Assessment of soil total phosphorus storage in a complex topography along China's southeast coast based on multiple mapping scales

IF 5.2 2区 农林科学 Q1 SOIL SCIENCE Pedosphere Pub Date : 2024-02-01 DOI:10.1016/j.pedsph.2023.09.012
Zhongxing CHEN , Jing LI , Kai HUANG , Miaomiao WEN , Qianlai ZHUANG , Licheng LIU , Peng ZHU , Zhenong JIN , Shihe XING , Liming ZHANG
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Abstract

Soil phosphorus (P) plays a vital role in both ecological and agricultural ecosystems, where total P (TP) in soil serves as a crucial indicator of soil fertility and quality. Most of the studies covered in the literature employ a single or narrow range of soil databases, which largely overlooks the impact of utilizing multiple mapping scales in estimating soil TP, especially in hilly topographies. In this study, Fujian Province, a subtropical hilly region along China's southeast coast covered by a complex topographic environment, was taken as a case study. The influence of the mapping scale on soil TP storage (TPS) estimation was analyzed using six digital soil databases that were derived from 3 082 unique soil profiles at different mapping scales, i.e., 1:50 000 (S5), 1:200 000 (S20), 1:500 000 (S50), 1:1 000 000 (S100), 1:4 000 000 (S400), and 1:10 000 000 (S1000). The regional TPS in the surface soil (0–20 cm) based on the S5, S20, S50, S100, S400, and S1000 soil maps was 20.72, 22.17, 23.06, 23.05, 22.04, and 23.48 Tg, respectively, and the corresponding TPS at 0–100 cm soil depth was 80.98, 80.71, 85.00, 84.03, 82.96, and 86.72 Tg, respectively. By comparing soil TPS in the S20 to S1000 maps to that in the S5 map, the relative deviations were 6.37%–13.32% for 0–20 cm and 0.33%–7.09% for 0–100 cm. Moreover, since the S20 map had the lowest relative deviation among different mapping scales as compared to S5, it could provide additional soil information and a richer soil environment than other smaller mapping scales. Our results also revealed that many uncertainties in soil TPS estimation originated from the lack of detailed soil information, i.e., representation and spatial variations among different soil types. From the time and labor perspectives, our work provides useful guidelines to identify the appropriate mapping scale for estimating regional soil TPS in areas like Fujian Province in subtropical China or other places with similar complex topographies. Moreover, it is of tremendous importance to accurately estimate soil TPS to ensure ecosystem stability and sustainable agricultural development, especially for regional decision-making and management of phosphate fertilizer application amounts.

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基于多种测绘尺度的中国东南沿海复杂地形土壤总磷储量评估
土壤磷(P)在生态和农业生态系统中都发挥着至关重要的作用,土壤中的总磷(TP)是衡量土壤肥力和质量的重要指标。文献中涉及的大多数研究都采用了单一或范围较窄的土壤数据库,这在很大程度上忽视了利用多种绘图尺度估算土壤总磷的影响,尤其是在丘陵地形中。本研究以地形环境复杂的中国东南沿海亚热带丘陵地区福建省为例。研究使用 6 个数字土壤数据库分析了测绘比例尺对土壤 TP 储量(TPS)估算的影响,这 6 个数字土壤数据库分别来自不同测绘比例尺的 3 082 个独特土壤剖面,即 1:50 000 (S5)、1:200 000 (S20)、1:500 000 (S50)、1:1 000 000 (S100)、1:4 000 000 (S400) 和 1:10 000 000 (S1000)。根据 S5、S20、S50、S100、S400 和 S1000 土壤图,表层土壤(0-20 厘米)的区域总磷浓度分别为 20.72、22.17、23.06、23.05、22.04 和 23.48 Tg,0-100 厘米土壤深度的相应总磷浓度分别为 80.98、80.71、85.00、84.03、82.96 和 86.72 Tg。将 S20 至 S1000 地图中的土壤 TPS 与 S5 地图中的土壤 TPS 相比,0-20 厘米的相对偏差为 6.37%-13.32%,0-100 厘米的相对偏差为 0.33%-7.09%。此外,与 S5 地图相比,S20 地图在不同测绘尺度中的相对偏差最小,因此与其他较小的测绘尺度相比,S20 地图可以提供更多的土壤信息和更丰富的土壤环境。我们的结果还显示,土壤 TPS 估算中的许多不确定性都源于缺乏详细的土壤信息,即不同土壤类型之间的代表性和空间变化。从时间和人力的角度来看,我们的工作为确定合适的测绘尺度提供了有用的指导,以便在中国亚热带的福建省或其他具有类似复杂地形的地区估算区域土壤 TPS。此外,准确估算土壤TPS对确保生态系统稳定和农业可持续发展,特别是对区域决策和磷肥施用量管理具有重要意义。
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来源期刊
Pedosphere
Pedosphere 环境科学-土壤科学
CiteScore
11.70
自引率
1.80%
发文量
147
审稿时长
5.0 months
期刊介绍: PEDOSPHERE—a peer-reviewed international journal published bimonthly in English—welcomes submissions from scientists around the world under a broad scope of topics relevant to timely, high quality original research findings, especially up-to-date achievements and advances in the entire field of soil science studies dealing with environmental science, ecology, agriculture, bioscience, geoscience, forestry, etc. It publishes mainly original research articles as well as some reviews, mini reviews, short communications and special issues.
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