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1.
改良剂对滴灌棉田镉分布及迁移特征的影响   总被引:1,自引:0,他引:1  
通过田间桶栽试验研究了高浓度镉(40mg/kg)条件下,4种改良剂(有机—无机复合稳定剂、无机高分子复配材料、聚丙烯酸盐复配材料、有机高分子复配材料)对棉田土壤剖面中土壤pH、阳离子交换量(CEC)、镉含量及其形态分布迁移的影响。结果表明:(1)4种改良剂均显著提高了棉田土壤剖面各层的pH和CEC,无机高分子复配材料在0—20cm土层效果最好,分别增加了0.43个单位和4.43cmol/kg;(2)改良剂促进土壤可交换态镉向其余4种形态的转化,相关分析表明碳酸盐结合态与可交换态镉含量呈极显著负相关(P0.01),在0—20cm和20—40cm土层中效果尤为突出,以无机高分子复配材料对土壤可交换态镉的降低效果最好,降低了3.61mg/kg;(3)各土层中的pH和CEC均与可交换态镉呈负相关,与其他形态呈正相关。即改良剂通过改变土壤pH和CEC,影响土壤镉的分布及迁移,从而降低镉的有效性,达到改善土壤环境的目的。  相似文献   

2.
《土壤》2018,(2)
在全国采集8个水稻产区、不同镉(Cd)含量的水稻土,添加0~4 mg/kg外源Cd,通过盆栽试验,分析水稻土、水稻籽粒Cd含量间的相关性,基于水稻籽粒Cd含量符合食品安全国家标准污染物限值(GB 2762–2012)的前提,确定8个水稻产地土壤的Cd临界值。结果表明:水稻土中Cd含量为0.20~6.27 mg/kg时,随土壤Cd浓度增加,水稻生长没有出现Cd毒害症状。籽粒Cd含量随水稻土Cd浓度的增加而增加,Logistic方程拟合表明籽粒Cd含量和水稻土Cd浓度间相关性显著;依据食品安全国家标准中稻米Cd限量值(0.2 mg/kg),反推得到8种水稻土Cd临界值范围为0.70~4.79 mg/kg,与现行土壤环境质量标准(GB15618–1995)相比,均高于其相应限值(0.3 mg/kg、pH≤7.5,0.6 mg/kg、pH7.5);对土壤理化性质和水稻土Cd临界值间关系进行多元回归分析,发现水稻土Cd临界值与pH和土壤黏粒显著相关(R2=0.83,P0.01)。  相似文献   

3.
在全国采集8个水稻产区、不同镉(Cd)含量的水稻土,添加0~4 mg/kg外源Cd,通过盆栽试验,分析水稻土、水稻籽粒Cd含量间的相关性,基于水稻籽粒Cd含量符合食品安全国家标准污染物限值(GB 2762–2012)的前提,确定8个水稻产地土壤的Cd临界值。结果表明:水稻土中Cd含量为0.20~6.27 mg/kg时,随土壤Cd浓度增加,水稻生长没有出现Cd毒害症状。籽粒Cd含量随水稻土Cd浓度的增加而增加,Logistic方程拟合表明籽粒Cd含量和水稻土Cd浓度间相关性显著;依据食品安全国家标准中稻米Cd限量值(0.2 mg/kg),反推得到8种水稻土Cd临界值范围为0.70~4.79 mg/kg,与现行土壤环境质量标准(GB15618–1995)相比,均高于其相应限值(0.3 mg/kg、pH≤7.5,0.6 mg/kg、pH7.5);对土壤理化性质和水稻土Cd临界值间关系进行多元回归分析,发现水稻土Cd临界值与pH和土壤黏粒显著相关(R2=0.83,P0.01)。  相似文献   

