首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Evaluation of pressurised carbon dioxide pre-treatment aimed at improving the sanitisation and anaerobic digestibility of co-settled sewage sludge
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Evaluation of pressurised carbon dioxide pre-treatment aimed at improving the sanitisation and anaerobic digestibility of co-settled sewage sludge

机译:评估加压二氧化碳预处理的目的在于改善共沉淀污泥的卫生性和厌氧消化率

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摘要

This work reports on the use of pressurized CO2 pretreatment to improve methane yield and pathogen indicator organism die-off in co-settled sewage sludge (SS). Four semi-continuous mesophilic anaerobic digesters were fed on co-settled SS to establish a baseline for performance and stability. One pair of digesters was then fed with co-settled SS pretreated by P CO2 at 2800kPa for 23h. The trial continued for 70days during which specific biogas and methane production, volatile solids destruction and loss of viability of Escherichia coli was monitored in test and control digesters. The pretreatment had no positive influence on any of these parameters, which was further confirmed using batch biochemical methane potential tests and direct measurement of die-off of E. coli and Salmonella enterica in samples of different sizes treated in pressure vessels of different sizes and in matrices of nutrient medium and co-settled SS. Pressurised CO2 pretreatment was effective at killing fecal indicator bacteria in nutrient medium but ineffectual in SS, strongly suggesting that the nature of suspending matrix was a principle determining factor. Paper concludes that pressurized CO2 pretreatment is not a satisfactory approach to improve either biogas production or pathogen destruction in anaerobic digestion.
机译:这项工作报告了使用加压的二氧化碳预处理来提高甲烷产量以及共同沉降的污泥(SS)中病原体指示生物的死亡。将四个半连续的嗜温厌氧消化池喂入共同沉降的SS中,以建立性能和稳定性的基准。然后将一对蒸煮器喂以共沉淀的SS,该沉淀通过2800kPa的P CO2预处理23h。该试验持续了70天,在此期间,在测试和对照消化池中监测特定的沼气和甲烷产量,挥发性固体破坏和大肠杆菌活力丧失。预处理对这些参数均无积极影响,这已通过批量生化甲烷潜力测试以及直接测量在不同尺寸和不同压力容器中处理的不同尺寸样品中的大肠杆菌和肠沙门氏菌的死亡来进一步证实。营养基质和共同沉淀的SS矩阵。加压CO2预处理可有效杀死营养培养基中的粪便指示菌,但对SS无效,强烈表明悬浮基质的性质是主要的决定因素。论文得出结论,加压CO2预处理不是改善厌氧消化中沼气生产或病原体破坏的令人满意的方法。

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