生物炭固定解鸟氨酸拉乌尔菌对紫色土磷钾有效性的影响

Effect of Biochar Immobilized Raoultella Ornithinolytica on the Availability of Phosphorus and Potassium in Purplish Soil

  • 摘要: 筛选能为解鸟氨酸拉乌尔菌(Raoultella ornithinolytica,Ro)提供适宜生存空间的生物炭,探讨固定Ro的生物炭对不同性质紫色土磷(P)钾(K)有效性的影响。采用限氧裂解法分别在不同温度(300 ℃、500 ℃和700 ℃)和原材料下(玉米秆、小麦秆和稻壳)制备生物炭。利用噻唑蓝(MTT)比色法筛选固定载体,通过傅立叶变换衰减全反射红外光谱法(ATR-FTIR)表征其性能和结构;采用室内土培试验探讨单施生物炭(BC)、Ro及固定Ro的生物炭(Ro-BC)对不同性质紫色土速效磷钾的影响。MTT结果表明,以热解温度500 ℃的玉米秸秆炭(MSC500)为最佳载体;红外光谱结果显示,500 ℃玉米秸秆炭表面官能团的C=C和-OH的伸缩振动峰较明显,C-O-C键伸缩振动峰加宽变深;室内培养试验表明,施入Ro和Ro-BC均可显著提高酸性、中性和石灰性紫色土速效磷、速效钾含量和细菌数量。以Ro-BC对土壤速效磷和细菌数量的提升效果最好,提升效果分别达61.1% ~ 276.3%和22.8% ~ 82.5%。但培养至168 h时,速效磷出现下降趋势;对速效钾而言,酸性紫色土以Ro处理对其提升效果最好(46.3%),中性和石灰性紫色土则以Ro-BC处理提升效果最好(29.8%和71.23%),针对不同Ro筛选适宜的固定载体可提高Ro菌株活性,改善土壤微环境,进而有助于提高土壤磷钾有效性。

     

    Abstract: In order to screen the biochar (BC) that can provide suitable living space for Raoultella ornithinolytica (Ro), a series of biochar carriers were obtained by maize straw (MSC), wheat straw (WSC) and rice husk (RHC) under the oxygen limited conditions by 300 ℃, 500 ℃ and 700 ℃, respectively. The effects of BC, Ro and Ro-BC on the availability of P and K in purplish soil were explored by lab-incubation with the carriers by MTT colorimetric method and ATR-FTIR method. The results showed that MSC500 was the best carrier for Ro with an obvious stretching vibration peak by the functional groups of C = C and —OH, and the stretching vibration peak of C—O—C bond was widened and deepened as well. Moreover, the application of Ro and Ro-BC significantly improved the bacteria quantity and the availability of P and K in different purplish soils. Compared with the control, Ro-BC had the best effect on the bacteria quantity and Olsen-P, which increased by 61.1% ~ 276.3% and 22.8% ~ 82.5%, respectively. However, the Olsen-P was decreased after 168h incubated. For available K, the application of Ro had the best effect on acid purplish soil (increasing by 46.3%), while the application of Ro-BC had the best effect on the neutral and calcareous purplish soils (increasing by 29.8 % and 71.23 %, respectively). In general, suitable immobilized materials for different Ro could increase the activities of Ro strains, improving soil microenvironment to promote the availability of soil P and K.

     

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