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DLP Resources Expands Copper and Molybdenum Zone on the 100 % Owned Esperanza Project With an Additional 53 Rock Samples Returning up to 3.46 % Cu, 130.5ppm Mo, 7930ppm Zn and 245ppm Co

DLP Resources Expands Copper and Molybdenum Zone on the 100 % Owned Esperanza Project With an Additional 53 Rock Samples Returning up to 3.46 % Cu, 130.5ppm Mo, 7930ppm Zn and 245ppm Co

DLP Resources 擴大 100% 持股權的 Esperanza 項目的銅鉬區,另外還有 53 個岩石樣本的銅含量高達 3.46%、130.5ppm 鉬含量、7930ppm 鋅和 245ppm 鈷含量 245ppm
newsfile ·  04/25 06:00

Cranbrook, British Columbia--(Newsfile Corp. - April 25, 2024) - DLP Resources Inc. (TSXV: DLP) (OTCQB: DLPRF) ("DLP" or the "Company") announces receipt of the second phase of rock sampling results from the Esperanza porphyry copper-molybdenum project immediately south of the Chapi Mine in Southern Peru (Figure 1).

不列顛哥倫比亞省克蘭布魯克--(Newsfile Corp.-2024 年 4 月 25 日)- DLP Resources Inc.(多倫多證券交易所股票代碼:DLP)(場外交易代碼:DLPRF) (”DLP“或者”公司“)宣佈收到了位於秘魯南部查皮礦以南的埃斯佩蘭薩斑岩銅鉬項目的第二階段岩石採樣結果(圖1)。

Results for the additional 53 rock samples taken in the initial reconnaissance sampling and mapping of the northwestern part of the project have returned highly anomalous copper, molybdenum, cobalt and zinc in mapped intrusive stocks and polymictic breccias within the overlying volcanics (Figures 2, 3, 4, 5 and 6).

在項目西北部的初步偵察採樣和測繪中採集的另外53個岩石樣本的結果顯示,在上覆火山岩中測繪的侵入性儲量和多晶角礫岩中發現了高度異常的銅、鉬、鈷和鋅(圖2、3、4、5和6)。

Highlights

亮點

  1. Fifteen of the fifty-three rock chip samples returned values between 0.3% Cu and 3.46% Cu (Table 1 and Figure 2). These samples were taken from outcropping quartz diorite and polymictic breccias with visible copper-oxides, iron oxides and tourmaline in fractures.
  2. Rock chip samples with high copper grades included:
    • Sample 1208 - 0.69% Cu, 130.50ppm Mo, 7930ppm Zn and 42.30ppm Co.
    • Sample 1226 - 1.84% Cu, 1.38ppm Mo, 1115ppm Zn and 42.50ppm Co.
    • Sample 1227 - 1.71% Cu, 5.56ppm Mo, 2490ppm Zn and 176.50ppm Co.
    • Sample 1229 - 3.46% Cu, 16.15ppm Mo, 1480ppm Zn and 185ppm Co.
    • Sample 1231 - 1.26% Cu, 2.43ppm Mo, 1050ppm Zn and 39.60ppm Co.
    • Sample 1232 - 0.70% Cu, 3.75ppm Mo, 487ppm Zn and 22.50ppm Co.
    • Sample 1237 - 1.54% Cu, 6.34ppm Mo, 774ppm Zn and 57.20ppm Co.
    • Sample 1240 - 0.82%Cu, 4.10ppm Mo, 410ppm Zn and 17.10ppm Co.
  1. 五十三個岩屑樣品中有十五個返回的值介於 0.3% 銅和 3.46% 銅之間(表 1 和圖 2)。這些樣本取自露出的石英閃長巖和多晶角礫岩,裂縫中有可見的氧化銅、氧化鐵和電氣石。
  2. 銅等級高的岩屑樣品包括:
    • 樣品 1208-0.69% 銅、130.50ppm Mo、7930ppm 鋅和 42.30ppm Co.
    • 樣品 1226-1.84% 銅、1.38ppm Mo、1115ppm 鋅和 42.50ppm Co.
    • 樣品 1227-1.71% 銅、5.56ppm Mo、2490ppm 鋅和 176.50ppm Co.
    • 樣品 1229-3.46% 銅、16.15ppm Mo、1480ppm 鋅和 185ppm Co.
    • 樣品 1231-1.26% 銅、2.43ppm Mo、1050ppm 鋅和 39.60ppm Co.
    • 樣品 1232-0.70% 銅、3.75ppm Mo、487ppm 鋅和 22.50ppm Co.
    • 樣品 1237-1.54% 銅、6.34ppm Mo、774ppm 鋅和 57.20ppm Co.
    • 樣品 1240-0.82% 銅、4.10ppm Mo、410ppm 鋅和 17.10ppm Co.