4.
镉(Cd)是我国农田土壤首要污染物,在南方一些地区稻米Cd超标严重,土壤Cd风险评估十分必要。采用长沙某地稻田土壤—糙米Cd点对点数据,通过生物富集系数(BCF)和Burr-Ⅲ物种敏感性分布(SSD)方程,构建了基于稻米食品卫生标准(GB2762-2012)和保护95%稻米品种的土壤Cd限值(HC5),探讨了HC5与土壤性质参数的量化关系和预测模型,并与我国土壤环境质量标准(GB15618-1995/2008)进行了比较。结果表明,pH、有机质(OM)和土壤全镉(TCd)对HC5影响显著,分别可控制HC5变异的62.2%、19.4%和18.3%。基于土壤pH和OM(TCd)的两因子模型能对HC5较为准确地预测,决定系数R2可达0.817(0.802)。土壤pH、TCd与HC5呈正相关,而OM与之呈负相关。随着数值的增大,TCd和OM对HC5的影响降低,而pH影响相对稳定。本研究可为科学合理地进行稻田土壤风险管控及产地土壤环境质量基准研究提供一定依据。  相似文献   

5.
不同开发程度对沙坡头南山台子绿洲土壤性质的影响   总被引:1,自引:0,他引:1  
《土壤通报》2019,(5):1045-1052
在宁夏沙坡头南山台子扬黄灌溉绿洲选取草地、新耕地、老耕地、园地四种主要土地利用类型,通过采样分析其土壤理化性质特点,揭示开发过程、不同开发程度对当地土壤性质的影响。结果表明:(1)绿洲开发过程中,土壤p H呈降低趋势;随着灌溉时间的延长,土壤电导率逐渐下降。(2)草地被开发初期,土壤中养分含量出现不同程度的降低,以TN、TP、SOC下降最为显著(P 0.05);此后随着土地利用年限的延长,土壤养分含量有所增加且以园地变化最为显著(P 0.05)。(3)草地被开发后,土壤极细砂颗粒含量增加(P 0.05),随着土地利用年限延长土壤细黏粒含量增加,以开发为园地的增加最为显著(P 0.05)。(4)土壤细黏粒、粗黏粒与AN、TP、AP、SOC呈极显著正相关关系(P 0.01),与pH呈负相关关系(P 0.01);粉粒、极细砂与pH呈正相关关系(P 0.01),与其他因子呈负相关关系(P 0.01);细砂粒与pH呈正相关关系(P 0.01),与TN、TP为呈相关关系;粗砂粒只与SOC呈显著正相关关系(P 0.05)。(5)灌区土壤颗粒分形维数介于2.58~2.75之间,不同土地利用类型土壤颗粒分形维数大小依次为园地(2.75)老耕地(2.73)草地(2.70)新耕地(2.58)。(6)土壤颗粒分形维数AN、TN、TP、AP、SOC呈正相关关系,与pH呈负相关关系;与土壤细黏粒、粗黏粒均呈对数正相关关系(R2=0.6214,N=105,P 0.01;R2=0.5824,N=105,P 0.01),与粉粒、细砂粒呈对数负相关关系(R2=0.1172,N=105,P 0.01),与极细砂呈线性负相关关系(R2=0.6352,N=105,P 0.01),与粗砂粒相关性不显著(N=105,P 0.05)。表明灌区长期土地开发利用能够有效改善土壤性质,促使土壤肥力提高、土壤颗粒细化。  相似文献   

6.
四川盆地西缘土壤阳离子交换量的特征及影响因素   总被引:4,自引:0,他引:4  
土壤阳离子交换量(CEC)因其对土壤肥力保护及污染评估具有重要意义而受到日益重视。对四川盆地西缘黄壤、黄棕壤、水稻土、紫色土、潮土和石灰土CEC进行系统比较及影响因素研究,结果表明:黄壤、水稻土和紫色土CEC显著低于黄棕壤(P0.05),显著高于潮土(P0.05)。同时,土壤CEC与年均温、积温呈负相关关系(P0.01),而与年均降水量和湿润指数呈二次函数关系(P0.01);山地土壤的CEC显著高于平原和丘陵土壤(P0.05),且土壤CEC随海拔增加而极显著上升(P0.01);冰碛物发育土壤的CEC显著高于河流冲积物和紫色粉砂岩发育土壤(P0.05)。主成分分析结果表明,温度和降水组成的气候因素为该区土壤CEC的决定性影响因素。  相似文献   

