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Application of Rice Straw and Tithonia for Increasing Fertilizer Use Efficiency on Paddy Soil

机译:稻草和二氧化钛在提高水稻土肥料利用率上的应用

摘要

The research was aimed to obtain a combination of rice straw (S) and tithonia (Tithonia diversifolia) (T) to increasechemical fertilizers use efficiency (FUE) on paddy soil which was conducted in Sicincin, Padang Pariaman Regencyin 2008. The experiment consisted of 8 treatments (A= recommendation input: 200 kg Urea ha-1 (Ru) + 100 kg SP-36ha-1 (Rp) + 75 kg KCl ha-1 (Rk)), B = Ru + 2Rp, C = 2.5 Mg Tithonia (T) ha-1 + 75% Ru+10 kg SP36 ha-1 as a starter Pfertilizer (P-s), D = T + 75% Ru, E = 5 Mg Rice Straw (S) ha-1 (Sr) + Ru + Rp + Rk, F = Sr + Ru + P-s, G = T + 0.5Sr + 75%Ru + P-s, H = T + 0.5S + 50% Ru + P-s) with three replications. The treatments were randomly allocated in each blockRandomized Block Design (RBD). The results showed that application of fresh organic matter (OM) from tithonia +75% recommended Urea without KCl and P-starter addition on intensification rice field increased synthetic FUE onpaddy soil. Application of tithonia for 2.5 Mg ha-1 + 75% of recommended Urea (150 kg Urea), without synthetic Pand K fertilizers seemed to be the best treatment to get the highest yield (8.08 Mg Harvested Dry Seed (HDS) ha-1(= 7.05 Mg Milled Dry Seed (MDS) ha-1) of rice, then it was followed by the treatment based on farmer tradition inputwith the yield was 7.25 Mg HDS ha-1 (= 6.41 Mg MDS ha-1). The use of fresh tithonia as much as 2.5 Mg ha-1 basedon its dry weight could be considered as an alternative fertilizer for rice crops in intensification rice field.[How to Cite: Gusnidar, S Yasin, Burbey, Yulnafatmawita, S Saleh and R Andhika. 2012. Application of Rice Straw and Tithonia for Increasing Fertilizer Use Efficiency on Paddy Soil. J Trop Soils 17 (2) : 151-156. Doi: 10.5400/jts.2012.17.2.151] [Permalink/DOI: www.dx.doi.org/10.5400/jts.2012.17.2.151]
机译:该研究旨在获得稻草(S)和二氧化钛(Tithonia diversifolia)(T)的组合,以提高稻田上化肥的使用效率(FUE),该研究在Padang Pariaman Regency的Sicincin进行。该实验包括8个处理(A =推荐输入:200千克尿素ha-1(Ru)+ 100千克SP-36ha-1(Rp)+ 75千克KCl ha-1(Rk)),B =钌+ 2Rp,C = 2.5 Mg氧化钛(T)ha-1 + 75%Ru + 10公斤SP36 ha-1作为入门施肥剂(Ps),D = T + 75%Ru,E = 5 Mg稻草(S)ha-1(Sr)+ Ru + Rp + Rk,F = Sr + Ru + Ps,G = T + 0.5Sr + 75%Ru + Ps,H = T + 0.5S + 50%Ru + Ps),重复三次。在每个区块中,随机分配治疗。随机化区块设计(RBD)。结果表明,在集约化稻田上,在不添加KCl和P-起动剂的情况下,使用+ 75%的二氧化钛推荐的新鲜有机物(OM)可以增加稻田土壤FUE的合成。施用二氧化钛2.5 Mg ha-1 +建议使用的尿素(150 kg尿素)的75%,不使用合成钾肥,似乎是获得最高产量的最佳处理方法(8.08 Mg收获的干种子(HDS)ha-1( = 7.05 Mg碾磨干种子(MDS ha-1),然后根据农民的传统投入进行处理,产量为7.25 Mg HDS ha-1(= 6.41 Mg MDS ha-1)。以干重计,新鲜的二氧化钛高达2.5 Mg ha-1可被视为集约化稻田水稻作物的替代肥料。[参考文献:Gusnidar,S Yasin,Burbey,Yulnafatmawita,S Saleh和R Andhika。2012 。稻草和二氧化硫在提高稻田土壤肥料利用率上的应用。J作物土壤17(2):151-156。Doi:10.5400 / jts.2012.17.2.151] [Permalink / DOI:www.dx.doi.org /10.5400/jts.2012.17.2.151]

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