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Bench-Scale Evaluation of Hydrothermal Processing Technology for Conversion of Wastewater Solids to Fuels

机译:用于将废水中的固体转化为燃料的水热处理工艺的基准规模评估

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Hydrothermal Liquefaction (HTL) and Catalytic Hydrothermal Gasification (CHG) proof-of-concept bench-scale tests were performed to assess the potential of hydrothermal treatment for handling municipal wastewater sludge. HTL tests were conducted at 300 to 350 degrees C and 20 MPa on three different feeds: primary sludge, secondary sludge, and digested solids. Corresponding CHG tests were conducted at 350 degrees C and 20 MPa on the HTL aqueous phase output using a ruthenium-based catalyst. Biocrude yields ranged from 25 to 37%. Biocrude composition and quality were comparable to biocrudes generated from algae feeds. Subsequent hydrotreating of biocrude resulted in a product with comparable physical and chemical properties to crude oil. CHG product gas methane yields on a carbon basis ranged from 47 to 64%. Siloxane concentrations in the CHG product gas were below engine limits. The HTL-CHG process resulted in a chemical oxygen demand (COD) reduction of 99.9% and a reduction in residual solids for disposal of 94 to 99%.
机译:进行了水热液化(HTL)和催化水热气化(CHG)概念验证台规模试验,以评估水热处理在处理城市废水污泥方面的潜力。 HTL测试是在300至350摄氏度和20 MPa下对三种不同的进料进行的:一次污泥,二次污泥和消化的固体。使用钌基催化剂在HTL水相输出中在350摄氏度和20 MPa下进行了相应的CHG测试。生物粗品产率为25%至37%。生物原油的成分和质量与藻类饲料产生的生物原油相当。随后对生物原油进行加氢处理,得到的产品具有与原油相当的物理和化学性质。以碳为基础的CHG产气甲烷产率为47%至64%。 CHG产物气体中的硅氧烷浓度低于发动机限值。 HTL-CHG工艺可将化学需氧量(COD)降低> 99.9%,并将残留固体减少94-99%。

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