Effect of quail litter biochar on productivity of four new physic nut varieties planted in cadmium-contaminated soil
Biochar can improve soil structure and water retention, enhance nutrient availability and retention, ameliorate acidity, and reduce heavy metal toxicity to plant roots. In this study, a basin experiment was conducted to investigate the effects of quail litter biochar (QLB) on the availability of Cd...
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th-mahidol.135212018-06-11T11:31:54Z Effect of quail litter biochar on productivity of four new physic nut varieties planted in cadmium-contaminated soil Tawadchai Suppadit Viroj Kitikoon Anucha Phubphol Penthip Neumnoi Thailand National Institute of Development Administration Mahidol University Tak Province Bureau of the Budget Agricultural and Biological Sciences Biochar can improve soil structure and water retention, enhance nutrient availability and retention, ameliorate acidity, and reduce heavy metal toxicity to plant roots. In this study, a basin experiment was conducted to investigate the effects of quail litter biochar (QLB) on the availability of Cd to physic nut (Jatropha curcas L.) plants. QLB was applied to the soil in which four new physic nut varieties (Takfa, Doi Saket, Lao, and Rayong) in factorial combinations at four levels (0, 5, 10, and 15 g kg -1 soil) to soil that contained 60.8 mg Cd kg -1 . After transplanting plant height and canopy radius were measured every 2-mo and the number of leaves and branches at 6-mo, while yield components and Cd residues were measured at 8-mo intervals. The contaminated soil was analyzed for chemical characteristics, nutrients, and Cd residue after the plant harvest. The addition of QLB to soil caused a significant increase in the soil's growth potential and physic nut yield components (P < 0.05), a significant decrease in the Cd residue in the plant (P < 0.05), and a significant increase in the chemical characteristics, nutrients, and Cd residue in soil (P < 0.05). In conclusion, QLB application can significantly decrease the bioavailability of Cd to physic nut plants, increase plant growth potential and yield, and has potential to remediate Cd-contaminated soil. However, QLB levels higher than 15 g kg -1 soil mixture were not advisable because QLB is alkaline in nature, and this can affect soil pH. 2018-06-11T04:31:54Z 2018-06-11T04:31:54Z 2012-01-01 Article Chilean Journal of Agricultural Research. Vol.72, No.1 (2012), 125-132 10.4067/S0718-58392012000100020 07185839 07185820 2-s2.0-84865360666 https://repository.li.mahidol.ac.th/handle/123456789/13521 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84865360666&origin=inward |
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Agricultural and Biological Sciences Tawadchai Suppadit Viroj Kitikoon Anucha Phubphol Penthip Neumnoi Effect of quail litter biochar on productivity of four new physic nut varieties planted in cadmium-contaminated soil |
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Biochar can improve soil structure and water retention, enhance nutrient availability and retention, ameliorate acidity, and reduce heavy metal toxicity to plant roots. In this study, a basin experiment was conducted to investigate the effects of quail litter biochar (QLB) on the availability of Cd to physic nut (Jatropha curcas L.) plants. QLB was applied to the soil in which four new physic nut varieties (Takfa, Doi Saket, Lao, and Rayong) in factorial combinations at four levels (0, 5, 10, and 15 g kg -1 soil) to soil that contained 60.8 mg Cd kg -1 . After transplanting plant height and canopy radius were measured every 2-mo and the number of leaves and branches at 6-mo, while yield components and Cd residues were measured at 8-mo intervals. The contaminated soil was analyzed for chemical characteristics, nutrients, and Cd residue after the plant harvest. The addition of QLB to soil caused a significant increase in the soil's growth potential and physic nut yield components (P < 0.05), a significant decrease in the Cd residue in the plant (P < 0.05), and a significant increase in the chemical characteristics, nutrients, and Cd residue in soil (P < 0.05). In conclusion, QLB application can significantly decrease the bioavailability of Cd to physic nut plants, increase plant growth potential and yield, and has potential to remediate Cd-contaminated soil. However, QLB levels higher than 15 g kg -1 soil mixture were not advisable because QLB is alkaline in nature, and this can affect soil pH. |
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Thailand National Institute of Development Administration |
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Thailand National Institute of Development Administration Tawadchai Suppadit Viroj Kitikoon Anucha Phubphol Penthip Neumnoi |
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Article |
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Tawadchai Suppadit Viroj Kitikoon Anucha Phubphol Penthip Neumnoi |
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Tawadchai Suppadit |
title |
Effect of quail litter biochar on productivity of four new physic nut varieties planted in cadmium-contaminated soil |
title_short |
Effect of quail litter biochar on productivity of four new physic nut varieties planted in cadmium-contaminated soil |
title_full |
Effect of quail litter biochar on productivity of four new physic nut varieties planted in cadmium-contaminated soil |
title_fullStr |
Effect of quail litter biochar on productivity of four new physic nut varieties planted in cadmium-contaminated soil |
title_full_unstemmed |
Effect of quail litter biochar on productivity of four new physic nut varieties planted in cadmium-contaminated soil |
title_sort |
effect of quail litter biochar on productivity of four new physic nut varieties planted in cadmium-contaminated soil |
publishDate |
2018 |
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https://repository.li.mahidol.ac.th/handle/123456789/13521 |
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1763497059599515648 |