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Potential of biochar in composting: effect on process performance and greenhouse gas emissions

机译:生物炭堆肥的潜力:对工艺性能和温室气体排放的影响

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The aim of this study was the evaluation of biochar as a means of improving the performance of the composting process and the quality of the end product. For this purpose, oak biochar was added at a rate of 10% dry weight to a 50:50 mixture of green waste and the organic fraction of municipal solid waste in a full-scale composting process. The main improvements caused by biochar addition were an enhanced rate of organic matter (OM) decomposition during the bio-oxidative phase of the process (OM losses of 21 and 11% for feedstocks with or without biochar, respectively), without affecting the total OM loss at the end of the process, a significant reduction of N losses (3 and 22% of initial N for compost with or without biochar, respectively) and a larger amount of easily available P (17.4 vs. 14.9 mg L1 for compost with or without biochar, respectively). Biochar caused a reduction or no effect on greenhouse gas (GHG) emissions, depending on the specific gas and conditions of the composting process. The results indicate that adding biochar to the feedstock mixture before composting represents an effective improvement to the traditional composting system, especially in the case of N-rich organic wastes, as it may reduce the process costs and GHG emissions, without affecting the quality of the end product.
机译:这项研究的目的是评估生物炭,以改善堆肥过程的性能和最终产品的质量。为此,在大规模堆肥过程中,将橡木生物炭以10%干重的比率添加到绿色废物和城市固体废物的有机部分的50:50混合物中。由生物炭添加引起的主要改进是在该过程的生物氧化阶段提高了有机物(OM)的分解速率(对于有或没有生物炭的原料,OM损失分别为21%和11%),而不会影响总OM流程结束时的氮素损失,显着减少氮素损失(使用或不使用生物炭时堆肥的初始氮分别减少3%和22%),以及大量易获得的磷(使用或未使用堆肥时的堆肥分别为17.4和14.9 mg L1)不含生物炭)。生物炭对温室气体(GHG)排放的影响减少或没有影响,具体取决于堆肥过程中的特定气体和条件。结果表明,在堆肥前将生物炭添加到原料混合物中代表了对传统堆肥系统的有效改进,特别是在富含氮的有机废物的情况下,因为这可以降低工艺成本和温室气体排放,而不会影响垃圾的质量。最终产品。

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