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Tsanyao Frank Yang - One of the best experts on this subject based on the ideXlab platform.
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flux and genesis of co2 degassing from volcanic Geothermal Fields of gulu yadong rift in the lhasa terrane south tibet constraints on characteristics of deep carbon cycle in the india asia continent subduction zone
Journal of Asian Earth Sciences, 2017Co-Authors: Lihong Zhang, Zhengfu Guo, Yuji Sano, Maoliang Zhang, Yutao Sun, Zhihui Cheng, Tsanyao Frank YangAbstract:Abstract Gulu-Yadong rift (GYR) is the longest extensional, NE-SW-trending rift in the Himalayas and Lhasa terrane of South Tibet. Many volcanic-Geothermal Fields (VGFs), which comprise intense hot springs, steaming fissures, geysers and soil micro-seepage, are distributed in the GYR, making it ideal area for studying deep carbon emissions in the India-Asia continent subduction zone. As for the northern segment of GYR in the Lhasa terrane, its total flux and genesis of CO2 emissions are poorly understood. Following accumulation chamber method, soil CO2 flux survey has been carried out in VGFs (i.e., Jidaguo, Ningzhong, Sanglai, Tuoma and Yuzhai from south to north) of the northern segment of GYR. Total soil CO2 output of the northern GYR is about 1.50 × 107 t a−1, which is attributed to biogenic and volcanic-Geothermal source. Geochemical characteristics of the volcanic-Geothermal gases (including CO2 and He) of the northern GYR indicate their significant mantle-derived affinities. Combined with previous petrogeochemical and geophysical data, our He-C isotope modeling calculation results show that (1) excess mantle-derived 3He reflects degassing of volatiles related with partial melts from enriched mantle wedge induced by northward subduction of the Indian lithosphere, and (2) the crust-mantle interaction can provide continuous heat and materials for the overlying volcanic-Geothermal system, in which magma-derived volatiles are inferred to experience significant crustal contamination during their migration to the surface.
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flux and genesis of co 2 degassing from volcanic Geothermal Fields of gulu yadong rift in the lhasa terrane south tibet constraints on characteristics of deep carbon cycle in the india asia continent subduction zone
Journal of Asian Earth Sciences, 2017Co-Authors: Lihong Zhang, Zhengfu Guo, Yuji Sano, Maoliang Zhang, Yutao Sun, Zhihui Cheng, Tsanyao Frank YangAbstract:Abstract Gulu-Yadong rift (GYR) is the longest extensional, NE-SW-trending rift in the Himalayas and Lhasa terrane of South Tibet. Many volcanic-Geothermal Fields (VGFs), which comprise intense hot springs, steaming fissures, geysers and soil micro-seepage, are distributed in the GYR, making it ideal area for studying deep carbon emissions in the India-Asia continent subduction zone. As for the northern segment of GYR in the Lhasa terrane, its total flux and genesis of CO2 emissions are poorly understood. Following accumulation chamber method, soil CO2 flux survey has been carried out in VGFs (i.e., Jidaguo, Ningzhong, Sanglai, Tuoma and Yuzhai from south to north) of the northern segment of GYR. Total soil CO2 output of the northern GYR is about 1.50 × 107 t a−1, which is attributed to biogenic and volcanic-Geothermal source. Geochemical characteristics of the volcanic-Geothermal gases (including CO2 and He) of the northern GYR indicate their significant mantle-derived affinities. Combined with previous petrogeochemical and geophysical data, our He-C isotope modeling calculation results show that (1) excess mantle-derived 3He reflects degassing of volatiles related with partial melts from enriched mantle wedge induced by northward subduction of the Indian lithosphere, and (2) the crust-mantle interaction can provide continuous heat and materials for the overlying volcanic-Geothermal system, in which magma-derived volatiles are inferred to experience significant crustal contamination during their migration to the surface.
Lihong Zhang - One of the best experts on this subject based on the ideXlab platform.
