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Effects of Combined Technologies on Environmental Prevention against Livestock Pollution in Biogas Projects

机译:组合技术对沼气项目畜禽污染环境预防的影响

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To resolve the contradiction between livestock development and environmental pollution, anaerobic fermentation in biogas projects has been used for more missions, such as co-generation of heat and power, production of anaerobic digested fertilizer for the prevention and control of livestock pollution. The aim of this work was to investigate the effects of combined technologies on biogas slurry treatment. Chemical flocculation can remove the total solids (TS), chemical oxygen demand (CODcr), total phosphorus (TP), and total nitrogen (TN) at rates of 89.4%, 95.9%, 98.0% and 73.9%, respectively. However, removal of ammonia nitrogen (NH4+ N) (37.1%) and soluble potassium (3.4%) is poor. A facultative oxidation pond can remove NH4+ N and soluble K at rates of 63.5% and 47.5%, respectively. In addition, an ecological forest can remove NH4+ N, soluble K, and TP at rates of 93.1%, 54.9%, and 70%, respectively. Heavy metal pollution is effectively controlled through the whole workflow. Ultraviolet disinfection is still required for pathogen elimination, although the combined processing has a remarkable impact on the removal of fecal coliforms and total coliforms.
机译:为解决畜牧业发展与环境污染之间的矛盾,沼气项目中的厌氧发酵已被用于更多的任务,例如加热和动力,生产厌氧消化肥料,用于预防和控制畜牧污染。这项工作的目的是探讨组合技术对沼气浆料治疗的影响。化学絮凝可以以89.4%,95.9%,98.0%和73.9%的速率去除总固体(TS),化学需氧量(CODCR),总磷(TP)和总氮气(TN)。然而,除去氨氮(NH 4 + N)(37.1%)和可溶性钾(3.4%)差。兼层氧化池可以分别以63.5%和47.5%的速率除去NH 4 + N和可溶性k。此外,生态森林可以以93.1%,54.9%和70%的速率除去NH 4 + N,可溶性K和TP。通过整个工作流程有效地控制重金属污染。病原体消除仍需要紫外线消毒,尽管组合加工对去除粪便大肠菌和总大肠杆菌具有显着影响。

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