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首页> 外文期刊>The Science of the Total Environment >Merging two waste streams, wood ash and biowaste, results in improved composting process and end products
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Merging two waste streams, wood ash and biowaste, results in improved composting process and end products

机译:合并两种废物流(木灰和生物废物)可改善堆肥过程和最终产品

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摘要

A trial was carried out to evaluate the influence of wood ash admixture on biowaste composting. The aim was to find the optimal dosage of ash addition to enhance the composting process without endangering the final compost characteristics and use. Six treatments including an unamended control (K0) and composts with additions of 3% (K3), 6% (K6), 9% (K9), 12% (K12) and 15% (K15) of wood ash (w/w) were studied. The composting process was monitored in situ for 49 days, by measuring temperature, CO_2,O_2. and CH_4 in the piles and pH, electric conductivity (EC), and inorganic N in the laboratory. At the end of the process, the products were tested for Reifegrad (maturity), toxicity and quality. The addition of up to 15% of wood ash to biowaste did not negatively affect the composting process, and the initial differences found between both the low and high ash-treated composts were attenuated with the ongoing process development. Nevertheless, and mainly due to Cd level, composts with higher ash amendment did not comply with the highest quality standards established by the Austrian Compost Ordinance. The failure of obtaining class A~+ quality after ash amendment emphasizes the need for a rigid quality selection of (bottom) ashes and thus reducing environmental risks related to high pollutant loads originating from the ashes.
机译:进行了一项试验,以评估木灰混合物对生物废物堆肥的影响。目的是找到添加灰分的最佳剂量,以增强堆肥过程而不会危害最终堆肥的特性和用途。六种处理方法,包括未经修改的对照(K0)和堆肥,添加了3%(K3),6%(K6),9%(K9),12%(K12)和15%(K15)的木灰(w / w) )进行了研究。通过测量温度CO_2,O_2,就地监测堆肥过程49天。堆中的CH_4以及实验室中的pH,电导率(EC)和无机氮。在过程结束时,对产品进行了Reifegrad(成熟度),毒性和质量测试。在生物废料中添加高达15%的木灰不会对堆肥过程产生负面影响,并且随着工艺的不断发展,经低灰分处理的堆肥和高灰分处理的堆肥之间发现的最初差异已被减弱。然而,主要由于Cd含量,灰分修正较高的堆肥不符合奥地利堆肥条例规定的最高质量标准。灰分修正后未能获得A〜+级质量,强调需要对(底部)骨灰进行严格的质量选择,从而降低与源自灰烬的高污染物负荷相关的环境风险。

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