See Table 1 for the anomalous set of results for the second phase of rock chip samples and Table 2 for the first phase of anomalous results reported on March 13, 2024 (see DLP Resources Inc., news release of March 13, 2024).

有關第二階段岩屑樣本的一組異常結果,見表1;2024年3月13日報告的第一階段異常結果見表2(參見DLP資源公司,2024年3月13日新聞稿)。

Mr. Gendall, President and CEO commented: "With two phases of rock sampling and mapping completed on the Esperanza project, an area of 3.5km x 1.5km has now been identified with anomalous copper and molybdenum in rock samples. These anomalous copper-molybdenum values coupled with other porphyry copper indicators are very encouraging for locating a mineralized system at depth in this porphyry copper belt immediately south of the Chapi copper mine."

總裁兼首席執行官根德爾先生評論說:“隨着Esperanza項目的兩個階段的岩石採樣和測繪工作已經完成,現在已經確定了3.5km x 1.5km的區域在岩石樣本中含有異常的銅和鉬。這些異常的銅鉬值加上其他斑岩銅指標,對於在恰皮銅礦以南的斑岩銅帶深處定位礦化系統非常令人鼓舞。”

Table 1. Summary of Select Rock Chip Results for the Esperanza Porphyry Cu-Mo Project - Phase 2.

