Effect of cogongrass biochar enriched with nitrogen fertilizer dissolved in seaweed liquid extract on soil water content of Ultisol

Q3 Social Sciences
L. M. H. Kilowasid, Syamsu Alam, T. C. Rakian, Nurul Awalia Ansar, Nurfadillah, Nurfatihah Hijrah Ramdan, Irfan Jaya, Suryana, Widia Agustin, N. M. Rahni, Mashuni, L. Safuan
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Abstract

Ultisol dry land is characterized by significantly low organic carbon content, an important factor influencing soil water content and physico-chemical dynamics. The addition of N fertilizer dissolved in seaweed liquid extract as an enrichment solution can change the character of biochar. Therefore, this study aimed to analyze the characteristics of cogongrass biochar enriched with dissolved N fertilizer in seaweed extract of different species and assess its impact on soil water content in Ultisol. Urea was used as a nitrogen source, and biochar enriched with N fertilizer dissolved in seaweed liquid extract from Kappapychus alvarezii, Sargassum sp., and Ulva lactuca was tested. Biochar dose used was 20% of soil weight with a 10% extract concentration for each type. Furthermore, five-level treatments were tested in a pot experiment, namely (i) without biochar, (ii) biochar unenriched, (iii) enriched with N fertilizer dissolved in K. alvarezii extract, (iv) enriched with N fertilizer dissolved in Sargassum sp. extract, and (v) biochar enriched with N fertilizer dissolved in U. lactuca extract. Each treatment was repeated three times, following a randomized block design. The results showed that cogongrass biochar enriched with N fertilizer dissolved in seaweed extract had a more amorphous surface morphology structure. The proportion of elements and functional groups in cogongrass biochar changed. Enriched biochar increased Ultisol moisture levels, but water holding capacity and retention were lower than the unenriched sample.
用海藻液提取物中溶解的氮肥富集高公草生物炭对 Ultisol 土壤含水量的影响
超土壤旱地的特点是有机碳含量极低,而有机碳是影响土壤含水量和物理化学动态的重要因素。将溶解在海藻液提取物中的氮肥作为富集液添加到生物炭中会改变生物炭的特性。因此,本研究旨在分析不同种类海藻提取物中溶解的氮肥富集的牛筋草生物炭的特性,并评估其对 Ultisol 土壤含水量的影响。试验使用尿素作为氮源,并在 Kappapychus alvarezii、Sargassum sp.每种生物炭的使用剂量为土壤重量的 20%,提取物浓度为 10%。此外,还在盆栽实验中测试了五种不同的处理方法,即(i)不添加生物炭;(ii)不添加生物炭;(iii)添加溶解在 K. alvarezii 提取物中的氮肥;(iv)添加溶解在马尾藻提取物中的氮肥;(v)添加溶解在乳莼提取物中的氮肥。每个处理重复三次,采用随机区组设计。结果表明,海藻提取物中溶解了氮肥的高公草生物炭具有更无定形的表面形态结构。海草生物炭中元素和功能基团的比例发生了变化。富集后的生物炭提高了 Ultisol 的湿度,但持水能力和保水性低于未富集的样品。
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来源期刊
Journal of Degraded and Mining Lands Management
Journal of Degraded and Mining Lands Management Environmental Science-Nature and Landscape Conservation
CiteScore
1.50
自引率
0.00%
发文量
81
审稿时长
4 weeks
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