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首页> 外文期刊>Emerging Contaminants >Effects of arbuscular mycorrhizal fungi, biochar, selenium, silica gel, and sulfur on arsenic uptake and biomass growth in Pisum sativum L.
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Effects of arbuscular mycorrhizal fungi, biochar, selenium, silica gel, and sulfur on arsenic uptake and biomass growth in Pisum sativum L.

机译:丛枝菌根真菌,生物炭,硒,硅胶和硫对Pisum sativum L的砷摄取和生物质生长的影响。

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摘要

Arsenic (As) is carcinogenic and highly toxic to plants. Crops accumulate As when grown in field soils irrigated with As-contaminated groundwater. The accumulation of As in roots, shoots, and grains of pea varieties can negatively affect human health via the food chain. This research is focused on the biomass growth and alleviation of As accumulation in roots, shoots, and grains of pea varieties in high As soil amended with arbuscular mycorrhizal fungi (AMF), biochar (BC), selenium (Se), silica gel (Si-gel), and sulfur (S). Root, shoot, and grain masses were found higher in pea grown in As soil amended with AMF, Se, Si-gel, and S. Amendments with rice husk and sawdust BC was found less effective to increase growth parameters in Bangladesh Agricultural Research Institute (BARI) Motor 2. Arsenic in grains was reduced by 77%, 71%, and 69% by AMF, Se, and Si-gel, respectively. It is recommended that soil amendments with AMF, S, and Se have great potential for improving biomass production of pea grown in As-contaminated soil, as well as reducing As transfer to humans through the food chains.
机译:砷(AS)是致癌和对植物的高毒性。作物积累,因为当用污染的地下水灌溉的田间土壤种植时累积。作为根,芽和豌豆品种颗粒的积累可以通过食物链对人体健康产生负面影响。本研究专注于生物质生物的生物量增长和减轻豌豆品种的积累,豌豆品种的积累高,因为用丛枝菌根真菌(AMF),生物炭(BC),硒(SE),硅胶(Si -gel)和硫(s)。由于用米夫,SE,Si-GEL和S.稻壳和锯末BC修正的土壤,豌豆的根本,芽和谷物群体发现较高,因为稻壳和锯末BC的修正被发现不太有效地增加孟加拉国农业研究所的增长参数( Bari)电机2.谷物中的砷分别减少了77%,71%和69%的amf,se和si-gel。建议使用AMF,S和SE的土壤修正案具有改善患有污染土壤生物的生物量生产的潜力,并通过食物链转移到人类。

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