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Comprehensive review and compilation of pretreatments for mesophilic and thermophilic anaerobic digestion

机译:中温和嗜热厌氧消化的预处理的综合综述和汇编

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Organic matter hydrolysis prior to anaerobic digestion has been shown to improve biogas production (30-50%) and reduce solids (20-60%) by ultrasound, chemical, conventional heating, and microwave pretreatments. Numerous studies have been performed to determine the extent of digestion improvement but few focus on financial feasibility of these processes. A comprehensive model was created using Microsoft Excel and its Visual Basic Assistant to evaluate pretreatment permutations for conventional wastewater treatment plants. The four above-mentioned processes were evaluated for energetic and financial demands. Well-established energy equations and wastewater characteristics, both average and high, were used. Average and high flows were 460 and 750 × 10 ~3 m~3/d, respectively. Net costs per influent flow for ultrasound, chemical, conventional heating, and microwave were 0.0166, 0.0217, 0.0124, 0.0119 $/m~3 and 0.0264, 0.0357, 0.0187, and 0.0162 $/m~3 for average and high conditions, respectively. The average cost increase from results excluding pretreatment use for all processes was 0.003 and 0.0055 $/m~3 for average and high conditions, respectively. No matter the permutation, pretreatments requiring more energy to achieve required hydrolysis levels were costlier. If energetic recoveries are substantial, dewaterability is positively affected, and solids meet environmental constraints to be handled and disposed at lower costs, pretreatments can be viable.
机译:厌氧消化之前的有机物水解已显示可通过超声,化学,常规加热和微波预处理提高沼气产量(30-50%)并减少固体(20-60%)。已经进行了许多研究以确定消化改善的程度,但是很少关注这些方法的经济可行性。使用Microsoft Excel及其Visual Basic Assistant创建了一个综合模型,以评估常规废水处理厂的预处理排列。对上述四个过程进行了能源和财务需求评估。使用了公认的平均和高能量方程和废水特性。平均流量和高流量分别为460和750×10〜3 m〜3 / d。超声,化学,常规加热和微波的平均进水流量净成本在平均和高条件下分别为0.0166、0.0217、0.0124、0.0119 $ / m〜3和0.0264、0.0357、0.0187和0.0162 $ / m〜3。从平均结果和高条件来看,不包括所有过程的预处理的使用结果的平均成本增加分别为0.003和0.0055 $ / m〜3。无论置换如何,需要更多能量以达到所需水解水平的预处理都比较昂贵。如果高能回收率高,脱水性受到积极影响,并且固体物以较低的成本满足处理和处置的环境限制,则预处理是可行的。

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