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- W2616014740 abstract "Abstract Amelioration of salt-affected soils requires an integrated management approach, which not only improves their effectiveness for improving soil properties, but also increases the crop production and quality of the produce. Hence, a study was planned to evaluate combined use of organic and inorganic amendments for better rehabilitation of salt affected soil in ricewheat cropping sequence from 2013 to 2016. Treatments included T 1 - control, T 2 - gypsum @ 100 SGR, T 3 - CaCl 2 @ 50% SGR, T 4 - CaCl 2 @ 50% SGR + biogas slurry @ 10 tˑha -1 , T 5 - H 2 SO 4 @ 25% GR, T 6 - H 2 SO 4 @ 25% SGR + biogas slurry @10 tˑha -1 . A saline sodic field was selected, prepared and leveled. Composite soil samples were collected and analyzed for pH s = 9.15, EC e (dS m -1 ) = 4.86, SAR (mmol L -1 ) 1/2 = 42.52 and GR (tˑha -1 ) = 8.64. Experiment was laid out in RCBD with three replications. The inorganic amendments (gypsum and CaCl 2 ) were applied 30 days before rice transplanting in the respective treatment plots, followed by leaching while biogas slurry was applied 15 days before transplanting and H 2 SO 4 was applied with first irrigation. Recommended dose of fertilizer 120-110-70 NPK kg ha -1 for wheat (Inqlab-91) and 110-90-60 NPK kg ha -1 for rice (Shaheen Basmati) was applied. Soil samples were collected before application of amendment and after harvesting of each crop. Straw and grain/paddy yield data were recorded at maturity. Pooled data showed that grain/paddy and straw yield of wheat and rice crop was higher in T 2 (gypsum @ 100% SGR), but statistically (P≤ 0.05) non significant with T 4 (CaCl 2 @ 50% SGR + biogas slurry @ 10 tˑha -1 ). T 3 (CaCl 2 @ 50 % SGR) was at par with T 6 (H 2 SO 4 @ 25% SGR + biogas slurry @ 10 tˑha -1 ), followed by T 5 (H 2 SO 4 @ 25% SGR). The minimum yield was recorded in T 1 (control). Soil analysis showed that pH s , EC e and SAR were significantly decreased in T 2 , (Gypsum @ 100% SGR), followed by T 4 (CaCl 2 @ 50% SGR + biogas slurry @ 10 tˑha -1 ). Hence, CaCl 2 @ 50% SGR + biogas slurry @ 10 tˑha -1 may be an effective alternative reclamation strategy for areas that are restricted use because of salinity." @default.
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- W2616014740 date "2017-03-28" @default.
- W2616014740 modified "2023-10-01" @default.
- W2616014740 title "Comparison the Efficient Reclamation of Different Inorganic Materials with Organic Amendments to Rice-Wheat Crop Sustainable Production in Salt-Affected Soils" @default.
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- W2616014740 doi "https://doi.org/10.1515/cerce-2017-0002" @default.
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