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固态屠宰场废物的甲烷潜力。

Methane potential of sterilized solid slaughterhouse wastes.

机构信息

Department of Chemistry, Tallinn University of Technology, 12618 Tallinn, Harjumaa, Estonia.

出版信息

Bioresour Technol. 2012 Jul;116:42-6. doi: 10.1016/j.biortech.2012.04.038. Epub 2012 Apr 21.

Abstract

The aim of the current study was to determine chemical composition and methane potential of Category 2 and 3 solid slaughterhouse wastes rendering products (SSHWRP) viz. melt, decanter sludge, meat and bone meal (MBM), technical fat and flotation sludge from wastewater treatment. Chemical analyses showed that SSHWRP were high in protein and lipids with total solids (TS) content of 96-99%. Methane yields of the SSHWRP were between 390 and 978 m(3) CH(4)/t volatile solids (VS)(added). Based on batch experiments, anaerobic digestion of SSHWRP from the dry rendering process could recover 4.6 times more primary energy than the energy required for the rendering process. Estonia has technological capacity to sterilize all the produced Category 2 and 3 solid slaughterhouse wastes (SSHW) and if separated from Category 1 animal by-products (ABP), it could be further utilized as energy rich input material for anaerobic digestion.

摘要

本研究旨在确定 2 类和 3 类固态屠宰场废物加工产品(SSHWRP)即熔体、碟式分离机污泥、肉骨粉(MBM)、技术脂肪和来自污水处理的浮选污泥的化学成分和甲烷潜力。化学分析表明,SSHWRP 蛋白质和脂质含量高,总固体(TS)含量为 96-99%。SSHWRP 的甲烷产量在 390 和 978 m(3) CH(4)/t 挥发性固体(VS)(添加物)之间。基于批量实验,从干燥加工过程中厌氧消化 SSHWRP 可以回收比加工过程所需能量多 4.6 倍的初级能量。爱沙尼亚拥有对所有生产的 2 类和 3 类固态屠宰废物(SSHW)进行消毒的技术能力,如果与 1 类动物副产品(ABP)分离,它可以进一步用作富含能量的厌氧消化输入材料。

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