7.
为指导设施栽培的安全生产,以设施黄瓜为研究对象,通过连续2年镉(Cd)污染微区试验,对设施黄瓜菜田土壤Cd污染预测模型及阈值开展研究。结果表明,设施黄瓜土壤全量Cd和有效态Cd含量均与黄瓜Cd含量呈极显著的线性、对数、幂函数和指数关系,其中,全量Cd含量以指数预测模型的相关系数最高,有效态Cd含量以线性预测模型的相关系数最高。依据国家食品卫生标准,利用呈极显著相关的模型,提出了基于土壤pH≥7.5且质地为壤土的设施黄瓜土壤全量Cd和有效态Cd的风险阈值分别为2.13mg·kg–1和0.26mg·kg–1。利用土壤敏感性指标脲酶活性对该阈值进行验证,结果表明土壤全量Cd污染达2.74 mg·kg–1时才会引起土壤脲酶活性显著下降,而≤2.13 mg·kg–1的土壤全量Cd含量并未对土壤脲酶产生明显影响。可见,通过土壤脲酶指标验证后确定的阈值是可行的;并推荐当土壤中全量Cd0.8 mg·kg–1且Cd≤2.13 mg·kg–1(pH≥7.5)时,选择黄瓜替代其他风险作物能够满足食用农产品质量的安全要求。该研究结果可为我国北方土壤Cd污染地区设施黄瓜的安全生产提供科学理论依据。  相似文献   

8.
祁连山东段青海云杉林区土壤氮矿化与土壤因子的相关性   总被引:4,自引:0,他引:4  
以祁连山东段青海云杉(Picea crassifolia)林分布带土壤为研究对象,采用顶盖埋管的野外取样法和室内分析法,对海拔梯度上土壤铵态氮(NH+4-N)、硝态氮(NO-3-N)净矿化速率、氮净矿化量和净矿化速率进行测定分析,旨在探讨土壤净氮矿化量与气温降水和土壤理化性质的相关关系,以期建立环境变量与土壤氮矿化量和矿化速率模型,进而提高祁连山青海云杉林生产力及水源涵养能力。其结果表明:(1)土壤硝态氮、铵态氮净矿化速率、土壤净氮矿化量和矿化速率随海拔的升高差异性均极显著;土壤氮净矿化量和矿化速率随海拔梯度的升高呈"W"形变化,与硝态氮净矿化速率随海拔升高的变化规律一致,与铵态氮净矿化速率变化规律相反;在海拔2 800m处,硝态氮净矿化速率、土壤净氮矿化量和矿化速率均达到最大值,为0.372,160.3,0.44 mg/(kg·d),铵态氮净矿化速率出现最低值0.067 mg/(kg·d);在海拔2 900m处出现最低值,为0.155,94.7,0.26mg/(kg·d),在海拔3 100m处,铵态氮的净矿化速率出现最大值0.13mg/(kg·d);(2)回归分析表明,土壤净氮矿化量与年均气温呈极显著负相关(P0.01),R2=0.717 3;与年降水量呈极显著正相关(P0.01),R2=0.383 5;得出气候变化对土壤净氮矿化量的影响程度为:年均气温年降水量;(3)回归分析表明,土壤氮净矿化量与土壤全氮、有机质、含水量、pH值呈极显著正相关(P0.01),其R2依次为0.910 1,0.906 0,0.842 8,0.797 9;与土壤容重呈极显著负相关(P0.01),其R2为0.222 4;由R2值大小可知土壤养分对土壤净氮矿化量的影响程度为:土壤全氮土壤有机质土壤含水量土壤pH土壤容重。  相似文献   