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flux and genesis of co2 degassing from volcanic Geothermal Fields of gulu yadong rift in the lhasa terrane south tibet constraints on characteristics of deep carbon cycle in the india asia continent subduction zone
Journal of Asian Earth Sciences, 2017Co-Authors: Lihong Zhang, Zhengfu Guo, Yuji Sano, Maoliang Zhang, Yutao Sun, Zhihui Cheng, Tsanyao Frank YangAbstract:Abstract Gulu-Yadong rift (GYR) is the longest extensional, NE-SW-trending rift in the Himalayas and Lhasa terrane of South Tibet. Many volcanic-Geothermal Fields (VGFs), which comprise intense hot springs, steaming fissures, geysers and soil micro-seepage, are distributed in the GYR, making it ideal area for studying deep carbon emissions in the India-Asia continent subduction zone. As for the northern segment of GYR in the Lhasa terrane, its total flux and genesis of CO2 emissions are poorly understood. Following accumulation chamber method, soil CO2 flux survey has been carried out in VGFs (i.e., Jidaguo, Ningzhong, Sanglai, Tuoma and Yuzhai from south to north) of the northern segment of GYR. Total soil CO2 output of the northern GYR is about 1.50 × 107 t a−1, which is attributed to biogenic and volcanic-Geothermal source. Geochemical characteristics of the volcanic-Geothermal gases (including CO2 and He) of the northern GYR indicate their significant mantle-derived affinities. Combined with previous petrogeochemical and geophysical data, our He-C isotope modeling calculation results show that (1) excess mantle-derived 3He reflects degassing of volatiles related with partial melts from enriched mantle wedge induced by northward subduction of the Indian lithosphere, and (2) the crust-mantle interaction can provide continuous heat and materials for the overlying volcanic-Geothermal system, in which magma-derived volatiles are inferred to experience significant crustal contamination during their migration to the surface.
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flux and genesis of co 2 degassing from volcanic Geothermal Fields of gulu yadong rift in the lhasa terrane south tibet constraints on characteristics of deep carbon cycle in the india asia continent subduction zone
Journal of Asian Earth Sciences, 2017Co-Authors: Lihong Zhang, Zhengfu Guo, Yuji Sano, Maoliang Zhang, Yutao Sun, Zhihui Cheng, Tsanyao Frank YangAbstract:Abstract Gulu-Yadong rift (GYR) is the longest extensional, NE-SW-trending rift in the Himalayas and Lhasa terrane of South Tibet. Many volcanic-Geothermal Fields (VGFs), which comprise intense hot springs, steaming fissures, geysers and soil micro-seepage, are distributed in the GYR, making it ideal area for studying deep carbon emissions in the India-Asia continent subduction zone. As for the northern segment of GYR in the Lhasa terrane, its total flux and genesis of CO2 emissions are poorly understood. Following accumulation chamber method, soil CO2 flux survey has been carried out in VGFs (i.e., Jidaguo, Ningzhong, Sanglai, Tuoma and Yuzhai from south to north) of the northern segment of GYR. Total soil CO2 output of the northern GYR is about 1.50 × 107 t a−1, which is attributed to biogenic and volcanic-Geothermal source. Geochemical characteristics of the volcanic-Geothermal gases (including CO2 and He) of the northern GYR indicate their significant mantle-derived affinities. Combined with previous petrogeochemical and geophysical data, our He-C isotope modeling calculation results show that (1) excess mantle-derived 3He reflects degassing of volatiles related with partial melts from enriched mantle wedge induced by northward subduction of the Indian lithosphere, and (2) the crust-mantle interaction can provide continuous heat and materials for the overlying volcanic-Geothermal system, in which magma-derived volatiles are inferred to experience significant crustal contamination during their migration to the surface.
Yuji Sano - One of the best experts on this subject based on the ideXlab platform.
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flux and genesis of co2 degassing from volcanic Geothermal Fields of gulu yadong rift in the lhasa terrane south tibet constraints on characteristics of deep carbon cycle in the india asia continent subduction zone
Journal of Asian Earth Sciences, 2017Co-Authors: Lihong Zhang, Zhengfu Guo, Yuji Sano, Maoliang Zhang, Yutao Sun, Zhihui Cheng, Tsanyao Frank YangAbstract:Abstract Gulu-Yadong rift (GYR) is the longest extensional, NE-SW-trending rift in the Himalayas and Lhasa terrane of South Tibet. Many volcanic-Geothermal Fields (VGFs), which comprise intense hot springs, steaming fissures, geysers and soil micro-seepage, are distributed in the GYR, making it ideal area for studying deep carbon emissions in the India-Asia continent subduction zone. As for the northern segment of GYR in the Lhasa terrane, its total flux and genesis of CO2 emissions are poorly understood. Following accumulation chamber method, soil CO2 flux survey has been carried out in VGFs (i.e., Jidaguo, Ningzhong, Sanglai, Tuoma and Yuzhai from south to north) of the northern segment of GYR. Total soil CO2 output of the northern GYR is about 1.50 × 107 t a−1, which is attributed to biogenic and volcanic-Geothermal source. Geochemical characteristics of the volcanic-Geothermal gases (including CO2 and He) of the northern GYR indicate their significant mantle-derived affinities. Combined with previous petrogeochemical and geophysical data, our He-C isotope modeling calculation results show that (1) excess mantle-derived 3He reflects degassing of volatiles related with partial melts from enriched mantle wedge induced by northward subduction of the Indian lithosphere, and (2) the crust-mantle interaction can provide continuous heat and materials for the overlying volcanic-Geothermal system, in which magma-derived volatiles are inferred to experience significant crustal contamination during their migration to the surface.
