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首页> 外文期刊>International Journal of Greenhouse Gas Control >Greenhouse gas emission by wastewater treatment plants of the pulp and paper industry - modeling and simulation.
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Greenhouse gas emission by wastewater treatment plants of the pulp and paper industry - modeling and simulation.

机译:制浆造纸工业废水处理厂的温室气体排放-建模和模拟。

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Greenhouse gas (GHG) emission and energy consumption in wastewater treatment plants (WWTPs) of the pulp and paper industry were modeled and estimated. Aerobic, anaerobic, and hybrid biological processes were used for the removal of contaminants. In addition to the removal of carbonaceous compounds, anaerobic digestion of the produced sludge and the removal of excess nitrogen in the effluent of treatment plants by nitrification/denitrification processes were incorporated in the model. Carbon dioxide, methane, and nitrous oxide were the major GHGs generated during the biological treatment, combustion, energy generation, and transportation. The generated biogas from the anaerobic processes was assumed to be recovered and used as a source of energy for the treatment plant, in an effort to reduce GHG emissions while decreasing the total energy needs of the WWTP. The established kinetic relationships of wastewater treatment processes along with mass and energy balances were employed for the simulation of different treatment systems and estimation of GHG emissions. Various sources of GHG emission were divided into on-site and off-site sources to simplify the modeling and simulation procedure. The overall GHG generation in the presence of biogas recovery was equal to 1.576, 3.026, and 3.271 kg CO2-equivalent/kg BOD by the three examined systems. The energy produced by the recovery and combustion of biogas could exceed the energy demands of all different treatment plants examined in this study and reduce off-site GHG emission. The generation of GHGs from aerobic and hybrid processes increased by 27% and 33.2%, respectively, when N2O emission from nitrogen removal processes was taken into consideration.
机译:对纸浆和造纸工业废水处理厂(WWTP)的温室气体(GHG)排放和能耗进行了建模和估算。有氧,厌氧和混合生物过程用于去除污染物。除了去除含碳化合物外,还通过厌氧消化消化产生的污泥,并通过硝化/反硝化过程去除处理厂废水中的过量氮。二氧化碳,甲烷和一氧化二氮是在生物处理,燃烧,能量产生和运输过程中产生的主要温室气体。假定厌氧过程中产生的沼气被回收并用作处理厂的能源,以减少温室气体排放,同时减少污水处理厂的总能源需求。建立的废水处理过程动力学关系以及质量和能量平衡被用于模拟不同的处理系统和估算温室气体排放。为了简化建模和模拟程序,将各种温室气体排放源分为现场和非现场两种。在三个检测系统中,在存在沼气回收的情况下,总的GHG产生量分别等于1.576、3.026和3.271 kg CO 2 当量/ kg BOD。由沼气的回收和燃烧产生的能量可能超过本研究中检查的所有不同处理厂的能量需求,并减少了场外温室气体排放。当考虑脱氮过程中的N 2 O排放时,好氧和混合过程产生的温室气体分别增加了27%和33.2%。

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