9.
重庆地区酸性紫色土锌有效性及其影响因素研究   总被引:6,自引:0,他引:6  
以重庆地区紫色土为对象,研究了重庆地区酸性紫色土Zn有效性及主要影响因素。结果表明:供试紫色土全Zn含量为40.2~89.6mg/kg,有效Zn含量在0.2~4.2mg/kg之间;用直线、幂函数和指数函数回归方程对影响有效Zn的主要土壤因素进行回归拟合,土壤有效Zn与土壤全Zn、有机质、全N含量呈极显著正相关关系,相关系数依次为0.5243**、0.5308**、0.5097**;而与全P含量相关性显著(r=0.4637*);与土壤pH值呈极显著负相关关系(r=-0.5698**);通径分析表明,土壤理化性质对有效Zn的直接作用系数大小次序为全Zn全NpH,土壤全Zn对Zn有效性的直接作用最为明显。  相似文献   

10.
为阐明退耕湿地植被恢复对土壤氮素的影响,以黄河中游湿地河南武陟渠首段为研究对象,分析滩区耕地和退耕恢复区3种典型湿地植被群落土壤pH、有机质、总氮、硝态氮、铵态氮和氮储量的变化。研究结果表明,随着退耕恢复时间的增加,土壤pH呈下降趋势;土壤有机质、总氮总含量和氮储量呈逐渐增加趋势,分别由未恢复前的7.69~10.08g/kg,174.44~344.13mg/kg和0.07~0.09kg/m2增加到恢复1.5a后的15.83~29.53g/kg,739.13~1 076.99mg/kg和0.22~0.33kg/m2。恢复区土壤有机质、总氮总含量在空间上的变化表现为上层大于下层,土壤硝态氮含量均低于氨态氮含量。不同湿地植被土壤中总氮、有机质含量和氮储量存在显著差异(P0.05),其含量大小均依次为水蓼群落水烛群落芦苇群落。相关分析结果表明,研究区土壤中有机质含量与总氮之间存在极显著正相关关系(r=0.80;P0.01),铵态氮含量与有机质、总氮之间均存在极显著正相关关系(r=0.69,0.50;P0.01),硝态氮含量和有机质、总氮、铵态氮之间均存在一定正相关性,土壤pH与有机质和总氮之间均存在显著负相关关系(r=-0.49,-0.46;P0.05)。  相似文献   

11.
苏南典型区农田土壤硒-镉拮抗作用研究   总被引:3,自引:0,他引:3  
以苏南典型区2027套稻米-土壤样品的Se、Cd含量及其相关的元素地球化学调查数据为基础,通过元素相关性统计分析及生物富集系数(BCF)等分布特征研究,本文探讨了农田土壤中Se与Cd的拮抗作用及其控制因素。结果表明:1)土壤中Se和Cd分布共消长特征明显,两者之间具有显著正相关性、相关系数R最高可达0.87;2)有关岩石、陶瓷原料、河泥等均可成为农田富集Se、Cd的物质来源,且多为富Cd强于富Se,只有源于富硒岩石的富硒土壤可排除Cd污染干扰、其开发利用价值最高;3)稻米Se与Cd的生物富集系数多介于0.1~0.8之间,土壤偏碱性有利于稻籽吸收Se、偏酸性则有助于稻籽吸收Cd,受土壤Se、Cd同富集之影响,富硒米与镉超标大米可能同时出现;4)土壤富Se抑制稻米Cd吸收是有条件的,当土壤Se大于0.4mg/kg、总有机碳大于1.5%时,稻米Cd与土壤Se、Cd生物富集系数与土壤Se之间均存在显著负相关性,相关系数R分别为-0.74、-0.56;5)pH与Cd生物富集系数、TOC与Se生物富集系数之间也有显著负相关性,其相关系数R分别为-0.79、-0.65。  相似文献   

