharged through a hollow lance, and distributed into multiple annular sections. During rotation, the rotor shears the liquid through perforations, generating fine droplets and thereby increasing gas–liquid interfacial area. The gas stream flows upward, traversing multiple concentric stages and droplet fields; after absorption, the treated gas is discharged.

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熱裂解系統應用技術

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