表 1。 Esperanza Porphyry Cu-Mo 項目(第 2 階段)的精選岩屑結果摘要。

SAMPLE Northing Easting Elev. Cu Mo Zn Co Description
No m m m % ppm ppm ppm Rock Chip Samples 2x2m Sampling Area
1201 8134576 243185 1711 <0.01 15.3 33 0.7 Qtz-Tourmaline breccia
1202 8134575 243085 1721 <0.01 22.5 67 0.8 Intensely fractured diorite with FeOx boxworks
1203 8134566 243075 1707 <0.01 23.2 69 0.9 Diorite with SS clasts and Fe-oxides + Tourmaline
1204 8134585 243094 1710 <0.01 41.2 98 5.1 Sandstone with Fe-oxides + Quartz-sericite
1205 8134584 243102 1721 <0.01 20.5 63 9.9 Diorite with argillic alteration + intense veining of Fe oxides
1206 8134570 243107 1712 0.01 35.3 20 1.7 Diorite + Veining with FeOx + Mn + Neo + Tm
1207 8134507 243151 1714 0.02 37.8 107 58.5 Diorite + Veining with FeOx + Tm
1208 8134485 243190 1729 0.69 130.5 7930 42.3 Diorite, Arg, with SS and Qtz vlts and FeOx boxworks +Tm
1209 8134293 243141 1716 0.01 11.05 146 13.8 Diorite, Arg with SS and Qtz vlts and FeOx boxworks +Tm
1210 8134454 243330 1729 0.04 37.3 45 4.8 Diorite, Arg altered, qtz-FeOx + Tm + fine alunite? in matrix.
1211 8134676 242844 1728 0.02 34 138 10.9 Diorite Sil, Qtz vlts, Mn-Tm, intense angular fractures.
1214 8134817 242754 1729 0.01 17.35 23 9.3 Diorite, Arg Alteration, Vlts of Qz, FeOx, Mn +Tm
1215 8134846 242718 1728 0.01 20.2 33 33.7 Polymictic Bx frag of SS with FeOx veins + Mn
1217 8134918 242865 1718 0.01 7.48 22 11.7 Diorite QSP with Qtz vlts and FeOx-Mn
1218 8134971 242872 1711 0.01 7.37 23 11.6 Diorite QS with FeOx, Mn veins + intense fractures.
1226 8136321 244504 1886 1.84 1.38 1115 42.5 Polymictic Bx, pseudostratified with presence of malachite
1227 8136164 244682 1852 1.71 5.56 2490 176.5 Polymictic Bx, pseudostratification + malachite and Mn
1229 8136181 244817 1852 3.46 16.15 1480 185 Polymictic Bx?, with malachite and Mn in matrix
1230 8136224 244609 1887 0.46 5.73 373 11.8 Polymictic Bx?, with malachite and Mn in matrix
1231 8136198 244557 1589 1.26 2.43 1050 39.6 Polymictic Bx?, with malachite and Mn in matrix
1232 8136152 244500 1884 0.7 3.75 487 22.5 Subhorizontal polymictic Bx with malachite and Mn in matrix
1234 8136108 244494 1876 0.41 4.77 553 54 Polymictic Bx with malachite and Mn in subhorizontal horizons
1235 8136033 244518 1878 0.44 5.02 547 24.1 Polymictic Bx with malachite and Mn in subhorizontal horizons
1236 8136080 244564 1853 0.76 7.91 1270 245 Polymictic Bx with malachite and Mn in subhorizontal horizons
1237 8135958 244587 1856 1.54 6.34 774 57.2 Polymictic Bx with malachite, atacamite and Mn
1239 8135880 244513 1863 0.25 4.36 379 20.6 Polymictic Bx with malachite in a subhorizontal horizon
1240 8135792 244510 1861 0.82 4.1 410 17.1 Polymictic Bx with malachite in a subhorizontal horizon
1241 8135679 244568 1852 0.38 6.14 506 26.5 Polymictic Bx with malachite in a subhorizontal horizon
1242 8135353 244010 1789 0.12 3.2 2100 146 Polymictic Bx with malachite in a subhorizontal horizon
1244 8135443 244065 1792 0.32 4.38 1500 115 Polymictic Bx with malachite in a subhorizontal horizon
1245 8134403 242718 1674 0.01 14 31 8.9 Diorite, Arg., with Mn in irregular veins
1246 8134540 242985 1691 0.01 51 241 34.4 Diorite, Arg., with Mn in irregular veins
1247 8134364 242830 1667 <0.01 23 55 3.5 Diorite, Qtz, Tm, FeOx in boxworks + intense fracturing + veins
1249 8134200 242674 1645 <0.01 5.79 49 6.3 Quartzite/SS with FeOx in veinlets/fractures and presence of Tm
1250 8134158 242640 1637 <0.01 17.05 11 1.6 Quartzite/SS with FeOx in veinlets/fractures and presence of Ser
1751 8134093 242562 1628 <0.01 26.9 48 19.7 Bx of quartzite/SS with FeOx boxworks + FeOx in fractures
1752 8134627 242082 1626 <0.01 12.2 84 18.1 Diorite, Arg, FeOx + quartzite/SS with FeOx boxworks
1754 8134434 242254 1645 0.02 59.5 89 1.7 Vein?, QSP, malachite and OxFe in fractures and boxworks
1755 8134249 242291 1634 <0.01 12.3 7 1.1 Bx, QSP +FeOx boxworks +quartz
1756 8134244 242276 1643 <0.01 4.87 27 3.6 Bx, QSP, presence of FeOx boxworks + quartz
