[Effects of Four Amendments on Cadmium Bioavailability and Enzyme Activity in Purple Soil].

Q2 Environmental Science Huanjing Kexue/Environmental Science Pub Date : 2024-06-08 DOI:10.13227/j.hjkx.202307199
Xin-Ru Ding, Man Xu, Ning-Zhen Yan, Zi-Fang Wang, Zhi-Qi Li, Rong Huang, Yang Wang, Wen-Cai Dai, Ming Gao
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Abstract

In this study, the effects of four types of amendments on effective Cd and Cd content in different parts of prickly ash soil and soil enzyme activity were studied, which provided scientific basis for acidification improvement of purple soil and heavy metal pollution control. A field experiment was conducted. Six treatments were set up:no fertilizer (CK), only chemical fertilizer (F), lime + chemical fertilizer (SF), organic fertilizer + chemical fertilizer (OM), biochar + chemical fertilizer (BF), and vinasse biomass ash + chemical fertilizer (JZ). Soil pH; available Cd (DTPA-Cd); Cd content in branches, leaves, shells, and seeds of Zanthoxylum; as well as the activities of catalase (S-CAT), acid phosphatase (S-ACP), and urease (S-UE) in different treatments were studied, and their relationships were clarified. The results showed following:① The two treatments of vinasse biomass ash + chemical fertilizer and lime + chemical fertilizer significantly increased soil pH (P < 0.05) to 3.39 and 2.25 units higher than that in the control, respectively. Compared with that in the control treatment, the content of available Cd in soil under vinasse biomass ash + chemical fertilizer and lime + chemical fertilizer treatment decreased by 28.91 % and 20.90 %, respectively. ② The contents of Cd in leaves, shells, and seeds of Zanthoxylum were decreased by 31.33 %, 30.24 %, and 34.01 %, respectively. The Cd enrichment ability of different parts of Zanthoxylum was different, with the specific performances being leaves > branches > seeds > shells. Compared with that of the control, the enrichment coefficient of each part of Zanthoxylum treated with vinasse biomass ash + chemical fertilizer decreased significantly(P < 0.05)by 27.54 %-40.0 %. ③ The changes in catalase and urease activities in soil treated with amendments were similar. Compared with those in the control group, the above two enzyme activities were significantly increased by 191.26 % and 199.50 %, respectively, whereas the acid phosphatase activities were decreased by 16.45 %. Correlation analysis showed that soil available Cd content was significantly negatively correlated with soil pH value(P < 0.01), S-CAT and S-UE enzyme activities were significantly positively correlated with soil pH(P < 0.01), and the soil available Cd content was significantly negatively correlated (P < 0.01); the S-ACP enzyme showed the complete opposite trends. The application of lime and vinasse biomass ash to acidic purple soil had the most significant effect on neutralizing soil acidity. It was an effective measure to improve acidic purple soil and prevent heavy metal pollution by reducing the effective Cd content in soil and improving the soil environment while inhibiting the absorption and transfer of Cd in various parts of Zanthoxylum.

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[四种改良剂对紫色土壤中镉生物利用率和酶活性的影响]。
本研究研究了四种改良剂对刺灰土壤有效镉和不同部位镉含量以及土壤酶活性的影响,为紫色土酸化改良和重金属污染控制提供了科学依据。进行了田间试验。试验设置了六个处理:不施肥(CK)、只施化肥(F)、石灰+化肥(SF)、有机肥+化肥(OM)、生物炭+化肥(BF)和蔗渣生物灰+化肥(JZ)。研究了不同处理的土壤 pH 值、可利用镉(DTPA-Cd)、黄龙菜枝叶、果壳和种子中的镉含量,以及过氧化氢酶(S-CAT)、酸性磷酸酶(S-ACP)和脲酶(S-UE)的活性,并阐明了它们之间的关系。结果表明:①蔗渣生物灰+化肥和石灰+化肥两种处理的土壤 pH 值(P <0.05)分别比对照显著提高 3.39 和 2.25 个单位。与对照相比,蔗渣灰+化肥和石灰+化肥处理土壤中的可利用镉含量分别降低了 28.91 % 和 20.90 %。石灰+化肥处理中土壤中的可利用镉含量分别降低了 28.91 % 和 20.90 %;②柘树叶、壳和种子中的镉含量分别降低了 31.33 %、30.24 % 和 34.01 %。不同部位对镉的富集能力不同,具体表现为叶片、枝条、种子和外壳。与对照相比,经蔗渣生物灰+化肥处理的黄樟各部位的富集系数显著下降(P <0.05)27.54 %-40.0 %。土壤中过氧化氢酶和脲酶活性的变化相似。与对照组相比,上述两种酶活性分别明显提高了 191.26 % 和 199.50 %,而酸性磷酸酶活性则降低了 16.45 %。相关分析表明,土壤可利用镉含量与土壤pH值呈显著负相关(P< 0.01),S-CAT和S-UE酶活性与土壤pH值呈显著正相关(P< 0.01),土壤可利用镉含量与土壤pH值呈显著负相关(P< 0.01);S-ACP酶活性与土壤pH值呈完全相反的趋势。在酸性紫色土中施用石灰和蔗渣生物灰,对中和土壤酸度的效果最为显著。通过降低土壤中有效镉含量,改善土壤环境,同时抑制紫云英各部位对镉的吸收和转移,是改良酸性紫色土和防治重金属污染的有效措施。
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来源期刊
Huanjing Kexue/Environmental Science
Huanjing Kexue/Environmental Science Environmental Science-Environmental Science (all)
CiteScore
4.40
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0.00%
发文量
15329
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[Source and Influencing Factor Analysis of Soil Heavy Metals Based on PMF Model and GeoDetector]. [Spatial and Temporal Changes in Habitat Quality and Driving Forces in Typical Loess Hill and Gully Areas:A Case Study of the Zuli River Basin]. [A Method for Fine Mapping of Carbon Emissions from Regional Land Use Change and Its Application]. [Analysis of Spatial Distribution of Ecosystem Services and Driving Factors in Northeast China]. [Analysis of Spatiotemporal Differences and Influencing Factors of Land Use Carbon Emissions in Ningxia].
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