12.
Abstract

Water extraction of trace elements can simulate the concentration of elements in the soil solution from where the plant takes up the elements. The objective of this investigation was to determine the water extractable concentration of seven trace elements (Fe, Mn, Ni, Co, Mo, Pb and Cd) and to assess their relationship with soil properties of the Danube basin in Croatia. Soil samples from the surface layer (0–25 cm) of 74 sites, having different land uses (forest and agricultural land), were collected. Samples were analysed for total and water extractable trace elements as well as for pH, DOC, SOC and CEC. The concentrations of water extractable fraction of trace elements were on average: 20.14 mg kg?1 for Fe, 3.61 mg kg?1 for Mn, 0.07 mg kg?1 for Ni, 0.016 mg kg?1 for Co, 0.01 mg kg?1 for Mo, 0.01 mg kg?1 for Pb and 0.0009 mg kg?1 for Cd. Soil properties were in the following range: pH 4.3–8 (Avg: 6.35), DOC 6.1–73 mg l?1 (Avg: 26 mg l?1), CEC 1.3–24 cmol kg?1 (Avg: 9 cmol kg?1) and SOC 0.5–5% (Avg: 1.7%). The concentration of water extractable fraction of trace elements was significantly correlated with pH (p <0.001), DOC (p <0.001 – p <0.05) and CEC (p <0.001) but their relationship with total content of trace element and SOC was rather weak, suggesting that total metal alone cannot be an indicator of toxicity or deficiency. Results show that pH, DOC and CEC are important soil quality parameters taking part in the solubility control of trace metals in the soil rather than their total concentration. The difference between land uses has been observed as well, suggesting that a change in land use can cause a change in trace element solubility.  相似文献   

13.
植物吸取修复及钝化处理对后茬水稻镉吸收的影响   总被引:2,自引:0,他引:2  
采集湖南湘潭县某地镉(Cd)污染酸性农田土壤及其经伴矿景天分别吸取修复两季和三季后的土壤,采用盆栽试验研究了经伴矿景天修复及钝化改良与否对土壤pH、有效态Cd、Zn以及水稻生长和稻米Cd、Zn浓度的影响。结果表明:未改良的处理,随着修复次数的增加,土壤pH显著降低,降低幅度为0.26~0.38个单位;且修复两季、三季土壤CaCl_2提取态Cd浓度较未修复土壤分别降低19.4%、24.0%;修复后土壤种植水稻品种W184,其糙米中Cd浓度显著降低,但依然超标;修复三季土壤种植低积累水稻品种IRA7190,其糙米中Cd由0.47 mg/kg降为0.03 mg/kg。施加钝化剂海泡石和石灰(10 g/kg+1 g/kg)后,修复两季、三季土壤的pH显著升高,较未施钝化剂处理土壤pH分别提高0.95、0.72;土壤CaCl_2提取态Cd浓度分别降低79.8%、79.5%;修复两季、三季土壤上水稻W184糙米的Cd浓度与未施加钝化剂相比,分别降低27.3%、44.4%,均降至国家食品安全限值0.2 mg/kg以下;无论是否添加钝化剂,伴矿景天吸取修复三季的土壤上水稻IRA7190糙米中Cd浓度均仅0.03 mg/kg。  相似文献   

14.
中国农耕区土壤有机质含量及其与酸碱度和容重关系   总被引:4,自引:0,他引:4  
对我国农耕区土壤有机质区域变化及其与酸碱度和容重关系进行系统分析,为耕地地力提升和改善土壤结构提供支撑。基于国家级耕地长期定位监测点913个,统计分析全国及7大区域(东北NE、华北NC、西北NW、长江中游MYR、长三角YRD、华南SC、西南SW)耕层土壤有机质含量、酸碱度及容重变化特征。结果表明,全国农耕区耕层土壤有机质含量平均值为22.4~24.8 g/kg。其中有机质含量中等偏低的监测点位占比达72.5%。不同区域耕层土壤有机质含量差异显著(p<0.05),MYR耕层土壤有机质含量显著高于其他6个区域。全国农耕区耕层土壤pH和容重平均分别为(6.90±1.20),(1.30±0.15) g/cm3。不同土壤利用方式对土壤有机质、酸碱度及容重产生影响。水田耕层土壤有机质含量显著高于旱地,旱地耕层土壤pH和容重则显著高于水田。亚当斯方程和指数函数分别推荐拟合土壤容重对有机质含量响应关系(R2=0.09,RMSE=0.17,n=759),以及土壤pH对土壤有机质含量响应(R2=0.16,RMSE=1.24,n=886)。全国农耕区耕层土壤有机质含量总体中等偏低,呈现出东南向西北依次降低趋势。土壤pH及容重与土壤有机质呈现显著的负相关关系。亚当斯模型及指数方程能较好地拟合土壤容重及pH对有机质的响应关系,可用于非线性插值法补充土壤容重及pH缺失值。  相似文献   