1757 8134220 242248 1651 <0.01 10.25 139 29.4 Bx, subangular fragments, Qtz-Tm?
1759 8134070 242351 1607 <0.01 10.05 29 2.8 Diorite, QSP, FeMo in fractures, FeOx +intense fracturing
1760 8134168 242265 1644 <0.01 13.8 121 18.7 Bx, quartz veins with FeOx, Mn and Tm in fractures
Notes: Bx-Breccia, Qtz-Quartz, Tm-Tourmaline, Vlts-veinlets, FeOx-Iron Oxides, FeMo-ferrimolybdenite, Mt-magnetite, SS-sandstone, Py-Pyrite, Ep-Epidote, Chl-Chlorite, Arg-Argillic, QSP-Quartz-sericite-pyrite, Ser-Sericite, Sil-Silicified, Lim-Limonite, Neo-Neotocite, Mn-Manganese, Qtz-Quartz, V-Very, Frac-Fractured
樣本 北方 向東 Elev。 Mo 有限公司 描述
沒有 m m m % ppm ppm ppm Rock Chip 樣品 2x2M 採樣區域
1201 8134576 243185 1711 15.3 33 0.7 Qtz-Tourmaline 角礫岩
1202 8134575 243085 1721 22.5 67 0.8 使用 FeOx boxworks 嚴重斷裂的閃長巖
1203 8134566 243075 1707 23.2 69 0.9 含有 SS 碎片和氧化鐵的閃長巖 + 電氣石
1204 8134585 243094 1710 41.2 98 5.1 含鐵氧化物的砂岩 + 石英-蠶絲巖
1205 8134584 243102 1721 20.5 63 9.9 具有泥質蝕變的閃長巖 + 鐵氧化物的強烈脈紋
1206 8134570 243107 1712 0.01 35.3 20 1.7 閃長巖 + 使用 FeOx + Mn + Neo + Tm 進行脈紋處理
1207 8134507 243151 1714 0.02 37.8 107 58.5 使用 FeOx + Tm 進行閃長巖 + 脈紋處理
1208 8134485 243190 1729 0.69 130.5 7930 42.3 閃長巖、Arg、帶有 SS 和 Qtz volts 以及 FeOx boxworks +Tm
1209 8134293 243141 1716 0.01 11.05 146 13.8 閃長巖、帶有 SS 和 Qtz volts 的 Arg 以及 FeOx boxworks +Tm
1210 8134454 243330 1729 0.04 37.3 45 4.8 閃長巖、Arg 改性、Qtz-Feox + Tm + 精細校友呢?在矩陣中。
1211 8134676 242844 1728 0.02 34 138 10.9 閃長巖 Sil、Qtz vlts、Mn-Tm、強烈的角裂縫。
1214 8134817 242754 1729 0.01 17.35 23 9.3 閃長巖、Arg 變化、Qz Volts、FeOx、Mn +Tm
1215 8134846 242718 1728 0.01 20.2 33 33.7 帶有 FeOx 靜脈的 SS 的 Polymictic Bx 片段 + Mn
1217 8134918 242865 1718 0.01 7.48 22 11.7 帶 Qtz volts 和 Feox-Mn 的閃長巖 QSP
1218 8134971 242872 1711 0.01 7.37 23 11.6 含有 FeOx、Mn 靜脈 + 劇烈骨折的閃長巖 QS。
1226 8136321 244504 1886 1.84 1.38 1115 42.5 Polymictic Bx,假分層,存在孔雀石
1227 8136164 244682 1852 1.71 5.56 2490 176.5 Polymictic Bx,僞分層 + 孔雀石和 Mn
1229 8136181 244817 1852 3.46 16.15 1480 185 Polymictic Bx?,以孔雀石和錳爲基體
1230 8136224 244609 1887 0.46 5.73 373 11.8 Polymictic Bx?,以孔雀石和錳爲基體
1231 8136198 244557 1589 1.26 2.43 1050 39.6 Polymictic Bx?,以孔雀石和錳爲基體
1232 8136152 244500 1884 0.7 3.75 487 22.5 基質中含有孔雀石和錳的亞水平多聚體 Bx
1234 8136108 244494 1876 0.41 4.77 553 54 Polymictic Bx 含孔雀石和 Mn 位於次水平視野中
1235 8136033 244518 1878 0.44 5.02 547 24.1 Polymictic Bx 含孔雀石和 Mn 位於次水平視野中
1236 8136080 244564 1853 0.76 7.91 1270 245 Polymictic Bx 含孔雀石和 Mn 位於次水平視野中
1237 8135958 244587 1856 1.54 6.34 774 57.2 含有孔雀石、阿塔卡米特和錳的 Polymictic Bx
1239 8135880 244513 1863 0.25 4.36 379 20.6 Polymictic Bx,孔雀石位於水平以下的地平線上
1240 8135792 244510 1861 0.82 4.1 410 17.1 Polymictic Bx,孔雀石位於水平以下的地平線上
1241 8135679 244568 1852 0.38 6.14 506 26.5 Polymictic Bx,孔雀石位於水平以下的地平線上
1242 8135353 244010 1789 0.12 3.2 2100 146 Polymictic Bx,孔雀石位於水平以下的地平線上
1244 8135443 244065 1792 0.32 4.38 1500 115 Polymictic Bx,孔雀石位於水平以下的地平線上
1245 8134403 242718 1674 0.01 14 31 8.9 閃長巖,Arg.,不規則靜脈中含錳
1246 8134540 242985 1691 0.01 51 241 34.4 閃長巖,Arg.,不規則靜脈中含錳
1247 8134364 242830 1667 23 55 3.5 箱體中的閃長巖、Qtz、Tm、FeOx + 劇烈壓裂 + 靜脈
1249 8134200 242674 1645 5.79 49 6.3 靜脈/裂縫中含有 FeOx 的石英岩/SS 以及 Tm 的存在
1250 8134158 242640 1637 17.05 11 1.6 靜脈/裂縫中含有 FeOx 的石英岩/Ss 以及Ser的存在
1751 8134093 242562 1628 26.9 48 19.7 裝有 FeOx boxworks 的石英岩/SS + 裂縫中的 FeOx
1752 8134627 242082 1626 12.2 84 18.1 含有 FeOx boxworks 的閃長巖、Arg、FeOx + 石英岩/SS
1754 8134434 242254 1645 0.02 59.5 89 1.7 靜脈?、裂縫和箱體工程中的 QSP、孔雀石和 OxFe
1755 8134249 242291 1634 12.3 7 1.1 Bx、QSP +FeoX boxworks +石英
1756 8134244 242276 1643 4.87 27 3.6 Bx、QSP、FeoX boxworks + 石英的存在
1757 8134220 242248 1651 10.25 139 29.4 Bx,亞角碎片,Qtz-Tm?
1759 8134070 242351 1607 10.05 29 2.8 裂縫中的閃長巖、QSP、FeMo、FeOx +強度壓裂
1760 8134168 242265 1644 13.8 121 18.7 Bx,骨折中含有 FeOx、Mn 和 Tm 的石英靜脈
備註:Bx-Breccia、Qtz-Quartz、Tm-Tourmaline、VLTS-Veinlet、Feox-氧化鐵、鉬鐵礦、MT-磁鐵礦、SS-砂岩、Py-Pyrite、Ep-Epidote、Chl-Chrite、Argillic、Qsp-Quartz-sericite-Pyrite、Sil-Sericite、Sil-Pyrite、Epidote、Chl-Argillic、Qsp-Quartz-sericite-Pyrite、Sil-Sericite、Sil-Pyrite、硅化、Lim-Limonite、新新石英、錳錳、Qtz-Quartz、V-Very、裂縫斷裂

