Shenzhen International Graduate School, Tsinghua University, Shenzhen, 518055, China.
Shenzhen International Graduate School, Tsinghua University, Shenzhen, 518055, China.
J Environ Manage. 2023 Sep 15;342:118169. doi: 10.1016/j.jenvman.2023.118169. Epub 2023 May 16.
Although many technologies can be applied to sewage sludge (SS) and food waste (FW) treatment, high investment and operational costs, high land occupation, and the "not-in-my-backyard" effect pose many challenges in practice. Thus, it is important to develop and utilize low-carbon or negative-carbon technologies to tackle the carbon problem. This paper proposes a method of anaerobic co-digestion of FW and SS, thermally hydrolyzed sludge (THS), or THS filtrate (THF) to enhance their methane potential. Compared to the co-digestion of SS with FW, the methane yield of the co-digestion of THS and FW was 9.7-69.7% higher, and that of the co-digestion of THF and FW was 11.1-101.1% higher. The synergistic effect was weakened with the addition of THS but enhanced with the addition of THF, potentially owing to the change in humic substances. Filtration removed most humic acids (HAs) from THS but retained fulvic acids (FAs) in THF. Moreover, THF produced 71.4% of the methane yield of THS, although only 25% of the organic matter permeated from THS to THF. This indicated that hardly biodegradable substances remained in the dewatering cake and were removed from anaerobic digestion systems. The results indicate that the co-digestion of THF and FW is an effective way to enhance methane production.
虽然许多技术可应用于污水污泥(SS)和食物废物(FW)处理,但高投资和运营成本、高土地占用以及“邻避效应”在实践中带来了许多挑战。因此,开发和利用低碳或负碳技术来解决碳问题非常重要。本文提出了一种利用 FW 与 SS、热解污泥(THS)或 THS 滤液(THF)的厌氧共消化来提高其甲烷潜力的方法。与 SS 与 FW 的共消化相比,THS 与 FW 的共消化的甲烷产率提高了 9.7%-69.7%,而 THF 与 FW 的共消化的甲烷产率提高了 11.1%-101.1%。随着 THS 的添加,协同作用减弱,而随着 THF 的添加,协同作用增强,这可能是由于腐殖质的变化。过滤去除了 THS 中的大部分腐殖酸(HA),但保留了 THF 中的富里酸(FA)。此外,THF 产生了 THS 甲烷产率的 71.4%,尽管只有 25%的有机物从 THS 渗透到 THF。这表明几乎不可生物降解的物质仍留在脱水饼中,并从厌氧消化系统中去除。结果表明,THF 和 FW 的共消化是提高甲烷产量的有效方法。