15.
Chinese cabbage and surface soil samples (0–20 cm) from a periurban market garden in Yunnan Province (P.R. China) were collected to determine variations of cadmium (Cd) and zinc (Zn) contents in Chinese cabbage and the influence of soil factors. Mean Cd content was 0.49 mg kg?1 dry materials (DM) in Chinese cabbage, ranging between 0.23 and 1.34 mg kg?1 DM (n = 21 samples). Mean Zn content was 51.2 mg kg?1 DM, ranging from 34.9 to 157.5 mg kg?1 DM (n = 21 samples). The soil factors best predicting Chinese cabbage Cd and Zn contents were total and available Cd and Zn contents and cation exchange capacity (CEC). Soil samples and corresponding Chinese cabbage samples were divided into two groups: soils with low pH (<6.5, n = 10) and soils with high pH (>6.5, n = 11). Positive correlation between CEC with pH > 6.5 and Cd and Zn contents in Chinese cabbage were observed. Available trace element contents and CEC explained 77% and 69% of variation of Cd and Zn contents in Chinese cabbage, respectively. AEC (enrichment coefficient related to trace element availability) and BCF (bioaccumulation factors) could be used to understand Cd and Zn accumulation in Chinese cabbage.  相似文献   

16.
外源锌对水稻植株镉的累积差异分析   总被引:1,自引:0,他引:1  
通过水稻威优46盆栽种植试验,研究了外源Zn施用(0,40,80,160 mg/kg 4个水平)对Cd中度(0.72mg/kg)和重度(5.26mg/kg)污染土壤中Cd生物有效性及水稻Cd累积的差异。结果表明:施Zn对各检测指标存在影响,但土壤Cd总量仍是土壤Cd活性和水稻Cd累积差异变动的主控因素。在Cd中度污染土壤中,施Zn降低了土壤交换态Cd含量1.9%~17.0%,但水稻根表铁膜、根和糙米中Cd含量随Zn施用浓度的增大而增大,糙米Cd含量从0.09mg/kg上升到0.17mg/kg,相关分析显示糙米Cd含量与土壤交换态Zn含量显著正线性相关。在Cd重度污染土壤中,施Zn增大了土壤交换态Cd含量2.1%~4.8%,但降低了水稻各部位中Cd含量,当施Zn浓度超过80mg/kg时,糙米Cd含量可从对照组的0.45mg/kg降低到0.12mg/kg,符合国家食品污染物限量标准(GB 2762-2017)的要求,相关分析显示糙米Cd含量与土壤交换态Zn含量显著负线性相关。对2种Cd污染程度的土壤,施Zn均可增大Cd在水稻地下部的累积率,从而降低水稻地上部Cd的累积率。在Cd重度污染土壤中,可通过施Zn降低糙米Cd含量,施Zn量80mg/kg是试验中最佳施用量;但在Cd中度污染土壤中,施Zn有增大糙米Cd含量的风险。  相似文献   

17.
The effect of soil organic matter (SOM) on sorptive parameters under different soil management practices in Rendzic Leptosol was studied. In 2006, an experiment of different management practices in a productive vineyard was established in the locality of Nitra-Dra?ovce (Slovakia). The following treatments were established: (1) control (grass without fertilization), (2) T (tillage), (3) T + FYM (tillage + farmyard manure), (4) G + NPK3 (grass + 3rd intensity of fertilization for vineyards), (5) G + NPK1 (grass + 1st intensity of fertilization for vineyards). Soil samples were collected every month during the year 2010. Obtained results showed increased hydrolytic acidity (by 23%), sum of basic cations (by 37%) and decreased total cation exchange capacity (CEC) (by 36%) with higher doses of fertilization in comparison to control. Application of farmyard manure had a positive effect on the increase in the SOM cation sorption capacity. Positive correlations between pH and sum of basic cations (SBC) (r = 0.493, ≤ 0.001), CEC (r = 0.498, ≤ 0.001) and cation sorption capacity of SOM (r = 0.391, ≤ 0.01) were observed. Higher values of labile carbon:potentially mineralizable nitrogen (CL:Npot) ratio corresponded with lesser CEC, SBC and base saturation values in the soil. With increased humus quality (higher values of humic acid:fulvic acid (CHA:CFA) ratio), cation sorption capacity of SOM significantly increased (r = 0.329, p ≤ 0.01). The results of this study proved that the application of farmyard manure had a positive effect on the increase of SOM sorption capacity, but higher doses of mineral fertilizers added to soil had a negative effect.  相似文献   