Table 2. Summary of Select Rock Chip Results for the Esperanza Porphyry Cu-Mo Project - Phase 1.

表 2。Esperanza Porphyry Cu-Mo 項目(第 1 階段)的精選岩屑結果摘要。

SAMPLE Northing Easting Elev. Cu Mo Zn Co Description
No m m m % ppm ppm ppm Rock Chip Samples 2x2m Sampling Area
1153 8136819 244380 1953 0.44 0.77 2010 79.9 Quartz Diorite, FeOx + Malachite + Mn + Tm?
1159 8136708 244451 1940 0.01 6.31 59 7.6 Quartz Diorite, Qtz Veinlets + FeOx + Calcite
1160 8136536 244530 1929 0.01 6.84 71 4.2 Aplite Dyke, FeOx + Neotocite
1161 8136324 244719 1959 3.88 1.47 3540 281 Polymictic Bx, Qtz + Tm + Ox Cu + Mn
1162 8136329 244714 1959 2.84 1.75 2510 237 Polymictic Bx, Qtz + Tm + Ox Cu + Mn
1163 8136311 244723 1955 3.34 1.39 1905 238 Polymictic Bx, Qtz + Tm + Ox Cu + Mn
1164 8136313 244674 1853 3.85 1.46 1885 323 Polymictic Bx, Qtz + Tm + Ox Cu + Mn
1165 8136818 244384 1954 3.17 1.26 1600 210 Quartz Diorite, FeOx, CuOx, Malachite + Mn + Tm?
1166 8136818 244384 1954 0.22 0.54 1490 68.3 Quartz Diorite, FeOx, CuOx, Malachite + Mn + Tm?
1167 8136818 244384 1953 1.10 1.49 2030 155.0 Quartz Diorite, FeOx, CuOx, Malachite + Mn + Tm?
1168 8136818 244384 1953 0.07 0.34 361 23.20 Quartz Diorite, FeOx, CuOx, Malachite + Mn + Tm?
1169 8136818 244384 1953 0.42 0.89 3270 136.5 Quartz Diorite, FeOx, CuOx, Malachite + Mn + Tm?
1171 8136739 244409 1930 4.67 1.76 3060 209 Quartz Diorite, Arg Alteration, Qtz Vlts, FeOx, + Vlts Calc
1172 8136324 244719 1932 4.71 1.63 2030 383 Polymictic Bx, Qtz + Tm + Ox Cu + Mn
1173 8136329 244714 1853 1.15 1.32 2730 286 Polymictic Bx, Qtz + Tm + Ox Cu + Mn
1174 8136311 244723 1853 1.45 1.28 1155 26.4 Polymictic Bx, Qtz + Tm + Ox Cu + Mn
1188 8134456 241824 1917 0.01 14.8 65 30.9 Breccia, FeOx, Lim boxworks
1189 8134615 241913 1922 0.01 28.8 24 4.70 Polymictic Bx, FeOx in fractures
1191 8135447 242573 1930 0.02 10.2 82 17.20 Quartz vein, Strong Fracturing with FeOx + Mn
1192 8134631 243258 1926 0.02 6.54 98 5.80 Andesite fragment, FeOX, Intense Fracturing
1193 8134646 243282 1929 0.01 2.46 27 2.20 Quartz Diorite, QS Alteration, Very Fractured
1194 8134745 243125 1929 0.01 2.95 48 2.60 Quartz Diorite, FeOx, Turgite,
1195 8134797 243341 1925 <0.01 3.08 77 0.80 Quartz Diorite, FeOx, Turgite, Intense Fractures
1196 8134471 243472 1924 <0.01 14.8 42 4.00 Quartz Diorite, Quartz Vlts, FeOx boxworks, Intense Frac.
1197 8134164 243266 1917 <0.01 3.76 95 3.60 Diorite with Qtz Vlts, Leached - FeOx + Qtz Tm vlts
Notes: Bx-Breccia, Qtz-Quartz, Tm-Tourmaline, Vlts-veinlets, FeOx-Iron Oxides, Mt-magnetite, Py-Pyrite, Ep-Epidote, Chl-Chlorite, Lim-Limonite, Neo-Neotocite, Mn-Manganese, Calc-Calcite, V-Very, Frac-Fractured
樣本 北方 向東 Elev。 Mo 有限公司 描述
沒有 m m m % ppm ppm ppm Rock Chip 樣品 2x2M 採樣區域
1153 8136819 244380 1953 0.44 0.77 2010 79.9 石英閃長巖、FeOx + 孔雀石 + Mn + Tm?
1159 8136708 244451 1940 0.01 6.31 59 7.6 石英閃長巖、Qtz Veinlets + FeoX + 方解石
1160 8136536 244530 1929 0.01 6.84 71 4.2 Aplite Dyke、FeOx + Neotocite
