Rice-husk biochar for better yield of lowland rainfed rice in Lombok, Indonesia

L. Hadiawati, T. Sugianti, Y. Triguna
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引用次数: 6

Abstract

Biochar is one of soil amendment that less popular to apply on rice cultivation when compared to other horticulture commodieties in West Nusa Tenggara (WNT) Province. This study aimed to evalute the effect of rice husk biochar application on growth and yield of rice grown on lowland rainfed of WNT Province. Experiment was carried out from January to April 2017 at Narmada Research Station of AIAT (Assessment Institute for Agricultural Technology) of WNT Province, Indonesia. Experimental design used was factorial complete randomized block design for two factors with three replications. The first factor was the application of organic fertilizer; (T1) control at 0 t/ha, (T2) cattle manure at 5 t/ha, (T3) cattle manure and biochar (50:50) at 5 t/ha. The second factor was rice varieties; (V1) Inpari 41 Tadah Hujan Agritan, (V2) Inpari 42 Agritan GSR, and (V3) Inpari 43 Agritan GSR. The results showed a significant interaction effect on above-ground (AGB) biomass where the highest AGB obtained in T3V3. Higher AGB was indicating better growth and it was likely contribute to higher grain yield that was found also at T3V3. Significant main effect of organic fertilizer were found on plant height, percentage of filled spikelet, and 1000 grain weight. Although there was no significance difference, in average, additional biochar in T3 improved grain yield to 6.47 t/ha, followed by T2 at 6.11 t/ha, and the lowest was T1 at 5.80 t/ha.Biochar is one of soil amendment that less popular to apply on rice cultivation when compared to other horticulture commodieties in West Nusa Tenggara (WNT) Province. This study aimed to evalute the effect of rice husk biochar application on growth and yield of rice grown on lowland rainfed of WNT Province. Experiment was carried out from January to April 2017 at Narmada Research Station of AIAT (Assessment Institute for Agricultural Technology) of WNT Province, Indonesia. Experimental design used was factorial complete randomized block design for two factors with three replications. The first factor was the application of organic fertilizer; (T1) control at 0 t/ha, (T2) cattle manure at 5 t/ha, (T3) cattle manure and biochar (50:50) at 5 t/ha. The second factor was rice varieties; (V1) Inpari 41 Tadah Hujan Agritan, (V2) Inpari 42 Agritan GSR, and (V3) Inpari 43 Agritan GSR. The results showed a significant interaction effect on above-ground (AGB) biomass where the highest AGB obtained in T3V3. Higher AG...
在印度尼西亚龙目岛,稻壳生物炭提高了低地雨养水稻的产量
在西努沙登加拉省,生物炭是一种土壤改良剂,与其他园艺商品相比,在水稻种植中应用较少。本研究旨在评价稻壳生物炭对WNT省旱作水稻生长和产量的影响。试验于2017年1 - 4月在印度尼西亚WNT省农业技术评价研究所Narmada研究站进行。试验设计采用两因子完全随机区组设计,3个重复。第一个因素是施用有机肥;(T1)控制在0吨/公顷,(T2)牛粪5吨/公顷,(T3)牛粪和生物炭(50:50)控制在5吨/公顷。第二个因素是水稻品种;(V1) Inpari 41 Tadah Hujan agitan, (V2) Inpari 42 agitan GSR, (V3) Inpari 43 agitan GSR。结果表明,对地上生物量有显著的互作效应,其中T3V3的地上生物量最高。较高的AGB表明生长较好,可能有助于提高T3V3的粮食产量。有机肥对水稻株高、灌穗率和千粒重有显著的主效应。虽然没有显著性差异,但平均而言,T3添加生物炭可使粮食产量提高6.47 t/ha,其次是T2,为6.11 t/ha,最低的是T1,为5.80 t/ha。在西努沙登加拉省,生物炭是一种土壤改良剂,与其他园艺商品相比,在水稻种植中应用较少。本研究旨在评价稻壳生物炭对WNT省旱作水稻生长和产量的影响。试验于2017年1 - 4月在印度尼西亚WNT省农业技术评价研究所Narmada研究站进行。试验设计采用两因子完全随机区组设计,3个重复。第一个因素是施用有机肥;(T1)控制在0吨/公顷,(T2)牛粪5吨/公顷,(T3)牛粪和生物炭(50:50)控制在5吨/公顷。第二个因素是水稻品种;(V1) Inpari 41 Tadah Hujan agitan, (V2) Inpari 42 agitan GSR, (V3) Inpari 43 agitan GSR。结果表明,对地上生物量有显著的互作效应,其中T3V3的地上生物量最高。高AG)……
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