18.
目前农田土壤镉污染修复以降低糙米镉含量为标准,而忽略了其变化的关键性的土壤物理、化学及生物指标。基于此,采用方差分析、多元回归分析、通径分析、随机森林和结构方程模型等统计方法分析了土壤pH值、有机质、容重、阳离子交换量、速效养分、质地、微团聚体、酶活性、微生物数量等23个土壤指标对土壤有效态Cd和糙米Cd含量重要性排序。结果表明,总体上施用土壤调理剂提高了土壤pH值、容重和阳离子交换量,改变了土壤质地组成,增加了大粒级团聚体,并影响了微生物环境,有效降低了土壤有效态Cd和糙米Cd含量,但抑制了部分酶活性和微生物数量。通过逐步回归分析,表明土壤pH值和放线菌可以解释土壤有效态Cd 64.32%的变化,阳离子交换量、速效钾、有效磷和蔗糖酶可以解释糙米Cd 82.10%的变化;通径分析表明大粒径团聚体、有机质、黏粒、砂粒、放线菌和真菌对土壤有效态Cd和糙米Cd的直接效应较大;随机森林分析表明土壤pH值是影响土壤有效态Cd和糙米Cd含量的主导因素;结构方程模型表明糙米Cd含量主要受土壤pH值、有机质、阳离子交换量和有效磷的影响,土壤有效态Cd主要受土壤酶活性和微生物数量的影响。不同分析方法侧重点不同,总体上对糙米Cd含量影响较大的是pH值、阳离子交换量、有效磷和有机质等,对土壤有效态Cd含量影响较大的是pH值、放线菌和有机质等。  相似文献   

19.
A pot experiment was conducted in sandy clay loam saline-sodic soil to assess the effects of farm yard manure (FYM), municipal solid waste (MSW) composts and gypsum application on nitrate leaching, soil chemical properties and crop productivity under rice-wheat cropping system. It also aims at establishing the correlation between soil phsico-chemical properties and yield response using principle component analysis and Pearson correlation analysis. The MSW was decomposed aerobically, an-aerobically and co-composted. Maximum nitrate leaching was observed during rice (75.9 mg L?1) and wheat (37.2 mg L?1) with an-aerobically decomposed MSW as compared with control treatment. Results revealed a decrease in soil pH (?6.95% and ?8.77%), electrical conductivity (EC) (?48.13% and ?51.04%), calcium carbonate (CaCO3) (?40.30% and ?48.96%), and sodium adsorption ratio (SAR) (?40.27% and ?45.98%) with an-aerobically decomposed MSW compost during rice and wheat, respectively. In this treatment, organic matter (OM) (93.55% and 121.51%) and cation exchange capacity (CEC) (19.31% and 31.79%) were the highest as compared with control treatment during rice and wheat, respectively. Rice and wheat growth were significantly (p≤ 0.05) increased by an-aerobically decomposed MSW followed by co-compost, aerobically decomposed MSW, FYM, gypsum and control. Furthermore, Pearson correlation coefficients predicted significant positive correlation of yield with soil OM, and CEC while inverse relationship was observed with EC, pH, CaCO3, and nitrogen use efficiency. Soil amelioration with organic and gypsum amendments was further confirmed with principal component analysis. This study has proved an-aerobically decomposed MSW as an effective solution for MSW disposal, thereby improving soil chemical properties and crop productivity from sandy clay loam saline-sodic soil.  相似文献   

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