1161 8136324 244719 1959 3.88 1.47 3540 281 Polymictic Bx,Qtz + Tm + Ox Cu + Mn
1162 8136329 244714 1959 2.84 1.75 2510 237 Polymictic Bx,Qtz + Tm + Ox Cu + Mn
1163 8136311 244723 1955 3.34 1.39 1905 238 Polymictic Bx,Qtz + Tm + Ox Cu + Mn
1164 8136313 244674 1853 3.85 1.46 1885 323 Polymictic Bx,Qtz + Tm + Ox Cu + Mn
1165 8136818 244384 1954 3.17 1.26 1600 210 石英閃長巖、FeOx、CuOx、孔雀石 + Mn + Tm?
1166 8136818 244384 1954 0.22 0.54 1490 68.3 石英閃長巖、FeOx、CuOx、孔雀石 + Mn + Tm?
1167 8136818 244384 1953 1.10 1.49 2030 155.0 石英閃長巖、FeOx、CuOx、孔雀石 + Mn + Tm?
1168 8136818 244384 1953 0.07 0.34 361 23.20 石英閃長巖、FeOx、CuOx、孔雀石 + Mn + Tm?
1169 8136818 244384 1953 0.42 0.89 3270 136.5 石英閃長巖、FeOx、CuOx、孔雀石 + Mn + Tm?
1171 8136739 244409 1930 4.67 1.76 3060 209 石英閃長巖、Arg Alts、Qtz Volts、FeOx、+ Vlts Calc
1172 8136324 244719 1932 4.71 1.63 2030 383 Polymictic Bx,Qtz + Tm + Ox Cu + Mn
1173 8136329 244714 1853 1.15 1.32 2730 286 Polymictic Bx,Qtz + Tm + Ox Cu + Mn
1174 8136311 244723 1853 1.45 1.28 1155 26.4 Polymictic Bx,Qtz + Tm + Ox Cu + Mn
1188 8134456 241824 1917 0.01 14.8 65 30.9 角礫岩、FeOx、Lim boxworks
1189 8134615 241913 1922 0.01 28.8 24 4.70 骨折中的 Polymictic Bx、FeOx
1191 8135447 242573 1930 0.02 10.2 82 17.20 石英脈,使用 FeOx + Mn 進行強力壓裂
1192 8134631 243258 1926 0.02 6.54 98 5.80 安山岩碎片、FeOx、強度壓裂
1193 8134646 243282 1929 0.01 2.46 27 2.20 石英閃長巖,QS 蝕變,極度斷裂
1194 8134745 243125 1929 0.01 2.95 48 2.60 石英閃長巖、FeOx、Turgite
1195 8134797 243341 1925 3.08 77 0.80 石英閃長巖、FeOx、Turgite、強烈斷裂
1196 8134471 243472 1924 14.8 42 4.00 石英閃長巖、石英熔體、FeOx boxworks、Intense Frac。
1197 8134164 243266 1917 3.76 95 3.60 帶 Qtz Vlts 的閃長巖,浸出-FeOx + Qtz Tm vlts
備註:Bx-Breccia、Qtz-Quartz、Tm-Tourmaline、VLTS-Veinlet、Feox-氧化鐵、MT-磁鐵礦、Py-Pyrite、Ep-Epidote、Chl-Chrite、Lim-Limonite、新新月石、錳錳、方解石、V-Very、斷裂斷裂

Quality Control and Quality Assurance

質量控制和質量保證

DLP Resources Peru S.A.C, a subsidiary of DLP Resources Inc., supervises sampling and carries out surface sampling and mapping of outcrop at the Esperanza project. Rock chip sampling was done within a maximum area of 2m x 2m and descriptions were carried out by a geologist. Samples are bagged and sealed on site before transportation to the ALS Peru S.A.C. sample preparation facility in Arequipa by Company vehicles and staff. Rocks are crushed with 70% passing <2mm. Sample is split with riffle splitter and 250g pulverized to 85% less than 75um. Prepared samples are sent to Lima by ALS Peru S.A.C. for analysis. ALS Peru S.A.C. is an independent laboratory. Samples are analyzed for 48 elements using a four-acid digestion and ICP-MS analysis (ME-MS61). Overlimit samples for copper and silver were re-analysed by four-acid digestion and ICP-AES (ME-OG62). In addition, sequential copper analyses are done and reports, soluble copper using sulphuric acid leach, soluble copper in cyanide leach, residual copper and total copper. ALS meets all requirements of International Standards ISO/IEC 17025:2005 and ISO 9001:2015 for analytical procedures.

