Salt Removal and Agricultural Application of Food Waste-Biochar

Sin-Sil Kim, Jun-Suk Rho, Jae-Hoon Lee, Ah-Young Choi, Seul Lee, Yu-Jin Park, Jonghwan Park, Young-Han Lee, D. Seo
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Abstract

Food waste (FW) emissions in South Korea amounted to 4.77 million tons in 2021, and continue to increase. Various technologies have been developed to treat FW, with recent research focusing on biochar production through pyrolysis to reduce FW. However, the agricultural application of food waste-biochar (FWBC) is lim-ited by the salt accumulated during pyrolysis. This study investigated salt removal from and the kinetic characteristics of FWBC, and subsequently evaluated its agricultural applications. FW was pyrolyzed at 350°C for 4 h, and subsequently washed for 0.1, 0.25, 0.5, 0.75, 1, 5, 15, and 30 min to remove salt. FWBC had a salt concentration of 5.75%, which was effectively removed through washing. The salt concentration decreased rapidly at the beginning (1 min) and then slowly decreased, unlike in FW, in which the salt decreased continuously and slowly. The salt removal speed con-stant (K) was 1.5586 (Stage 1, FWBC) > 0.0445 (Stage 2, FWBC) > 0.0026 (FW). In a lettuce cultivation experiment, higher biomass was achieved using washed FWBC than when using unwashed FWBC and FW, and soil properties were improved. Overall, these findings
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食物垃圾的脱盐及农业应用——生物炭
2021年,韩国的食物垃圾排放量达到477万吨,而且还在继续增加。目前已经开发了各种处理FW的技术,最近的研究重点是通过热解生产生物炭来减少FW。然而,食物垃圾生物炭(FWBC)的农业应用受到热解过程中积累的盐分的限制。研究了FWBC的脱盐性能和动力学特性,并对其在农业上的应用进行了评价。FW在350°C下热解4小时,随后洗涤0.1,0.25,0.5,0.75,1,5,15和30分钟以去除盐。FWBC的盐浓度为5.75%,通过洗涤可有效去除。盐浓度在开始(1 min)迅速下降,然后缓慢下降,而不像在FW中,盐浓度连续缓慢下降。除盐速度常数(K)为1.5586(阶段1,FWBC) > 0.0445(阶段2,FWBC) > 0.0026 (FW)。在生菜栽培试验中,洗净的FWBC比未洗净的FWBC和FW获得更高的生物量,土壤性质得到改善。总的来说,这些发现
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