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flux and genesis of co 2 degassing from volcanic Geothermal Fields of gulu yadong rift in the lhasa terrane south tibet constraints on characteristics of deep carbon cycle in the india asia continent subduction zone
Journal of Asian Earth Sciences, 2017Co-Authors: Lihong Zhang, Zhengfu Guo, Yuji Sano, Maoliang Zhang, Yutao Sun, Zhihui Cheng, Tsanyao Frank YangAbstract:Abstract Gulu-Yadong rift (GYR) is the longest extensional, NE-SW-trending rift in the Himalayas and Lhasa terrane of South Tibet. Many volcanic-Geothermal Fields (VGFs), which comprise intense hot springs, steaming fissures, geysers and soil micro-seepage, are distributed in the GYR, making it ideal area for studying deep carbon emissions in the India-Asia continent subduction zone. As for the northern segment of GYR in the Lhasa terrane, its total flux and genesis of CO2 emissions are poorly understood. Following accumulation chamber method, soil CO2 flux survey has been carried out in VGFs (i.e., Jidaguo, Ningzhong, Sanglai, Tuoma and Yuzhai from south to north) of the northern segment of GYR. Total soil CO2 output of the northern GYR is about 1.50 × 107 t a−1, which is attributed to biogenic and volcanic-Geothermal source. Geochemical characteristics of the volcanic-Geothermal gases (including CO2 and He) of the northern GYR indicate their significant mantle-derived affinities. Combined with previous petrogeochemical and geophysical data, our He-C isotope modeling calculation results show that (1) excess mantle-derived 3He reflects degassing of volatiles related with partial melts from enriched mantle wedge induced by northward subduction of the Indian lithosphere, and (2) the crust-mantle interaction can provide continuous heat and materials for the overlying volcanic-Geothermal system, in which magma-derived volatiles are inferred to experience significant crustal contamination during their migration to the surface.
Yutao Sun - One of the best experts on this subject based on the ideXlab platform.
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flux and genesis of co2 degassing from volcanic Geothermal Fields of gulu yadong rift in the lhasa terrane south tibet constraints on characteristics of deep carbon cycle in the india asia continent subduction zone
Journal of Asian Earth Sciences, 2017Co-Authors: Lihong Zhang, Zhengfu Guo, Yuji Sano, Maoliang Zhang, Yutao Sun, Zhihui Cheng, Tsanyao Frank YangAbstract:Abstract Gulu-Yadong rift (GYR) is the longest extensional, NE-SW-trending rift in the Himalayas and Lhasa terrane of South Tibet. Many volcanic-Geothermal Fields (VGFs), which comprise intense hot springs, steaming fissures, geysers and soil micro-seepage, are distributed in the GYR, making it ideal area for studying deep carbon emissions in the India-Asia continent subduction zone. As for the northern segment of GYR in the Lhasa terrane, its total flux and genesis of CO2 emissions are poorly understood. Following accumulation chamber method, soil CO2 flux survey has been carried out in VGFs (i.e., Jidaguo, Ningzhong, Sanglai, Tuoma and Yuzhai from south to north) of the northern segment of GYR. Total soil CO2 output of the northern GYR is about 1.50 × 107 t a−1, which is attributed to biogenic and volcanic-Geothermal source. Geochemical characteristics of the volcanic-Geothermal gases (including CO2 and He) of the northern GYR indicate their significant mantle-derived affinities. Combined with previous petrogeochemical and geophysical data, our He-C isotope modeling calculation results show that (1) excess mantle-derived 3He reflects degassing of volatiles related with partial melts from enriched mantle wedge induced by northward subduction of the Indian lithosphere, and (2) the crust-mantle interaction can provide continuous heat and materials for the overlying volcanic-Geothermal system, in which magma-derived volatiles are inferred to experience significant crustal contamination during their migration to the surface.