DLP Resources Peru S.A.C是DLP資源公司的子公司,負責監督埃斯佩蘭薩項目的採樣並對露頭進行地表採樣和測繪。岩屑採樣是在2m x 2m的最大區域內進行的,並由地質學家進行了描述。樣品在現場裝袋並密封,然後由公司車輛和工作人員運送到位於阿雷基帕的ALS Peru S.A.C. 樣本製備設施。岩石以 70% 的速度被壓碎

DLP Resources independently monitors quality control and quality assurance ("QA/QC") through a program that includes the insertion of certified reference materials.

DLP Resources 通過包括插入認證參考材料在內的計劃獨立監控質量控制和質量保證(“QA/QC”)。

Esperanza Project

埃斯佩蘭薩項目

The Esperanza Cu-Mo Project is an early-stage exploration project in Southern Peru consisting of 4,600 Ha of claims which are 100% owned by DLP. Esperanza is located ~35 km SW of the Cerro Verde Mine in Arequipa and immediately south of the Chapi Copper Mine.

埃斯佩蘭薩銅鉬項目是秘魯南部的一個早期勘探項目,由4,600公頃的土地組成,100%歸DLP所有。埃斯佩蘭薩位於阿雷基帕塞羅佛得礦西南約35公里處,緊鄰查皮銅礦以南。

Copper-molybdenum mineralization was initially observed in an early reconnaissance program undertaken in 2022. Subsequently we have completed a satellite alteration mapping program over the project and identified alteration consistent with porphyry copper-molybdenum systems. Follow-up of alteration and subsequent sampling and mapping commenced in early 2024.

銅鉬礦化最初是在2022年進行的一項早期偵察計劃中觀察到的。隨後,我們完成了該項目的衛星改動測繪計劃,並確定了與斑岩銅鉬系統一致的變化。變更的後續行動以及隨後的採樣和測繪於2024年初開始。


Figure 1: Esperanza Project Location


圖 1:Esperanza 項目位置


Figure 2: Esperanza Project -Anomalous copper, molybdenum, zinc and cobalt in rock samples.


圖 2:Esperanza 項目-岩石樣品中的異常銅、鉬、鋅和鈷。


Figure 3: Esperanza Project - Simplified geology with anomalous copper in rock samples.


圖 3:Esperanza 項目-簡化的地質結構,岩石樣品中含有異常銅。


Figure 4: Esperanza Project - Simplified geology with anomalous molybdenum in rock samples.


圖 4:Esperanza 項目-岩石樣品中含有異常鉬的簡化地質學。


Figure 5: Esperanza Project - Simplified geology with anomalous zinc in rock samples.


圖 5:Esperanza 項目-簡化的地質結構,岩石樣品中含有異常鋅。


Figure 6: Esperanza Project - Simplified geology with anomalous cobalt in rock samples.


圖 6:Esperanza 項目-簡化的地質結構,岩石樣品中含有異常鈷。

Qualified Person

合格人員

David L. Pighin, consulting geologist and co-founder of DLP Resources, is the qualified person of the Company as defined by National Instrument 43-101. Mr. Pighin has reviewed and approved the technical contents of this news release.

根據國家儀器43-101的定義,諮詢地質學家兼DLP Resources聯合創始人大衛·皮金是該公司的合格人員。皮金先生已經審查並批准了本新聞稿的技術內容。

About DLP Resources Inc.

關於 DLP Resources Inc.

DLP Resources Inc. is a mineral exploration company operating in Southeastern British Columbia and Peru, exploring for Base Metals and Cobalt. DLP is listed on the TSX-V, trading symbol DLP and on the OTCQB, trading symbol DLPRF. Please refer to our web site for additional information.

