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Assessment of biogas production from MBT waste under different operating conditions

机译:在不同运行条件下评估MBT废物产生的沼气

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摘要

In this work, the influence of different operating conditions on the biogas production from mechanically-biologically treated (MBT) wastes is investigated. Specifically, different lab-scale anaerobic tests varying the water content (26-43% w/w up to 75% w/w), the temperature (from 20 to 25 ℃ up to 55 ℃) and the amount of inoculum have been performed on waste samples collected from a full-scale Italian MBT plant For each test, the gas generation yield and, where applicable, the first-order gas generation rates were determined. Nearly all tests were characterised by a quite long lag-phase. This result was mainly ascribed to the inhibition effects resulting from the high concentrations of volatile fatty acids (VFAs) and ammonia detected in the different stages of the experiments. Furthermore, water content was found as one of the key factor limiting the anaerobic biological process. Indeed, the experimental results showed that when the moisture was lower than 32% w/w, the methanogenic microbial activity was completely inhibited. For the higher water content tested (75% w/w), high values of accumulated gas volume (up to 150 Nl/kgTS) and a relatively short time period to deplete the MBT waste gas generation capacity were observed. At these test conditions, the effect of temperature became evident, leading to gas generation rates of 0.007 d~(-1) at room temperature that increased to 0.03-0.05 d~(-1) at 37 ℃ and to 0.04-0.11 d~(-1) at 55 ℃. Overall, the obtained results highlighted that the operative conditions can drastically affect the gas production from MBT wastes. This suggests that particular caution should be paid when using the results of lab-scale tests for the evaluation of long-term behaviour expected in the field where the boundary conditions change continuously and vary significantly depending on the climate, the landfill operative management strategies in place (e.g. leachate recirculation, waste disposal methods), the hydraulic characteristics of disposed waste, the presence and type of temporary and final cover systems.
机译:在这项工作中,研究了不同操作条件对机械-生物处理(MBT)废物产生沼气的影响。具体而言,已进行了不同实验室规模的厌氧试验,这些试验改变了含水量(26-43%w / w至75%w / w),温度(20至25℃至55℃)和接种量从意大利大型MBT工厂收集的废物样本中进行分析对于每个测试,都确定了产气量以及(如适用)一级产气率。几乎所有测试都具有相当长的滞后阶段。该结果主要归因于在实验的不同阶段中检测到的高浓度挥发性脂肪酸(VFA)和氨水所产生的抑制作用。此外,发现水含量是限制厌氧生物过程的关键因素之一。实际上,实验结果表明,当水分低于32%w / w时,产甲烷微生物活性被完全抑制。对于测试的较高水含量(75%w / w),观察到较高的累积气体体积值(最高150 Nl / kgTS)和相对较短的时间,以耗尽MBT废气的产生能力。在这些测试条件下,温度的影响变得明显,导致室温下的气体产生速率为0.007 d〜(-1),在37℃时增加到0.03-0.05 d〜(-1),并增加到0.04-0.11 d〜。 (-1)在55℃。总的来说,获得的结果表明,操作条件会极大地影响MBT废物的气体生产。这表明当使用实验室规模的测试结果评估在边界条件不断变化并根据气候变化显着变化的田野中预期的长期行为时,应格外小心,应采用适当的填埋场运营管理策略(例如,渗滤液再循环,废物处置方法),处置废物的水力特性,临时和最终覆盖系统的存在和类型。

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