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Can combined compost and biochar application improve the quality of a highly weathered coastal savanna soil?

机译:组合堆肥和生物炭应用程序可以提高高度风化的沿海粮草土壤的质量吗?

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摘要

Soil fertility decline is a major constraint to crop production in sub-Saharan Africa. The positive effect of biochar and compost applications on soil fertility has been reported by many authors. In this study, a 30-day laboratory incubation experiment was done using 120 g samples each of a Haplic acrisol amended with corn cob biochar (cbio), rice husk biochar (rbio), coconut husk biochar (coco300 and coco700) or poultry manure compost (compost); and co- composted rice husk biochar (rcocomp) or co-composted corn cob biochar (cococomp) at rates of 1 % w/w amendment: soil, respectively. Other treatments in the study were combined poultry manure compost and corn cob biochar or rice husk biochar (1 % compost + 1% biochar: 1% soil w/w), respectively, to examine their effects on basal soil respiration, soil pH; soil microbial carbon; cation exchange capacity; total organic carbon, total nitrogen and available nitrogen concentration. Biochar and compost applied solely or together, and composted biochar increased soil pH by 0.28–2.29 pH units compared to the un-amended control. Basal respiration from the sole compost or composted rice husk, or corn cob biochar or combined biochar and compost were higher than the un-amended control, which was similar to that from the biochar only treatments. TOC in the sole compost and combined corn cob biochar and compost treatments were up to 37% and 117% higher, respectively, than the control. Combined application of rice husk biochar and compost increased MBC by 132% while sole compost addition increased MBC by 247%, respectively, compared to the control. In conclusion, the study demonstrated that sole or combined application of compost and biochar, or composted biochar improved soil quality parameters such as soil pH and MBC, and promoted soil C stabilization through enhanced TOC and reduced soil C loss through basal respiration.
机译:土壤生育率下降是撒哈拉以南非洲作物生产的主要制约因素。许多作者报道了生物炭和堆肥应用对土壤肥力的积极影响。在这项研究中,使用120g样品进行30天的实验室孵育实验,每种玉米棒炭(CBIO),稻壳生物炭(RBIO),椰子壳生物炭(Coco300和Coco700)或家禽肥胖堆肥(堆肥);并将稻壳生物炭(Rcocomp)或共堆肥玉米COB生物炭(Cococomp)分别为1%W / W修正案:土壤。该研究中的其他治疗组合为家禽肥料堆肥和玉米棒炭或稻壳生物炭(1%堆肥+ 1%BioChar:1%土壤W / W),以检查它们对基础土壤呼吸的影响,土壤pH;土壤微生物碳;阳离子交换能力;总有机碳,总氮和可用的氮浓度。与未修正的对照相比,生物炭和堆肥和堆肥的生物炭加上了0.28-2.29的pH单位。鞋底堆肥或堆肥稻壳或玉米棒炭或玉米炭和堆肥的基础呼吸高于未修改的控制,这与BioChar的治疗类似。在唯一堆肥中的TOC和组合的玉米COB生物炭和堆肥治疗分别比对照相当高达37%和117%。稻壳生物炭和堆肥的综合施用在MBC增加132%时,与控制相比,鞋底堆肥增加了247%的MBC。总之,该研究表明,堆肥和生物炭的唯一或综合应用,或堆肥的生物炭改善了土壤质量参数,如土壤pH和MBC,通过增强的TOC促进土壤C稳定,并通过基础呼吸降低土壤C损失。

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