DLP Resources Inc. 是一家礦產勘探公司,在不列顛哥倫比亞省東南部和秘魯開展業務,勘探基本金屬和鈷。DLP在TSX-V上市,交易代碼爲DLP,在OTCQB上市,交易代碼爲DLPRF。請參閱我們的網站以獲取更多信息。

FOR FURTHER INFORMATION PLEASE CONTACT:

欲了解更多信息,請聯繫:

DLP RESOURCES INC.
Ian Gendall, CEO & President
Jim Stypula, Executive Chairman
Robin Sudo, Office & Land Manager/Corporate Secretary
Maxwell Reinhart, Investor Relations
Telephone: 250-426-7808
Email: iangendall@dlpresourcesinc.com
Email: jimstypula@dlpresourcesinc.com
Email: robinsudo@dlpresourcesinc.com

Email: maxreinhart@dlpresourcesinc.com

DLP 資源公司
伊恩·根德爾,首席執行官兼總裁
吉姆·斯蒂普拉,執行主席
Robin Sudo,辦公室和土地經理/公司秘書
麥克斯韋爾·萊因哈特,投資者關係
電話:250-426-7808
電子郵件:iangendall@dlpresourcesinc.com
電子郵件:jimstypula@dlpresourcesinc.com
電子郵件:robinsudo@dlpresourcesinc.com

電子郵件: maxreinhart@dlpresourcesinc.com

Neither the TSX Venture Exchange nor its Regulation Services Provider (as that term is defined in the policies of the TSX Venture Exchange) accepts responsibility for the adequacy or accuracy of this release.

多倫多證券交易所風險投資交易所及其監管服務提供商(該術語在多倫多證券交易所風險投資交易所的政策中定義)均不對本新聞稿的充分性或準確性承擔責任。

Cautionary Note Regarding Forward-Looking Information

關於前瞻性信息的警示說明

This release includes certain statements and information that may constitute forward-looking information within the meaning of applicable Canadian securities laws. Forward-looking statements relate to future events or future performance and reflect the expectations or beliefs of management of the Company regarding future events. Generally, forward-looking statements and information can be identified by the use of forward-looking terminology such as "intends" or "anticipates", or variations of such words and phrases or statements that certain actions, events or results "may", "could", "should", "would" or "occur". This information and these statements, referred to herein as "forward‐looking statements", are not historical facts, are made as of the date of this news release and include without limitation, statements regarding discussions of future plans, estimates and forecasts and statements as to management's expectations and intentions with respect to further sampling, mapping and advancement of the Esperanza Project in Peru.

本新聞稿包括某些陳述和信息,這些陳述和信息可能構成適用的加拿大證券法所指的前瞻性信息。前瞻性陳述與未來事件或未來業績有關,反映了公司管理層對未來事件的期望或信念。通常,前瞻性陳述和信息可以通過使用諸如 “打算” 或 “預期” 之類的前瞻性術語來識別,或者某些行爲、事件或結果 “可能”、“應該”、“將” 或 “發生” 的此類詞語和短語的變體或陳述。這些信息和這些陳述(此處稱爲 “前瞻性陳述”)不是歷史事實,是截至本新聞稿發佈之日發佈的,包括但不限於有關未來計劃、估計和預測討論的聲明,以及關於管理層對秘魯埃斯佩蘭薩項目進一步抽樣、測繪和推進的預期和意圖的陳述。

These forward‐looking statements involve numerous risks and uncertainties and actual results might differ materially from results suggested in any forward-looking statements. These risks and uncertainties include, among other things rock chip results expected from the Esperanza Project in Peru.

這些前瞻性陳述涉及許多風險和不確定性,實際結果可能與任何前瞻性陳述中建議的結果存在重大差異。除其他外,這些風險和不確定性包括秘魯Esperanza項目預期的岩石芯片結果。

Although management of the Company has attempted to identify important factors that could cause actual results to differ materially from those contained in forward-looking statements or forward-looking information, there may be other factors that cause results not to be as anticipated, estimated or intended. There can be no assurance that such statements will prove to be accurate, as actual results and future events could differ materially from those anticipated in such statements. Accordingly, readers should not place undue reliance on forward-looking statements and forward-looking information. Readers are cautioned that reliance on such information may not be appropriate for other purposes. The Company does not undertake to update any forward-looking statement, forward-looking information or financial out-look that are incorporated by reference herein, except in accordance with applicable securities laws. We seek safe harbor.

儘管公司管理層試圖確定可能導致實際業績與前瞻性陳述或前瞻性信息中包含的業績存在重大差異的重要因素,但可能還有其他因素導致業績與預期、估計或預期不符。無法保證此類陳述會被證明是準確的,因爲實際結果和未來事件可能與此類陳述中的預期存在重大差異。因此,讀者不應過分依賴前瞻性陳述和前瞻性信息。提醒讀者,依賴此類信息可能不適合用於其他目的。除非根據適用的證券法,否則公司不承諾更新此處以引用方式納入的任何前瞻性陳述、前瞻性信息或財務展望。我們尋求安全港。

声明:本內容僅用作提供資訊及教育之目的,不構成對任何特定投資或投資策略的推薦或認可。 更多信息
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