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通过添加堆肥污泥解锁厌氧消化污水污泥浓缩液用于种植富含蛋白质水稻的施肥潜力。

Unlocking fertilization potential of anaerobically digested sewage sludge centrate for protein-rich rice cultivation with composted sludge amendment.

作者信息

Phung Luc Duc, Ba Chiekh Adrame, Pertiwi Putri Aditya Padma, Ito Ayumi, Watanabe Toru

机构信息

Faculty of Agriculture, Yamagata University, 1-23 Wakaba-machi, Tsuruoka, Yamagata, 997-8555, Japan; Center for Foreign Languages and International Education, Vietnam National University of Agriculture, Trau Quy, Gia Lam, Ha Noi, 12406, Viet Nam.

Graduate School of Agricultural Science, Yamagata University, 1-23 Wakaba-machi, Tsuruoka, Yamagata, 997-8555, Japan.

出版信息

Environ Res. 2023 Nov 15;237(Pt 1):116912. doi: 10.1016/j.envres.2023.116912. Epub 2023 Aug 22.

Abstract

The use of composted sewage sludge (CSS) and centrate as alternatives to synthetic fertilizers in rice cultivation holds great promise. This study aims to determine the effects of varying doses and timings of centrate derived from anaerobically digested sewage sludge on rice yield, nutrient quality, and soil fertility when applied as a topdressing to rice fields fertilized with CSS. At the panicle initiation (PI) stage, 100, 300, and 500 kg N ha of centrate topdressing (CT100, CT300, and CT500, respectively) was applied. In addition, different topdressing timings at a total dose of 500 kg N ha were evaluated, including a two-split application (40% at active tillering (AT) and 60% at PI; CT500S2) and a three-split application (40% at AT + 40% at PI + 20% at heading; CT500S3). At a rate of 160 kg N ha, CSS was used as a base fertilizer in all treatments. A control treatment received synthetic fertilizers at a rate of 160 kg N ha as a base application and 100 kg N ha as a topdressing. Results showed that CSS-treated rice plants exhibited a lower N status and leaf chlorophyll content during the vegetative growth stage; however, the split application of centrate topdressing improved plant N status, resulting in an increase in biomass and grain yield. Centrate and CSS tended to increase the mineral content of rice; nevertheless, a significant accumulation of As in grains raised concerns about food safety. Combining CSS and centrate has the potential to increase rice production, improve grain nutritional value, and decrease reliance on synthetic fertilizers. However, it is essential to optimize this fertilization, mitigate environmental risks, and ensure food safety by employing appropriate fertilization dosing and timing as well as appropriate field management strategies.

摘要

在水稻种植中使用堆肥污水污泥(CSS)和沼液替代合成肥料具有很大的潜力。本研究旨在确定厌氧消化污水污泥产生的沼液不同施用量和施用时期作为追肥施用于用CSS施肥的稻田时,对水稻产量、营养品质和土壤肥力的影响。在幼穗分化(PI)期,分别施用100、300和500 kg N/ha的沼液追肥(分别为CT100、CT300和CT500)。此外,还评估了总施氮量为500 kg N/ha时不同的追肥时期,包括两次分施(分蘖盛期(AT)施40%,PI期施60%;CT500S2)和三次分施(AT期施40% + PI期施40% + 抽穗期施20%;CT500S3)。所有处理均以160 kg N/ha的用量施用CSS作为基肥。对照处理以160 kg N/ha的用量施用合成肥料作为基肥,100 kg N/ha作为追肥。结果表明,在营养生长阶段,经CSS处理的水稻植株氮素状况和叶片叶绿素含量较低;然而,沼液追肥的分次施用改善了植株的氮素状况,导致生物量和籽粒产量增加。沼液和CSS往往会增加水稻的矿物质含量;然而,籽粒中砷的显著积累引发了对食品安全的担忧。将CSS和沼液结合使用有潜力提高水稻产量、改善籽粒营养价值并减少对合成肥料的依赖。然而,通过采用适当的施肥量和施肥时期以及适当的田间管理策略来优化这种施肥方式、减轻环境风险并确保食品安全至关重要。

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