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flux and genesis of co 2 degassing from volcanic Geothermal Fields of gulu yadong rift in the lhasa terrane south tibet constraints on characteristics of deep carbon cycle in the india asia continent subduction zone
Journal of Asian Earth Sciences, 2017Co-Authors: Lihong Zhang, Zhengfu Guo, Yuji Sano, Maoliang Zhang, Yutao Sun, Zhihui Cheng, Tsanyao Frank YangAbstract:Abstract Gulu-Yadong rift (GYR) is the longest extensional, NE-SW-trending rift in the Himalayas and Lhasa terrane of South Tibet. Many volcanic-Geothermal Fields (VGFs), which comprise intense hot springs, steaming fissures, geysers and soil micro-seepage, are distributed in the GYR, making it ideal area for studying deep carbon emissions in the India-Asia continent subduction zone. As for the northern segment of GYR in the Lhasa terrane, its total flux and genesis of CO2 emissions are poorly understood. Following accumulation chamber method, soil CO2 flux survey has been carried out in VGFs (i.e., Jidaguo, Ningzhong, Sanglai, Tuoma and Yuzhai from south to north) of the northern segment of GYR. Total soil CO2 output of the northern GYR is about 1.50 × 107 t a−1, which is attributed to biogenic and volcanic-Geothermal source. Geochemical characteristics of the volcanic-Geothermal gases (including CO2 and He) of the northern GYR indicate their significant mantle-derived affinities. Combined with previous petrogeochemical and geophysical data, our He-C isotope modeling calculation results show that (1) excess mantle-derived 3He reflects degassing of volatiles related with partial melts from enriched mantle wedge induced by northward subduction of the Indian lithosphere, and (2) the crust-mantle interaction can provide continuous heat and materials for the overlying volcanic-Geothermal system, in which magma-derived volatiles are inferred to experience significant crustal contamination during their migration to the surface.
Zhihui Cheng - One of the best experts on this subject based on the ideXlab platform.
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flux and genesis of co2 degassing from volcanic Geothermal Fields of gulu yadong rift in the lhasa terrane south tibet constraints on characteristics of deep carbon cycle in the india asia continent subduction zone
Journal of Asian Earth Sciences, 2017Co-Authors: Lihong Zhang, Zhengfu Guo, Yuji Sano, Maoliang Zhang, Yutao Sun, Zhihui Cheng, Tsanyao Frank YangAbstract:Abstract Gulu-Yadong rift (GYR) is the longest extensional, NE-SW-trending rift in the Himalayas and Lhasa terrane of South Tibet. Many volcanic-Geothermal Fields (VGFs), which comprise intense hot springs, steaming fissures, geysers and soil micro-seepage, are distributed in the GYR, making it ideal area for studying deep carbon emissions in the India-Asia continent subduction zone. As for the northern segment of GYR in the Lhasa terrane, its total flux and genesis of CO2 emissions are poorly understood. Following accumulation chamber method, soil CO2 flux survey has been carried out in VGFs (i.e., Jidaguo, Ningzhong, Sanglai, Tuoma and Yuzhai from south to north) of the northern segment of GYR. Total soil CO2 output of the northern GYR is about 1.50 × 107 t a−1, which is attributed to biogenic and volcanic-Geothermal source. Geochemical characteristics of the volcanic-Geothermal gases (including CO2 and He) of the northern GYR indicate their significant mantle-derived affinities. Combined with previous petrogeochemical and geophysical data, our He-C isotope modeling calculation results show that (1) excess mantle-derived 3He reflects degassing of volatiles related with partial melts from enriched mantle wedge induced by northward subduction of the Indian lithosphere, and (2) the crust-mantle interaction can provide continuous heat and materials for the overlying volcanic-Geothermal system, in which magma-derived volatiles are inferred to experience significant crustal contamination during their migration to the surface.
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flux and genesis of co 2 degassing from volcanic Geothermal Fields of gulu yadong rift in the lhasa terrane south tibet constraints on characteristics of deep carbon cycle in the india asia continent subduction zone
Journal of Asian Earth Sciences, 2017Co-Authors: Lihong Zhang, Zhengfu Guo, Yuji Sano, Maoliang Zhang, Yutao Sun, Zhihui Cheng, Tsanyao Frank YangAbstract:Abstract Gulu-Yadong rift (GYR) is the longest extensional, NE-SW-trending rift in the Himalayas and Lhasa terrane of South Tibet. Many volcanic-Geothermal Fields (VGFs), which comprise intense hot springs, steaming fissures, geysers and soil micro-seepage, are distributed in the GYR, making it ideal area for studying deep carbon emissions in the India-Asia continent subduction zone. As for the northern segment of GYR in the Lhasa terrane, its total flux and genesis of CO2 emissions are poorly understood. Following accumulation chamber method, soil CO2 flux survey has been carried out in VGFs (i.e., Jidaguo, Ningzhong, Sanglai, Tuoma and Yuzhai from south to north) of the northern segment of GYR. Total soil CO2 output of the northern GYR is about 1.50 × 107 t a−1, which is attributed to biogenic and volcanic-Geothermal source. Geochemical characteristics of the volcanic-Geothermal gases (including CO2 and He) of the northern GYR indicate their significant mantle-derived affinities. Combined with previous petrogeochemical and geophysical data, our He-C isotope modeling calculation results show that (1) excess mantle-derived 3He reflects degassing of volatiles related with partial melts from enriched mantle wedge induced by northward subduction of the Indian lithosphere, and (2) the crust-mantle interaction can provide continuous heat and materials for the overlying volcanic-Geothermal system, in which magma-derived volatiles are inferred to experience significant crustal contamination during their migration to the surface.