生物炭和增磷菌(PSB)接种提高盐碱农业土壤磷有效性的温室试验

IF 3.1 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES International Journal of Phytoremediation Pub Date : 2025-01-01 Epub Date: 2025-03-07 DOI:10.1080/15226514.2025.2473594
Muhammad Idress, Palwasha Khan, Javed Nawab, Ajmal Khan, Sardar Khan, Roshan Ali, Abdul Rehman, Arshad Alam, Suliman Ayaz, Haimanote Bayabil
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引用次数: 0

摘要

磷(P)是地球上生命必需的元素,也是植物生长的限制性养分。然而,它在盐碱土壤中的有效性显著降低,对植物生产力产生不利影响。盐碱地是严重影响植物生长和生产力的普遍问题。分析了钯源生物炭(PB)和污水污泥源生物炭(SSB)的pH、电导率(EC)、阳离子交换容量(CEC)、热值(CV)和表面积(SSA)。磷酸盐增溶指数(SI;2.83 mM)和定量分析(521.5µg ml-1)表明PSB-01有效,并通过16S rRNA测序技术鉴定菌株。试验采用完全随机区组设计(CRBD), 3个重复。结果表明,与对照相比,施用PB、SSB和PSB-01显著促进了马齿苋的生长。与1%和3%的单一修订相比,合并修订的增长率最高。PB、SSB和PSB-01复合施用1%和3%时,阳离子和阴离子浓度降低幅度最大。生物炭与PSB-01配施可改善土壤理化性质(pH、CEC、SSA、阳离子),促进植物生长,为盐碱农业土壤提供可持续解决方案。本研究采用了一种创新的方法,将Parthenium和污水污泥中的生物炭与磷酸盐溶解细菌(PSBs)结合起来,同时解决多个问题:减轻盐碱地,控制Parthenium过度生长,以及管理污水污泥问题。
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Improving phosphorus availability in saline-alkaline agricultural soils through biochar and phosphorus solubilizing bacteria (PSB) inoculation: a greenhouse experiment.

Phosphorus (P) is an essential element for life on earth and a limiting nutrient for plant growth. However, its availability in saline-alkaline soils is significantly reduced, adversely affecting plant productivity. Saline-alkaline soil is a widespread problem that severely affects plant growth and productivity. The Parthenium-derived biochar (PB) and Sewage sludge-derived biochar (SSB) were analyzed for pH, electric conductivity (EC), cation exchange capacity (CEC), calorific values (CV), and surface area (SSA). The phosphate solubilizing index (SI; 2.83 mM) and quantitative analysis (521.5 µg ml-1) were suggested that PSB-01 efficient and the strain identified through 16S rRNA sequencing techniques. The experiment was based on completely randomized block design (CRBD) with triplicates. The results revealed that the application of PB, SSB, and PSB-01 significantly improved Spinacia oleracea (S. oleracea) growth as compared to the control. The highest growth was observed in the combined amendments as compared to single once in both 1% and 3%. The highest reduction in cation and anion concentrations was observed in the combined applications of PB, SSB and PSB-01 for 1% and 3%. The combined application of biochar along with PSB-01 can enhance soil properties (pH, CEC, SSA anoins and cations) and promote plant growth, offering a sustainable solution for saline-alkaline agricultural soil. This study employs an innovative approach by combining biochars derived from Parthenium and sewage sludge with phosphate-solubilizing bacteria (PSBs) to address multiple issues simultaneously: mitigating saline-alkaline soil, controlling Parthenium overgrowth, and managing sewage sludge problems.

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来源期刊
International Journal of Phytoremediation
International Journal of Phytoremediation 环境科学-环境科学
CiteScore
7.60
自引率
5.40%
发文量
145
审稿时长
3.4 months
期刊介绍: The International Journal of Phytoremediation (IJP) is the first journal devoted to the publication of laboratory and field research describing the use of plant systems to solve environmental problems by enabling the remediation of soil, water, and air quality and by restoring ecosystem services in managed landscapes. Traditional phytoremediation has largely focused on soil and groundwater clean-up of hazardous contaminants. Phytotechnology expands this umbrella to include many of the natural resource management challenges we face in cities, on farms, and other landscapes more integrated with daily public activities. Wetlands that treat wastewater, rain gardens that treat stormwater, poplar tree plantings that contain pollutants, urban tree canopies that treat air pollution, and specialized plants that treat decommissioned mine sites are just a few examples of phytotechnologies.
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