Berg A S, Joern B C
Department of Agronomy, 915 W. State Street, Purdue University, West Lafayette, IN 47907, USA.
J Environ Qual. 2006 Aug 9;35(5):1855-62. doi: 10.2134/jeq2005.0420. Print 2006 Sep-Oct.
Phosphorus retention in soils is influenced by the form of P added. The potential impact of one P compound on the sorption of other P compounds in soils has not been widely reported. Sorption isotherms were utilized to quantify P retention by benchmark soils from Indiana, Missouri, and North Carolina when P was added as inorganic P (Pi) or organic P (beta-D-glucose-6-phosphate, G6P; adenosine 5'-triphosphate, ATP; and myoinositol hexaphosphate, IP6) and to determine whether soil P sorption by these organic P compounds and Pi was competitive. Isotherm supernatants were analyzed for pH and total P using standard protocols, while Pi and organic P compounds were assayed using ion chromatography. Under the controlled conditions of this study, the affinity of all soils for P sources followed the order IP6 > G6P > ATP > Pi. Each organic P source had a different potential to desorb Pi from soils, and the order of greatest to least Pi desorption was G6P > ATP > IP6. Glucose-6-phosphate and ATP competed more directly with Pi for sorption sites than IP6 at greater rates of P addition, but at the lesser rates of P addition, IP6 actually desorbed more Pi. Inositol hexaphosphate was strongly sorbed by all three soils and was relatively unaffected by the presence of other P sources. Decreased total P sorption due to desorption of Pi can be caused by relatively small additions of organic P, which may help explain vertical P movement in manured soils. Sorption isotherms performed using Pi alone did not accurately predict total P sorption in soils.
土壤中磷的保留受添加磷的形态影响。一种磷化合物对土壤中其他磷化合物吸附的潜在影响尚未得到广泛报道。当添加无机磷(Pi)或有机磷(β-D-葡萄糖-6-磷酸,G6P;腺苷5'-三磷酸,ATP;和肌醇六磷酸,IP6)时,利用吸附等温线对来自印第安纳州、密苏里州和北卡罗来纳州的基准土壤的磷保留进行量化,并确定这些有机磷化合物和Pi对土壤磷的吸附是否具有竞争性。使用标准协议分析等温线上清液的pH值和总磷,同时使用离子色谱法测定Pi和有机磷化合物。在本研究的受控条件下,所有土壤对磷源的亲和力顺序为IP6>G6P>ATP>Pi。每种有机磷源从土壤中解吸Pi的潜力不同,解吸Pi最多到最少的顺序为G6P>ATP>IP6。在较高的磷添加速率下,葡萄糖-6-磷酸和ATP比IP6更直接地与Pi竞争吸附位点,但在较低的磷添加速率下,IP6实际上解吸的Pi更多。肌醇六磷酸被所有三种土壤强烈吸附,并且相对不受其他磷源存在的影响。相对少量的有机磷添加可能会导致Pi解吸从而降低总磷吸附,这可能有助于解释施肥土壤中磷的垂直移动。仅使用Pi进行的吸附等温线不能准确预测土壤中的总磷吸附。