Effects of microbial-phytoremediation on plant diversity and soil physico-chemical properties in northern shaanxi coal mining area, china

Pub Date : 2023-08-31 DOI:10.3329/bjb.v52i20.68290
Shenglan Ye, Yang Zhang, Xiaoxiao Shu
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Abstract

Effects of different microorganisms-plant combination on the diversity of plant and soil physics in the mining area were studied. Results showed that the number of species, total number and coverage of Soil Remediation + Vetiver + Sea-buckthorn (AH) treatment were 13, 298 and 89.8%, respectively, which were significantly higher than other treatments. Soil water content in different treatments was the highest at 20 cm. The pH value of the different treatments decreased significantly, and the pH value of AH was the lowest (7.14). The total nitrogen (TN) content of GH and GS were the highest, which were 0.54 and 0.51 g/kg, respectively. The contents of phosphorus (P) and available potassium (K) were the highest in AX treatment, reaching 57.1 and 194 mg/kg. Treatment with different inoculants significantly increased soil enzyme activity. The urease activity of GH was the highest, which was 0.872 mg/g. The sucrase activity and catalase content of AH and AX were the highest, which were 8.99, 8.53 mg/g and 2.145 ml/g, 1.872 ml/g, respectively. The phosphatase activities of QH and AH treatments were the highest at 234 and 229 mg/g, which were 6 times and 5.9 times than that of CK. Comprehensive analysis showed that microbial inoculum + mixed seeding mode can effectively improve soil fertility and enzyme activity, and the effect of AH was the best. Bangladesh J. Bot. 52(2): 495-502, 2023 (June) Special
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微生物-植物修复对陕北矿区植物多样性和土壤理化性质的影响
研究了不同微生物-植物组合对矿区植物多样性和土壤物理特性的影响。结果表明:土壤修复+香根草+沙棘(AH)处理的植物种数、总数和盖度分别为13、298和89.8%,显著高于其他处理;不同处理土壤含水量在20 cm处最高。不同处理的pH值均显著降低,其中AH的pH值最低(7.14)。GH和GS的总氮(TN)含量最高,分别为0.54和0.51 g/kg。磷(P)和速效钾(K)含量以AX处理最高,分别为57.1和194 mg/kg。不同接种剂处理显著提高了土壤酶活性。生长激素脲酶活性最高,为0.872 mg/g。AH和AX的蔗糖酶活性和过氧化氢酶含量最高,分别为8.99、8.53 mg/g和2.145 ml/g、1.872 ml/g。QH和AH处理的磷酸酶活性最高,分别为234和229 mg/g,分别是对照的6倍和5.9倍。综合分析表明,微生物接种+混播模式能有效提高土壤肥力和酶活性,其中以AH效果最好。[j] .植物学报,52(2):495-502,2023(6):特刊
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